Midori Anzen Co., Ltd.

Japan

Back to Profile

1-86 of 86 for Midori Anzen Co., Ltd. Sort by
Query
Aggregations
IP Type
        Patent 81
        Trademark 5
Jurisdiction
        World 58
        United States 26
        Europe 1
        Canada 1
Date
2024 2
2023 8
2022 4
2021 6
2020 3
See more
IPC Class
A41D 19/00 - Gloves 30
A41D 19/04 - Appliances for making glovesMeasuring devices for glove-making 21
B29C 41/14 - Dipping a core 20
C08K 3/22 - OxidesHydroxides of metals 15
C08L 9/04 - Latex 8
See more
NICE Class
25 - Clothing; footwear; headgear 4
10 - Medical apparatus and instruments 3
07 - Machines and machine tools 1
09 - Scientific and electric apparatus and instruments 1
12 - Land, air and water vehicles; parts of land vehicles 1
See more
Status
Pending 6
Registered / In Force 80

1.

COMPOSITION FOR DIP FORMING AND GLOVE, AND METHODS FOR MANUFACTURING COMPOSITION FOR DIP FORMING AND GLOVE

      
Application Number 18692179
Status Pending
Filing Date 2023-05-08
First Publication Date 2024-11-21
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Ikeda, Keisuke
  • Hoshino, Sayaka
  • Kanamori, Wataru
  • Matsui, Masahiro
  • Takeuchi, Yamato
  • Kubono, Yugo
  • Enomoto, Norihide

Abstract

Provided is a sulfur-free crosslinked composition for dip forming, including: a carboxylated diene rubber elastomer; a crosslinking agent that contains at least one of an organic crosslinking agent or a metal crosslinking agent with a valence of two or more; an antioxidant that contains at least one compound having a phenol structure and a sulfur atom; and water, wherein an amount of the at least one compound is 0.05 to 4 parts by weight relative to 100 parts by weight of the elastomer.

IPC Classes  ?

2.

ALUMINUM CROSSLINKING AGENT FOR DIP MOLDING, DIP MOLDING COMPOSITION, GLOVES, AND METHOD FOR PRODUCING GLOVES

      
Application Number 18263424
Status Pending
Filing Date 2022-02-01
First Publication Date 2024-09-19
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Enomoto, Norihide
  • Satake, Shoya
  • Tsuneishi, Taku
  • Maeda, Ryo
  • Ishihara, Shun

Abstract

An aluminum crosslinking agent for dip molding has a sufficient stability enabling use in mass production of gloves and the like, and makes it possible to provide a molded body obtained using the aluminum crosslinking agent, which has sufficient tensile strength and fatigue durability and is soft and elongating; a dip molding composition gloves, and a method for producing gloves are provided. These are an aluminum crosslinking agent for dip molding, including a polynuclear aluminum lactate compound, which has a polynuclear aluminum structure and at least one lactic acid residue. The polynuclear aluminum structure has a structure where a plurality of aluminum atoms are polymerized through one oxygen atom, and has a degree of polymerization of 2 to 20, and lactic acid residues or hydroxyl groups are bonded to remaining valences of the aluminum atom.

IPC Classes  ?

  • C08K 5/098 - Metal salts of carboxylic acids
  • A41D 19/00 - Gloves
  • B29C 41/00 - Shaping by coating a mould, core or other substrate, i.e. by depositing material and stripping-off the shaped articleApparatus therefor
  • B29C 41/14 - Dipping a core
  • B29C 41/46 - Heating or cooling
  • B29K 9/00 - Use of rubber derived from conjugated dienes, as moulding material
  • B29K 105/00 - Condition, form or state of moulded material
  • B29K 105/24 - Condition, form or state of moulded material cross-linked or vulcanised
  • B29L 31/48 - Wearing apparel
  • C08K 3/22 - OxidesHydroxides of metals

3.

Dip Molding Emulsion and Glove

      
Application Number 18239935
Status Pending
Filing Date 2023-08-30
First Publication Date 2023-12-14
Owner Midori Anzen Co., Ltd. (Japan)
Inventor
  • Enomoto, Norihide
  • Ogawa, Taichi

Abstract

Provided is, a glove production method including: (1) the step of immersing a glove forming mold in a liquid coagulant containing calcium ions so as to allow the coagulant to adhere to the glove forming mold; (2) the dispersion step of leaving a dip molding composition to stand with stirring; (3) the dipping step; (4) the gelling step; (5) the leaching step; (6) the beading step; (7) the precuring step; and (8) the curing step, in which method the steps (3) to (8) are performed in the order mentioned, and the dip molding composition has a specific formulation.

IPC Classes  ?

  • C08L 9/02 - Copolymers with acrylonitrile
  • A41D 19/04 - Appliances for making glovesMeasuring devices for glove-making
  • B29C 41/46 - Heating or cooling
  • C08L 33/02 - Homopolymers or copolymers of acidsMetal or ammonium salts thereof
  • C08K 3/20 - OxidesHydroxides
  • B29C 41/00 - Shaping by coating a mould, core or other substrate, i.e. by depositing material and stripping-off the shaped articleApparatus therefor
  • B29C 71/02 - Thermal after-treatment
  • B29C 41/14 - Dipping a core
  • A41D 19/00 - Gloves
  • C08L 79/08 - PolyimidesPolyester-imidesPolyamide-imidesPolyamide acids or similar polyimide precursors
  • B29K 79/00 - Use of other polymers having nitrogen, with or without oxygen or carbon only, in the main chain, as moulding material
  • B29K 9/00 - Use of rubber derived from conjugated dienes, as moulding material
  • B29K 33/20 - PAN, i.e. polyacrylonitrile

4.

DEVICE FOR AIR-CONDITIONING CLOTHING

      
Application Number JP2023016394
Publication Number 2023/223786
Status In Force
Filing Date 2023-04-26
Publication Date 2023-11-23
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Inukai Gen
  • Amano Shinpei
  • Takahashi Haruki

Abstract

When a first semiconductor unit 7f is damaged in a manner associated with generation of a large amount of heat due to deterioration over time, the surface temperature of the damaged first semiconductor unit 7f rapidly rises. Heat generated from the first semiconductor unit 7f in this manner is immediately transmitted to a first blocking part 7g via a filling thermoconductive substance, and therefore a fusion cutting part of the first blocking part 7g melts before the raised temperature of the first semiconductor unit 7f reaches a temperature at which a combustible substance in an explosive atmosphere ignites. The first blocking part 7g blocks a supply of electric power from a battery unit. Because the heat generated from the first semiconductor unit 7f is quickly and efficiently transmitted to the first blocking part 7g through thermal conduction by the thermoconductive substance, the partially broken first semiconductor unit 7f does not reach the temperature at which a combustible substance in an explosive atmosphere ignites.

IPC Classes  ?

  • H02J 7/00 - Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries
  • A41D 13/00 - Professional, industrial or sporting protective garments, e.g. surgeons' gowns or garments protecting against blows or punches
  • A41D 13/002 - Professional, industrial or sporting protective garments, e.g. surgeons' gowns or garments protecting against blows or punches with controlled internal environment
  • F04D 25/08 - Units comprising pumps and their driving means the working fluid being air, e.g. for ventilation
  • H02H 7/18 - Emergency protective circuit arrangements specially adapted for specific types of electric machines or apparatus or for sectionalised protection of cable or line systems, and effecting automatic switching in the event of an undesired change from normal working conditions for batteriesEmergency protective circuit arrangements specially adapted for specific types of electric machines or apparatus or for sectionalised protection of cable or line systems, and effecting automatic switching in the event of an undesired change from normal working conditions for accumulators

5.

COMPOSITION AND GLOVE FOR DIP MOLDING, AND METHODS FOR PRODUCING COMPOSITION AND GLOVE FOR DIP MOLDING

      
Application Number JP2023017315
Publication Number 2023/219063
Status In Force
Filing Date 2023-05-08
Publication Date 2023-11-16
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Ikeda Keisuke
  • Hoshino Sayaka
  • Kanamori Wataru
  • Matsui Masahiro
  • Takeuchi Yamato
  • Kubono Yugo
  • Enomoto Norihide

Abstract

This non-sulfur-crosslinked composition for dip molding contains a carboxylated diene rubber elastomer, a crosslinking agent containing at least one of an organic crosslinking agent and a divalent or higher metal crosslinking agent, an antioxidant containing a compound having at least one of a phenol structure and a sulfur atom, and water, the content of the at least one compound being 0.05-4 weight parts per 100 weight parts of elastomer.

IPC Classes  ?

  • C08L 9/04 - Latex
  • A41D 19/04 - Appliances for making glovesMeasuring devices for glove-making
  • B29C 41/14 - Dipping a core
  • C08J 3/20 - Compounding polymers with additives, e.g. colouring
  • C08J 5/02 - Direct processing of dispersions, e.g. latex, to articles
  • C08K 3/22 - OxidesHydroxides of metals
  • C08K 5/00 - Use of organic ingredients
  • C08K 5/29 - Compounds containing carbon-to-nitrogen double bonds
  • C08K 5/36 - Sulfur-, selenium-, or tellurium-containing compounds
  • C08L 63/00 - Compositions of epoxy resinsCompositions of derivatives of epoxy resins
  • C08L 101/02 - Compositions of unspecified macromolecular compounds characterised by the presence of specified groups

6.

COMPOSITION FOR DIP MOLDING AND MOLDED BODY THEREOF

      
Application Number 18028391
Status Pending
Filing Date 2021-09-27
First Publication Date 2023-11-09
Owner
  • Midori Anzen Co., Ltd. (Japan)
  • BST Specialty Co., Ltd. (Thailand)
Inventor
  • Enomoto, Norihide
  • Morinaga, Atsushi
  • Takeuchi, Yamato
  • Ota, Hisanori

Abstract

Provided is a dip molding composition containing at least a nitrile rubber elastomer containing a carboxyl group and an amide group. In this dip molding composition, the elastomer contains 50% by weight or more, 78% by weight or less of a conjugated diene monomer-derived structural unit, 17% by weight or more, 35% by weight or less of an ethylenically unsaturated nitrile monomer-derived structural unit, 2.0% by weight or more, 8.0% by weight or less of an ethylenically unsaturated carboxylic acid monomer-derived structural unit, and 0.5% by weight or more, 5.0% by weight or less of an amide group-containing monomer-derived structural unit, and has an MEK-insoluble content of 50% by weight or more, 80% by weight or less.

IPC Classes  ?

  • C08F 36/06 - Butadiene
  • C08L 9/04 - Latex
  • C08K 3/22 - OxidesHydroxides of metals
  • B29C 41/00 - Shaping by coating a mould, core or other substrate, i.e. by depositing material and stripping-off the shaped articleApparatus therefor
  • B29C 41/14 - Dipping a core
  • B29C 41/46 - Heating or cooling

7.

TROUSERS

      
Application Number JP2022043384
Publication Number 2023/095835
Status In Force
Filing Date 2022-11-24
Publication Date 2023-06-01
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Sako Kagari
  • Yanai Ryusuke
  • Gommori Hideki
  • Hasebe Yasuo

Abstract

The purpose of this invention is to provide trousers, which can unnoticeably protect the lower back and which enables a healthy person having no experience of the lower back pain to prevent the lower back pain by tightening an ordinary belt. Trousers (1) are provided with a main trouser body (10) and a waist section (20) that is provided at the upper edge of the main trouser body (10) and on which a belt (B) can be detachably wound, the waist section (20) is provided at a position that surrounds the pelvis of the wearer when worn and comprises a belt core (21) and a rubber belt (30), which is a dimension-adjusting part for adjusting the dimension in the direction around the torso. The belt core (21) faces at least the front side and the back side of the pelvis, is set to a wider width dimension than the width dimension of the belt (B) and has stiffness that is capable of transmitting the tightening force of the belt (B) toward the pelvis.

IPC Classes  ?

  • A41D 1/06 - Trousers
  • A41D 13/05 - Professional, industrial or sporting protective garments, e.g. surgeons' gowns or garments protecting against blows or punches protecting only a particular body part

8.

COMPOSITION FOR DIP MOLDING AND MOLDED BODY THEREOF

      
Application Number 17916249
Status Pending
Filing Date 2021-03-30
First Publication Date 2023-05-25
Owner
  • Midori Anzen Co., Ltd. (Japan)
  • BST Specialty Co., Ltd. (Thailand)
Inventor
  • Enomoto, Norihide
  • Morinaga, Atsushi
  • Ota, Hisanori

Abstract

Provided is a dip molding composition which contains at least: a carboxyl group-containing nitrile rubber elastomer; an epoxy crosslinking agent containing an epoxy compound that contains three or more glycidyl ether groups in one molecule and has a basic skeleton containing an alicyclic, aliphatic or aromatic hydrocarbon; and a pH modifier. In this dip molding composition, the elastomer contains 50% by weight or more, 78% by weight or less of a conjugated diene monomer-derived structural unit, 20% by weight or more, 30% by weight or less of an ethylenically unsaturated nitrile monomer-derived structural unit, and 3.5% by weight or more, 6% by weight or less of an ethylenically unsaturated carboxylic acid monomer-derived structural unit; the elastomer has an MEK-insoluble content of 60% by weight or more, 80% by weight or less; and the epoxy crosslinking agent has an MIBK/water distribution ratio of 50% or higher.

IPC Classes  ?

  • C08F 236/12 - Copolymers of compounds having one or more unsaturated aliphatic radicals, at least one having two or more carbon-to-carbon double bonds the radical having only two carbon-to-carbon double bonds conjugated with nitriles
  • C08K 5/1515 - Three-membered rings
  • C08K 3/22 - OxidesHydroxides of metals

9.

Dip molding emulsion, method of producing glove, and glove

      
Application Number 17969755
Grant Number 12338351
Status In Force
Filing Date 2022-10-20
First Publication Date 2023-04-06
Grant Date 2025-06-24
Owner Midori Anzen Co., Ltd. (Japan)
Inventor
  • Enomoto, Norihide
  • Ogawa, Taichi
  • Shibata, Kaname
  • Shibasaki, Junji

Abstract

Provided is a dip molding emulsion including, at least: an elastomer that contains a (meth)acrylonitrile-derived structural unit, an unsaturated carboxylic acid-derived structural unit, and a butadiene-derived structural unit in a polymer main chain; an epoxy crosslinking agent; water; and a pH modifier, in which dip molding composition the elastomer contains the (meth)acrylonitrile-derived structural unit in an amount of 20% by weight to 40% by weight, the unsaturated carboxylic acid-derived structural unit in an amount of 1% by weight to 10% by weight, and the butadiene-derived structural unit in an amount of 50% by weight to 75% by weight, and the epoxy crosslinking agent includes an epoxy crosslinking agent containing an epoxy compound having three or more epoxy groups in one molecule and has a dissolution rate in water of 10% to 70% as determined by a specific measurement method.

