ORIX Corporation

Japan

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IP Type
        Patent 51
        Trademark 10
Jurisdiction
        World 43
        United States 17
        Canada 1
Owner / Subsidiary
Asahi Fiber Glass Company, Limited 46
ORIX Corporation USA 10
Koike Co., Ltd. 5
Date
2024 2
2023 2
2022 3
2021 5
Before 2021 49
IPC Class
C08K 3/40 - Glass 10
C08L 69/00 - Compositions of polycarbonatesCompositions of derivatives of polycarbonates 7
D06M 15/263 - Macromolecular compounds obtained by reactions only involving carbon-to-carbon unsaturated bonds of unsaturated carboxylic acidsSalts or esters thereof 6
D04H 1/4218 - Glass fibres 5
F16L 59/065 - Arrangements using an air layer or vacuum using vacuum 5
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NICE Class
36 - Financial, insurance and real estate services 9
35 - Advertising and business services 1
Status
Pending 3
Registered / In Force 58

1.

VACUUM HEAT-INSULATING MATERIAL

      
Application Number JP2024000329
Publication Number 2024/190051
Status In Force
Filing Date 2024-01-10
Publication Date 2024-09-19
Owner ASAHI FIBER GLASS CO., LTD. (Japan)
Inventor
  • Yamamoto Hideya
  • Sato Shohei

Abstract

Provided is a vacuum heat-insulating material which comprises a core material, an adsorbent and a film that has gas barrier properties, and which is characterized in that: the core material and the adsorbent are depressurized and sealed in the film; the core material contains glass wool and an organic binder; the content of the organic binder in a total of 100% by mass of the glass wool and the organic binder is 3.0% by mass to 9.0% by mass; the density of the core material is not less than 130 kg/m3but less than 200 kg/m3; and the adsorbent contains an adsorbent 1 which adsorbs moisture by chemisorption, and an adsorbent 2 which has a lower moisture adsorption rate than the adsorbent 1.

IPC Classes  ?

  • F16L 59/065 - Arrangements using an air layer or vacuum using vacuum
  • B01J 20/18 - Synthetic zeolitic molecular sieves

2.

LEAPONLINE

      
Serial Number 98714917
Status Registered
Filing Date 2024-08-23
Registration Date 2025-08-26
Owner ORIX Corporation USA ()
NICE Classes  ? 36 - Financial, insurance and real estate services

Goods & Services

Financial services, namely, mortgage lending services, loan servicing services in the nature of arranging and financing of loans, real estate services, namely, rental property management, loan broker services in the nature of mortgage brokerage, financial loan consulting services in the field of loan financing, financing and loan services, all of the foregoing provided via electronic means

3.

BOSTON FINANCIAL

      
Serial Number 98098455
Status Registered
Filing Date 2023-07-24
Registration Date 2024-11-19
Owner ORIX Corporation USA ()
NICE Classes  ? 36 - Financial, insurance and real estate services

Goods & Services

Real estate investment services, namely, equity and debt investments in low income housing tax credit properties and other affordable properties; real estate investment services in the field of affordable housing; housing services, namely, real property acquisition of affordable housing properties and interests therein; real estate investment services, namely, real estate investment in low income housing tax credit partnerships; real estate investment services, namely, real estate syndication and investment management for properties qualifying for low- income housing and/or other tax credits; financial planning, namely, structuring and managing tax credit and affordable housing investment funds; financial planning, namely, equity syndication services; financial investment in the field of low-income housing and tax-credit developments

4.

AQUEOUS BINDER FOR INORGANIC FIBER HEAT-INSULATING AND SOUND-ABSORBING MATERIAL AND INORGANIC FIBER HEAT-INSULATING AND SOUND-ABSORBING MATERIAL

      
Application Number 17798291
Status Pending
Filing Date 2021-02-17
First Publication Date 2023-02-02
Owner ASAHI FIBER GLASS CO., LTD. (Japan)
Inventor Funakoshi, Nami

Abstract

The present invention relates to an aqueous binder for a heat-insulating and sound-absorbing inorganic fiber material, the aqueous binder comprising a polymer having a carboxy group and a crosslinking agent for the polymer, wherein the crosslinking agent comprises an alkanol monoamine and a polyamine having an imino group, the polyamine has an amine value of 1200 to 1650 mg KOH/g, and a ratio of the total number of moles of amino groups and imino groups in the crosslinking agent with respect to the total number of moles of hydroxyl groups, amino groups, and imino groups in the crosslinking agent is 0.6 or less.

IPC Classes  ?

  • C08J 5/24 - Impregnating materials with prepolymers which can be polymerised in situ, e.g. manufacture of prepregs
  • C08F 120/06 - Acrylic acidMethacrylic acidMetal salts or ammonium salts thereof
  • C08K 5/17 - AminesQuaternary ammonium compounds
  • C08K 5/544 - Silicon-containing compounds containing nitrogen
  • C08K 5/405 - ThioureasDerivatives thereof

5.

PIEZOELECTRIC MATERIAL, PIEZOELECTRIC MEMBER, PIEZOELECTRIC ELEMENT, AND PRESSURE SENSOR

      
Application Number 17622575
Status Pending
Filing Date 2020-06-19
First Publication Date 2022-11-10
Owner
  • TOKYO INSTITUTE OF TECHNOLOGY (Japan)
  • Koike Co., Ltd. (Japan)
Inventor
  • Takeda, Hiroaki
  • Tsurumi, Takaaki
  • Kusakabe, Hiraku
  • Usui, Haruki

Abstract

Provided are a piezoelectric material, a piezoelectric member, a piezoelectric element and a pressure sensor that can be used in high-temperature environments. The piezoelectric material is composed of Sr-substituted akermanite represented by Ca(2-x)SrxMgSi2O7 (0.1≤x≤0.6).

IPC Classes  ?

  • H01L 41/187 - Ceramic compositions
  • H01L 41/113 - Piezo-electric or electrostrictive elements with mechanical input and electrical output
  • H01L 41/047 - Electrodes
  • G01L 23/10 - Devices or apparatus for measuring or indicating or recording rapid changes, such as oscillations, in the pressure of steam, gas, or liquidIndicators for determining work or energy of steam, internal-combustion, or other fluid-pressure engines from the condition of the working fluid operated electrically by pressure-sensitive members of the piezoelectric type

6.

BOSTON FINANCIAL

      
Serial Number 97439937
Status Registered
Filing Date 2022-06-02
Registration Date 2023-09-12
Owner ORIX Corporation USA ()
NICE Classes  ? 36 - Financial, insurance and real estate services

Goods & Services

Real estate investment services, namely, equity and debt investments in low income housing tax credit properties and other affordable properties; real estate investment services in the field of affordable housing; housing services, namely, real property acquisition of affordable housing properties and interests therein; real estate investment services, namely, real estate investment in low income housing tax credit partnerships; real estate investment services, namely, real estate syndication and investment management for properties qualifying for low- income housing and/or other tax credits; financial planning, namely, structuring and managing tax credit and affordable housing investment funds; financial planning, namely, equity syndication services; financial investment in the field of low-income housing and tax-credit developments

7.

Miscellaneous Design

      
Serial Number 97439942
Status Registered
Filing Date 2022-06-02
Registration Date 2023-09-12
Owner ORIX Corporation USA ()
NICE Classes  ? 36 - Financial, insurance and real estate services

Goods & Services

Real estate investment services, namely, equity and debt investments in low income housing tax credit properties and other affordable properties; real estate investment services in the field of affordable housing; housing services, namely, real property acquisition of affordable housing properties and interests therein; real estate investment services, namely, real estate investment in low income housing tax credit partnerships; real estate investment services, namely, real estate syndication and investment management for properties qualifying for low- income housing and/or other tax credits; financial planning, namely, structuring and managing tax credit and affordable housing investment funds; financial planning, namely, equity syndication services; financial investment in the field of low-income housing and tax-credit developments

8.

LEAP TO LOANS

      
Serial Number 97134518
Status Registered
Filing Date 2021-11-19
Registration Date 2023-06-13
Owner ORIX Corporation USA ()
NICE Classes  ? 35 - Advertising and business services

Goods & Services

Providing demand creation and lead generation activities and services; providing an Internet website portal featuring real estate marketing and lead generation resources and services

9.

AQUEOUS BINDER FOR INORGANIC FIBER HEAT-INSULATING AND SOUND-ABSORBING MATERIAL AND INORGANIC FIBER HEAT-INSULATING AND SOUND-ABSORBING MATERIAL

      
Application Number JP2021005965
Publication Number 2021/172138
Status In Force
Filing Date 2021-02-17
Publication Date 2021-09-02
Owner ASAHI FIBER GLASS CO., LTD. (Japan)
Inventor Funakoshi Nami

Abstract

The present invention pertains to an aqueous binder that is for an inorganic fiber heat-insulating and sound-absorbing material, and that contains a polymer having a carboxy group and a cross-linking agent for said polymer. The cross-linking agent contains an alkanol monoamine and a polyamine having an imino group. The polyamine has an amine value of 1200-1650 mgKOH/g. The ratio of the total mole number of imino groups and amino groups in the cross-linking agent with respect to the total mole number of hydroxyl groups, amino groups, and imino groups in the cross-linking agent is 0.6 or less.

IPC Classes  ?

  • D06M 15/263 - Macromolecular compounds obtained by reactions only involving carbon-to-carbon unsaturated bonds of unsaturated carboxylic acidsSalts or esters thereof
  • D04H 1/587 - Non-woven fabrics formed wholly or mainly of staple fibres or like relatively short fibres from fleeces or layers composed of fibres without existing or potential cohesive properties by applying, incorporating or activating chemical or thermoplastic bonding agents, e.g. adhesives characterised by the bonding agents used
  • D06M 13/328 - Amines the amino group being bound to an acyclic or cycloaliphatic carbon atom
  • D06M 13/332 - Di- or polyamines

10.

HIGH FREQUENCY FILTER

      
Application Number JP2021006529
Publication Number 2021/172245
Status In Force
Filing Date 2021-02-22
Publication Date 2021-09-02
Owner
  • KOIKE CO., LTD. (Japan)
  • UNIVERSITY OF YAMANASHI (Japan)
  • TOKYO INSTITUTE OF TECHNOLOGY (Japan)
Inventor
  • Wakabayashi, Tsuyoshi
  • Kakio, Shoji
  • Suzuki, Masashi
  • Funakubo, Hiroshi
  • Kurosawa, Minoru
  • Ito, Yoshiharu
  • Tateyama, Akinori

Abstract

The present invention provides a high frequency filter which uses a novel piezoelectric material that has a high electromechanical coupling coefficient. A high frequency filter according to one embodiment of the present invention is provided with: a substrate; and a piezoelectric film which is composed of potassium sodium niobate and is formed above the substrate by a hydrothermal synthesis method.

