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    • 1. 发明专利
    • Squeegee
    • SQUEEGEE
    • JP2009285994A
    • 2009-12-10
    • JP2008141329
    • 2008-05-29
    • Fuchigami Micro:KkStar Hard Kkスターハード株式会社株式会社渕上ミクロ
    • TATEISHI MASANORI
    • B41F15/44
    • PROBLEM TO BE SOLVED: To provide a squeegee that enables a printing pattern formed by screen printing to have a proper shape and enables the yield to be improved, and that fully satisfies precision required for electronic components or the like manufactured using screen printing.
      SOLUTION: The squeegee 1 includes a base material 2 and a distal end part 3. The base material 2 is formed of a fibrous carbon material. The base material 2 includes a planar base material body part 2a that is installed in one end side (upper end side in Fig.1) of the squeegee 1, and is attached to the squeegee holder of a screen printing machine and a planar base material continuous part 2b that is installed continuously to the base material body part 2a in the center of the other end side (lower end side in Fig.1) of the squeegee 1. The planar distal end part 3 is formed at both ends with the base material continuous part 2b held in-between. The distal end part 3 is composed of urethane, silicone, vinyl chloride, glass, stainless steel, alloys, etc.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种能够通过丝网印刷形成的印刷图案具有适当形状并且能够提高成品率的刮板,并且完全满足使用丝网印刷制造的电子部件等所需的精度 。 刮板1包括基材2和远端部3.基材2由纤维状碳材料形成。 基材2包括安装在刮板1的一端侧(图1的上端侧)的平面状的基材主体部2a,并且安装在丝网印刷机的刮板保持架和平面基材 连续部分2b连续地安装在刮板1的另一端侧(图1的下端侧)的中心的基体主体部分2a上。平面的远端部分3在两端形成有基部 材料连续部分2b保持在其间。 远端部分3由聚氨酯,硅树脂,氯乙烯,玻璃,不锈钢,合金等组成。版权所有(C)2010,JPO&INPIT
    • 3. 发明专利
    • Vacuum heat insulating material and method of manufacturing the same
    • 真空绝热材料及其制造方法
    • JP2013204658A
    • 2013-10-07
    • JP2012072989
    • 2012-03-28
    • Star Hard Kkスターハード株式会社
    • TATEISHI MASANORI
    • F16L59/06B32B1/06
    • PROBLEM TO BE SOLVED: To provide a vacuum heat insulating material which is excellent in flexibility and heat insulating property, and a method of manufacturing the same.SOLUTION: A kneaded aqueous solution 10 containing a number of ceramic-based or glass-based balloon particles 11 covered with a water-soluble resin and a heat shielding pigment 13 covered with a water-soluble resin 12 is applied onto both surfaces of a core material 2 comprised of deformable platy foamed plastic having flexibility and heat insulating property, and the solution 10 is dried. A heat-shielding heat-insulating coating layer 3 in which the heat shielding pigment 13 and a number of balloon particles 11 are arrayed with the water-soluble resin 12 as a binder is formed on both surfaces of the core material 2. The core material 2 is accommodated in a bag-shaped gas barrier film 4 and sealed under vacuum of 950 mmhg or less.
    • 要解决的问题:提供一种具有优异的柔软性和隔热性的真空隔热材料及其制造方法。解决方案:将含有多个陶瓷基或玻璃基气球颗粒的混炼水溶液10 11,被覆有水溶性树脂12的隔热颜料13涂覆在由具有柔软性和隔热性的可变形板状泡沫塑料构成的芯材2的两面上,溶液10为 干了 在芯材2的两个表面上形成有隔热颜料13和多个球状颗粒11以水溶性树脂12作为粘合剂排列的隔热绝热涂层3。 2容纳在袋状阻气膜4中,并在950mmhg以下的真空下密封。
    • 6. 发明专利
    • Heat shielding and insulating structure
    • 热屏蔽和绝缘结构
    • JP2014024205A
    • 2014-02-06
    • JP2012164342
    • 2012-07-25
    • Star Hard Kkスターハード株式会社
    • TATEISHI MASANORI
    • B32B7/02B32B27/20B60P3/20B62D25/10F02B77/11F16L59/04
    • PROBLEM TO BE SOLVED: To provide a heat shielding and insulating structure which can improve heat damage by shielding heat generated by operation of a power source or external heat, in an operation body, such as a vehicle and equipment, operated by a power source.SOLUTION: In an operation body with a power source, for example, a vehicle 100 with an engine 102, a heat shielding and insulating coating layer 10, in which a large number of heat shielding pigments 13 and balloon particles 11 are arranged using a water-soluble resin 12 as a heat shielding binder, is formed on the outer surface or inner surface of a part receiving heat generated from the engine 102 and/or a part receiving external heat.