IPC Classes  ?

10.

DIP-FORMED ARTICLE COMPRISING A LAYER DERIVED FROM LATEX COMPOSITION FOR DIP-FORMING

      
Application Number 17787922
Status Pending
Filing Date 2021-12-09
First Publication Date 2023-03-23
Owner
  • LG CHEM, LTD. (Republic of Korea)
  • MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Kwon, Won Sang
  • Yeu, Seung Uk
  • Han, Jung Su
  • Kim, Jung Eun
  • Jang, Myung Su
  • Enomoto, Norihide
  • Hoshino, Sayaka
  • Satake, Shoya
  • Takeuchi, Yamato

Abstract

Disclosed is a dip-formed article comprising a layer derived from a latex composition for dip-forming, wherein the latex composition for dip-forming contains a carboxylic acid-modified nitrile-based copolymer latex, the carboxylic acid-modified nitrile-based copolymer latex contains a carboxylic acid-modified nitrile-based copolymer, and the dip-formed article has an elongation of more than 650% and satisfies the following Expressions 1 and 2, Disclosed is a dip-formed article comprising a layer derived from a latex composition for dip-forming, wherein the latex composition for dip-forming contains a carboxylic acid-modified nitrile-based copolymer latex, the carboxylic acid-modified nitrile-based copolymer latex contains a carboxylic acid-modified nitrile-based copolymer, and the dip-formed article has an elongation of more than 650% and satisfies the following Expressions 1 and 2, [Expression 1] Disclosed is a dip-formed article comprising a layer derived from a latex composition for dip-forming, wherein the latex composition for dip-forming contains a carboxylic acid-modified nitrile-based copolymer latex, the carboxylic acid-modified nitrile-based copolymer latex contains a carboxylic acid-modified nitrile-based copolymer, and the dip-formed article has an elongation of more than 650% and satisfies the following Expressions 1 and 2, [Expression 1] k1′+k2′+k3′≤9.3 N/mm  (1) Disclosed is a dip-formed article comprising a layer derived from a latex composition for dip-forming, wherein the latex composition for dip-forming contains a carboxylic acid-modified nitrile-based copolymer latex, the carboxylic acid-modified nitrile-based copolymer latex contains a carboxylic acid-modified nitrile-based copolymer, and the dip-formed article has an elongation of more than 650% and satisfies the following Expressions 1 and 2, [Expression 1] k1′+k2′+k3′≤9.3 N/mm  (1) [Expression 2] Disclosed is a dip-formed article comprising a layer derived from a latex composition for dip-forming, wherein the latex composition for dip-forming contains a carboxylic acid-modified nitrile-based copolymer latex, the carboxylic acid-modified nitrile-based copolymer latex contains a carboxylic acid-modified nitrile-based copolymer, and the dip-formed article has an elongation of more than 650% and satisfies the following Expressions 1 and 2, [Expression 1] k1′+k2′+k3′≤9.3 N/mm  (1) [Expression 2] 0.55≤k1′/(k1′+k2′+k3′)  (2) Disclosed is a dip-formed article comprising a layer derived from a latex composition for dip-forming, wherein the latex composition for dip-forming contains a carboxylic acid-modified nitrile-based copolymer latex, the carboxylic acid-modified nitrile-based copolymer latex contains a carboxylic acid-modified nitrile-based copolymer, and the dip-formed article has an elongation of more than 650% and satisfies the following Expressions 1 and 2, [Expression 1] k1′+k2′+k3′≤9.3 N/mm  (1) [Expression 2] 0.55≤k1′/(k1′+k2′+k3′)  (2) wherein k1′ is a value obtained by dividing an equilibrium coefficient k1 by a thickness of a test piece, and k2′ and k3′ are values obtained by dividing viscous coefficients k2 and k3 by the thickness of the test piece, respectively.

IPC Classes  ?

11.

Composition for dip molding

      
Application Number 17890480
Grant Number 11584045
Status In Force
Filing Date 2022-08-18
First Publication Date 2022-12-22
Grant Date 2023-02-21
Owner Midori Anzen Co., Ltd. (Japan)
Inventor
  • Enomoto, Norihide
  • Ogawa, Taichi
  • Shibata, Kaname
  • Shibasaki, Junji

Abstract

A glove including a cured film of an elastomer containing a (meth)acrylonitrile-derived structural unit, an unsaturated carboxylic acid-derived structural unit and a butadiene-derived structural unit in a polymer main chain, wherein the elastomer contains 20 to 40% by weight of a (meth)acrylonitrile-derived structural unit, 1 to 10% by weight of an unsaturated carboxylic acid-derived structural unit and 50 to 75% by weight of a butadiene-derived structural unit, and has a crosslinked structure of a carboxyl group in the unsaturated carboxylic acid-derived structural unit with an epoxy crosslinker containing an epoxy compound having three or more epoxy groups in one molecule.

IPC Classes  ?

  • B29C 41/14 - Dipping a core
  • A41D 19/00 - Gloves
  • B29C 41/00 - Shaping by coating a mould, core or other substrate, i.e. by depositing material and stripping-off the shaped articleApparatus therefor
  • C08F 20/44 - Acrylonitrile
  • C08G 59/32 - Epoxy compounds containing three or more epoxy groups
  • C08J 5/02 - Direct processing of dispersions, e.g. latex, to articles
  • C08F 236/12 - Copolymers of compounds having one or more unsaturated aliphatic radicals, at least one having two or more carbon-to-carbon double bonds the radical having only two carbon-to-carbon double bonds conjugated with nitriles
  • B29K 33/20 - PAN, i.e. polyacrylonitrile
  • B29L 31/48 - Wearing apparel
  • C08K 5/1515 - Three-membered rings

12.

ALUMINUM CROSSLINKING AGENT FOR DIP MOLDING, DIP MOLDING COMPOSITION, GLOVES, AND METHOD FOR PRODUCING GLOVES

      
Application Number JP2022003838
Publication Number 2022/168831
Status In Force
Filing Date 2022-02-01
Publication Date 2022-08-11
Owner
  • MIDORI ANZEN CO., LTD. (Japan)
  • TAKI CHEMICAL CO., LTD. (Japan)
Inventor
  • Enomoto Norihide
  • Satake Shoya
  • Tsuneishi Taku
  • Maeda Ryo
  • Ishihara Shun

Abstract

Provided is an aluminum crosslinking agent for dip molding that does not cause gelation in a dip molding composition and that has a satisfactory stability that enables use even in mass production, e.g., in glove production, wherein molded articles obtained using the aluminum crosslinking agent have a satisfactory tensile strength and fatigue resistance and are soft and stretchable. Also provided are a dip molding composition, gloves, and a method for producing gloves. The aluminum crosslinking agent for dip molding contains a polynuclear aluminum lactate compound, wherein the aluminum crosslinking agent for dip molding is characterized in that the polynuclear aluminum lactate compound has a polynuclear aluminum structure and at least one lactic acid residue; the polynuclear aluminum structure has a structure in which a plurality of aluminum atoms are polymerized with each other via a single interposed oxygen atom; the degree of polymerization here is 2-20; and the residual valences of the aluminum atoms are bonded to a lactic acid residue or a hydroxyl group. The dip molding composition, gloves, and glove production method each use the aluminum crosslinking agent for dip molding.

IPC Classes  ?

  • B29C 41/14 - Dipping a core
  • C08K 5/098 - Metal salts of carboxylic acids
  • C08L 13/00 - Compositions of rubbers containing carboxyl groups
  • A41D 19/04 - Appliances for making glovesMeasuring devices for glove-making

13.

DIP-FORMED ARTICLE COMPRISING LAYER DERIVED FROM LATEX COMPOSITION FOR DIP-FORMING

      
Application Number KR2021018683
Publication Number 2022/124833
Status In Force
Filing Date 2021-12-09
Publication Date 2022-06-16
Owner
  • LG CHEM, LTD. (Republic of Korea)
  • MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Kwon, Won Sang
  • Yeu, Seung Uk
  • Han, Jung Su
  • Kim, Jung Eun
  • Jang, Myung Su
  • Enomoto, Norihide
  • Hoshino, Sayaka
  • Satake, Shoya
  • Takeuchi, Yamato

Abstract

12311231123233, by a thickness of a sample, respectively.)

IPC Classes  ?

14.

COMPOSITION FOR DIP MOLDING AND MOLDED BODY THEREOF

      
Application Number JP2021035405
Publication Number 2022/065491
Status In Force
Filing Date 2021-09-27
Publication Date 2022-03-31
Owner
  • MIDORI ANZEN CO., LTD. (Japan)
  • BST SPECIALTY CO., LTD. (Thailand)
Inventor
  • Enomoto, Norihide
  • Morinaga, Atsushi
  • Takeuchi, Yamato
  • Ota, Hisanori

Abstract

This composition for dip molding contains at least a nitrile rubber elastomer containing a carboxylic group and an amido group, wherein: the elastomer contains 50-78 wt% of a structural unit derived from a conjugate diene monomer, 17-35 wt% of a structural unit derived from an ethylenic unsaturated nitrile monomer, 2.0-8.0 wt% of a structural unit derived from an ethylenic unsaturated carboxylic acid monomer, and 0.5-5.0 wt% of a structural unit derived from an amide group-containing monomer; and the undissolved MEK amount of the elastomer is 50-80 wt%.

IPC Classes  ?

  • C08L 13/02 - Latex
  • B29C 41/14 - Dipping a core
  • B29C 41/36 - Feeding the material on to the mould, core or other substrate
  • C08G 59/42 - Polycarboxylic acidsAnhydrides, halides, or low-molecular-weight esters thereof
  • C08K 3/22 - OxidesHydroxides of metals
  • C08L 63/00 - Compositions of epoxy resinsCompositions of derivatives of epoxy resins

15.

COMPOSITION FOR DIP MOLDING AND MOLDED BODY THEREOF

      
Application Number JP2021013597
Publication Number 2021/200984
Status In Force
Filing Date 2021-03-30
Publication Date 2021-10-07
Owner
  • MIDORI ANZEN CO., LTD. (Japan)
  • BST SPECIALTY CO., LTD. (Thailand)
Inventor
  • Enomoto, Norihide
  • Morinaga, Atsushi
  • Ota, Hisanori

Abstract

A composition for dip molding containing at least a carboxyl-group-containing nitrile rubber elastomer, an epoxy crosslinking agent that contains an epoxy compound having a parent skeleton that has three or more glycidyl ether groups per molecule and also has an alicyclic, aliphatic, or aromatic hydrocarbon, and a pH regulator, wherein: the elastomer contains 50-78 wt% (inclusive) of structural units derived from a conjugated diene monomer, 20-30 wt% (inclusive) of structural units derived from an ethylenically unsaturated nitrile monomer, and 3.5-6 wt% (inclusive) of structural units derived from an ethylenically unsaturated carboxylic acid monomer; the MEK insoluble content of the elastomer is 60-80 wt% (inclusive); and the MIBK/water distribution coefficient of the epoxy crosslinking agent is 50% or higher.

IPC Classes  ?

  • B29C 41/14 - Dipping a core
  • B29C 41/36 - Feeding the material on to the mould, core or other substrate
  • C08G 59/42 - Polycarboxylic acidsAnhydrides, halides, or low-molecular-weight esters thereof
  • C08F 236/04 - Copolymers of compounds having one or more unsaturated aliphatic radicals, at least one having two or more carbon-to-carbon double bonds the radical having only two carbon-to-carbon double bonds conjugated
  • C08L 13/00 - Compositions of rubbers containing carboxyl groups
  • C08L 63/00 - Compositions of epoxy resinsCompositions of derivatives of epoxy resins
  • A41D 19/00 - Gloves
  • A41D 19/04 - Appliances for making glovesMeasuring devices for glove-making
  • C08K 3/22 - OxidesHydroxides of metals

16.

Dip molding composition, method of producing glove, and glove

      
Application Number 16477247
Grant Number 11713401
Status In Force
Filing Date 2019-03-27
First Publication Date 2021-07-22
Grant Date 2023-08-01
Owner Midori Anzen Co., Ltd. (Japan)
Inventor
  • Enomoto, Norihide
  • Ogawa, Taichi
  • Shibata, Kaname
  • Shibasaki, Junji

Abstract

Provided is a dip molding composition including, at least: an elastomer that contains a (meth)acrylonitrile-derived structural unit, an unsaturated carboxylic acid-derived structural unit, and a butadiene-derived structural unit in a polymer main chain; an epoxy crosslinking agent; water; and a pH modifier, in which dip molding composition the elastomer contains the (meth)acrylonitrile-derived structural unit in an amount of 20 to 40% by weight, the unsaturated carboxylic acid-derived structural unit in an amount of 1 to 10% by weight, and the butadiene-derived structural unit in an amount of 50 to 75% by weight, and the epoxy crosslinking agent includes an epoxy crosslinking agent containing an epoxy compound having three or more epoxy groups in one molecule and has a dissolution rate in water of 10 to 70% as determined by a specific measurement method.

IPC Classes  ?

17.

Dip molding composition, method of producing glove, and glove

      
Application Number 16618874
Grant Number 11780992
Status In Force
Filing Date 2019-06-25
First Publication Date 2021-06-17
Grant Date 2023-10-10
Owner Midori Anzen Co., Ltd. (Japan)
Inventor
  • Enomoto, Norihide
  • Ogawa, Taichi

Abstract

Provided is, a glove production method including: (1) the step of immersing a glove forming mold in a liquid coagulant containing calcium ions so as to allow the coagulant to adhere to the glove forming mold; (2) the dispersion step of leaving a dip molding composition to stand with stirring; (3) the dipping step; (4) the gelling step; (5) the leaching step; (6) the beading step; (7) the precuring step; and (8) the curing step, in which method the steps (3) to (8) are performed in the order mentioned, and the dip molding composition has a specific formulation.

IPC Classes  ?

  • C08L 9/02 - Copolymers with acrylonitrile
  • A41D 19/00 - Gloves
  • A41D 19/04 - Appliances for making glovesMeasuring devices for glove-making
  • B29C 41/00 - Shaping by coating a mould, core or other substrate, i.e. by depositing material and stripping-off the shaped articleApparatus therefor
  • B29C 41/14 - Dipping a core
  • B29C 41/46 - Heating or cooling
  • B29C 71/02 - Thermal after-treatment
  • C08K 3/20 - OxidesHydroxides
  • C08L 33/02 - Homopolymers or copolymers of acidsMetal or ammonium salts thereof
  • B29K 9/00 - Use of rubber derived from conjugated dienes, as moulding material
  • B29K 33/20 - PAN, i.e. polyacrylonitrile
  • B29K 79/00 - Use of other polymers having nitrogen, with or without oxygen or carbon only, in the main chain, as moulding material
  • C08L 79/08 - PolyimidesPolyester-imidesPolyamide-imidesPolyamide acids or similar polyimide precursors

18.

