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Résultats pour
brevets
1.
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OIL-IN-WATER LIQUID CRYSTAL EMULSION MIST BASE COMPOSITION
| Numéro d'application |
KR2023005425 |
| Numéro de publication |
2023/204652 |
| Statut |
Délivré - en vigueur |
| Date de dépôt |
2023-04-21 |
| Date de publication |
2023-10-26 |
| Propriétaire |
SPS CO.,LTD (République de Corée)
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| Inventeur(s) |
- Lee, Seoung Mook
- Lee, Jewoo
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Abrégé
The present invention relates to an oil-in-water liquid crystal emulsion mist base composition. If the mist base composition of the present invention is used, even if the viscosity thereof is at a level preventing spraying because of the addition of a plurality of functional ingredients, the viscosity of the mist composition is lowered by simply shaking of the hand just before use, thereby enabling spraying.
Classes IPC ?
- A61K 8/06 - Émulsions
- A61K 8/55 - Cosmétiques ou préparations similaires pour la toilette caractérisés par la composition contenant des composés organiques contenant du phosphore
- A61K 8/37 - Esters d'acides carboxyliques
- A61K 8/34 - Alcools
- A61K 8/86 - Polyéthers
- A61K 8/64 - ProtéinesPeptidesLeurs dérivés ou produits de dégradation
- A61K 8/9789 - Magnoliopsida [dicotylédones]
- A61K 8/9794 - Liliopsida [monocotylédones]
- A61K 8/65 - CollagèneGélatineKératineLeurs dérivés ou produits de dégradation
- A61K 8/67 - Vitamines
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2.
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CAPSULE-TYPE HEATER DEVICE
| Numéro d'application |
KR2015010138 |
| Numéro de publication |
2016/052937 |
| Statut |
Délivré - en vigueur |
| Date de dépôt |
2015-09-24 |
| Date de publication |
2016-04-07 |
| Propriétaire |
SPS CO., LTD (République de Corée)
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| Inventeur(s) |
Cho, Won Suk
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Abrégé
A capsule-type heater device is disclosed. The capsule-type heater device of the present invention comprises: a first case having a first heat exchange space formed by allowing a first body to be formed to be hollow such that a thermal medium including air passes therethrough, and having a first coupling part arranged in the center of the inside of the first body, wherein the first coupling part is integrated with an inner circumferential surface of the first body by a plurality of first connection parts, and first heater mounting grooves are respectively formed in the first connection parts; a second case having a second heat exchange space by allowing a second body to be formed to be hollow such that a thermal medium including air passes therethrough, and having a second coupling part arranged in the center of the inside of the second body, wherein the second coupling part is integrated with an inner circumferential surface of the second body by a plurality of second connection parts, and second heater mounting grooves are respectively formed in the second connection parts such that the second case has a structure symmetrical with the first case; and a heater having a heating part molded in the same shape as the shape of the first and second cases so as to be mounted in the first and second heater mounting grooves, and power connection ends arranged on both end portions of the heating part, and the first and second cases are coupled such that the first and second heater mounting grooves face each other in a state in which the heating part is mounted in the first and second heater mounting grooves so as to allow the heater to be provided inside the first and second cases, wherein the thermal medium including air comes in contact with the heater and the cases heated by the heater while passing through the first and second heat exchange spaces in a state in which the heater is embedded between the first and second cases, thereby enabling heat exchange. According to the present invention, a heating means is made from silicon carbide such that the durability thereof can be improved compared with a heating means made from metals, and a heating means is arranged inside a pair of ceramic cases so as to improve heat exchange efficiency of a thermal medium including air, which passes through the ceramic cases, thereby maximizing energy efficiency.
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3.