IPC Classes  ?

  • H03H 3/02 - Apparatus or processes specially adapted for the manufacture of impedance networks, resonating circuits, resonators for the manufacture of electromechanical resonators or networks for the manufacture of piezoelectric or electrostrictive resonators or networks
  • H01L 41/187 - Ceramic compositions
  • H03H 9/17 - Constructional features of resonators consisting of piezoelectric or electrostrictive material having a single resonator
  • H03H 9/25 - Constructional features of resonators using surface acoustic waves

11.

HEAT-INSULATING SOUND-ABSORBING MATERIAL, AND PARTITION WALL

      
Application Number JP2020032684
Publication Number 2021/059866
Status In Force
Filing Date 2020-08-28
Publication Date 2021-04-01
Owner
  • ASAHI FIBER GLASS CO., LTD. (Japan)
  • YOSHINO GYPSUM CO., LTD. (Japan)
Inventor
  • Yokoo Yuji
  • Hasegawa Tomoya
  • Sugaya Hiroyuki
  • Hayashi Yukiteru

Abstract

Provided are a heat-insulating sound-absorbing material having improved workability, and a partition wall which suppresses degradation of sound insulation performance. A heat-insulating sound-absorbing material 1, which is made from a mass of inorganic fibers, has a mass density of 10-20 kg/m3 and has a length load average fiber diameter of the inorganic fibers of the mass of 2.0-8.7 μm. The mass comprises a 20-66% inorganic fiber having a length load average fiber diameter of less than 4.0 μm, and a 13-58% inorganic fiber having a length load average fiber diameter of 7.0 μm or longer. The partition wall includes the heat-insulating sound-absorbing material in a hollow part therein.

IPC Classes  ?

  • D04H 1/4209 - Inorganic fibres
  • D04H 1/4218 - Glass fibres
  • D04H 1/587 - Non-woven fabrics formed wholly or mainly of staple fibres or like relatively short fibres from fleeces or layers composed of fibres without existing or potential cohesive properties by applying, incorporating or activating chemical or thermoplastic bonding agents, e.g. adhesives characterised by the bonding agents used
  • E04B 1/76 - Heat, sound or noise insulation, absorption, or reflectionOther building methods affording favourable thermal or acoustical conditions, e.g. accumulating of heat within walls specifically with respect to heat only
  • E04B 1/82 - Heat, sound or noise insulation, absorption, or reflectionOther building methods affording favourable thermal or acoustical conditions, e.g. accumulating of heat within walls specifically with respect to sound only
  • E04B 1/86 - Sound-absorbing elements slab-shaped
  • E04B 2/74 - Removable non-load-bearing partitionsPartitions with a free upper edge

12.

LEAPONLINE BY LUMENT

      
Serial Number 90554711
Status Registered
Filing Date 2021-03-02
Registration Date 2022-10-04
Owner ORIX Corporation USA ()
NICE Classes  ? 36 - Financial, insurance and real estate services

Goods & Services

Financial services, namely, mortgage lending services, loan servicing services in the nature of arranging and financing of loans, real estate services, namely, rental property management, loan broker services in the nature of mortgage brokerage, financial loan consulting services in the field of loan financing, financing and loan services, all of the foregoing provided via electronic means

13.

PIEZOELECTRIC MATERIAL, PIEZOELECTRIC MEMBER, PIEZOELECTRIC ELEMENT, AND PRESSURE SENSOR

      
Application Number JP2020024226
Publication Number 2020/262256
Status In Force
Filing Date 2020-06-19
Publication Date 2020-12-30
Owner
  • TOKYO INSUTITUTE OF TECHNOLOGY (Japan)
  • KOIKE CO., LTD. (Japan)
Inventor
  • Takeda, Hiroaki
  • Tsurumi, Takaaki
  • Kusakabe, Hiraku
  • Usui, Haruki

Abstract

(2-x)x277(0.1≤x≤0.6).

IPC Classes  ?

  • G01L 1/16 - Measuring force or stress, in general using properties of piezoelectric devices
  • G01L 23/10 - Devices or apparatus for measuring or indicating or recording rapid changes, such as oscillations, in the pressure of steam, gas, or liquidIndicators for determining work or energy of steam, internal-combustion, or other fluid-pressure engines from the condition of the working fluid operated electrically by pressure-sensitive members of the piezoelectric type
  • H01L 41/053 - Mounts, supports, enclosures or casings
  • H01L 41/113 - Piezo-electric or electrostrictive elements with mechanical input and electrical output
  • H01L 41/187 - Ceramic compositions
  • H01L 41/22 - Processes or apparatus specially adapted for the assembly, manufacture or treatment of piezo-electric or electrostrictive devices or of parts thereof
  • H01L 41/338 - Shaping or machining of piezo-electric or electrostrictive bodies by machining by cutting or dicing

14.

VACUUM HEAT-INSULATING MEMBER

      
Application Number JP2020013398
Publication Number 2020/213357
Status In Force
Filing Date 2020-03-25
Publication Date 2020-10-22
Owner ASAHI FIBER GLASS CO., LTD. (Japan)
Inventor Yamamoto Hideya

Abstract

In conventional examples of vacuum heat-insulating members for which internal physical properties can be measured using sensors, and the like, there have been limitations on continuous power supply from batteries to sensor systems installed in the vacuum heat-insulating members, and receiving sensor data over a long period of time has required regular charging. In this invention, provided inside a vacuum heat-insulating member is a compact wireless vacuum gauge comprising a pressure sensor, a power reception coil, a DC/DC converter, and a transmission unit for transmitting measurement data at least including pressure values. The voltage of electricity supplied through non-contact power supply is stabilized by the DC/DC converter. The coil diameter of the power reception coil used to supply power to the sensor and communicate with the sensor is set to an appropriate range within which communication and power transmission are possible according to the power transmission distance from a power transmission coil and the thickness of a gas barrier film. As a result, a vacuum heat-insulating member is provided that makes it possible to achieve stable power supply and continuously communicate without interruption.

IPC Classes  ?

  • G01L 19/12 - Alarms or signals
  • G01L 21/00 - Vacuum gauges
  • G08C 17/04 - Arrangements for transmitting signals characterised by the use of a wireless electrical link using magnetically coupled devices
  • H02J 50/12 - Circuit arrangements or systems for wireless supply or distribution of electric power using inductive coupling of the resonant type
  • F16L 59/065 - Arrangements using an air layer or vacuum using vacuum

15.

LUMENT AN ORIX COMPANY

      
Serial Number 90090549
Status Pending
Filing Date 2020-08-03
Owner ORIX Corporation USA ()
NICE Classes  ? 36 - Financial, insurance and real estate services

Goods & Services

Commercial mortgage lending; commercial mortgage banking services; real estate asset management services; loan financing services; financial evaluation services in connection with real estate; real estate financing services; real estate investment; real estate portfolio management; financial services, namely, broker/dealer services on securities exchanges and over-the-counter markets; business brokerage services and related consulting pertaining to business sales, mergers, acquisitions and business valuations; brokerage of bonds and underwriting of bonds in the nature of securities underwriting for bonds for commercial mortgage loans; purchasing of and selling of companies, namely, business brokerage; financial services, namely, investment advice, investment management, investment consultation and investment of funds for others, including private and public equity and debt investment services; all of the foregoing excluding the field of overlay and agency outsource management

16.

SIGNAL PEAK

      
Serial Number 90042700
Status Registered
Filing Date 2020-07-08
Registration Date 2021-06-01
Owner ORIX Corporation USA (USA)
NICE Classes  ? 36 - Financial, insurance and real estate services

Goods & Services

FINANCIAL MANAGEMENT SERVICES, namely, ADMINISTERING THE ISSUANCE, UNDERWRITING, COLLATERAL MANAGEMENT AND DISTRIBUTION OF SECURITIES IN THE NATURE OF A SERIES OF COLLATERALIZED LOAN OBLIGATIONS (CLOS); FINANCIAL MANAGEMENT, namely, CREATION AND MANAGEMENT OF INVESTMENT PORTFOLIOS FOCUSED ON LEVERAGED LOANS, HIGH YIELD BONDS AND COLLATERALIZED LOAN OBLIGATIONS (CLOS)

17.

COLORED RESIN COMPOSITION AND COLORED RESIN MOLDED ARTICLE

      
Application Number JP2019007357
Publication Number 2019/167957
Status In Force
Filing Date 2019-02-26
Publication Date 2019-09-06
Owner ASAHI FIBER GLASS CO., LTD. (Japan)
Inventor
  • Hayata Koji
  • Satou Kouji
  • Sekine Keiji

Abstract

A colored resin composition containing a thermoplastic resin, a glass filler, and a colorant and having a difference between the refractive index of the thermoplastic resin for light of a wavelength of 589.3 nm and the refractive index of the glass filler for light of a wavelength of 589.3 nm of 0.001 or less.

IPC Classes  ?

  • C08L 101/12 - Compositions of unspecified macromolecular compounds characterised by physical features, e.g. anisotropy, viscosity or electrical conductivity
  • C03C 3/083 - Glass compositions containing silica with 40% to 90% silica by weight containing aluminium oxide or an iron compound
  • C03C 3/085 - Glass compositions containing silica with 40% to 90% silica by weight containing aluminium oxide or an iron compound containing an oxide of a divalent metal
  • C03C 3/087 - Glass compositions containing silica with 40% to 90% silica by weight containing aluminium oxide or an iron compound containing an oxide of a divalent metal containing calcium oxide, e.g. common sheet or container glass
  • C03C 3/091 - Glass compositions containing silica with 40% to 90% silica by weight containing boron containing aluminium
  • C03C 3/093 - Glass compositions containing silica with 40% to 90% silica by weight containing boron containing aluminium containing zinc or zirconium
  • C08K 3/40 - Glass
  • C08K 5/00 - Use of organic ingredients

18.