Glove, composition for dip molding, and method for producing glove

      
Application Number 16347597
Grant Number 11465318
Status In Force
Filing Date 2018-11-20
First Publication Date 2021-06-03
Grant Date 2022-10-11
Owner Midori Anzen Co., Ltd. (Japan)
Inventor
  • Enomoto, Norihide
  • Ogawa, Taichi
  • Shibata, Kaname
  • Shibasaki, Junji

Abstract

A glove including a cured film of an elastomer containing a (meth)acrylonitrile-derived structural unit, an unsaturated carboxylic acid-derived structural unit and a butadiene-derived structural unit in a polymer main chain, wherein the elastomer contains 20 to 40% by weight of a (meth)acrylonitrile-derived structural unit, 1 to 10% by weight of an unsaturated carboxylic acid-derived structural unit and 50 to 75% by weight of a butadiene-derived structural unit, and has a crosslinked structure of a carboxyl group in the unsaturated carboxylic acid-derived structural unit with an epoxy crosslinker containing an epoxy compound having three or more epoxy groups in one molecule.

IPC Classes  ?

  • B29C 41/14 - Dipping a core
  • A41D 19/00 - Gloves
  • B29C 41/00 - Shaping by coating a mould, core or other substrate, i.e. by depositing material and stripping-off the shaped articleApparatus therefor
  • C08F 20/44 - Acrylonitrile
  • C08G 59/32 - Epoxy compounds containing three or more epoxy groups
  • C08J 5/02 - Direct processing of dispersions, e.g. latex, to articles
  • C08F 236/12 - Copolymers of compounds having one or more unsaturated aliphatic radicals, at least one having two or more carbon-to-carbon double bonds the radical having only two carbon-to-carbon double bonds conjugated with nitriles
  • B29K 33/20 - PAN, i.e. polyacrylonitrile
  • B29L 31/48 - Wearing apparel
  • C08K 5/1515 - Three-membered rings

19.

CROSSLINKING AGENT FOR DIP MOLDING, COMPOSITION FOR DIP MOLDING AND GLOVE

      
Application Number JP2020027114
Publication Number 2021/010343
Status In Force
Filing Date 2020-07-10
Publication Date 2021-01-21
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Enomoto, Norihide
  • Morinaga, Atsushi

Abstract

The first problem addressed by the present invention is to produce a glove having excellent tensile strength, elongation and fatigue endurance with use of a halohydrin crosslinking agent, which has not been used in the field of conventional external crosslinking agent-type gloves, while using no vulcanization accelerator. The second problem addressed by the present invention is to produce a glove having excellent stress retention ratio and good elongation at the same time, while ameliorating weaknesses of conventional sulfur-vulcanized XNBR gloves. A crosslinking agent for dip molding, which contains a halohydrin compound having at least two halohydrin groups D represented by formula (I) in each molecule. In formula (I), R1 represents a hydrogen atom or an alkyl group; and X represents a halogen group.

IPC Classes  ?

20.

COMPOSITION FOR DIP MOLDING, METHOD FOR PRODUCING GLOVE, AND GLOVE

      
Application Number JP2020027068
Publication Number 2021/010334
Status In Force
Filing Date 2020-07-10
Publication Date 2021-01-21
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Enomoto, Norihide
  • Morinaga, Atsushi

Abstract

The present invention provides a composition for dip molding, said composition containing at least: an elastomer which contains, in the polymer main chain, a structural unit derived from (meth)acrylonitrile, a structural unit derived from an unsaturated carboxylic acid, and a structural unit derived from butadiene; a polycarbodiimide; an epoxy crosslinking agent; water; and a pH adjuster. With respect to this composition for dip molding, the elastomer contains from 12% by weight to 36% by weight of the structural unit derived from (meth)acrylonitrile, from 2% by weight to 10% by weight of the structural unit derived from an unsaturated carboxylic acid, and from 50% by weight to 75% by weight of the structural unit derived from butadiene; the epoxy crosslinking agent includes an epoxy crosslinking agent containing an epoxy compound that has three or more epoxy groups in each molecule; and the polycarbodiimide includes at least one polycarbodiimide that contains a hydrophilic segment in the molecular structure.

IPC Classes  ?

  • B29C 41/14 - Dipping a core
  • C08K 5/29 - Compounds containing carbon-to-nitrogen double bonds
  • C08L 13/00 - Compositions of rubbers containing carboxyl groups
  • C08L 63/00 - Compositions of epoxy resinsCompositions of derivatives of epoxy resins
  • A41D 19/00 - Gloves
  • A41D 19/04 - Appliances for making glovesMeasuring devices for glove-making

21.

COMPOSITION FOR DIP MOLDING, METHOD FOR PRODUCING GLOVE USING SAME, AND GLOVE

      
Application Number JP2020009698
Publication Number 2020/195712
Status In Force
Filing Date 2020-03-06
Publication Date 2020-10-01
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Enomoto, Norihide
  • Suzuki, Akitsugu

Abstract

Provided is a composition for dip molding, from which it is possible to produce a glove having excellent fatigue durability even after a certain period of time has passed since production through use of a modified bisphenol A glycidyl ether. This composition for dip molding contains an elastomer, which contains structural units derived from (meth)acrylonitrile, an unsaturated carboxylic acid and butadiene in the main polymer chain, an epoxy crosslinking agent, water and a pH-adjusting agent. The epoxy crosslinking agent includes a compound represented by formula (1). R1and R2are each independently a hydrogen atom or an alkyl group having 1-10 carbon atoms. Rings A1and A2are each a 1,4-phenylene ring or a 1,4-cyclohexylene ring. R3and R4are each independently an alkylene group having 1-6 carbon atoms. m and n are each independently a number between 0 and 6. 1 ≤ m+n ≤ 6 in a case where rings A1and A2are 1,4-phenylene rings, and 0 ≤ m+n ≤ 6 in a case where rings A1and A2 are 1,4-cyclohexylene rings.

IPC Classes  ?

  • C08G 59/24 - Di-epoxy compounds carbocyclic
  • C08G 59/42 - Polycarboxylic acidsAnhydrides, halides, or low-molecular-weight esters thereof
  • C08L 13/02 - Latex
  • C08L 63/00 - Compositions of epoxy resinsCompositions of derivatives of epoxy resins
  • A41D 19/00 - Gloves
  • A41D 19/04 - Appliances for making glovesMeasuring devices for glove-making

22.

CUT-RESISTANT POLYVINYL ALCOHOL FIBER

      
Application Number JP2019027286
Publication Number 2020/013217
Status In Force
Filing Date 2019-07-10
Publication Date 2020-01-16
Owner
  • KURARAY CO., LTD. (Japan)
  • MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Takemoto, Shinichi
  • Sasajima, Akihiro
  • Katayama, Takashi
  • Yorimitsu, Shuhei
  • Enomoto, Norihide
  • Obuchi, Kiichi
  • Matsui, Masahiro

Abstract

The present invention pertains to a polyvinyl alcohol fiber containing a hard component, wherein the hard component of the polyvinyl alcohol fiber is a tabular hard component having a Mohs's hardness of 3 or greater, and the average value of the ratio (b/a) of the maximum length b of the principal surface of the tabular hard component to the maximum length a in a direction perpendicular to the principal surface is 5 or greater.

IPC Classes  ?

  • D01F 6/14 - Monocomponent man-made filaments or the like of synthetic polymersManufacture thereof from homopolymers obtained by reactions only involving carbon-to-carbon unsaturated bonds from polymers of unsaturated alcohols, e.g. polyvinyl alcohol, or of their acetals or ketals
  • A41D 19/00 - Gloves
  • A41D 19/015 - Protective gloves
  • D02G 3/38 - Threads in which fibres, filaments, or yarns are wound with other yarns or filaments

23.

DIP MOLDING COMPOSITION, METHOD FOR MANUFACTURING GLOVE, AND GLOVE

      
Application Number JP2019025226
Publication Number 2020/004415
Status In Force
Filing Date 2019-06-25
Publication Date 2020-01-02
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Enomoto, Norihide
  • Ogawa, Taichi

Abstract

Provided is a method for manufacturing a glove, including (1) a step for dipping a glove molding die into a coagulant solution including calcium ions and causing the coagulant to adhere to the glove molding die, (2) a dispersing step for leaving a dip molding composition to stand while stirring the dip molding composition, (3) a dipping step, (4) a gelling step, (5) a leaching step, (6) a beading step, (7) a precuring step, and (8) a curing step, the steps of (3) through (8) above being performed in the above order, and the dip molding composition having a specific composition.

IPC Classes  ?

  • C08L 9/04 - Latex
  • A41D 19/04 - Appliances for making glovesMeasuring devices for glove-making
  • B29C 41/14 - Dipping a core
  • C08K 3/22 - OxidesHydroxides of metals
  • C08L 79/00 - Compositions of macromolecular compounds obtained by reactions forming in the main chain of the macromolecule a linkage containing nitrogen with or without oxygen, or carbon only, not provided for in groups
  • A41D 19/00 - Gloves

24.

MIDORI PF1

      
Application Number 1501808
Status Registered
Filing Date 2019-07-08
Registration Date 2019-07-08
Owner MIDORI ANZEN CO., LTD. (Japan)
NICE Classes  ?
  • 10 - Medical apparatus and instruments
  • 25 - Clothing; footwear; headgear

Goods & Services

Pelvis correction belts for lumbago treatment. Golf pants for use with pelvis correction belts for lumbago treatment; golf pants.

25.

COMPOSITION FOR DIP MOLDING, METHOD FOR PRODUCING GLOVES, AND GLOVES

      
Application Number JP2019013455
Publication Number 2019/194056
Status In Force
Filing Date 2019-03-27
Publication Date 2019-10-10
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Enomoto, Norihide
  • Ogawa, Taichi
  • Shibata, Kaname
  • Shibasaki, Junji

Abstract

Provided is a composition for dip molding containing at least: an elastomer containing, in the polymer main chain, a structural unit derived from (meth)acrylonitrile, a structural unit derived from an unsaturated carboxylic acid, and a structural unit derived from butadiene; an epoxy crosslinking agent; water; and a pH adjuster, wherein: in the elastomer, the structural units derived from (meth)acrylonitrile are 20-40% by weight, the structural units derived from an unsaturated carboxylic acid are 1-10% by weight, and the structural units derived from butadiene are 50-75% by weight; the epoxy crosslinking agent contains an epoxy crosslinking agent containing an epoxy compound that has three or more epoxy groups per molecule; and the water solubility according to a specific measurement method is 10-70%.

IPC Classes  ?

  • C08L 9/02 - Copolymers with acrylonitrile
  • A41D 19/00 - Gloves
  • A41D 19/04 - Appliances for making glovesMeasuring devices for glove-making
  • B29C 41/14 - Dipping a core
  • C08K 5/053 - Polyhydroxylic alcohols
  • C08L 13/00 - Compositions of rubbers containing carboxyl groups
  • C08L 63/00 - Compositions of epoxy resinsCompositions of derivatives of epoxy resins

26.

HELMET-MOUNTED EMERGENCY EVACUATION WARNING DEVICE, AND EMERGENCY EVACUATION WARNING SYSTEM

      
Application Number JP2019010226
Publication Number 2019/177007
Status In Force
Filing Date 2019-03-13
Publication Date 2019-09-19
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Nozawa, Makoto
  • Masuko, Takashi
  • Shimbo, Takatomo
  • Takasugi, Shuichi

Abstract

The present invention addresses the problem of providing an emergency evacuation warning device capable of effectively transferring vibrations to the head of a user, even if a helmet is interposed therebetween, and an emergency evacuation warning system. This emergency evacuation warning device for prompting a related person in a work area to carry out an evacuation action immediately is provided with: a casing which vibrates by means of the movement of an inbuilt vibrator; an elastic fixing band which detachably fixes the casing to a helmet of the related person, and which extends in two directions from the casing and is wound around the helmet along the surface of the helmet; and a supporting unit which partially supports the casing on the surface of the helmet in such a way that the helmet oscillates together with the casing by means of the vibrations of the vibrator, which moves in conjunction with a wireless warning signal providing notification of a danger approaching the work area.

IPC Classes  ?

  • G08B 25/10 - Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems characterised by the transmission medium using wireless transmission systems
  • A42B 3/04 - Parts, details or accessories of helmets
  • G08B 21/02 - Alarms for ensuring the safety of persons

27.

MIDORI PF1

      
Application Number 199929100
Status Registered
Filing Date 2019-07-08
Registration Date 2021-09-01
Owner MIDORI ANZEN CO., LTD. (Japan)
NICE Classes  ?
  • 10 - Medical apparatus and instruments
  • 25 - Clothing; footwear; headgear

Goods & Services

(1) Pelvis correction belts for lumbago treatment. (2) Golf pants for use with pelvis correction belts for lumbago treatment; golf pants.

28.

MIDORI PF1

      
Serial Number 79273622
Status Registered
Filing Date 2019-07-08
Registration Date 2020-11-10
Owner MIDORI ANZEN CO., LTD. (Japan)
NICE Classes  ?
  • 10 - Medical apparatus and instruments
  • 25 - Clothing; footwear; headgear

Goods & Services

Pelvis correction belts for lumbago treatment Golf pants for use with pelvis correction belts for lumbago treatment; golf pants

29.

Method of manufacturing gloves, glove, and emulsion composition for gloves

      
Application Number 16308527
Grant Number 11179908
Status In Force
Filing Date 2017-06-16
First Publication Date 2019-06-13
Grant Date 2021-11-23
Owner Midori Anzen Co., Ltd. (Japan)
Inventor
  • Enomoto, Norihide
  • Ogawa, Taichi
  • Yanagisawa, Kenichi
  • Matsumoto, Nobuyuki

Abstract

Provided is a method of producing a glove, the method including: (1) the step of immersing a glove forming mold in a liquid coagulant containing calcium ions so as to allow the coagulant to adhere to the glove forming mold; (2) the step of adjusting the pH to be 9 or higher using an ammonium compound or an amine compound and leaving a glove emulsion composition to stand with stirring; (3) the dipping step of immersing the glove forming mold, to which the coagulant has thus adhered in the step (1), in the glove emulsion composition; (4) the gelling step of leaving the glove forming mold, to which the glove emulsion composition has thus adhered, to stand at a temperature for a period that satisfy specific conditions; (5) the leaching step of removing impurities from a cured film precursor thus formed on the glove forming mold; (6) the beading step of, after the leaching step, winding the cuff portion of the resulting glove; (7) the precuring step of heating and drying the cured film precursor that has been subjected to the beading step; and (8) the curing step of heating the cured film precursor at a specific temperature for a specific period to obtain a cured film.