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APPARATUS FOR TREATING SURFACES OF FINE PARTICLES
| Numéro d'application |
KR2011005875 |
| Numéro de publication |
2013/022134 |
| Statut |
Délivré - en vigueur |
| Date de dépôt |
2011-08-11 |
| Date de publication |
2013-02-14 |
| Propriétaire |
SPS CO., LTD. (République de Corée)
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| Inventeur(s) |
- Kang, Jung Goo
- Kim, Jeong Hoon
- Kang, San Woong
- Yun, Chong Hyo
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Abrégé
The present invention relates to an apparatus for treating the surfaces of fine particles, which comprises: a surface treatment tube in which fine particles introduced by plasma generated therein are surface-treated, the surface treatment tube being inclinedly arranged with respect to the ground; an inclination adjustment part for adjusting the inclination of the surface treatment tube to change the angle of inclination of the surface treatment tube with respect to the ground; a fine particle supply part for supplying fine particles into the surface treatment tube; and a control part receiving inputted information on the fine particles and then transmitting, to the inclination adjustment part, an angle of inclination signal for the surface treatment tube, wherein the signal is set to correspond to the information on the fine particles.
Classes IPC ?
- C09C 3/04 - Traitement physique, p. ex. broyage, traitement par des vibrations ultrasoniques
- B82B 3/00 - Fabrication ou traitement des nanostructures par manipulation d’atomes ou de molécules, ou d’ensembles limités d’atomes ou de molécules un à un comme des unités individuelles
- H05H 1/46 - Production du plasma utilisant des champs électromagnétiques appliqués, p. ex. de l'énergie à haute fréquence ou sous forme de micro-ondes
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4.
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PLASMA GENERATION DEVICE USING ELECTROMAGNETIC WAVES AND WAVE GUIDE THEREOF
| Numéro d'application |
KR2010000615 |
| Numéro de publication |
2011/093545 |
| Statut |
Délivré - en vigueur |
| Date de dépôt |
2010-02-02 |
| Date de publication |
2011-08-04 |
| Propriétaire |
SPS CO., LTD. (République de Corée)
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| Inventeur(s) |
Jung, Tai Hwan
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Abrégé
The present invention relates to a plasma generation device using electromagnetic waves and a wave guide, and more specially, to a plasma generation device using electromagnetic waves, an atmospheric pressure plasma generation device in which high-density stable plasma can be generated regardless of a diameter of a dielectric tube by providing the dielectric tube which generates plasma in a taper part of the wave guide or in a first wave guide equipped in a higher position. According to the present invention, the atmospheric pressure plasma generation device using the electromagnetic waves comprises: the wave guide in which magnetron for oscillating the electromagnetic waves is provided; and the dielectric tube which is provided in the wave guide, and generates the plasma, wherein: the wave guide includes the first wave guide which has a first height, and the taper part which is equipped on an end of a body and is reduced as much as predetermined angles; and the dielectric tube is positioned in the taper part of the waveguide, in the first wave guide, or on the border between the taper part and the first wave guide. Since the volume and the height of the wave guide equipped with the dielectric tube from which the plasma is generated are large, the total strength of an electric field within the dielectric tube becomes strong. Further, it is possible to obtain larger plasma with high capacity and high density irrespective of the diameter of the dielectric tube.
Classes IPC ?
- H05H 1/24 - Production du plasma
- H05H 1/46 - Production du plasma utilisant des champs électromagnétiques appliqués, p. ex. de l'énergie à haute fréquence ou sous forme de micro-ondes
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5.
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PIN JIGGER FOR SUPPORTING A CURVED STRUCTURE
| Numéro d'application |
KR2008000388 |
| Numéro de publication |
2008/091091 |
| Statut |
Délivré - en vigueur |
| Date de dépôt |
2008-01-22 |
| Date de publication |
2008-07-31 |
| Propriétaire |
SPS CO., LTD (République de Corée)
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| Inventeur(s) |
Eo, Ik Sung
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Abrégé
A pin jig for supporting a curved structure is disclosed. A height adjusting device of the pin jig includes a base plate. A pair of support pins is supported at lower ends thereof to respective sides of the upper surface of the base plate. A screw shaft is rotatably supported at a lower end thereof to the center of the upper surface of the base plate, with a spiral groove formed in the cir¬ cumferential surface of the screw shaft. A moving plate moves vertically while being supported by the support pins, with a moving protrusion protruding from the inner circumferential surface of the moving plate and being fitted into the spiral groove, thus rotating the screw shaft. A restoring unit having a restoring member is mounted on upper ends of the support pins, and the restoring member is compressed or restored by rotation of the screw shaft.
Classes IPC ?
- B63C 5/02 - AppontementsÉchafaudagesAccores ou étançons
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