VACUUM HEAT-INSULATING MATERIAL

      
Application Number JP2018026495
Publication Number 2019/069531
Status In Force
Filing Date 2018-07-13
Publication Date 2019-04-11
Owner ASAHI FIBER GLASS CO., LTD. (Japan)
Inventor Yamamoto Hideya

Abstract

In conventional examples of vacuum heat-insulating materials in which physical properties on the interior can be measured using sensors, etc., it is impossible to charge an internal battery that supplies power to the sensors, etc. Furthermore, filling the internal space of the vacuum heat-insulating material a sensor and a battery, causes problems such as a reduction in the number of independent cells constituted by core material fibers, and an inability to prevent the inflow of gas from the outside. In order to solve the abovementioned problems, the present invention provides a vacuum heat-insulating material having, on the interior thereof, a compact wireless vacuum gauge containing: a thermocouple-type vacuum sensor, a piezoresistive vacuum sensor, a crystal vacuum sensor or a pressure sensor using a combination thereof; a battery; a charging unit; and a transmission unit for transmitting measurement data including at least a pressure value. Therein, the pressure sensor is formed from a microelectromechanical system (MEMS), and the vacuum heat-insulating material is configured so as to charge the battery without electrically connecting the charging unit to an external power supply.

IPC Classes  ?

  • F16L 59/065 - Arrangements using an air layer or vacuum using vacuum
  • G01M 3/16 - Investigating fluid tightness of structures by using fluid or vacuum by detecting the presence of fluid at the leakage point using electric detection means

19.

GLASS FILLER-CONTAINING POLYCARBONATE RESIN COMPOSITION, AND MOLDED BODY THEREOF

      
Application Number JP2018016474
Publication Number 2018/199033
Status In Force
Filing Date 2018-04-23
Publication Date 2018-11-01
Owner
  • IDEMITSU KOSAN CO.,LTD. (Japan)
  • ASAHI FIBER GLASS CO.,LTD. (Japan)
Inventor
  • Yamao, Shinobu
  • Yabukami, Minoru
  • Sekine, Keiji
  • Zhao, Peng
  • Hayata, Koji

Abstract

The present invention pertains to a polycarbonate resin composition containing: an aliphatic polycarbonate resin (A) having a specific repeating unit; and a glass filler (B) having a specific composition and containing 5 mass% or less total of Li2O, Na2O, K2O and Cs2O, wherein the refractive index of the aliphatic polycarbonate resin (A) is 1.480-1.520 with respect to light having a wavelength of 589.3 nm, the refractive index of the glass filler (B) is 1.485-1.520 with respect to light having a wavelength of 589.3 nm, and the difference in refractive index between the aliphatic polycarbonate resin (A) and the glass filler (B) is at most 0.003 with respect to light having a wavelength of 486.1 nm, at most 0.001 with respect to light having a wavelength of 589.3 nm, and at most 0.001 with respect to light having a wavelength of 656.3 nm. Provided are: a polycarbonate resin composition capable of providing a molded body having excellent transparency; and a molded body having excellent transparency.

IPC Classes  ?

20.

STEWARD A BETTER TOMORROW

      
Application Number 1430512
Status Registered
Filing Date 2018-08-29
Registration Date 2018-08-29
Owner ORIX CORPORATION USA (USA)
NICE Classes  ? 36 - Financial, insurance and real estate services

Goods & Services

Financial management services; financial analysis and consulting services; investment banking services; loan financing services; real estate appraisal and consulting services.

21.

STEWARD A BETTER TOMORROW

      
Application Number 191742100
Status Registered
Filing Date 2018-08-29
Registration Date 2021-05-14
Owner ORIX Corporation USA (USA)
NICE Classes  ? 36 - Financial, insurance and real estate services

Goods & Services

(1) Financial management services; financial analysis and consulting services; investment banking services; loan financing services; real estate appraisal and consulting services; insurance services

22.

CONNECTOR

      
Application Number JP2018002859
Publication Number 2018/143154
Status In Force
Filing Date 2018-01-30
Publication Date 2018-08-09
Owner ASAHI FIBER GLASS CO., LTD. (Japan)
Inventor Yamamoto Hideya

Abstract

The present invention provides a connector 8 that connects a parting material 6 having a plate-shaped base part 6b to a wall surface 4, wherein the connector is characterized by comprising: a base plate part 8a; a receiving part 8c formed on one surface 8b of the base plate 8a and receiving the plate-shaped base part 6b of the parting material 6; and a projecting part 8e that projects from the other surface 8d of the base plate part 8a and can be inserted into a hole 4a formed in the wall surface 4, the receiving part 8c being configured so as to grip a side edge part 6b’ of the plate-shaped base part 6b of the parting material 6, and the projecting part 8e having a detachment prevention part 8k that prevents detachment from the hole 4a.

IPC Classes  ?

  • E04F 19/06 - BordersFinishing strips, e.g. beadingsLight coves specially designed for securing panels
  • E04B 1/80 - Heat insulating elements slab-shaped
  • E04F 13/08 - Coverings or linings, e.g. for walls or ceilings composed of covering or lining elementsSub-structures thereforFastening means therefor composed of a plurality of similar covering or lining elements
  • F16B 5/06 - Joining sheets or plates to one another or to strips or bars parallel to them by means of clamps or clips

23.

Aqueous binder for inorganic-fiber heat-insulating sound-absorbing member, and inorganic-fiber heat-insulating sound-absorbing member

      
Application Number 15600262
Grant Number 09963384
Status In Force
Filing Date 2017-05-19
First Publication Date 2018-05-08
Grant Date 2018-05-08
Owner ASAHI FIBER GLASS CO., LTD. (Japan)
Inventor
  • Funakoshi, Nami
  • Izumi, Ippei
  • Ishiguro, Yoshitomo
  • Endo, Takeshi

Abstract

Disclosed is an aqueous binder for an inorganic-fiber heat-insulating sound-absorbing member, comprising a polycarboxylic acid and a crosslinking agent for the polycarboxylic acid, in which the polycarboxylic acid comprises a polycarboxylic acid having a weight average molecular weight of 1000 to 20000 and an acid value of 500 to 900 mgKOH/g; the crosslinking agent comprises a branched polyethyleneimine having a weight average molecular weight of 300 to 2000, and an alkanolamine having a lower molecular weight than the polyethyleneimine and an alcohol valence of 2 or less; the ratio of the total mole of a hydroxyl group, an amino group and an imino group in the crosslinking agent relative to the mole of a carboxy group in the polycarboxylic acid is 0.30 to 0.75; and the ratio of the total mole of the amino group and imino group in the crosslinking agent relative to the total mole of the hydroxyl group, amino group and imino group in the crosslinking agent is 0.34 to 0.80.

IPC Classes  ?

  • D06M 15/263 - Macromolecular compounds obtained by reactions only involving carbon-to-carbon unsaturated bonds of unsaturated carboxylic acidsSalts or esters thereof
  • C09D 133/02 - Homopolymers or copolymers of acidsMetal or ammonium salts thereof
  • C03C 25/28 - Macromolecular compounds or prepolymers obtained by reactions involving only carbon-to-carbon unsaturated bonds
  • D04H 1/587 - Non-woven fabrics formed wholly or mainly of staple fibres or like relatively short fibres from fleeces or layers composed of fibres without existing or potential cohesive properties by applying, incorporating or activating chemical or thermoplastic bonding agents, e.g. adhesives characterised by the bonding agents used
  • D04H 1/4218 - Glass fibres
  • C09J 125/08 - Copolymers of styrene

24.

Aqueous binder for inorganic-fiber heat-insulating sound-absorbing member, and inorganic-fiber heat-insulating sound-absorbing member

      
Application Number 15600271
Grant Number 09963385
Status In Force
Filing Date 2017-05-19
First Publication Date 2018-05-08
Grant Date 2018-05-08
Owner ASAHI FIBER GLASS CO., LTD. (Japan)
Inventor Funakoshi, Nami

Abstract

Disclosed is an aqueous binder for an inorganic-fiber heat-insulating sound-absorbing member, comprising a polycarboxylic acid and a crosslinking agent for the polycarboxylic acid, in which the polycarboxylic acid comprises a polycarboxylic acid having a weight average molecular weight of 1000 to 20000 and an acid value of 500 to 900 mgKOH/g; the crosslinking agent at least comprises a polyamine without a hydroxyl group, the polyamine having at least one of an amino group and an imino group and having a weight average molecular weight of 100 to 500 and an amine value of 1150 to 1650 mgKOH/g, and a polyol without an amino group and an imino group, the polyol having a hydroxyl group and having a weight average molecular weight of 90 to 250 and an alcohol valence of 3 or more; the ratio of the total mole of the hydroxyl group, amino group and imino group in the crosslinking agent relative to the mole of the carboxy group in the polycarboxylic acid is 0.3 to 1.2; and the ratio of the total mole of the amino group and imino group in the crosslinking agent relative to the total mole of the hydroxyl group, amino group and imino group in the crosslinking agent is 0.01 to 0.2.

IPC Classes  ?

  • D06M 15/263 - Macromolecular compounds obtained by reactions only involving carbon-to-carbon unsaturated bonds of unsaturated carboxylic acidsSalts or esters thereof
  • D06M 13/368 - HydroxyalkylaminesDerivatives thereof, e.g. Kritchevsky bases
  • C09D 133/02 - Homopolymers or copolymers of acidsMetal or ammonium salts thereof
  • C03C 25/28 - Macromolecular compounds or prepolymers obtained by reactions involving only carbon-to-carbon unsaturated bonds
  • D04H 1/4218 - Glass fibres
  • D04H 1/587 - Non-woven fabrics formed wholly or mainly of staple fibres or like relatively short fibres from fleeces or layers composed of fibres without existing or potential cohesive properties by applying, incorporating or activating chemical or thermoplastic bonding agents, e.g. adhesives characterised by the bonding agents used
  • C09J 125/08 - Copolymers of styrene

25.

GLASS WOOL HEAT-RETAINING BAND

      
Application Number JP2017017818
Publication Number 2017/217147
Status In Force
Filing Date 2017-05-11
Publication Date 2017-12-21
Owner ASAHI FIBER GLASS CO., LTD. (Japan)
Inventor
  • Onoguchi Hitoshi
  • Kaneoka Yoshiyuki

Abstract

A glass wool heat-retaining band 1 is provided with a band-shaped sheath material 2 and multiple heat-retaining pieces 3 comprising glass wool and disposed side-by-side in a specified direction D on one surface 2a of the sheath material 2. The heat-retaining pieces 3 comprise a first heat-retaining piece 4 and a second heat-retaining piece 5 with a higher density than the first heat-retaining piece 4. On the one surface 2a, first regions R1, on which a first heat-retaining piece 4 is disposed, and second regions R2, on which a second heat-retaining piece 5 is disposed, line up alternately in the specified direction D.

IPC Classes  ?