IPC Classes  ?

  • B29D 99/00 - Subject matter not provided for in other groups of this subclass
  • A41D 19/04 - Appliances for making glovesMeasuring devices for glove-making
  • B29C 41/14 - Dipping a core
  • C08J 3/26 - Crosslinking, e.g. vulcanising, of macromolecules of latex
  • C08K 5/29 - Compounds containing carbon-to-nitrogen double bonds
  • C08L 13/02 - Latex
  • C08L 9/06 - Copolymers with styrene
  • A41D 19/00 - Gloves
  • C08J 3/03 - Making solutions, dispersions, lattices or gels by other methods than by solution, emulsion or suspension polymerisation techniques in aqueous media

30.

GLOVE, DIP FORMING COMPOSITION AND GLOVE MANUFACTURING METHOD

      
Application Number JP2018042788
Publication Number 2019/102985
Status In Force
Filing Date 2018-11-20
Publication Date 2019-05-31
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Enomoto, Norihide
  • Ogawa, Taichi
  • Shibata, Kaname
  • Shibasaki, Junji

Abstract

Provided is a glove comprising a cured elastomer film including, in a polymer backbone, (meth)acrylonitrile-derived structural units, unsaturated carboxylic acid-derived structural units, and butadiene-derived structural units, wherein the elastomer contains 20-40 wt% (meth)acrylonitrile-derived structural units, 1-10 wt% unsaturated carboxylic acid-derived structural units, and 50-75 wt% butadiene-derived structural units, and has a crosslinked structure between carboxyl groups in the unsaturated carboxylic acid-derived structural units and an epoxy crosslinking agent containing an epoxy compound comprising 3 or more epoxy groups per molecule.

IPC Classes  ?

  • A41D 19/00 - Gloves
  • A41D 19/04 - Appliances for making glovesMeasuring devices for glove-making
  • C08G 59/42 - Polycarboxylic acidsAnhydrides, halides, or low-molecular-weight esters thereof

31.

Glove dipping composition, method for manufacturing gloves, and gloves

      
Application Number 16313500
Grant Number 10954364
Status In Force
Filing Date 2017-12-19
First Publication Date 2019-05-30
Grant Date 2021-03-23
Owner Midori Anzen Co., Ltd. (Japan)
Inventor
  • Enomoto, Norihide
  • Ogawa, Taichi

Abstract

Provided is: A glove dipping composition including, at least: an elastomer that contains a (meth)acrylonitrile-derived structural unit, an unsaturated carboxylic acid-derived structural unit and a butadiene-derived structural unit in a polymer main chain; a polycarbodiimide; zinc oxide and/or an aluminum complex; water; and at least one pH modifier selected from an ammonium compound and an amine compound, in which glove dipping composition the polycarbodiimide includes at least one polycarbodiimide containing a hydrophilic segment in its molecular structure and has an average polymerization degree of 3.8 or higher and a carbodiimide equivalent of 260 to 600; the polycarbodiimide is added in an amount of 0.1 to 4.0% by weight and zinc oxide and/or the aluminum complex is/are added in an amount of 0.1 to 5.6% by weight with respect to the total solid content of the glove dipping composition; and the glove dipping composition has a pH of 9.0 to 11.5.

IPC Classes  ?

  • C07C 267/00 - Carbodiimides
  • C08L 9/04 - Latex
  • C08L 13/02 - Latex
  • C08L 33/20 - Homopolymers or copolymers of acrylonitrile
  • C08F 220/06 - Acrylic acidMethacrylic acidMetal salts or ammonium salts thereof
  • C08F 220/46 - Acrylonitrile with carboxylic acids, sulfonic acids or salts thereof
  • C08F 236/12 - Copolymers of compounds having one or more unsaturated aliphatic radicals, at least one having two or more carbon-to-carbon double bonds the radical having only two carbon-to-carbon double bonds conjugated with nitriles
  • C08C 1/14 - Coagulation
  • C08L 15/00 - Compositions of rubber derivatives
  • C08K 5/29 - Compounds containing carbon-to-nitrogen double bonds
  • C08F 220/44 - Acrylonitrile
  • C08F 236/06 - Butadiene
  • C08F 265/08 - Macromolecular compounds obtained by polymerising monomers on to polymers of unsaturated monocarboxylic acids or derivatives thereof as defined in group on to polymers of nitriles
  • B29C 41/00 - Shaping by coating a mould, core or other substrate, i.e. by depositing material and stripping-off the shaped articleApparatus therefor
  • B29C 41/14 - Dipping a core
  • B29C 41/42 - Removing articles from moulds, cores or other substrates
  • C08K 3/22 - OxidesHydroxides of metals
  • A41D 19/04 - Appliances for making glovesMeasuring devices for glove-making
  • A41D 19/00 - Gloves
  • B29K 19/00 - Use of rubber not provided for in a single one of main groups , as moulding material
  • B29L 31/48 - Wearing apparel

32.

Trousers with waist protection belt

      
Application Number 15770335
Grant Number 11096433
Status In Force
Filing Date 2016-06-06
First Publication Date 2018-11-01
Grant Date 2021-08-24
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Kim, Jaewoo
  • Matsubayashi, Naotoshi
  • Tamanaha, Shohei
  • Sako, Kagari

Abstract

This disclosure is related to trousers with a waist protection belt. The trousers include the waist protection belt that is detachably attached to a belt cloth of the trousers, a trouser body that includes a stretchable cloth at a position corresponding to a waist part of a back body part of the trousers, and a position adjusting part that is provided at substantially a center of the waist protection belt and is provided at a position on a back surface of the belt cloth corresponding to the waist part of the trouser body. The position adjusting part is configured to adjustably change an attachment position of the waist protection belt in a vertical direction with respect to the trouser body.

IPC Classes  ?

  • A41D 13/05 - Professional, industrial or sporting protective garments, e.g. surgeons' gowns or garments protecting against blows or punches protecting only a particular body part
  • A41D 1/06 - Trousers
  • A41D 1/14 - Skirts
  • A41D 27/12 - Shields or protectors
  • A61F 5/02 - Orthopaedic corsets
  • A41F 9/00 - Belts, girdles, or waistbands for trousers or skirts
  • A61F 5/03 - Corsets or bandages for abdomen, teat or breast support, with or without pads

33.

GLOVE DIPPING COMPOSITION, METHOD FOR MANUFACTURING GLOVES, AND GLOVES

      
Application Number JP2017045570
Publication Number 2018/117109
Status In Force
Filing Date 2017-12-19
Publication Date 2018-06-28
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Enomoto, Norihide
  • Ogawa, Taichi

Abstract

Provided is a glove dipping composition that at least includes an elastomer that includes a structural unit derived from (meth)acrylonitrile, a structural unit derived from unsaturated carboxylic acid, and a structural unit derived from butadiene in a polymer main chain in a specific range, a polycarbodiimide, zinc oxide and/or an aluminum complex, water, and one or more pH adjusting agents selected from ammonium compounds and amino compounds, wherein the polycarbodiimide includes at least one polycarbodiimide containing a hydrophilic segment in the molecular structure, the average degree of polymerization of the polycarbodiimide is 3.8 or greater, the polycarbodiimide equivalent weight is 260 – 600, the amount of the polycarbodiimide added is 0.1 – 4.0 wt% of the total weight of solid components in the glove dipping composition, the amount of zinc oxide and/or aluminum complex added is 0.1 – 5.6 wt%, and pH of the glove dipping composition is 9.0 – 11.5.

IPC Classes  ?

34.

METHOD OF MANUFACTURING GLOVES, GLOVE, AND EMULSION COMPOSITION FOR GLOVES

      
Application Number JP2017022367
Publication Number 2017/217542
Status In Force
Filing Date 2017-06-16
Publication Date 2017-12-21
Owner
  • MIDORI ANZEN CO., LTD. (Japan)
  • NISSHINBO CHEMICAL INC. (Japan)
Inventor
  • Enomoto, Norihide
  • Ogawa, Taichi
  • Yanagisawa, Kenichi
  • Matsumoto, Nobuyuki

Abstract

Provided is a method of manufacturing gloves, the method comprising: (1) a step for immersing a glove form in a liquid solidifying agent containing calcium ions so that the solidifying agent adheres to the glove form; (2) a step for adjusting pH to at least 9 using an ammonium compound or an amine compound, and allowing an emulsion composition for gloves to stand while being agitated; (3) a dipping step in which the glove form to which the solidifying agent was adhered in step (1) is immersed in the emulsion composition for gloves; (4) a gelling step in which the glove form to which the emulsion composition for gloves has been adhered is allowed to stand at a temperature and for a length of time satisfying specific conditions; (5) a leaching step for removing impurities from a cured film precursor formed on the glove form; (6) a beading step for forming a bead on a cuff part of the glove after the leaching step; (7) a precuring step for heating and drying the cured film precursor that has passed through the beading step; and (8) a curing step for heating the cured film precursor at a specific temperature and for a specific length of time to obtain a cured film.

IPC Classes  ?

  • A41D 19/04 - Appliances for making glovesMeasuring devices for glove-making
  • B29C 41/14 - Dipping a core
  • C08J 3/26 - Crosslinking, e.g. vulcanising, of macromolecules of latex
  • C08K 5/29 - Compounds containing carbon-to-nitrogen double bonds
  • C08L 13/02 - Latex

35.

EARPLUG

      
Application Number JP2017019784
Publication Number 2017/209016
Status In Force
Filing Date 2017-05-26
Publication Date 2017-12-07
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Utsugi, Yohei
  • Mifune, Yuzo

Abstract

An earplug 1 describing the shape of an artillery shell is equipped with an earplug main body 11 comprising an elastic foamed plastic material and three grooves 12, 13, and 14 provided in a helical shape on the outer peripheral surface of the earplug main body 11.

IPC Classes  ?

  • A61F 11/10 - Protective devices for the ears internal, e.g. earplugs inflatable or expandable

36.

GLOVE

      
Application Number JP2017001940
Publication Number 2017/126660
Status In Force
Filing Date 2017-01-20
Publication Date 2017-07-27
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Enomoto, Norihide
  • Ogawa, Taichi
  • Sato, Yusuke

Abstract

A glove in which the polymer main chain includes a structural unit derived from acrylonitrile, a structural unit derived from an unsaturated carboxylic acid, a structural unit derived from butadiene, and a structural unit derived from a self-crosslinking compound or from an organic crosslinking agent and in which a sulfur-free crosslinked structure has been formed.

IPC Classes  ?

37.

PANTS WITH WAIST PROTECTION BELT

      
Application Number JP2016066714
Publication Number 2017/073105
Status In Force
Filing Date 2016-06-06
Publication Date 2017-05-04
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Kim, Jaewoo
  • Matsubayashi, Naotoshi
  • Tamanaha, Shohei
  • Sako, Kagari

Abstract

The pants (1) with a waist protection belt are provided with: a waist protection belt (31), (310) detachably attached to a belt cloth (10) portion of the pants (1); and a pants main body (1a) having a stretchable cloth (15) at a position corresponding to a waist section of a back piece (3). A position adjustment part (71) for adjusting the attachment position in a height direction relative to the pants main body (1a) is provided at a substantially center portion of the waist protection belt (31), (310) and a belt cloth portion corresponding thereto and located on the back side of the waist section of the pants main body (1a).

IPC Classes  ?

  • A61F 5/02 - Orthopaedic corsets
  • A41D 1/06 - Trousers
  • A41D 1/14 - Skirts
  • A41D 13/05 - Professional, industrial or sporting protective garments, e.g. surgeons' gowns or garments protecting against blows or punches protecting only a particular body part
  • A41D 27/12 - Shields or protectors

38.

NONSLIP KNITTED GLOVE AND METHOD FOR MANUFACTURING SAME

      
Application Number JP2016068730
Publication Number 2016/208694
Status In Force
Filing Date 2016-06-23
Publication Date 2016-12-29
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Koma, Masahiro
  • Hirama, Daisuke
  • Taniguchi, Keiichi
  • Konishi, Yoshiyuki

Abstract

A warp knitting machine is used to obtain an nonslip knitted glove having better workability than prior-art knitted gloves produced with a fully automatic glove knitting machine, or knitted gloves sewn from a thin fabric. In this nonslip knitted glove, an elastomer or resin coating is formed on the complete surface layer or a partial surface layer of a knitted glove that is knitted using a warp knitting machine to form a front and rear base fabric into a cylindrical shape with finger sections, a main section, and a sleeve opening, and to knit closed each side edge section and the tip end section of each finger sack section.

IPC Classes  ?

  • A41D 19/015 - Protective gloves
  • A41D 19/04 - Appliances for making glovesMeasuring devices for glove-making

39.

Glove and production process thereof

      
Application Number 14898412
Grant Number 09808039
Status In Force
Filing Date 2014-06-12
First Publication Date 2016-06-02
Grant Date 2017-11-07
Owner
  • Midori Anzen Co. Ltd. (Japan)
  • Hartalega SDN BHD (Malaysia)
Inventor
  • Enomoto, Norihide
  • Ogawa, Taichi
  • Hirama, Daisuke
  • Kuan, Kam Hon
  • Kuan, Mun Leong
  • Kuan, Eu Jin
  • Cheah, Mei Ling
  • Mohd Zaidi, Bin Mat Satar

Abstract

The present invention reduces the minimum detectable volume of a piece of a glove in the detection using a metal detector. A glove made of a rubber or resin film which contains magnetic particles, wherein the quantity of the magnetic particles is 0.2 to less than 40 mass % relative to the whole of the film; and the magnetic particles comprise secondary particles formed by the agglomeration of primary particles.

IPC Classes  ?

40.

OIL MIST COLLECTION DEVICE

      
Application Number JP2015081446
Publication Number 2016/076251
Status In Force
Filing Date 2015-11-09
Publication Date 2016-05-19
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Isaka Yuka
  • Konta Ryuhei
  • Maki Norio

Abstract

The present invention efficiently collects the oil content of a gas using a rotary brush body. A collection unit 20, comprising a rotary brush body 21 and a back panel 22. The rotary brush body 21 has a large number of radially oriented linear materials 21b arranged in a tight, brush-form configuration, around a disc part 21a. The back panel 22 behind the rotary brush body 21 has window parts 22a at positions corresponding to the linear materials 21b. Partition frames 22b are provided to the window parts 22a. When the oil-containing gas is passed through the linear materials 21b and the window parts 22a of the back panel 22 from the front surface towards the back surface of the rotary brush body 21, the oil content collides with the linear materials 21b, adheres thereto, and becomes captured. Although the back panel 22 has the window parts 22a provided at positions corresponding to the linear materials 21b, the presence of the partition frames 22b prevents the linear materials 21b from collapsing rearwards beyond what is necessary, unraveling, and reducing the collection efficiency.

IPC Classes  ?

  • B01D 45/08 - Separating dispersed particles from gases or vapours by gravity, inertia, or centrifugal forces by utilising inertia by impingement against baffle separators
  • B01D 46/10 - Particle separators, e.g. dust precipitators, using filter plates, sheets or pads having plane surfaces
  • B01D 46/28 - Particle separators, e.g. dust precipitators, using filter brushes
  • B23Q 11/00 - Accessories fitted to machine tools for keeping tools or parts of the machine in good working condition or for cooling workSafety devices specially combined with or arranged in, or specially adapted for use in connection with, machine tools

41.

HIGH-VOLTAGE POWER SOURCE DEVICE FOR ELECTRIC DUST COLLECTOR

      
Application Number JP2015076795
Publication Number 2016/047636
Status In Force
Filing Date 2015-09-18
Publication Date 2016-03-31
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Yamashita, Takayuki
  • Sugita, Naoki

Abstract

 A high-voltage power source device for an electric dust collector in which an output voltage V and an output current I outputted to an ionizer I and a collector II are detected, and an output voltage signal S1 representing the output voltage V and an output current signal S2 representing the output current I are supplied to a CPU 9, whereby the CPU 9 performs duty control for PWM control using a conversion device, wherein: the CPU 9 acquires the output voltage signal S1 or the output current signal S2 and immediately ceases output of the output voltage V by minimizing the duty of the PWM control when a discharge spark caused by a decrease in the output voltage V is detected; and after a prescribed cessation time elapses, the CPU 9 performs a control so that the voltage increase speed of the output voltage V is set to a moderately increasing curve that is set on the basis of the split ratio of the duty and the sampling speed at which the output voltage signal S1 or the output current signal S2 is acquired.

IPC Classes  ?

42.

POWER SUPPLY DEVICE

      
Application Number JP2015076794
Publication Number 2016/047635
Status In Force
Filing Date 2015-09-18
Publication Date 2016-03-31
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Yamashita, Takayuki
  • Sugita, Naoki

Abstract

 In the present invention, an output voltage V and an output current I are detected for loads I, II, and the detected output voltage V and output current I are supplied to a main control device 5, whereby duty control for the PWM control of a separately excited conversion device is performed by the CPU 9 of the main control device 5. In the CPU 9, a two-dimensional relationship of the output voltage V and the output current I is indicated, and a native characteristic curve is used that intersects with the desired two-dimensional output characteristics and indicates the two-dimensional relationship of the output voltage V and the output current I when the duty is fixed at a constant; the detected output voltage V and output current I are substituted in an attractor function R that is uniquely determined from the shape of the two-dimensional output characteristics; and the duty for the PWM control is raised and lowered at regular time intervals in such a direction as to converge with the attractor function R, on the basis of the positive or negative sign of the attractor function when the difference is taken between the output voltage V at the corresponding attractor function R and a prescribed standard voltage V0, and when the difference is taken between the output current I at the corresponding attractor function R and a prescribed standard current I0.

IPC Classes  ?

  • H02M 3/28 - Conversion of DC power input into DC power output with intermediate conversion into AC by static converters using discharge tubes with control electrode or semiconductor devices with control electrode to produce the intermediate AC
  • B03C 3/68 - Control systems therefor

43.

EMULSION COMPOSITION AND GLOVE

      
Application Number JP2015071144
Publication Number 2016/013666
Status In Force
Filing Date 2015-07-24
Publication Date 2016-01-28
Owner
  • MIDORI ANZEN CO., LTD. (Japan)
  • KOSSAN SDN BHD (Malaysia)
Inventor
  • Enomoto, Norihide
  • Ogawa, Taichi
  • Sato, Yusuke
  • Lim, Lawrence Siau Tian
  • Lee, Seek Ping
  • Ong, Eng Long

Abstract

 An emulsion composition including at least water and an elastomer in which structural units derived from acrylonitrile, structural units derived from an unsaturated carboxylic acid, structural units derived from butadiene, and structural units derived from a self-crosslinking compound are included in a polymer main chain thereof, and a non-sulfur-based crosslinked structure is formed, the emulsion composition wherein the crosslinked structure includes a crosslinked structure formed by the self-crosslinking compound, and a crosslinked structure formed by a crosslinking agent, and the crosslinking agent is a non-polymerizable polyfunctional organic compound.

IPC Classes  ?

44.

FACE PROTECTION TOOL AND FACE PROTECTION TOOL FRAME

      
Application Number JP2015061164
Publication Number 2015/163159
Status In Force
Filing Date 2015-04-09
Publication Date 2015-10-29
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Enomoto, Norihide
  • Hasegawa, Tatsuya

Abstract

The present invention is equipped with: a main body frame (10) that is mounted to the head; and a shield frame (20) that is disposed outside the main body frame (10) and that holds a shield (S) that protects all or part of the face of the wearer. The main body frame (10) is equipped with: a bridge arm (11) that extends from the front of the head across the sides of the head to the rear of the head at both sides; a first support unit (11a) that is provided to both sides of the bridge arm (11) and that supports the rear of the head; a pair of head arms (12) that branch in the direction of the front of the head from the portions (11b) of the bridge arm (11) corresponding to the sides of the head and that are disposed at the inside of the bridge arm (11); second support units (12a) that support the front of the head and are provided to the respective tips of the head arms (12). The portion of the first support unit (11a) corresponding to the front of the head is disposed separated from the front of the head, resulting in a first pressing force adjustment section (15) that adjusts the pressing force to the rear of the head by the first support unit (11a), and the head arms (12) are a second pressing force adjustment section (16) that adjusts the pressing force to the front of the head by the second support unit (12a).

IPC Classes  ?

  • A61F 9/04 - Eye-masks
  • A41D 13/11 - Protective face masks, e.g. for surgical use, or for use in foul atmospheres

45.

ARTICLE COATED WITH ANTIFOGGING COATING HAVING EXCELLENT DURABILITY

      
Application Number JP2015062705
Publication Number 2015/163484
Status In Force
Filing Date 2015-04-27
Publication Date 2015-10-29
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Enomoto, Norihide
  • Ogawa, Taichi
  • Endo, Daisuke

Abstract

An article coated with an antifogging coating, having an antifogging coating film for polyurethane resin compositions having an (AB) n-type multi-block copolymer basic structure comprising a diisocyanate component (A) indicated by chemical formula (1) and a branched diol component and/or a straight-chain diol component, as a diol component (B), said antifogging coating film being formed upon, as a polycyclohexylenedimethylene terephthalate copolyester resin, a poly (1, 4-cyclohexylenedimethylene terephthalate) copolyester resin base material including a terephthalic acid (TPA) or dimethyl teraphthlate (DMA) residue, a 1,4-cyclohexane dimethanol (CHDM) residue, and a 2,2-4, 4-tetramethyl-1, 3-cyclobutanediol (TMCD) residue.

IPC Classes  ?

46.

WORKING GLOVE AND METHOD FOR MANUFACTURING WORKING GLOVE

      
Application Number JP2015055939
Publication Number 2015/129886
Status In Force
Filing Date 2015-02-27
Publication Date 2015-09-03
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Koma, Masahiro
  • Hirama, Daisuke
  • Taniguchi, Keiichi

Abstract

 In the present invention, a combination of knitting machine settings and the elasticity of a used yarn is devised, whereby a knitted glove is knitted, by a 15-gauge knitting machine or a 13-gauge knitting machine, using a yarn having an appropriate total denier number for a 18-gauge knitting machine. A working knitted glove, wherein the yarn used in knitting the knitted glove has the elasticity of a yarn that conforms to (1) a set gauge number for a knitting machine of gauge 13 or gauge 15, and (2) an appropriate denier number for the used yarn which is 100-200 deniers.

IPC Classes  ?

47.

GLOVE AND GLOVE COMPOSITION

      
Application Number JP2015055901
Publication Number 2015/129871
Status In Force
Filing Date 2015-02-27
Publication Date 2015-09-03
Owner
  • MIDORI ANZEN CO., LTD. (Japan)
  • KOSSAN SDN BHD (Malaysia)
Inventor
  • Enomoto, Norihide
  • Ogawa, Taichi
  • Sato, Yusuke
  • Lim, Lawrence Siau Tian
  • Lee, Seek Ping
  • Ong, Eng Long

Abstract

An emulsion composition comprising: (1) a carboxylated acrylonitrile butadiene elastomer including an acrylonitrile residue in the amount of 23-30 wt%, and an unsaturated carboxylic acid residue in the amount of 3-8 wt%; and (2) a polyacrylonitrile butadiene elastomer including an acrylonitrile residue in the amount of 20-50 wt%, with a (styrene-converted) weight-average molecular weight of 7,000-50,000. The weight ratio of component (1) / component (2) is 70/30 to 90/10.

IPC Classes  ?

48.

GLOVE AND PRODUCTION PROCESS THEREFOR

      
Application Number JP2014065540
Publication Number 2014/200047
Status In Force
Filing Date 2014-06-12
Publication Date 2014-12-18
Owner
  • MIDORI ANZEN CO., LTD. (Japan)
  • HARTALEGA SDN BHD (Malaysia)
Inventor
  • Enomoto, Norihide
  • Ogawa, Taichi
  • Hirama, Daisuke
  • Kuan, Kam Hon
  • Kuan, Mun Leong
  • Kuan, Eu Jin
  • Cheah, Mei Ling
  • Mohd Zaidi, Bin Mat Satar

Abstract

The present invention reduces the minimum detectable volume of a piece of a glove in the detection using a metal detector. A glove made of a rubber or resin film which contains magnetic particles, wherein the quantity of the magnetic particles is 0.2 to less than 40 mass% relative to the whole of the film; and the magnetic particles comprise secondary particles formed by the agglomeration of primary particles.

IPC Classes  ?

49.

Resin composition and molded body

      
Application Number 14355783
Grant Number 10093796
Status In Force
Filing Date 2012-10-31
First Publication Date 2014-10-02
Grant Date 2018-10-09
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Enomoto, Norihide
  • Hasegawa, Tatsuya
  • Ogawa, Taichi

Abstract

Provided is a resin composition having weather resistance and low-temperature impact resistance, which are the problems of a poly(1,4-cyclohexylene dimethylene terephthalate) copolyester resin, and sustaining the chemical resistance and room-temperature impact resistance of poly(1,4-cyclohexylene dimethylene terephthalate) copolyester resin. It is a resin composition containing a poly(1,4-cyclohexylene dimethylene terephthalate) copolyester resin and a polycarbonate resin, in which the poly(1,4-cyclohexylene dimethylene terephthalate) copolyester resin is contained at 60 to 95% by weight and the polycarbonate resin is contained at 5 to 40% by weight.

IPC Classes  ?

  • C08L 67/02 - Polyesters derived from dicarboxylic acids and dihydroxy compounds
  • C08L 69/00 - Compositions of polycarbonatesCompositions of derivatives of polycarbonates
  • B32B 15/09 - Layered products essentially comprising metal comprising metal as the main or only constituent of a layer, next to another layer of a specific substance of synthetic resin comprising polyesters
  • B29C 45/18 - Feeding the material into the injection moulding apparatus
  • A42B 3/06 - Impact-absorbing shells, e.g. of crash helmets

50.

COVERALLS

      
Application Number JP2014056866
Publication Number 2014/142300
Status In Force
Filing Date 2014-03-14
Publication Date 2014-09-18
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Sako, Kagari
  • Mori, Nobuhide
  • Komiya, Motoi

Abstract

Coveralls having first gusset materials (21) extending from the sides of the body (7) to the lower sections of the sleeves (9) and second gusset materials (23) extending from the sides of the body to the lower sections of the sleeves parallel to the first gusset materials.

IPC Classes  ?

51.

GLOVE HAVING EXCELLENT CHEMICAL RESISTANCE, AND COMPOSITION FOR SAID GLOVE

      
Application Number JP2013073411
Publication Number 2014/034889
Status In Force
Filing Date 2013-08-30
Publication Date 2014-03-06
Owner
  • MIDORI ANZEN CO., LTD. (Japan)
  • KOSSAN SDN BHD (Malaysia)
Inventor
  • Enomoto, Norihide
  • Ogawa, Taichi
  • Lim, Lawrence Siau Tian
  • Lee, Seek Ping
  • Ong, Eng Long

Abstract

An emulsion composition for producing a glove, which contains an elastomer (1) and a poly(acrylonitrile butadiene) (2) at a component (1)/component (2) ratio of 70/30 to 90/10 by weight, wherein the elastomer (1) is a carboxylated acrylonitrile butadiene elastomer, contains an acrylonitrile residue and an unsaturated carboxylic acid residue in amounts of 30 to 40 wt% and 3 to 8 wt%, respectively, relative to the weight of the elastomer, has such a property that the content of sulfur element capable of being detected by a neutralization titration method in a burned product of the elastomer is 1 wt% or less relative to the weight of the elastomer, and has a Mooney viscosity (ML(1+4) (100˚C)) of 100 to 220, and wherein the poly(acrylonitrile butadiene) (2) has a weight average molecular weight of 7,000 to 500,000 in terms of styrene; and a glove which comprises the emulsion composition and therefore has excellent chemical resistance and flexibility.

IPC Classes  ?

52.

Transparent resin composition having good chemical resistance, durability and stability under natural environmental conditions, harsher natural environmental conditions, and similar or harsher usage conditions, and product using same

      
Application Number 13985989
Grant Number 09550885
Status In Force
Filing Date 2012-02-17
First Publication Date 2013-12-05
Grant Date 2017-01-24
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Enomoto, Norihide
  • Hasegawa, Tatsuya

Abstract

The invention provides a transparent resin composition which is stable and has weather resistance and chemical resistance under natural environmental conditions, under harsher natural environmental conditions, and under similar or harsher usage conditions, the composition comprising a polycyclohexylene dimethylene terephthalate copolyester, and further comprising an ultraviolet absorber composed of a benzoxazinone-based compound and/or a hydrolysis inhibitor composed of a carbodiimide; a transparent resin composition which is stable and has weather resistance and chemical resistance under even harsher usage conditions; and a transparent resin composition which is stable and has weather resistance and chemical resistance under the above conditions, the composition further comprising an antioxidant and a heat-resistant material. These transparent resin compositions can be used for helmets, face shields for helmets, lenses for spectacles, outer cases for storing items, sheet materials for outdoor installation, and frames and temples for spectacles.

IPC Classes  ?