  • F16L 59/02 - Shape or form of insulating materials, with or without coverings integral with the insulating materials
  • F16L 59/147 - Arrangements for the insulation of pipes or pipe systems the insulation being located inwardly of the outer surface of the pipe

26.

Transparent ABS resin composition

      
Application Number 15523015
Grant Number 10774200
Status In Force
Filing Date 2015-10-30
First Publication Date 2017-11-23
Grant Date 2020-09-15
Owner Asahi Fiber Glass Co., Ltd. (Japan)
Inventor
  • Noguchi, Takenori
  • Sekine, Keiji

Abstract

A transparent ABS resin composition which enables a production of a molded article retaining an excellent mechanical strength without decreasing the transparency and opacity, consisting of: based on a total mass of the transparent ABS resin composition, 70 to 98% by mass of a transparent ABS resin; and 2 to 30% by mass of a glass filler. The glass filler consists of glass components and optionally at least one oxide.

IPC Classes  ?

  • C08L 55/02 - ABS [Acrylonitrile-Butadiene-Styrene] polymers
  • C08K 7/02 - Fibres or whiskers
  • C08K 3/40 - Glass
  • C08K 9/00 - Use of pretreated ingredients
  • C08K 7/14 - Glass
  • C03C 13/00 - Fibre or filament compositions
  • C03C 3/091 - Glass compositions containing silica with 40% to 90% silica by weight containing boron containing aluminium
  • C03C 25/26 - Macromolecular compounds or prepolymers

27.

CEILING MEMBER AND CEILING CONSTRUCTION METHOD

      
Application Number JP2017016962
Publication Number 2017/195662
Status In Force
Filing Date 2017-04-28
Publication Date 2017-11-16
Owner ASAHI FIBER GLASS CO., LTD. (Japan)
Inventor Imura Isao

Abstract

A ceiling member 100 in which a porous inorganic composite layer 10 is formed on mutually opposing side surfaces 1, and a main surface 2 comprises a square inorganic fiberboard 20, wherein the porous inorganic composite layer 10 is 1200 to 3500% more dense than the inorganic fiberboard 20.

IPC Classes  ?

  • E04B 9/04 - CeilingsConstruction of ceilings, e.g. false ceilingsCeiling construction with regard to insulation comprising slabs, sheets or the like

28.

METHOD FOR PRODUCING THERMOSETTING AQUEOUS BINDER

      
Application Number JP2017005349
Publication Number 2017/145871
Status In Force
Filing Date 2017-02-14
Publication Date 2017-08-31
Owner ASAHI FIBER GLASS CO., LTD. (Japan)
Inventor
  • Funakoshi Nami
  • Izumi Ippei
  • Ishiguro Yoshitomo

Abstract

Provided is a method for producing a thermosetting aqueous binder containing a polycarboxylic acid and an amine-based compound, which serves as a crosslinking agent for said polycarboxylic acid and which has two or more amino groups and/or imino groups per molecule, the method comprising: a blocking step for blocking at least a part of the carboxy group of the polycarboxylic acid with a volatile basic compound so as to obtain a blocked polycarboxylic acid; and a mixing step for mixing the blocked polycarboxylic acid and the amine-based compound. The present invention thus configured is able to reduce precipitates and viscous substances generated during production to a level sufficient for practical use.

IPC Classes  ?

29.

Polycarbonate resin composition

      
Application Number 15502397
Grant Number 10093786
Status In Force
Filing Date 2015-07-31
First Publication Date 2017-08-03
Grant Date 2018-10-09
Owner Asahi Fiber Glass Co., Ltd. (Japan)
Inventor
  • Tojo, Chihiro
  • Izumi, Ippei

Abstract

The present invention provides a polycarbonate resin composition which is capable of maintaining favorable fluidity during molding, inhibiting a bleed-out phenomenon after molding, and further producing molding products with high transparency. Specifically, the polycarbonate resin composition comprises: an aromatic polycarbonate resin; and 0.01 to 1.0 parts by mass of a fatty acid compound relative to 100 parts by mass of the aromatic polycarbonate resin, the fatty acid compound containing at least one selected from the group consisting of fatty acid esters and fatty acid amides. The fatty acid compound has an average molecular weight of 800 to 5000. The fatty acid compound contains 10 to 80% by mass of an unsaturated fatty acid compound relative to the total mass of the fatty acid compound.

IPC Classes  ?

  • C08K 5/103 - EstersEther-esters of monocarboxylic acids with polyalcohols
  • C08K 5/20 - Carboxylic acid amides
  • C08K 5/10 - EstersEther-esters
  • C08K 3/40 - Glass
  • C08G 64/00 - Macromolecular compounds obtained by reactions forming a carbonic ester link in the main chain of the macromolecule
  • C08L 69/00 - Compositions of polycarbonatesCompositions of derivatives of polycarbonates
  • B32B 27/36 - Layered products essentially comprising synthetic resin comprising polyesters

30.

GAS ADSORBING MATERIAL

      
Application Number JP2016079580
Publication Number 2017/104235
Status In Force
Filing Date 2016-10-05
Publication Date 2017-06-22
Owner ASAHI FIBER GLASS CO., LTD. (Japan)
Inventor
  • Yamamoto Hideya
  • Sakata Kohei

Abstract

Provided is a gas adsorbing material which exhibits high gas adsorption capacity. The porosity of this gas adsorbing material is controlled to 40-80% by using a binder that is composed of calcium silicate or magnesium silicate together with zeolite and calcium oxide.

IPC Classes  ?

  • B01J 20/18 - Synthetic zeolitic molecular sieves
  • B01J 20/04 - Solid sorbent compositions or filter aid compositionsSorbents for chromatographyProcesses for preparing, regenerating or reactivating thereof comprising inorganic material comprising compounds of alkali metals, alkaline earth metals or magnesium
  • B01J 20/10 - Solid sorbent compositions or filter aid compositionsSorbents for chromatographyProcesses for preparing, regenerating or reactivating thereof comprising inorganic material comprising silica or silicate
  • B01J 20/28 - Solid sorbent compositions or filter aid compositionsSorbents for chromatographyProcesses for preparing, regenerating or reactivating thereof characterised by their form or physical properties
  • B01J 20/30 - Processes for preparing, regenerating or reactivating
  • F16L 59/065 - Arrangements using an air layer or vacuum using vacuum

31.

POLYCARBONATE RESIN COMPOSITION

      
Application Number JP2016073730
Publication Number 2017/068840
Status In Force
Filing Date 2016-08-12
Publication Date 2017-04-27
Owner ASAHI FIBER GLASS CO., LTD. (Japan)
Inventor
  • Tojo Chihiro
  • Zhao Peng

Abstract

Provided is a polycarbonate resin composition that retains an excellent impact strength while being able to produce a molded article having an improved rigidity and appearance. Specifically provided is a polycarbonate resin composition containing a polycarbonate resin, a glass fiber surface-treated with a sizing agent, and an elastomer, said polycarbonate resin composition being characterized in that: the glass fiber has a mass-average fiber diameter of 4-15 μm and a mass-average fiber length of 100-250 μm; the elastomer is a dimethylpolysiloxane rubber grafted with an acrylic resin; the mass ratio (polycarbonate resin:glass fiber) of the polycarbonate resin and the glass fiber is 80-95:5-20; and the mass ratio (elastomer/glass fiber) of the elastomer and the glass fiber is 0.10-0.30.

IPC Classes  ?

  • C08L 69/00 - Compositions of polycarbonatesCompositions of derivatives of polycarbonates
  • C08K 9/04 - Ingredients treated with organic substances
  • C08L 83/10 - Block- or graft-copolymers containing polysiloxane sequences

32.

GLASS FIBER-REINFORCED POLYPROPYLENE RESIN COMPOSITION

      
Application Number JP2016073118
Publication Number 2017/043231
Status In Force
Filing Date 2016-08-05
Publication Date 2017-03-16
Owner ASAHI FIBER GLASS CO., LTD. (Japan)
Inventor
  • Zhang Liang
  • Izumi Ippei

Abstract

Provided is a polypropylene resin composition which has improved mechanical strength and good external appearance, does not exhibit high anisotropy, and has a high glass fiber content. In the polypropylene resin composition having a high glass fiber content, the mass average fiber length of the glass fibers is 200-300 μm, and 60 mass% or more of the glass fibers with respect to the mass of the glass fibers have a fiber length within the range of ±100 μm from the mass average fiber length.

IPC Classes  ?

  • C08J 5/04 - Reinforcing macromolecular compounds with loose or coherent fibrous material
  • B29B 7/48 - MixingKneading continuous, with mechanical mixing or kneading devices with movable mixing or kneading devices rotary with more than one shaft with intermeshing devices, e.g. screws
  • B29B 7/90 - Fillers or reinforcements
  • B29C 45/00 - Injection moulding, i.e. forcing the required volume of moulding material through a nozzle into a closed mouldApparatus therefor

33.

HEAT-INSULATING AND SOUND-ABSORBING GLASS-FIBER OBJECT, AND METHOD OF USING SAME

      
Application Number JP2016059115
Publication Number 2016/158599
Status In Force
Filing Date 2016-03-23
Publication Date 2016-10-06
Owner ASAHI FIBER GLASS CO., LTD. (Japan)
Inventor
  • Shimura, Takafumi
  • Itadani, Toru

Abstract

A heat-insulating and sound-absorbing glass-fiber object (1) which comprises a sound-absorbing layer (2) and a sound-insulating layer (3) that are molded glass-fiber articles, wherein the sound-absorbing layer (2) has a thickness of 5-30 mm and a density of 20-100 kg/m3 due to glass fibers having a diameter of 3-5 µm, and the sound-insulating layer (3) has a thickness of 3-10 mm and a density of 40-180 kg/m3 due to glass fibers having a diameter of 5-7 µm.

IPC Classes  ?

  • G10K 11/178 - Methods or devices for protecting against, or for damping, noise or other acoustic waves in general using interference effectsMasking sound by electro-acoustically regenerating the original acoustic waves in anti-phase
  • B60R 13/08 - Insulating elements, e.g. for sound insulation
  • G10K 11/16 - Methods or devices for protecting against, or for damping, noise or other acoustic waves in general
  • G10K 11/162 - Selection of materials

34.