  • C08K 5/13 - PhenolsPhenolates
  • C08K 5/357 - Six-membered rings
  • G02B 1/04 - Optical elements characterised by the material of which they are madeOptical coatings for optical elements made of organic materials, e.g. plastics
  • C08K 5/29 - Compounds containing carbon-to-nitrogen double bonds

53.

Toe cap and toe cap embedded shoe

      
Application Number 13883474
Grant Number 08898933
Status In Force
Filing Date 2011-07-06
First Publication Date 2013-10-03
Grant Date 2014-12-02
Owner Midori Anzen Co., Ltd. (Japan)
Inventor Sakurai, Yoshinori

Abstract

A structure of a toe cap and a shoe having the toe cap embedded which does not disturb foot movement such as walking while protecting a toe against lateral collision with an object such as a wheel of a dolly includes a cup-shaped shell body which is formed by connecting a front end wall, bilateral side walls and an upper face wall with a gentle curved face, and an extension side wall disposed at least to one side wall as rearwardly extending a rear end edge of the side wall. The shoe having the toe cap embedded can sufficiently protect the toe even when an impact is applied from the outer side (i.e., the little toe) direction of the toe of which protection is not sufficient with a normal toe cap embedded shoe.

IPC Classes  ?

  • A43B 23/08 - Heel stiffenersToe stiffeners
  • A43B 7/32 - Footwear with health or hygienic arrangements with shock-absorbing means

54.

WORK-IMAGE MONITORING SYSTEM

      
Application Number JP2013053519
Publication Number 2013/122139
Status In Force
Filing Date 2013-02-14
Publication Date 2013-08-22
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Watanabe, Shinya
  • Sugita, Naoki
  • Imanaka, Kozo

Abstract

A work-image monitoring system includes a camera server (11) fitted on a worker (P), a mobile router (12) capable of performing data communication with the camera server (11), and a monitoring computer (13) that communicates with the mobile router (12) through a communication means. The camera server (11) has a fixed IP and includes a storage section (116) that stores an image captured by a camera (21) and a communication section (117) that communicates with the mobile router. The mobile router (12) includes a communication section (124) that communicates with the camera server (11) and a communication section (125) that communicates with the monitoring computer (13). The monitoring computer (13) includes a communication section (137) that communicates with the mobile router (12) and a display section (132) that displays an image sent from the camera server (11).

IPC Classes  ?

  • H04N 7/18 - Closed-circuit television [CCTV] systems, i.e. systems in which the video signal is not broadcast
  • H04L 12/46 - Interconnection of networks

55.

Elastomer rubber and elastomer product that do not use vulcanization accelerator or sulfur

      
Application Number 13877066
Grant Number 09267021
Status In Force
Filing Date 2011-09-30
First Publication Date 2013-08-08
Grant Date 2016-02-23
Owner
  • KOSSAN SDN BHD (Malaysia)
  • MIDORI ANZEN CO., LTD (Japan)
Inventor
  • Khoo, Siong Hui
  • Lim, Lawrence Siau Tian
  • Lee, Seek Ping
  • Ong, Eng Long
  • Enomoto, Norihide

Abstract

(1+4)(100° C.)) of the crosslinked product is 100-220, wherein thin film gloves composed of said elastomer does not contain sulfur which is a crosslinking agent and sulfur composition which is a vulcanization accelerator, thickness is 0.05-0.15 mm, gloves swelling ratio at gloves formation is 240-320, tensile stress is 22-35 MPa, elongation to break is 480-620% and tensile stress at 500% elongation is 15-35 MPa.

IPC Classes  ?

  • A41D 19/00 - Gloves
  • C08L 9/02 - Copolymers with acrylonitrile
  • C08L 9/00 - Compositions of homopolymers or copolymers of conjugated diene hydrocarbons
  • C08K 3/22 - OxidesHydroxides of metals
  • C08K 5/095 - Carboxylic acids containing halogens

56.

Vulcanization accelerator- and sulfur-free elastomer rubber glove for clean rooms

      
Application Number 13877054
Grant Number 09326557
Status In Force
Filing Date 2011-09-30
First Publication Date 2013-08-01
Grant Date 2016-05-03
Owner
  • KOSSAN SDN BHD (Malaysia)
  • MIDORI ANZEN CO., LTD (Japan)
Inventor
  • Khoo, Siong Hui
  • Lim, Lawrence Siau Tian
  • Lee, Seek Ping
  • Ong, Eng Long
  • Enomoto, Norihide

Abstract

(1+4)(100° C.) of 100-220, that contains 25-30 weight % of acrylonitrile, 62-71 weight % of butadiene and 4-8 weight % of unsaturated carboxylic acid, and does not contain sulfur crosslinking agents or vulcanization accelerators. The unsaturated carboxylic acid comprises a first fraction of substituents and a second fraction of substituents, the first fraction of substituents forming cross-links via bonds with each other, and the second fraction of substituents forming cross-links via bonds with a bivalent metal. Glove properties include thickness 0.05-0.15 mm, swelling ratio 240-320, tensile stress 22-35 MPa, elongation to break 480-620%, and tensile stress at 500% elongation 15-35 MPa. By chlorine treatment of both inner and outer surfaces of the glove, the inner surface has decreased tackiness and the outer surface has increased smoothness. Content of metal and metallic salt impurities and an anion contained in the glove is decreased.

IPC Classes  ?

  • A41D 19/00 - Gloves
  • C08F 236/14 - Copolymers of compounds having one or more unsaturated aliphatic radicals, at least one having two or more carbon-to-carbon double bonds the radical having only two carbon-to-carbon double bonds conjugated containing elements other than carbon and hydrogen
  • C08L 9/02 - Copolymers with acrylonitrile
  • B29D 99/00 - Subject matter not provided for in other groups of this subclass
  • C08K 3/22 - OxidesHydroxides of metals
  • C08L 13/00 - Compositions of rubbers containing carboxyl groups

57.

RESIN COMPOSITION AND MOLDED BODY

      
Application Number JP2012078173
Publication Number 2013/065740
Status In Force
Filing Date 2012-10-31
Publication Date 2013-05-10
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Enomoto, Norihide
  • Hasegawa, Tatsuya
  • Ogawa, Taichi

Abstract

Provided is a resin composition having the properties of possessing weather resistance and low-temperature impact resistance, which are problematic for poly(1,4-cyclohexylenedimethylene terephthalate) copolyester resin, and of sustaining the chemical resistance and room-temperature impact resistance of poly(1,4-cyclohexylenedimethylene terephthalate) copolyester resin. A resin composition, including poly(1,4-cyclohexylenedimethylene terephthalate) copolyester resin and polycarbonate resin, the poly(1,4-cyclohexylenedimethylene terephthalate) copolyester resin being included at 60-95 wt% and the polycarbonate resin being included at 5-40 wt%.

IPC Classes  ?

  • C08L 67/02 - Polyesters derived from dicarboxylic acids and dihydroxy compounds
  • A42B 3/04 - Parts, details or accessories of helmets
  • C08L 69/00 - Compositions of polycarbonatesCompositions of derivatives of polycarbonates

58.

SEWING MACHINE, SEWN ITEM AND STENT GRAFT

      
Application Number JP2012072903
Publication Number 2013/038999
Status In Force
Filing Date 2012-09-07
Publication Date 2013-03-21
Owner
  • MIDORI ANZEN CO., LTD. (Japan)
  • MIDORI ANZEN HOUGI CO., LTD. (Japan)
  • VASCUTEK LIMITED (United Kingdom)
Inventor
  • Asao, Hideo
  • Nishi, Nobuhiro
  • Sagara, Daisaku

Abstract

[Abstract] [Problem] To provide a sewing machine capable of sewing a serpentine zigzag stitch on a cylindrical item to be sewn. [Solution] A sewing machine (1) has: a substantially cylindrical guide member (11) for guiding an item (A) to be sewn; a sewing needle (99) for sewing the cylindrical item (A) to be sewn; a support member (71) for supporting the sewing needle (99) in a substantially perpendicular state; a vertical shuttle (21) for hooking the looped needle thread from the sewing needle (99), and positioned inside the guide member (11) in a manner such that the rotating direction thereof is substantially perpendicular to the axial direction (C) of the guide member (11); a rotating shaft (22) for rotating the vertical shuttle (21); an action means (50) for causing the support member (71) and the rotating shaft (22) to substantially simultaneously move back and forth; and a feed roller (183) for feeding the item (A) to be sewn that is positioned on the guide member (11) in a direction opposite the direction of sewing. The feed roller (183) is attached so as to be movable in the axial direction (D) of a rotatable shaft (173). [Selected figure] Fig. 2

IPC Classes  ?

  • D05B 27/14 - Work-feeding means for sewing machines with rotary circular feed members rotating discontinuously
  • A61F 2/04 - Hollow or tubular parts of organs, e.g. bladders, tracheae, bronchi or bile ducts
  • D05B 3/02 - Sewing apparatus or machines with mechanism for lateral movement of the needle or the work or both for making ornamental pattern seams, for sewing buttonholes, for reinforcing openings, or for fastening articles, e.g. buttons, by sewing with mechanisms for needle-bar movement
  • D05B 3/04 - Sewing apparatus or machines with mechanism for lateral movement of the needle or the work or both for making ornamental pattern seams, for sewing buttonholes, for reinforcing openings, or for fastening articles, e.g. buttons, by sewing with mechanisms for work feed
  • D05B 29/08 - Presser feet comprising relatively-movable parts
  • D05B 73/06 - Lower casings for free-arm sewing machines

59.

Portion of safety glasses

      
Application Number 29376028
Grant Number D0670324
Status In Force
Filing Date 2010-09-30
First Publication Date 2012-11-06
Grant Date 2012-11-06
Owner Midori Anzen Co., Ltd. (Japan)
Inventor
  • Okuma, Wataru
  • Ichikawa, Kanako

60.

Toe core

      
Application Number 29403186
Grant Number D0669667
Status In Force
Filing Date 2011-10-03
First Publication Date 2012-10-30
Grant Date 2012-10-30
Owner Midori Anzen Co., Ltd. (Japan)
Inventor Sakurai, Yoshinori

61.

Elastomeric rubber and rubber products without the use of vulcanizing accelerators and sulfur

      
Application Number 13513242
Grant Number 09243117
Status In Force
Filing Date 2009-12-01
First Publication Date 2012-10-04
Grant Date 2016-01-26
Owner MIDORI ANZEN CO., LTD (Japan)
Inventor
  • Khoo, Siong Hui
  • Lim, Lawrence Siau Tian
  • Lee, Seek Ping
  • Ong, Eng Long
  • Enomoto, Norihide

Abstract

A composition for producing an elastomeric thin film comprising a carboxylated acrylonitrile polybutadiene latex which is vulcanized without the use of conventional sulphur and accelerators thereby reducing the possibility of contacting immediate Type I hypersensitivity and delay Type IV hypersensitivity caused by the presence of natural rubber latex proteins and accelerators respectively. The dipping process for making gloves by using a latex composition provided by: premixing carboxylated acrylonitrile polybutadiene latex with methacrylic acid, or alternatively using a self-crosslinked latex, adding zinc oxide, adjusted to 9 to 10 of the pH level, and diluted with water to obtain 18% to 30% by weight of total solid content; dipping the glove former into the composition to form a layer of thin film of the latex composition on the former; drying the thin latex film on the former and crosslinking the latex film on the former.

IPC Classes  ?

62.

TRANSPARENT RESIN COMPOSITION HAVING GOOD CHEMICAL RESISTANCE, DURABILITY AND STABILITY UNDER NATURAL ENVIRONMENTAL CONDITIONS, HARSHER NATURAL ENVIRONMENTAL CONDITIONS, AND SIMILAR OR HARSHER USAGE CONDITIONS, AND PRODUCT USING SAME

      
Application Number JP2012054671
Publication Number 2012/111860
Status In Force
Filing Date 2012-02-17
Publication Date 2012-08-23
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Enomoto, Norihide
  • Hasegawa, Tatsuya

Abstract

The invention provides a transparent resin composition having chemical resistance, weather resistance, and stability under natural environmental conditions, harsher natural environmental conditions, and similar or harsher usage conditions, characterized in that the following is added to a polycyclohexylene dimethylene terephthalate copolyester: an ultraviolet absorber comprising a benzoxazinone-based compound; a hydrolysis inhibitor comprising carbodiimide; or an ultraviolet absorber comprising a benzoxazinone-based compound and a hydrolysis inhibitor comprising carbodiimide. The invention also provides a transparent resin composition having chemical resistance, weather resistance, and stability under even harsher usage conditions. The invention further provides a transparent resin composition having chemical resistance, weather resistance, and stability under natural environmental conditions, harsher natural environmental conditions, and similar or harsher usage conditions, characterized by further including an oxidation inhibitor and a heat-resistant material. These transparent resin compositions can be used for helmets, helmet face shields, spectacle lenses, outside storage boxes, frames for outdoor board spectacles, and spectacle temples.

IPC Classes  ?

  • C08L 67/03 - Polyesters derived from dicarboxylic acids and dihydroxy compounds the dicarboxylic acids and dihydroxy compounds having the hydroxy and the carboxyl groups directly linked to aromatic rings
  • A42B 3/00 - HelmetsHelmet covers
  • C08K 5/29 - Compounds containing carbon-to-nitrogen double bonds
  • C08K 5/357 - Six-membered rings
  • C08L 67/02 - Polyesters derived from dicarboxylic acids and dihydroxy compounds
  • G02B 1/04 - Optical elements characterised by the material of which they are madeOptical coatings for optical elements made of organic materials, e.g. plastics

63.

GLASSES

      
Application Number JP2012050519
Publication Number 2012/102093
Status In Force
Filing Date 2012-01-12
Publication Date 2012-08-02
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Sumitomo, Taro
  • Okuma, Wataru
  • Ichikawa, Kanako

Abstract

Glasses (1) in which a temple (3) is provided at a wraparound endpiece (2) of a front frame (10), wherein the glasses have an intermediate (5) that is made of an elastic material that is elastically deformed more easily than the wraparound endpiece (2) and the temple (3), and that is provided between the wraparound endpiece (2) and the temple (3) by connecting one end of the intermediate to the wraparound endpiece (2) and the other end to the temple (3).

IPC Classes  ?

  • G02C 5/16 - Side-members resilient or with resilient parts
  • G02C 5/20 - Side-members adjustable, e.g. telescopic

64.

WOUND-BODY MANUFACTURING METHOD AND MANUFACTURING DEVICE

      
Application Number JP2011075408
Publication Number 2012/063730
Status In Force
Filing Date 2011-11-04
Publication Date 2012-05-18
Owner
  • TECHNOS CO., LTD. (Japan)
  • MIDORI ANZEN CO., LTD. (Japan)
  • SHARP KABUSHIKI KAISHA (Japan)
Inventor
  • Tanaka, Mamoru
  • Shiozaki, Tadashi
  • Niihata, Hiroaki
  • Mukai, Kenichi

Abstract

This method includes: supporting a mother roll (10) in a state in which there is virtually no resistance to rotation; applying a frictional force to a belt-shaped object (42) that contacts rotating drive rollers (30 and 31); supplying the belt-shaped object (42) from the mother roll (10) to one of the drive rollers (30) via said frictional force alone; moving the belt-shaped object (42) so as to follow the rotation of said drive roller (30); causing the belt-shaped object (42) to roll up on the surfaces of the drive rollers (30 and 31) via only the torque produced by the rotation of the drive rollers (30 and 31); winding the belt-shaped object (42) into a wound body (40) via the aforementioned rolling-up motion; and supporting the wound body (40), by means of the drive rollers (30 and 31), in a state in which there is virtually no resistance to rotation. The belt-shaped object (42) is wound under virtually no tension. The belt-shaped object (42) is a knitted fabric for wiping off ink adhered to the surface of an inkjet nozzle.

IPC Classes  ?

  • B65H 18/20 - Mechanisms in which power is applied to web roll, e.g. to effect continuous advancement of web the web roll being supported on two parallel rollers at least one of which is driven
  • B65H 18/16 - Mechanisms in which power is applied to web roll, e.g. to effect continuous advancement of web by friction roller
  • B65H 18/22 - Mechanisms in which power is applied to web roll, e.g. to effect continuous advancement of web by friction band

65.

TOE BOX AND SHOE WITH INCORPORATED TOE BOX

      
Application Number JP2011065479
Publication Number 2012/060134
Status In Force
Filing Date 2011-07-06
Publication Date 2012-05-10
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor Sakurai, Yoshinori

Abstract

Provided is a structure for toe boxes that protect toes from objects that impact from the side such as the wheel of a pushcart without impeding foot movements such as walking, and for shoes that incorporate said toe box. The toe box (1) that covers the front of the foot when incorporated into the toe of a shoe is characterized: in having a bowl-shaped shell formed so that the front wall (2), left and right side walls (3, 4) and upper wall (5) are connected by smooth curves; and in an extended side wall (7) being provided on at least one side wall, which extends the rear edge (17) of said side wall rearward. Shoes in which said toe box has been incorporated are able to protect toes adequately even when being impacted from the outside (little toe side) of the toes for which protection is inadequate with conventional work shoes having incorporated toe boxes.

IPC Classes  ?

  • A43B 23/08 - Heel stiffenersToe stiffeners
  • A43B 7/32 - Footwear with health or hygienic arrangements with shock-absorbing means

66.

TROUSERS, WORK TROUSERS AND OVERALLS

      
Application Number JP2011072275
Publication Number 2012/043673
Status In Force
Filing Date 2011-09-28
Publication Date 2012-04-05
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Kuraoka, Takashi
  • Tamanaha, Shouhei
  • Sako, Kagari

Abstract

Trousers (1) in which an area that extends from the lumbar region (7) corresponding to the lumbar of a wearer, through the outer region of a crotch area (11) corresponding to the outside of the hip joint, to a an inner region in the knee vicinity (15) that is near the knees and corresponds to the insides of the thighs, is constituted by a helical elastic member of a prescribed width.

IPC Classes  ?

  • A41D 13/00 - Professional, industrial or sporting protective garments, e.g. surgeons' gowns or garments protecting against blows or punches
  • A41D 1/06 - Trousers
  • A41D 13/02 - Overalls

67.

VULCANIZATION ACCELERATOR- AND SULFUR-FREE ELASTOMER RUBBER GLOVE FOR CLEAN ROOMS

      
Application Number JP2011073270
Publication Number 2012/043893
Status In Force
Filing Date 2011-09-30
Publication Date 2012-04-05
Owner
  • KOSSAN SDN BHD (Malaysia)
  • MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Khoo Siong Hui
  • Lim Lawrence Siau Tian
  • Lee Seek Ping
  • Ong Eng Long
  • Enomoto Norihide

Abstract

Provided is a glove comprising 25-30 wt% acrylonitrile, 62-71 wt% butadiene, and 4-8 wt% unsaturated carboxylic acid (100 wt% in total) and formed from an elastomer cross-linked by a bond comprising at least some substituent groups containing unsaturated carboxylic acid, with the remainder of the at least some substituent groups containing unsaturated carboxylic acid cross-linked by a bivalent metal. The glove does not contain sulfur, which is a crosslinking agent, or a sulfur compound, which is a vulcanization accelerator. The Mooney viscosity (ML (1+4)(100°C)) of the elastomer cross-linked by a bond comprising at least some substituent groups containing unsaturated carboxylic acid is 100-220. The glove is characterized by: the thin-film elastomer glove not containing sulfur as a crosslinking agent or a sulfur compound as a vulcanization accelerator and having a thickness of 0.05-0.15 mm; the glove swelling ratio being 240-320 when the glove is formed; the tensile stress being 22-35 MPa; the elongation at break being 480-620%; the tensile stress at elongation of 500% being 15-35 MPa; the surface of the glove that comes in contact with a user being free of adhesiveness while the surface that comes in contact with substances during work being smooth; metal and metal salt impurities being eluted; and the amount of metal, metal salt, and anions contained therein being reduced.

IPC Classes  ?

  • A41D 19/00 - Gloves
  • A41D 19/04 - Appliances for making glovesMeasuring devices for glove-making
  • C08F 2/44 - Polymerisation in the presence of compounding ingredients, e.g. plasticisers, dyestuffs, fillers
  • C08F 236/06 - Butadiene
  • C08K 3/22 - OxidesHydroxides of metals
  • C08L 9/02 - Copolymers with acrylonitrile
  • C08L 33/20 - Homopolymers or copolymers of acrylonitrile

68.

ELASTOMER RUBBER AND ELASTOMER PRODUCT THAT DO NOT USE VULCANIZATION ACCELERATOR OR SULFUR

      
Application Number JP2011073271
Publication Number 2012/043894
Status In Force
Filing Date 2011-09-30
Publication Date 2012-04-05
Owner
  • KOSSAN SDN BHD (Malaysia)
  • MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Khoo Siong Hui
  • Lim Lawrence Siau Tian
  • Lee Seek Ping
  • Ong Eng Long
  • Enomoto Norihide

Abstract

The elastomer glove is a glove formed of an elastomer obtained from 25-30 weight% of acrylonitrile, 62-71 weight% of butadiene and 4-8 weight% of unsaturated carboxylic acid (100 weight% total) and cross-linked by bonds resulting from at least a portion of the substituting groups of the unsaturated carboxylic acid, with the remainder of the substituting groups of the portion of the substituting groups of the unsaturated carboxylic acid being cross-linked by divalent metals; and is characterized in not containing sulfur cross-linking agent or sulfur compound vulcanization accelerator; the Mooney viscosity (ML(1+4)(100°C)) of the elastomer cross-linked by bonds resulting from at least a portion of the substituting groups of the unsaturated carboxylic acid being 100-220; and for glove properties, the thin-walled elastomer glove not containing sulfur cross-linking agent or sulfur compound vulcanization accelerator, thickness being 0.05-0.15 mm, glove swelling rate during glove molding being 240-320%, tensile stress being 22-35 MPa, elongation at rupture being 480-620%, and tensile stress at 500% elongation being 15-35 MPa.

IPC Classes  ?

  • C08F 236/06 - Butadiene
  • C08F 2/44 - Polymerisation in the presence of compounding ingredients, e.g. plasticisers, dyestuffs, fillers
  • C08K 3/22 - OxidesHydroxides of metals
  • C08L 9/02 - Copolymers with acrylonitrile
  • C08L 33/20 - Homopolymers or copolymers of acrylonitrile

69.

DEVICE FOR CUTTING AN ARTICLE BEING STITCHED BY A SEWING MACHINE

      
Application Number JP2011062908
Publication Number 2012/039165
Status In Force
Filing Date 2011-06-06
Publication Date 2012-03-29
Owner
  • MIDORI ANZEN CO., LTD. (Japan)
  • MIDORI ANZEN HOUGI CO., LTD. (Japan)
Inventor
  • Asao, Hideo
  • Nishi, Nobuhiro

Abstract

[Problem] To provide a device for cutting an article being stitched by a sewing machine, which can cut from any position on the article being stitched regardless of whether or not stitching is present. [Solution] A device (20) for cutting an article being stitched by a sewing machine comprises a fixed frame (41) attached to a sewing machine main body (21b), and a mobile frame (42) which is movably attached to the fixed frame (41). A rotary blade (34) is rotatably provided on the mobile frame (42). The fixed frame (41) is provided with a drive means (37) for driving the rotary blade (34) by way of a power transmission part (36), and an operation means (43) for operating the mobile frame (42) in such a way that the rotary blade (34) is moved from a position (P1) of not cutting the article being stitched to a position (P2) of cutting the article being stitched. A throat plate (32) provided on a bed part (22) side where the sewing machine main body (21b) is fixed is provided with a fixed blade (38) which cooperates with the rotary blade (34) in order to cut the article being stitched.

IPC Classes  ?

  • D05B 37/08 - Cutting devices with rotatable tools
  • D05B 83/00 - Guards or like devices for preventing injury to operator of sewing machines

70.

SHIELD MEMBER AND SAFETY HELMET

      
Application Number JP2011067474
Publication Number 2012/015035
Status In Force
Filing Date 2011-07-29
Publication Date 2012-02-02
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Okuma, Wataru
  • Nakayama, Fumiharu
  • Tajima, Noritaka

Abstract

A shield plate (5) is provided with a transparent main body section (11) formed in a curved plate shape, and an overhang section (17) projecting curved in the opposite direction of the main body section (11) at the lower part thereof. The main body section (11) is formed in a convex shell shape in the front-facing direction with the vertical dimension becoming longer at the horizontally central section and gradually smaller leading towards the end sections. The angle of intersection between an opening plane (PL) of a helmet body (3) and the overhang section (17) is at least 45°and less than 90°. The length of the protrusion in the central section of the overhang section (17) is 10mm-80mm, and becomes longer at the horizontally central section and gradually smaller towards the end sections.

IPC Classes  ?

71.

TWO-NEEDLE SEWING MACHINE AND TWO-NEEDLE SEWING MACHINE STITCH FORMING METHOD

      
Application Number JP2010073504
Publication Number 2011/155091
Status In Force
Filing Date 2010-12-27
Publication Date 2011-12-15
Owner
  • MIDORI ANZEN CO., LTD. (Japan)
  • MIDORI ANZEN HOUGI CO., LTD. (Japan)
Inventor
  • Asao, Hideo
  • Nishi, Nobuhiro

Abstract

Disclosed is a two-needle sewing machine that improves strength in a convex curve part by bringing a pair of stitches close together when sewing an item to be sewed that comprises the convex curve part. A two-needle sewing machine (1) comprises a bed part (3); a column part (5); an arm part (6); a needle shaft (11) that is disposed on the leading part of the arm part (6); two sewing needles (13, 14) that are attached to the needle shaft (11); two horizontal rotary hooks (15, 16) that catch the respective needle thread loops of the two sewing needles (13, 14); and a conveyor member (21) that conveys a material to be sewed (40) in a direction approximately orthogonal to the bed part (3). On the two-needle sewing machine (1), the sewing needle (13), which is positioned in a location further from the column part (5), is disposed closer to the conveyance side of the material to be sewed (40) than the sewing needle (14) that is positioned in a location closer to the column part (5).

IPC Classes  ?

72.

FALL PREVENTION SYSTEM, MULTIPLE-RING MEMBER, 8-SHAPED RING MEMBER, FOUR-HOLE MEMBER, METHOD FOR WORKING ON ROOF, MAIN ROPE INSTALLATION METHOD, BUCKET FOR FALL PREVENTION SYSTEM, AND HOOK FOR ROOF VERGE

      
Application Number JP2011061947
Publication Number 2011/148966
Status In Force
Filing Date 2011-05-25
Publication Date 2011-12-01
Owner
  • MIDORI ANZEN CO., LTD. (Japan)
  • FUJII DENKO CO., LTD. (Japan)
Inventor
  • Inoue, Hitoshi
  • Fujihara, Yoshiyuki
  • Matsumura, Fujio
  • Mitsuhashi, Ryoji

Abstract

A fall prevention system (101) is provided with a main rope (103) installed so as to extend from near the ground surface (GL) on one side of a house (109) over the roof (113) of the house (109), the roof (113) including the ridge (111), to near the ground surface (GL) on the other side of the house (109); a weight (105) composed of a bucket, connected to an end of the main rope (103), and installed on the ground surface; and a retractor-type fall prevention device (107) for connecting to the main rope (103) a harness (139) worn by a worker (50) working on the roof (113).

IPC Classes  ?

  • E04D 15/00 - Apparatus or tools for roof working
  • A62B 35/00 - Safety belts or body harnessesSimilar equipment for limiting displacement of the human body, especially in case of sudden changes of motion
  • E04G 21/32 - Safety or protective measures for persons during the construction of buildings

73.

Protective cap

      
Application Number 13144871
Grant Number 08484767
Status In Force
Filing Date 2010-01-19
First Publication Date 2011-11-10
Grant Date 2013-07-16
Owner Midori Anzen Co., Ltd. (Japan)
Inventor Nakayama, Fumiharu

Abstract

In a protective cap housing a shield member for covering almost all of a face of a wearer in the interior of a cap body, the protective cap capable of retracting the shield member in the interior of the cap body is provided. It is a protective cap 1 having a cap body 3 formed in a semi-spherical-shell-like form for protecting a head of a wearer, a shield member 5 for protecting almost all of a face of the wearer, and guide means 7 for guiding the shield member 5 to move along a curved surface of the cap body 3 between a housing position P1 to be housed in the cap body 3 and a shielding position P3 for covering almost all of the face of the wearer.

IPC Classes  ?

74.

WORKING GLASSES

      
Application Number JP2010073788
Publication Number 2011/111285
Status In Force
Filing Date 2010-12-28
Publication Date 2011-09-15
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Okuma, Wataru
  • Ichikawa, Kanako

Abstract

Grooves (18) are formed in the inner surfaces of two rims (11), and a part of the inner side of each of the grooves (18) is formed as a cutout section. Lenses (13) are removed from the rims (11) while avoiding the interference between a stopper member (12), which is pivotably provided to a bridge (16), and inner regions (P4) of the rims (11) by pivoting downward the stopper member (12). Then, new lenses (13) are inserted from the inner regions (P4). After that, the stopper member (12) is rotated upward and affixed to the bridge (16). As a result, the stopper member (12) interferes with the inner region (P4) of each of the rims (11) to firmly affix the lenses (13) within the rims (11).