GLASS-FIBER THERMAL-INSULATION SOUND ABSORBING BODY AND USAGE THEREOF

      
Application Number JP2016052260
Publication Number 2016/125645
Status In Force
Filing Date 2016-01-27
Publication Date 2016-08-11
Owner ASAHI FIBER GLASS CO., LTD. (Japan)
Inventor
  • Shimura, Takafumi
  • Itadani, Toru
  • Sakai, Atsushi
  • Masai, Haruki

Abstract

A glass-fiber thermal-insulation sound absorbing body (1) according to the present invention is provided with a flexible part (2) and a high-rigidity part (3) that are molded by intertwining a plurality of glass fibers and that are stacked on each other; the density of the flexible part (2) is greater than 80 kg/m3 and equal to or less than 100 kg/m3; and the density of the high-rigidity part (3) ranges from 120 kg/m3 to 300 kg/m3, and the bending elastic modulus thereof ranges from 150 MPa to 500 MPa.

IPC Classes  ?

  • G10K 11/16 - Methods or devices for protecting against, or for damping, noise or other acoustic waves in general
  • B32B 5/26 - Layered products characterised by the non-homogeneity or physical structure of a layer characterised by the presence of two or more layers which comprise fibres, filaments, granules, or powder, or are foamed or specifically porous one layer being a fibrous or filamentary layer another layer also being fibrous or filamentary
  • B60R 13/08 - Insulating elements, e.g. for sound insulation
  • D04H 3/004 - Glass yarns or filaments
  • G10K 11/162 - Selection of materials

35.

VACUUM INSULATION MATERIAL

      
Application Number JP2015085386
Publication Number 2016/098858
Status In Force
Filing Date 2015-12-17
Publication Date 2016-06-23
Owner ASAHI FIBER GLASS CO., LTD. (Japan)
Inventor
  • Omori Kunikazu
  • Matsuo Atsushi

Abstract

The present invention relates to a vacuum insulation material that is lightweight and has good thermal conductivity, in which a core material formed of inorganic particles is depressurized and sealed by a covering material. The inorganic particles contain spherical particles or short-fiber particles. The distribution of the average particle sizes of the particles is as follows: inorganic particles with an average particle size of 0.1 to less than 1 μm make up 60-90 mass%; inorganic particles with an average particle size of 1 to less than 10 μm make up 5-30 mass%; and inorganic particles with an average particle size of 10 to 50 μm make up 1-10 mass%. The covering material is formed of a metal foil or a film on which metal or metal oxide is evaporated. The density of the vacuum insulation material falls within the range of 150-200 kg/m3.

IPC Classes  ?

  • F16L 59/065 - Arrangements using an air layer or vacuum using vacuum

36.

TRANSPARENT ABS RESIN COMPOSITION

      
Application Number JP2015080779
Publication Number 2016/068303
Status In Force
Filing Date 2015-10-30
Publication Date 2016-05-06
Owner ASAHI FIBER GLASS CO., LTD. (Japan)
Inventor
  • Noguchi Takenori
  • Sekine Keiji

Abstract

 Provided is a glass filler-containing transparent ABS resin composition which can be used to produce moldings without reducing transparency or transmissivity, while maintaining excellent mechanical strength. Specifically, this transparent ABS resin composition contains, with respect to the total mass of said transparent ABS resin composition, 70-98 mass% transparent ABS resin, and 2-30 mass% of glass filler, said glass filler containing, with respect to the total mass of said glass filler, 55-60 mass% silicon dioxide (SiO2), 10-15 mass% aluminum oxide (Al2O3), 18-22 mass% calcium oxide (CaO), 2-8 mass% boron oxide (B2O3), 0.01-1 mass% magnesium oxide (MgO), and 0.01-1 mass% sodium oxide (Na2O) or potassium oxide (K2O). In the glass filler, the mass ratio (CaO/SiO2) of calcium oxide to silicon dioxide is 0.36-0.40.

IPC Classes  ?

37.

POLYCARBONATE RESIN COMPOSITION

      
Application Number JP2015071819
Publication Number 2016/021502
Status In Force
Filing Date 2015-07-31
Publication Date 2016-02-11
Owner ASAHI FIBER GLASS CO., LTD. (Japan)
Inventor
  • Tojo Chihiro
  • Izumi Ippei

Abstract

The present invention provides a polycarbonate resin composition which can retain good fluidity at the time of molding, can reduce bleed out phenomena after molding, and can be used to manufacture a molded article with greater transparency. Specifically, the polycarbonate resin composition includes 0.01-1.0 parts by mass of a fatty acid compound including at least one type selected from the group consisting of fatty acid ester and fatty acid amide with respect to 100 parts by mass of an aromatic polycarbonate resin. The average molecular weight of the fatty acid compound is 800-5000. Further, the fatty acid compound includes 10-80 mass% of an unsaturated fatty acid compound based on the total mass of the fatty acid compound.

IPC Classes  ?

38.

INORGANIC FIBROUS INSULATING MATERIAL

      
Application Number JP2015070668
Publication Number 2016/013539
Status In Force
Filing Date 2015-07-21
Publication Date 2016-01-28
Owner ASAHI FIBER GLASS CO., LTD. (Japan)
Inventor
  • Hoshino Masaaki
  • Koumoto Takuma

Abstract

Provided is an inorganic fibrous insulating material that has excellent insulation performance and in which the convection of air within the insulating material and the transmission of heat by inorganic fibers are minimized. The inorganic fibrous insulating material comprises a plurality of stacked inorganic fiber mats. The fiber diameter of the inorganic fibers that constitute the inorganic fiber mats is 3-5 µm, the fiber length of said inorganic fibers is 20 mm or more, the inorganic fibers are bonded to each other by a thermosetting binder at the joining points thereof, the mass per unit area of each of the inorganic fiber mats is 300-600 g/m2, and the orientation angle of the inorganic fiber mats with respect to a direction that is perpendicular to the thickness direction of the inorganic fibrous insulating material is inclined by more than 0° but by no more than 20°.

IPC Classes  ?

  • F16L 59/02 - Shape or form of insulating materials, with or without coverings integral with the insulating materials
  • B32B 5/02 - Layered products characterised by the non-homogeneity or physical structure of a layer characterised by structural features of a layer comprising fibres or filaments
  • B32B 5/26 - Layered products characterised by the non-homogeneity or physical structure of a layer characterised by the presence of two or more layers which comprise fibres, filaments, granules, or powder, or are foamed or specifically porous one layer being a fibrous or filamentary layer another layer also being fibrous or filamentary
  • B32B 17/02 - Layered products essentially comprising sheet glass, or fibres of glass, slag or the like in the form of fibres or filaments
  • D04H 1/4209 - Inorganic fibres
  • D04H 1/4218 - Glass fibres
  • D04H 1/593 - Non-woven fabrics formed wholly or mainly of staple fibres or like relatively short fibres from fleeces or layers composed of fibres without existing or potential cohesive properties by applying, incorporating or activating chemical or thermoplastic bonding agents, e.g. adhesives to layered webs
  • E04B 1/80 - Heat insulating elements slab-shaped

39.

Polycarbonate resin composition and molded article

      
Application Number 14440152
Grant Number 09896569
Status In Force
Filing Date 2013-11-05
First Publication Date 2015-10-15
Grant Date 2018-02-20
Owner
  • IDEMITSU KOSAN CO., LTD. (Japan)
  • Asahi Fiber Glass CO., LTD. (Japan)
Inventor
  • Owada, Takanori
  • Sekine, Keiji
  • Noguchi, Takenori

Abstract

Provided are a polycarbonate resin composition containing a polycarbonate resin containing an aliphatic carbonate repeating unit (A) derived from an aliphatic dihydroxy compound and a specific glass filler, and a molded article.

IPC Classes  ?

  • C08K 3/40 - Glass
  • C08L 69/00 - Compositions of polycarbonatesCompositions of derivatives of polycarbonates
  • C08K 7/14 - Glass
  • C03C 13/00 - Fibre or filament compositions
  • C03C 3/087 - Glass compositions containing silica with 40% to 90% silica by weight containing aluminium oxide or an iron compound containing an oxide of a divalent metal containing calcium oxide, e.g. common sheet or container glass
  • C03C 3/091 - Glass compositions containing silica with 40% to 90% silica by weight containing boron containing aluminium
  • C03C 3/118 - Glass compositions containing silica with 40% to 90% silica by weight containing halogen or nitrogen containing fluorine containing boron containing aluminium
  • C03C 12/00 - Powdered glassBead compositions

40.

INSULATING PANEL AND METHOD FOR ATTACHING INSULATING PANEL

      
Application Number JP2015057813
Publication Number 2015/146696
Status In Force
Filing Date 2015-03-17
Publication Date 2015-10-01
Owner ASAHI FIBER GLASS CO., LTD. (Japan)
Inventor
  • Tomori Itaru
  • Tsuda Koki
  • Honda Atomu

Abstract

 Provided is an exceptionally workable insulating panel for a wall inside a room. An insulating panel attached to a wall inside a room is provided with an inorganic fibrous insulating material having a first surface facing into the room and containing a thermosetting resin as a binder, and a surface layer bonded to the first surface interposed by an adhesion layer having a lower moisture permeability than does the inorganic fibrous insulating material. The inorganic fibrous insulating material has a density of 120 kg/m3 or greater.

IPC Classes  ?

  • E04B 1/80 - Heat insulating elements slab-shaped

41.

VACUUM HEAT-INSULATING MATERIAL

      
Application Number JP2015052310
Publication Number 2015/115460
Status In Force
Filing Date 2015-01-28
Publication Date 2015-08-06
Owner ASAHI FIBER GLASS CO., LTD. (Japan)
Inventor
  • Yamamoto Hideya
  • Matsuo Atsushi

Abstract

The present invention addresses the problem of providing a vacuum heat-insulating material with which thermal bridging can be suppressed, and with which can be used suitably in reducing the size and weight of a heat-insulating article. This vacuum heat-insulating material comprises a core material, a bag-like gas barrier film encapsulating the core material, and an outer layer provided on the outside of the gas barrier film. The outer layer is paper and/or a nonwoven fabric, and this paper and/or nonwoven fabric has a thickness of 0.01-3 mm. The vacuum heat-insulating material is plate-shaped, and the outer layer covers at least a portion of one surface of the heat-insulating material.

IPC Classes  ?

  • F16L 59/06 - Arrangements using an air layer or vacuum

42.

POLYCARBONATE RESIN COMPOSITION AND MOLDED ARTICLE

      
Application Number JP2013079899
Publication Number 2014/069659
Status In Force
Filing Date 2013-11-05
Publication Date 2014-05-08
Owner
  • IDEMITSU KOSAN CO.,LTD. (Japan)
  • ASAHI FIBER GLASS CO.,LTD. (Japan)
Inventor
  • Owada, Takanori
  • Sekine, Keiji
  • Noguchi, Takenori

Abstract

A polycarbonate resin composition which contains a specific glass filler and a polycarbonate resin containing an aliphatic carbonate repeating unit (A) that is derived from an aliphatic dihydroxy compound; and a molded article.

IPC Classes  ?

  • C08L 69/00 - Compositions of polycarbonatesCompositions of derivatives of polycarbonates
  • C03C 13/00 - Fibre or filament compositions
  • C03C 13/02 - Fibre or filament compositions containing compounds of titanium or zirconium
  • C08G 64/00 - Macromolecular compounds obtained by reactions forming a carbonic ester link in the main chain of the macromolecule
  • C08K 3/00 - Use of inorganic substances as compounding ingredients

43.

METHOD FOR PRODUCING THERMOPLASTIC RESIN FOAM BODY

      
Application Number JP2012062099
Publication Number 2012/153829
Status In Force
Filing Date 2012-05-11
Publication Date 2012-11-15
Owner ASAHI FIBER GLASS COMPANY, LIMITED (Japan)
Inventor
  • Yamakoshi Tatsuya
  • Furusawa Masahiro

Abstract

Provided is a production method with which when a thermoplastic resin is extruded from a single long, thin outlet opening disposed in a mold in order to extrusion- mold a tabular thermoplastic resin foam body, a smooth foam body can be obtained with little undulation in the direction of width of the foam body. The method for producing a thermoplastic resin foam body is characterized in that when horizontal width of the outlet opening in the mold is L1, horizontal width of the cross section of the resin flow path at the inlet opening is L2, and the distance between the inlet opening and the outlet opening is D, L1/L2 is 1.3 or greater and 3 < L1/D < 20 and the longitudinal width in the center in the direction of horizontal width of the cross section of the resin flow path at the inlet opening is narrower than the longitudinal width at either end in the direction of horizontal width.

IPC Classes  ?

  • B29C 47/12 - Extrusion nozzles or dies
  • B29K 105/04 - Condition, form or state of moulded material cellular or porous
  • B29L 7/00 - Flat articles, e.g. films or sheets

44.

FOAM, SURFACE MATERIAL-STRENGTHENED FOAM, AND MOLDED BODY

      
Application Number JP2011079584
Publication Number 2012/090802
Status In Force
Filing Date 2011-12-21
Publication Date 2012-07-05
Owner ASAHI FIBER GLASS COMPANY, LIMITED (Japan)
Inventor
  • Itadani Toru
  • Furusawa Masahiro
  • Saimaru Mitsugu

Abstract

Provided are: a foam and a surface material-strengthened foam that have excellent moldability and comprise a non-crosslinking resin capable of obtaining a molded article having good rigidity and dimensional stability; and a molded article having good rigidity and dimensional stability. The surface material-strengthening foam is formed by laminating, as a surface material layer, a glass fiber-containing thermoplastic resin sheet containing 20%-40% by mass glass fibers and having a tensile elastic modulus of 10-45 kgf/mm2 in an atmosphere of 180°C to at least one surface of the foam comprising a non-crosslinking resin obtained by foaming a foam starting material composition including a polypropylene foam resin containing 5-70 parts by mass block polypropylene per 100 parts by mass linear polypropylene. The molded body is formed by molding the surface material-strengthened foam.

IPC Classes  ?

  • C08J 9/12 - Working-up of macromolecular substances to porous or cellular articles or materialsAfter-treatment thereof using blowing gases generated by a previously added blowing agent by a physical blowing agent
  • B32B 5/24 - Layered products characterised by the non-homogeneity or physical structure of a layer characterised by the presence of two or more layers which comprise fibres, filaments, granules, or powder, or are foamed or specifically porous one layer being a fibrous or filamentary layer
  • B32B 27/20 - Layered products essentially comprising synthetic resin characterised by the use of special additives using fillers, pigments, thixotroping agents
  • B32B 27/32 - Layered products essentially comprising synthetic resin comprising polyolefins
  • C08J 5/04 - Reinforcing macromolecular compounds with loose or coherent fibrous material

45.

SURFACE MATERIAL STRENGTHENING FOAM

      
Application Number JP2011070897
Publication Number 2012/036170
Status In Force
Filing Date 2011-09-13
Publication Date 2012-03-22
Owner ASAHI FIBER GLASS COMPANY, LIMITED (Japan)
Inventor
  • Itatani, Toru
  • Saimaru, Mitsugu

Abstract

A surface material strengthening foam and a molded body that are light and have excellent moldability, particularly deep drawing moldability, and wherein the obtained molded body has excellent dimensional stability, are provided. The surface material strengthening foam has a strengthened surface material, comprising glass fiber nonwoven fabric and thermoplastic resin, laminated to both surfaces of a strand foam from a non-crosslinking resin with a foam expansion ratio of 10-40 times by a continuous strand extrusion method. The surface material strengthening foam is characterized by: the tensile elastic modulus of the glass fiber nonwoven fabric being 0.7-1.2 kgf/mm2; the average fiber length of the glass fibers that comprise the glass fiber nonwoven material being 15-100 mm; the glass fiber content of the strengthened surface material being 25%-40% by mass; and the tensile elastic modulus of the strengthened surface material being 0.8-2.0 kgf/mm2.

IPC Classes  ?

  • B32B 5/24 - Layered products characterised by the non-homogeneity or physical structure of a layer characterised by the presence of two or more layers which comprise fibres, filaments, granules, or powder, or are foamed or specifically porous one layer being a fibrous or filamentary layer
  • B32B 17/04 - Layered products essentially comprising sheet glass, or fibres of glass, slag or the like in the form of fibres or filaments bonded with or embedded in a plastic substance
  • B32B 27/32 - Layered products essentially comprising synthetic resin comprising polyolefins

46.

FLOOR HEAT INSULATOR, FLOOR HEAT INSULATION STRUCTURE, METHOD FOR CONSTRUCTING FLOOR HEAT INSULATION STRUCTURE, AND FLOOR HEAT INSULATION PANEL

      
Application Number JP2011070561
Publication Number 2012/033185
Status In Force
Filing Date 2011-09-09
Publication Date 2012-03-15
Owner ASAHI FIBER GLASS COMPANY,LIMITED (Japan)
Inventor
  • Takei Sayaka
  • Ikeda Masahiko
  • Ozaki Kengo

Abstract

[Problem] To provide a floor heat insulator, a floor heat insulation structure, a method for constructing the floor heat insulation structure, and a floor heat insulation panel, which quickly enable expelling water to dry a heat insulation material in a shorter period of time. [Solution] The present invention provides a floor heat insulator which has a sheet-shaped support in contact with the bottom surface of a mat-shaped heat insulation material, wherein at least part of the support (25) is provided with a hydrophilic agent. The hydrophilic agent provided on the support (25) of the floor heat insulator (10) enables water resulting from the heat insulation material (20) being soaked in water to be quickly expelled by the support to dry the heat insulation material. Also provided are a floor heat insulation structure (1) and a floor heat insulation panel (30) which incorporate the floor heat insulator (10).

IPC Classes  ?

  • E04F 15/18 - Separately-laid insulating layersOther additional insulating measuresFloating floors
  • E04B 1/80 - Heat insulating elements slab-shaped

47.

SOUND-ABSORBING MEMBER, METHOD FOR PRODUCING SOUND-ABSORBING MEMBER, AND SHEET FOR SOUND-ABSORBING MEMBER

      
Application Number JP2011065926
Publication Number 2012/008473
Status In Force
Filing Date 2011-07-13
Publication Date 2012-01-19
Owner ASAHI FIBER GLASS COMPANY, LIMITED (Japan)
Inventor
  • Matsuo Atsushi
  • Sakoda Takuya

Abstract

Provided is a sound-absorbing member which has excellent sound absorption characteristics in a low frequency range. This sound-absorbing member is obtained by forming an adhesion layer of an acrylic gel on the surface of a porous base directly or via a nonwoven fabric. The acrylic gel is formed by gelatinizing an acrylic sol which contains 50-150 parts by mass of a plasticizer that has a boiling point of 180˚C or more per 100 parts by mass of an acrylic resin.

IPC Classes  ?

  • G10K 11/16 - Methods or devices for protecting against, or for damping, noise or other acoustic waves in general
  • G10K 11/162 - Selection of materials

48.

AQUEOUS BINDER FOR INORGANIC FIBER HEAT-INSULATING SOUND-ABSORBING MEMBER, INORGANIC FIBER HEAT-INSULATING SOUND-ABSORBING MEMBER AND METHOD FOR PRODUCING INORGANIC FIBER HEAT-INSULATING SOUND-ABSORBING MEMBER

      
Application Number JP2011064211
Publication Number 2011/162277
Status In Force
Filing Date 2011-06-22
Publication Date 2011-12-29
Owner ASAHI FIBER GLASS COMPANY, LIMITED (Japan)
Inventor
  • Matsuo Atsushi
  • Sakoda Takuya

Abstract

Disclosed are: an aqueous binder for an inorganic fiber heat-insulating sound-absorbing member, which can be cured by heating at low temperatures and is capable of providing a strong binder cured product; an inorganic fiber heat-insulating sound-absorbing member which uses the aqueous binder; and a method for producing an inorganic fiber heat-insulating sound-absorbing member. Specifically, an inorganic fiber heat-insulating sound-absorbing member is produced by applying an aqueous binder to inorganic fibers and heating the resulting inorganic fibers at 180-220°C. The aqueous binder contains 5.5-10 parts by mass of an ammonium salt of an inorganic acid per 100 parts by mass of the total of an acrylic resin that has an acid value of 350-850 mgKOH/g and a crosslinking agent that contains at least one alkanol amine. The ratio of the total mole number of hydroxy groups, amino groups and imino groups in the crosslinking agent relative to the mole number of carboxyl groups in the acrylic resin is 0.8-1.5. The pH of the aqueous binder is adjusted to 5.0-8.0 by a basic compound.

IPC Classes  ?