IPC Classes  ?

75.

Sewing machine

      
Application Number 12996151
Grant Number 08302548
Status In Force
Filing Date 2009-04-24
First Publication Date 2011-04-14
Grant Date 2012-11-06
Owner
  • Midori Anzen Co., Ltd. (Japan)
  • Midori Anzen Hougi Co., Ltd. (Japan)
Inventor
  • Asao, Hideo
  • Nishi, Nobuhiro

Abstract

The present invention provides a sewing machine that can perform zigzag sewing a cylindrical sewn article. A sewing machine 1 includes an approximately cylindrical guide member 11 that guides a sewn article A, a sewing needle 99 that sews the cylindrical sewn article A, a holding member 71 that holds the sewing needle 99 approximately vertically, a vertical hook 21 provided in the guide member 11 so that the direction of rotation is approximately perpendicular to the axial direction C of the guide member 11 and that catches the upper thread loop of the sewing needle 99, a rotary shaft 22 that rotates the vertical hook 21, and an operating means 50 that moves the holding member 71 and the rotary shaft 22 reciprocatingly at approximately the same time.

IPC Classes  ?

  • D05B 27/00 - Work-feeding means for sewing machines

76.

PROTECTIVE HEADWEAR

      
Application Number JP2010050558
Publication Number 2010/082663
Status In Force
Filing Date 2010-01-19
Publication Date 2010-07-22
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor Nakayama, Fumiharu

Abstract

A protective headwear configured so that a shield member for covering substantially the entire part of the face of the wearer is stowed within a headwear body, wherein the shield member can be stowed within the headwear body so as not be a hindrance to the wearer. A protective headwear (1) provided with: a headwear body (3) formed in a hemispherical shell shape and protecting the head of the wearer; a shield member (5) for protecting substantially the entire part of the face of the wearer; and a guide means (7) for guiding the shield member (5) so that the shield member (5) moves along the curved surface of the headwear body (3) between a stowed position (P1) at which the shield member (5) is stowed within the headwear body (3) and a covering position (P3) at which the shield member (5) covers substantially the entire part of the face of the wearer.

IPC Classes  ?

77.

SHIELD MEMBER AND PROTECTIVE HEADWEAR

      
Application Number JP2010050559
Publication Number 2010/082664
Status In Force
Filing Date 2010-01-19
Publication Date 2010-07-22
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Okuma, Wataru
  • Nakayama, Fumiharu
  • Tajima, Noritaka

Abstract

A shield member for covering the face of the wearer and a protective headwear to which the shield member is mounted, wherein, even through the peripheral portion of the shield member, the wearer can view an object with distortion of the image of the object minimized as much as possible. A shield member (5) mounted to a headwear body (3) which protects the head of the wearer and covering the face of the wearer, wherein the shield member (5) is formed in a curved plate-like shape using a transparent body or a half-transparent body and has a thickness gradually reduced from the center toward the periphery of the shield member.

IPC Classes  ?

78.

ELECTRIC DUST COLLECTING APPARATUS AND ELECTRIC DUST COLLECTING SYSTEM

      
Application Number JP2009067264
Publication Number 2010/038872
Status In Force
Filing Date 2009-10-02
Publication Date 2010-04-08
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Tsumori, Tomonori
  • Sugita, Naoki

Abstract

An electric dust colleting apparatus is provided with a charging section (414) which charges particles in the air, a dust collecting section (416) which captures particles charged by the charging section, and a neutralizing section (404) which neutralizes the charged particles passed through the dust collecting section.  The charging section (414) is provided with a plurality of discharge wires (418) arranged in parallel on a surface orthogonally intersecting with the air flow direction, and board-like first counter electrodes (420) arranged at a predetermined interval at facing positions on the surfaces orthogonally intersecting with the air flow direction with the discharge wires (418) therebetween.  The neutralizing section (404) is provided with a neutralizing electrode (426) which generates ion shower of both polarities in a space in the neutralizing section (404), and a masking plate (417) which regulates the air flow so that the charged particles passed through the dust collecting section (416) pass through the space filled with the ion shower in the neutralizing section.

IPC Classes  ?

  • B03C 3/02 - Plant or installations having external electricity supply
  • B03C 3/34 - Constructional details or accessories or operation thereof
  • B03C 3/36 - Controlling flow of gases or vapour
  • B03C 3/66 - Applications of electricity supply techniques
  • H01T 19/04 - Devices providing for corona discharge having pointed electrodes
  • H05F 3/04 - Carrying-off electrostatic charges by means of spark gaps or other discharge devices

79.

ILLUMINATION BAND, ILLUMINATION DEVICE, AND HELMET

      
Application Number JP2009063435
Publication Number 2010/013716
Status In Force
Filing Date 2009-07-28
Publication Date 2010-02-04
Owner
  • MIDORI ANZEN CO., LTD. (Japan)
  • HOUGI CORPORATION (Japan)
  • NIPPON STEEL CORPORATION (Japan)
Inventor
  • Asao,hideo
  • Yoshida,masaaki
  • Ichikawa,kouichi
  • Ooji,tadashi
  • Matsumoto,kazutaka
  • Itazuri,yasuhiro

Abstract

Disclosed is an illumination band that lights light-emitting elements at night and, even when the light-emitting elements go out, receives light from external sources and makes the entire surface of the band body bright to notify third parties of the wearer's position and presence. An illumination band (1) is composed of a long and thin strip-shaped band body (2), light-emitting elements (11) arranged at predetermined intervals on the surface (2a) of the band body (2), and a conductive part provided on the band body (2) and connected to each light-emitting element (11). The surface (2a) of the band body (2) is provided with a fluorescent member, a reflective member, or a noctilucent (phosphorescent) member.

IPC Classes  ?

  • F21L 4/00 - Electric lighting devices with self-contained electric batteries or cells
  • F21V 3/04 - GlobesBowlsCover glasses characterised by materials, surface treatments or coatings
  • F21Y 101/02 - Miniature, e.g. light emitting diodes (LED)

80.

SEWING MACHINE

      
Application Number JP2009058158
Publication Number 2009/147912
Status In Force
Filing Date 2009-04-24
Publication Date 2009-12-10
Owner
  • MIDORI ANZEN CO., LTD. (Japan)
  • HOUGI CORPORATION (Japan)
Inventor
  • Asao, Hideo
  • Nishi, Nobuhiro

Abstract

Provided is a sewing machine that can perform zigzag sewing on a cylindrical sewn article. Sewing machine (1) comprises an approximately cylindrical guide member (11) that guides sewn article (A), a sewing needle (99) that sews the cylindrical sewn article (A), a holding member (71) that holds the sewing needle (99) approximately vertically, a vertical hook (21) provided in the guide member (11) so that the direction of rotation is approximately perpendicular to the axial direction (C) of the guide member (11) and that catches the thread loop of the sewing needle (99), a rotary shaft (22) that rotates the vertical hook (21), and an operating means (50) that moves the holding member (71) and the rotary shaft (22) reciprocatingly at approximately the same time.

IPC Classes  ?

  • D05B 3/02 - Sewing apparatus or machines with mechanism for lateral movement of the needle or the work or both for making ornamental pattern seams, for sewing buttonholes, for reinforcing openings, or for fastening articles, e.g. buttons, by sewing with mechanisms for needle-bar movement
  • D05B 55/14 - Needle-bar drives
  • D05B 57/38 - Shuttle drives
  • D05B 73/06 - Lower casings for free-arm sewing machines

81.

SEAM FORMING APPARATUS AND SEWING MACHINE

      
Application Number JP2009051575
Publication Number 2009/113337
Status In Force
Filing Date 2009-01-30
Publication Date 2009-09-17
Owner
  • MIDORI ANZEN CO., LTD. (Japan)
  • HOUGI CORPORATION (Japan)
Inventor
  • Asao, Hideo
  • Nishi, Nobuhiro

Abstract

Disclosed is a seam forming apparatus which can perform fine adjustment of the width of a seam from zero by simple manual operation. The seam forming apparatus (1) comprises a needle clamp member (2) provided at the lower portion of a needle bar (52), and two needles (3, 4) secured to the needle clamp member (2). The needle clamp member (2) comprises a fixing member (11) fixed to the needle bar (52), and a rotating member (21) which is rotatably provided on the fixing member (11) and to which the two needles (3, 4) are secured. The rotating member (21) so rotates as to change the positions of the two needles (3, 4), whereby the width of a seam formed by the two needles (3, 4) can be adjusted.

IPC Classes  ?

  • D05B 55/12 - Needle bars for multiple-needle sewing machines with provision for varying the distance between the needles
  • D05B 1/12 - Lock-stitch seams
  • D05B 27/02 - Work-feeding means for sewing machines with feed dogs having horizontal and vertical movements
  • D05B 63/00 - Devices associated with the loop-taker thread of sewing machines, e.g. for tensioning

82.

NEUTRALIZATION APPARATUS, ION BALANCE ADJUSTMENT CIRCUIT, AND ION BALANCE ADJUSTMENT ELECTRODE

      
Application Number JP2008056482
Publication Number 2008/126725
Status In Force
Filing Date 2008-04-01
Publication Date 2008-10-23
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor Tsumori, Tomonori

Abstract

A neutralization apparatus comprises a discharge electrode generating positive or negative ions depending on the polarity of a DC high voltage being applied, a high voltage generation circuit for applying a DC high voltage to the discharge electrode, and a grounded guard electrode which shuts out a forward space for delivering the ions with an appropriate profile. The discharge electrode is constituted of 2n (n is a natural number) discharge needles divided into two groups of n discharge needles. The high voltage generation circuit applies high voltages of reverse polarity to two groups of discharge needles, respectively, and reverses the polarity every predetermined period. The neutralization apparatus is compact and lightweight and exhibits excellent attenuation time characteristics and ion balance characteristics.

IPC Classes  ?

  • H05F 3/04 - Carrying-off electrostatic charges by means of spark gaps or other discharge devices
  • H01T 19/04 - Devices providing for corona discharge having pointed electrodes

83.

NEUTRALIZER

      
Application Number JP2007074305
Publication Number 2008/075677
Status In Force
Filing Date 2007-12-18
Publication Date 2008-06-26
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor
  • Tsumori, Tomonori
  • Sugita, Naoki

Abstract

A neutralizer (1) comprises a power supply circuit (11), an output control circuit (12) for outputting a high-frequency voltage whose frequency is higher than the audible frequency converted from a DC voltage generated by the power supply circuit (11) alternately to two output lines in a given cycle, a transformer circuit (13) for stepping up the high-frequency voltage, a discharge section (20) composed of 2n (n=1 or more integer) discharge needles which are used for generating positive ions by applying a positive voltage and negative ions by applying a negative voltage and are divided into a first group of n discharge needles and a second group of n discharge needles, and a polarity inverting circuit (14) for converting the high-frequency high voltage outputted from the transformer circuit (13) into two DC high rectangular voltages having different polarities for the same period, inverting the polarities of the two DC high voltages in a given cycle, and outputting the DC high voltages to the first and second groups of the discharge section (20), and a blower for sending air from the windward side of the discharge section (20).

IPC Classes  ?

  • H05F 3/04 - Carrying-off electrostatic charges by means of spark gaps or other discharge devices
  • H01T 19/04 - Devices providing for corona discharge having pointed electrodes
  • H01T 23/00 - Apparatus for generating ions to be introduced into non-enclosed gases, e.g. into the atmosphere

84.

MIDORI

      
Application Number 006682868
Status Registered
Filing Date 2008-02-20
Registration Date 2009-01-29
Owner MIDORI ANZEN CO. LTD also trading as MIDORI ANZEN KABUSHIKI KAISHA (Japan)
NICE Classes  ?
  • 07 - Machines and machine tools
  • 12 - Land, air and water vehicles; parts of land vehicles
  • 18 - Leather and imitations of leather

Goods & Services

Electric dust removing apparatus; electrostatic dust collector for industrial use. Covers for vehicle parts, namely, seat covers, home pad covers, steering wheel covers, shift knob covers, gear shift covers, brake lever covers, instrument panel covers, dashboard covers, door trim covers, shift boots covers, console covers, paddle lever covers, armrest covers, pillar covers and assist grip covers. Animal skin and hides, leather and leather products, namely, waist pouches, belt bags, travelling trunks, attaché cases, document cases, purses, communication ticket holders, key cases, wallets, cosmetic bags and bags for beauty cases sold empty, ladies handbags, baby carriers worn on the body, backpacks, all purpose athletic bags, all purpose sports bags, beach bags, carry-on bags, clutch bags, duffel bags, shopping bags, overnight bags, school bags, satchel, shoulder bags, tote bags, travel bags, garment bags for travel, briefcases, suitcases, key cases, briefcase type portfolios, travelling cases, umbrellas, parasols and walking sticks.

85.

SHEET FOR SHOE BOTTOM, SHOE BOTTOM, SHOES, AND FOOTWEAR

      
Application Number JP2007057763
Publication Number 2007/116968
Status In Force
Filing Date 2007-04-06
Publication Date 2007-10-18
Owner MIDORI ANZEN CO., LTD. (Japan)
Inventor Sakurai, Yoshinori

Abstract

[PROBLEMS] Anti-slip shoes etc. exhibiting high anti-slip performance against a floor surface wet with water or oil. [MEANS FOR SOLVING PROBLEMS] A sheet for a shoe bottom, where blocks with a uniform height are regularly formed on a flat plate-like base surface having a substantially uniform thickness by molding of a rubber or synthetic resin material. The ground contact surface of each block is a smooth surface without unevenness and is formed either in an oblong having two substantially parallel sides in the longitudinal direction or in a shape having, similarly to the oblong, two substantially parallel sides. At least corners forming the substantially parallel two sides and forming the boundaries between the ground contact surface and side faces are formed by corners of a recessed die formed by combining die pieces perpendicular to each other. More than 0 and not more than 30 parts by weight of silica and not more than 10 parts by weight of plasticizer are added to 100 parts by weight of the rubber or synthetic resin material.

IPC Classes  ?

  • A43B 13/22 - Soles made slip-preventing or wear-resisting, e.g. by impregnation or spreading a wear-resisting layer

86.

HiGRIP

      
Application Number 774255
Status Registered
Filing Date 2001-10-10
Registration Date 2001-10-10
Owner MIDORI ANZEN CO., LTD (Japan)
NICE Classes  ?
  • 09 - Scientific and electric apparatus and instruments
  • 25 - Clothing; footwear; headgear

Goods & Services

Safety footwear, footwear for protection against accidents; footwear with safety or protective toe cap other than special sports footwear. Shoes, footwear, including work shoes, occupational footwear, clodhoppers, sports shoes, overshoes, boots, shoes for cold weather, insole, outer soles.