  • D06M 15/263 - Macromolecular compounds obtained by reactions only involving carbon-to-carbon unsaturated bonds of unsaturated carboxylic acidsSalts or esters thereof
  • D04H 1/4209 - Inorganic fibres
  • D04H 1/587 - Non-woven fabrics formed wholly or mainly of staple fibres or like relatively short fibres from fleeces or layers composed of fibres without existing or potential cohesive properties by applying, incorporating or activating chemical or thermoplastic bonding agents, e.g. adhesives characterised by the bonding agents used
  • D06M 11/55 - Treating fibres, threads, yarns, fabrics or fibrous goods made from such materials, with inorganic substances or complexes thereofSuch treatment combined with mechanical treatment, e.g. mercerising with sulfur, selenium, tellurium, polonium or compounds thereof with sulfur trioxideTreating fibres, threads, yarns, fabrics or fibrous goods made from such materials, with inorganic substances or complexes thereofSuch treatment combined with mechanical treatment, e.g. mercerising with sulfur, selenium, tellurium, polonium or compounds thereof with sulfuric acid or thiosulfuric acid or their salts
  • D06M 11/71 - Salts of phosphoric acids
  • D06M 13/368 - HydroxyalkylaminesDerivatives thereof, e.g. Kritchevsky bases
  • D06M 13/513 - Compounds with at least one carbon-metal or carbon-boron, carbon-silicon, carbon-selenium, or carbon-tellurium bond with at least one carbon-silicon bond
  • D06M 101/00 - Chemical constitution of the fibres, threads, yarns, fabrics or fibrous goods made from such materials, to be treated

49.

Acoustic wave device and method for manufacturing the same

      
Application Number 12864073
Grant Number 08319394
Status In Force
Filing Date 2008-11-26
First Publication Date 2010-12-02
Grant Date 2012-11-27
Owner
  • Murata Manufacturing Co., Ltd. (Japan)
  • Koike Co., Ltd. (Japan)
Inventor
  • Fuyutsume, Toshiyuki
  • Nishino, Taro
  • Yamazaki, Hisashi
  • Araki, Kiyoto
  • Tamura, Noboru
  • Ichikawa, Nakaba
  • Aruga, Masaki

Abstract

b) of the piezoelectric substrate (1), the thermal spray film being of a material having a smaller linear thermal expansion coefficient than the piezoelectric substrate (1) and having grain boundaries and pores (4), at least a part of which is filled with a filling material (5).

IPC Classes  ?

  • H03H 9/25 - Constructional features of resonators using surface acoustic waves

50.

LOW-MELTING GLASS, RESIN COMPOSITION COMPRISING SAME, AND RESIN MOLDED ARTICLE

      
Application Number JP2009067767
Publication Number 2010/044413
Status In Force
Filing Date 2009-10-14
Publication Date 2010-04-22
Owner ASAHI FIBER GLASS COMPANY, LIMITED (Japan)
Inventor
  • Endo, Hideki
  • Shimeno, Koichi

Abstract

Disclosed is a low-melting glass which has excellent water resistance and can impart excellent flame retardancy to a resin composition.  Also disclosed is a resin composition comprising the low-melting glass.  Further disclosed is a resin molded article. Specifically disclosed is a low-melting glass which comprises 22-27 mol% of P2O5, 3-18 mol% of SO3, 25-40 mol% of ZnO, 0-2 mol% of Al2O3, 0-4 mol% of Li2O, 0-15 mol% of Na2O and 11-35 mol% of K2O, wherein the total amount of Li2O, Na2O and K2O is 25-35 mol%.  The low-melting glass has a glass transition temperature of 200 to 300°C exclusive.  A resin composition is produced by mixing the low-melting glass with a resin.  A resin molded article is produced by molding or curing the resin composition.

IPC Classes  ?

  • C03C 3/17 - Silica-free oxide glass compositions containing phosphorus containing aluminium or beryllium
  • C03C 3/16 - Silica-free oxide glass compositions containing phosphorus
  • C08K 3/40 - Glass
  • C08L 69/00 - Compositions of polycarbonatesCompositions of derivatives of polycarbonates
  • C08L 77/00 - Compositions of polyamides obtained by reactions forming a carboxylic amide link in the main chainCompositions of derivatives of such polymers
  • C08L 101/00 - Compositions of unspecified macromolecular compounds
  • C09D 7/12 - Other additives
  • C09D 201/00 - Coating compositions based on unspecified macromolecular compounds

51.

Amorphous polyamide resin composition and molded product

      
Application Number 12284835
Grant Number 08476353
Status In Force
Filing Date 2008-09-25
First Publication Date 2010-03-25
Grant Date 2013-07-02
Owner Asahi Fiber Glass Company, Limited (Japan)
Inventor
  • Higashiyama, Hideyuki
  • Sekine, Keiji

Abstract

2O) is 8 to 12%.

IPC Classes  ?

  • C08K 3/34 - Silicon-containing compounds
  • C08K 3/40 - Glass
  • C03C 3/078 - Glass compositions containing silica with 40% to 90% silica by weight containing an oxide of a divalent metal, e.g. an oxide of zinc
  • C03C 3/087 - Glass compositions containing silica with 40% to 90% silica by weight containing aluminium oxide or an iron compound containing an oxide of a divalent metal containing calcium oxide, e.g. common sheet or container glass
  • C03C 3/093 - Glass compositions containing silica with 40% to 90% silica by weight containing boron containing aluminium containing zinc or zirconium

52.

METHOD OF AND DEVICE FOR COLLECTING FIBROUS MATERIALS

      
Application Number JP2009052805
Publication Number 2009/104647
Status In Force
Filing Date 2009-02-18
Publication Date 2009-08-27
Owner ASAHI FIBER GLASS COMPANY, LIMITED (Japan)
Inventor
  • Yokoo, Yuji
  • Kubota, Susumu
  • Kitamura, Kazuhiro

Abstract

Provided is a method for evenly dispersing fibrous materials such as glass wool, and distributing the fibrous materials on an accumulation conveyor belt without using compressed air in the dispersion process. In this method, a material that has been spun into fibers by the spinner of a fiberizer is dispersed by a hollow bucket placed directly underneath the spinner, and accumulated on an accumulation conveyor belt placed below the bucket. The hollow bucket is formed by attaching a nozzle, having elliptical openings at the bottom, to a skirt that is the bottom part of a hopper with a circular cross section, and the interior surface of the nozzle is deformed in the direction of the elliptical openings. In this way, fibrous materials dropped through the hollow bucket are dispersed, by the nozzle, along the width of the accumulation conveyor belt, and accumulated on the conveyor belt.

IPC Classes  ?

  • C03B 37/04 - Manufacture of glass fibres or filaments by using centrifugal force
  • D01D 5/08 - Melt-spinning methods
  • D04H 1/42 - Non-woven fabrics formed wholly or mainly of staple fibres or like relatively short fibres from fleeces or layers composed of fibres without existing or potential cohesive properties characterised by the use of certain kinds of fibres insofar as this use has no preponderant influence on the consolidation of the fleece
  • D04H 1/72 - Non-woven fabrics formed wholly or mainly of staple fibres or like relatively short fibres characterised by the method of forming fleeces or layers, e.g. reorientation of fibres the fibres being randomly arranged
  • D04H 1/732 - Non-woven fabrics formed wholly or mainly of staple fibres or like relatively short fibres characterised by the method of forming fleeces or layers, e.g. reorientation of fibres the fibres being randomly arranged by fluid current, e.g. air-lay

53.

ELASTIC WAVE ELEMENT AND METHOD FOR MANUFACTURING THE SAME

      
Application Number JP2008071416
Publication Number 2009/093377
Status In Force
Filing Date 2008-11-26
Publication Date 2009-07-30
Owner
  • Murata Manufacturing Co., Ltd. (Japan)
  • KOIKE CO., LTD. (Japan)
Inventor
  • Fuyutsume, Toshiyuki
  • Nishino, Taro
  • Yamazaki, Hisashi
  • Araki, Kiyoto
  • Tamura, Noboru
  • Ichikawa, Nakaba
  • Aruga, Masaki

Abstract

Disclosed is an elastic wave element wherein expansion and contraction due to temperature change are sufficiently suppressed and frequency shift is small. A method for manufacturing such elastic wave element is also disclosed. The elastic wave element is provided with a piezoelectric substrate (1) whereupon an IDT (2) is formed on one main surface, and a sprayed film (3), which is formed on the other main surface (1b) of the piezoelectric substrate (1) and composed of a material having a linear expansion coefficient smaller than that of the piezoelectric substrate (1). At least some of the grain boundaries and holes (4) in the sprayed film (3) are filled with a filling material (5).

IPC Classes  ?

  • H03H 9/145 - Driving means, e.g. electrodes, coils for networks using surface acoustic waves
  • H03H 3/08 - Apparatus or processes specially adapted for the manufacture of impedance networks, resonating circuits, resonators for the manufacture of electromechanical resonators or networks for the manufacture of resonators or networks using surface acoustic waves

54.

PROCESS FOR PRODUCING POLYPROPYLENE RESIN FOAM

      
Application Number JP2008073379
Publication Number 2009/084523
Status In Force
Filing Date 2008-12-24
Publication Date 2009-07-09
Owner ASAHI FIBER GLASS COMPANY, LIMITED (Japan)
Inventor Itadani, Toru

Abstract

Disclosed is a process for producing a resin foam comprising melt-extruding a linear polypropylene resin having a melt tension at 230ºC of 5 to 30 g and having a relationship between a melt flow rate (MFR) and the melt tension (MT) satisfying Formula (1) using an extruder and at the same time introducing carbon dioxide in the molten resin to foam the molten resin. In the process, temperature control is performed such that the temperature of a site of a cylinder barrel where carbon dioxide is introduced in the extruder is set to 200 to 240ºC and the temperature of the cylinder barrel before foaming starts is set to 175 to 190ºC, and then, the discharge amount of the resin per die opening area is controlled such that the resin pressure in the very vicinity of the die opening is 5 to 20 MPa, and the molten resin is discharged into atmospheric pressure. According to the invention, the process for producing a polypropylene resin foam which has a high expansion ratio, uniformly dispersed foam cells and favorable surface appearance can be provided. Log(MT) > -1.33Log(MFR) + 1.2 (1)

IPC Classes  ?

  • B29C 47/82 - Heating the cylinders
  • B29C 47/00 - Extrusion moulding, i.e. expressing the moulding material through a die or nozzle which imparts the desired form; Apparatus therefor (extrusion blow-moulding B29C 49/04)
  • B29C 47/50 - using at least two screws, one after the other, e.g. multi-stage plasticisers
  • B29C 47/66 - Barrels or cylinders
  • C08J 9/12 - Working-up of macromolecular substances to porous or cellular articles or materialsAfter-treatment thereof using blowing gases generated by a previously added blowing agent by a physical blowing agent
  • B29K 23/00 - Use of polyalkenes as moulding material
  • B29K 105/04 - Condition, form or state of moulded material cellular or porous

55.

PROCESS FOR PRODUCTION OF INORGANIC FIBER MATS

      
Application Number JP2008073517
Publication Number 2009/081960
Status In Force
Filing Date 2008-12-25
Publication Date 2009-07-02
Owner ASAHI FIBER GLASS COMPANY, LIMITED (Japan)
Inventor
  • Shimano, Shozo
  • Mashimo, Takashi
  • Shimeno, Koichi

Abstract

A process for the production of inorganic fiber mats which enables efficient adhesion of an aldehyde-capturing agent to an inorganic fiber mat without scattering the aldehyde-capturing agent around, specifically, a process for the production of inorganic fiber mats which comprises the fiber collection step of applying a binder to an inorganic fiber, piling up the resulting fiber on a conveyor line in a mat-like state to form an inorganic fiber web, the binder-curing step of heat-curing the binder of the web to form an inorganic fiber mat, and the aldehyde-capturing agent application step of applying an aldehyde-capturing agent to the mat, wherein in the aldehyde-capturing agent application step, the aldehyde-capturing agent is sprayed on the face of the mat in the form of droplets having a mean droplet diameter of 1 to 50&mgr;m and the resulting mat is sucked from the back.

IPC Classes  ?

  • D04H 1/4218 - Glass fibres
  • D04H 1/64 - Non-woven fabrics formed wholly or mainly of staple fibres or like relatively short fibres from fleeces or layers composed of fibres without existing or potential cohesive properties by applying, incorporating or activating chemical or thermoplastic bonding agents, e.g. adhesives the bonding agent being applied in wet state, e.g. chemical agents in dispersions or solutions
  • D06M 13/422 - Hydrazides
  • D06M 15/263 - Macromolecular compounds obtained by reactions only involving carbon-to-carbon unsaturated bonds of unsaturated carboxylic acidsSalts or esters thereof

56.

HEAT INSULATING PANEL AND HEAT INSULATING STRUCTURE

      
Application Number JP2008071498
Publication Number 2009/069681
Status In Force
Filing Date 2008-11-27
Publication Date 2009-06-04
Owner ASAHI FIBER GLASS COMPANY, LIMITED (Japan)
Inventor
  • Takei, Sayaka
  • Nunoi, Yoji

Abstract

Provided is a heat insulating panel wherein a board-like vacuum insulating material member is embedded in a board-like resin foam. In a state where two heat insulating panels are abutting to each other at the end portions, the vacuum heat insulating material members inside the heat insulating panels are overlapping each other at the end portions on one side when viewed from the thickness direction of the heat insulating panel. Thus, the heat insulating panel with low cost and excellent heat insulation, handleability and construction characteristics, and the heat insulating structure using such heat insulating panel are provided.

IPC Classes  ?

  • E04B 1/80 - Heat insulating elements slab-shaped
  • F16L 59/06 - Arrangements using an air layer or vacuum

57.

EXTRUDED POLYPROPYLENE RESIN FOAM AND PROCESS FOR PRODUCTION OF THE SAME

      
Application Number JP2008066600
Publication Number 2009/035111
Status In Force
Filing Date 2008-09-12
Publication Date 2009-03-19
Owner ASAHI FIBER GLASS COMPANY, LIMITED (Japan)
Inventor
  • Itatani, Toru
  • Ono, Masaaki

Abstract

The invention provides an extruded polypropylene resin foam which has an expansion ratio of as high as 15 or above and a closed cell content of 70% or above and is excellent in thermal insulation and a process for the production of the foam. An extruded polypropylene resin foam characterized by being produced by extrusion-foaming a polypropylene resin composition containing a linear polypropylene resin exhibiting a melt tension of 5 to 30g at 230°C by the use of a blowing agent containing a hydrocarbon gas as the essential component and by having an expansion ratio of 15 or above and a closed cell content of 70% or above.

IPC Classes  ?

  • C08J 9/14 - Working-up of macromolecular substances to porous or cellular articles or materialsAfter-treatment thereof using blowing gases generated by a previously added blowing agent by a physical blowing agent organic
  • B29C 47/00 - Extrusion moulding, i.e. expressing the moulding material through a die or nozzle which imparts the desired form; Apparatus therefor (extrusion blow-moulding B29C 49/04)
  • B29K 23/00 - Use of polyalkenes as moulding material
  • B29K 105/04 - Condition, form or state of moulded material cellular or porous

58.

FOAM BOARD OF POLYOLEFIN RESIN, AND METHOD FOR PRODUCTION THEREOF

      
Application Number JP2008061754
Publication Number 2009/001934
Status In Force
Filing Date 2008-06-27
Publication Date 2008-12-31
Owner ASAHI FIBER GLASS COMPANY, LIMITED (Japan)
Inventor
  • Itadani, Toru
  • Ono, Masaaki
  • Ozaki, Kengo

Abstract

Disclosed is a foam board of a polyolefin resin, which has an excellent thermal insulation property and an excellent sound absorption property, whose final product can be material-recycled, which is inexpensive, an which can be produced continuously. Also disclosed is a method for producing a foam board, which comprises conducting the extrusion foaming of a mixture of a polyolefin resin composition and a foaming agent by ejecting the mixture under atmosphere through an extruder equipped with a multi-hole-type die at a melt-extrusion temperature of 160 to 250˚C, at an ejection amount (V) of 0.05 to 0.45 kg/hr per one opening in the die, and at a proximal resin pressure of 7 to 20 MPa at the opening of the die, wherein the polyolefin resin composition comprises a linear polypropylene resin having a melt tension of 5 to 30 g at 230˚C, the foaming agent comprises at least carbon dioxide in the supercritical state, and the multi-hole-type die has an opening diameter of 0.1 to 1.0 mm and the number of openings of 50 to 5000.

IPC Classes  ?

  • B29C 47/92 - Measuring, controlling or regulating
  • B29C 47/12 - Extrusion nozzles or dies
  • B29K 23/00 - Use of polyalkenes as moulding material
  • B29K 105/04 - Condition, form or state of moulded material cellular or porous

59.

METHOD FOR PRODUCTION OF UNCROSSLINKED POLYOLEFIN RESIN FOAM

      
Application Number JP2008061855
Publication Number 2009/001959
Status In Force
Filing Date 2008-06-30
Publication Date 2008-12-31
Owner
  • ASAHI FIBER GLASS COMPANY, LIMITED (Japan)
  • SANKYO KASEI CO., LTD. (Japan)
Inventor
  • Ono, Masaaki
  • Sakurai, Tadashi

Abstract

Disclosed is a method for producing a foam which has an expansion ratio of 3 to 10 times, has an uniform and microfine cell structure, and has excellent thermal insulation properties, surface smoothness and recycling efficiency. Specifically disclosed is a method for producing an uncrosslinked polyolefin resin foam, which comprises heat-melting a mixture comprising 100 parts by mass of an polyolefin resin and 3 to 10 parts by mass of a chemical foaming agent substantially in the absence of a crosslinking agent to expand the mixture, wherein the polyolefin resin is mainly composed of a linear polypropylene resin having a melt tension of 5 to 30 g at 230˚C, and the chemical foaming agent comprises an inorganic hydrogen carbonate and an organic carboxylic acid salt.

IPC Classes  ?

  • C08J 9/08 - Working-up of macromolecular substances to porous or cellular articles or materialsAfter-treatment thereof using blowing gases generated by a previously added blowing agent by a chemical blowing agent developing carbon dioxide
  • C08L 23/04 - Homopolymers or copolymers of ethene
  • C08L 23/10 - Homopolymers or copolymers of propene

60.

AGENT FOR REDUCING SMOKE GENERATION UPON THE BURNING OF HALOGEN-CONTAINING ORGANIC RESIN

      
Application Number JP2008055131
Publication Number 2008/117726
Status In Force
Filing Date 2008-03-19
Publication Date 2008-10-02
Owner ASAHI FIBER GLASS COMPANY, LIMITED (Japan)
Inventor
  • Endou, Hideki
  • Shimeno, Koichi

Abstract

Disclosed is an agent for reducing the generation of smoke upon the heating or burning of a halogen-containing organic resin, which does not contain boron and comprises a phosphate glass having a low melting point and excellent water resistance. Also disclosed is a resin-containing composition having excellent moldability, which comprises the agent. Specifically disclosed is an agent for reducing the generation of smoke upon the burning of a halogen-containing organic resin, which has the following composition shown below in terms of the contents of oxides (by mole) and contains a phosphate glass having a glass transition temperature of 400˚C or lower: P2O5: 20-40%, ZnO: 56-65%, SO3: 0.5-12% and Li2O+Na2O+K2O: 3-20%, provided that Li2O: 0-5%, Na2O: 3-15% and K2O: 0-10%.

IPC Classes  ?

  • C08L 101/04 - Compositions of unspecified macromolecular compounds characterised by the presence of specified groups containing halogen atoms
  • C03C 12/00 - Powdered glassBead compositions
  • C08K 3/40 - Glass
  • C09K 21/04 - Inorganic materials containing phosphorus

61.

AQUEOUS BINDER FOR INORGANIC FIBER AND INORGANIC FIBER HEAT-INSULATING SOUND-ABSORBING MATERIAL

      
Application Number JP2007074377
Publication Number 2008/078615
Status In Force
Filing Date 2007-12-19
Publication Date 2008-07-03
Owner ASAHI FIBER GLASS COMPANY, LIMITED (Japan)
Inventor
  • Inoue, Akira
  • Mizuno, Yoshifumi

Abstract

Disclosed is an aqueous binder for inorganic fibers, which enables to improve adhesion between inorganic fibers without deteriorating fluidity of the binder and strength of a cured product or the binder. Also disclosed is an inorganic fiber heat-insulating sound-absorbing material which uses such an aqueous binder for inorganic fibers. Specifically, inorganic fibers are provided with an aqueous binder for inorganic fibers which contains, in terms of solid content, 0.1-10 parts by mass of an aqueous silica sol and/or an aqueous alumina sol per 100 parts by mass of the resin content in an water-soluble thermosetting resin composition, and then heated and cured, thereby producing an inorganic fiber heat-insulating sound-absorbing material.

IPC Classes  ?

  • D06M 11/79 - Treating fibres, threads, yarns, fabrics or fibrous goods made from such materials, with inorganic substances or complexes thereofSuch treatment combined with mechanical treatment, e.g. mercerising with silicon or compounds thereof with silicon dioxide, silicic acids or their salts
  • D06M 11/45 - Oxides or hydroxides of elements of Groups 3 or 13 of the Periodic TableAluminates
  • D06M 15/263 - Macromolecular compounds obtained by reactions only involving carbon-to-carbon unsaturated bonds of unsaturated carboxylic acidsSalts or esters thereof