    • 要解决的问题:提供一种通过屏蔽由电源的操作产生的热量或外部热量来提高热损伤的热屏蔽和绝缘结构,在由电源操作的诸如车辆和设备的操作体中。 解决方案:在具有动力源的操作体中,例如,具有发动机102的车辆100,隔热绝缘涂层10,其中使用水布置大量隔热颜料13和气囊颗粒11 形成在从发动机102产生的热的部分的外表面或内表面和/或接受外部热量的部分上形成作为隔热粘合剂的可溶性树脂12。
    • 7. 发明专利
    • Spray can with heat shielding/thermal insulating aggregate and coating method of coating liquid
    • 喷涂可与热屏蔽/热绝缘聚合和涂覆涂料方法
    • JP2013067714A
    • 2013-04-18
    • JP2011206847
    • 2011-09-22
    • Star Hard Kkスターハード株式会社Jump Up Corporation:Kk株式会社ジャンプアップ・コーポレーション
    • TATEISHI MASANORI
    • C09D7/12B05B1/12B05B9/04B05B15/06C09D5/00C09D5/02C09D201/00
    • PROBLEM TO BE SOLVED: To provide a spray can with heat shielding/thermal insulating aggregate exhibiting excellent application workability.SOLUTION: The spray can includes a pressure-resistant can body 110, a valve 120 provided on a top portion of the can body 110, an operating member 130 opening and closing the valve 120, an injection nozzle 140 provided on the operating member 130, an outlet tube 150 introducing the coating liquid 10 contained in the can body 10 to a nozzle port 141 of the injection nozzle 140 via the valve 120, and a propellant 160 filled in the top portion of the can body 110, wherein the coating liquid 10 is constituted by a heat shielding/thermal insulating aggregate aqueous solution including numerous ceramic or glass balloon particles 11 coated with aqueous resin 12 and having specific gravity of 1 or lower and numerous balloon particle/heat shielding pigment combinations 16 combining the ceramic or glass balloon particles 11 having specific gravity of 1 or lower and heat shielding pigments 13 having specific gravity higher than 1 using the aqueous resin 12 as a binder.
    • 要解决的问题:提供具有优异的应用可加工性的隔热/隔热聚集体的喷雾罐。 解决方案:喷雾罐可以包括耐压罐体110,设置在罐主体110的顶部上的阀门120,打开和关闭阀门120的操作构件130,设置在操作的喷嘴140 构件130,将容纳在罐体10中的涂布液体10经由阀120引导到喷嘴140的喷嘴口141的出口管150以及填充在罐体110的顶部的推进剂160,其中, 涂布液10由包含多层陶瓷或玻璃球状颗粒11的隔热/绝热聚集体水溶液构成,涂覆有水性树脂12,比重为1或更低,以及许多气泡颗粒/隔热颜料组合16组合陶瓷或 使用水性树脂12作为粘合剂,比重为1以下的玻璃球状颗粒11和比重高于1的隔热颜料13。 版权所有(C)2013,JPO&INPIT
    • 8. 发明专利
    • Heat shield insulation paving material and construction method therefor
    • 热屏蔽绝缘材料及其构造方法
    • JP2013014889A
    • 2013-01-24
    • JP2011146943
    • 2011-07-01
    • Star Hard Kkスターハード株式会社
    • TATEISHI MASANORI
    • E01C7/35E01C11/24
    • PROBLEM TO BE SOLVED: To provide a heat shield insulation paving material excellent in heat shield property and heat insulating property and a construction method for the same.SOLUTION: The surface of a substrate layer 2 constructing a heat shield insulation paving material 1 is coated by a number of ceramic-based or glass-based balloon particles 11 having a specific gravity of less than 1 coated by a water soluble resin heat shield binder 12, and a kneaded aqueous solution 10 containing a number of balloon particle/heat shield pigment conjugates 16 in which the ceramic-based or glass-based balloon particles 11 having a specific gravity of less than 1 is bonded to a heat shield pigment 13 having a specific gravity of more than 1 by using the water soluble resin heat shield binder 12 as binder. Then, the above-described coating materials are dried to form a heat shield insulation film layer 3. The kneaded aqueous solution 10 is obtained by kneading water 14 and the water soluble resin heat shield binder 12 to the ceramic-based or glass-based balloon particles 11 having a specific gravity of less than 1 to acquire a primary kneaded matter 15 and kneading the heat shield pigment 13 having a specific gravity of more than 1 to the acquired kneaded matter 15.
    • 要解决的问题:提供隔热性和隔热性优异的隔热隔热铺路材料及其制造方法。 解决方案:构成隔热绝缘铺路材料1的基材层2的表面被许多陶瓷基或玻璃基气球颗粒11涂覆,其中比重小于1,涂覆有水溶性树脂 隔热粘合剂12和含有多个气球颗粒/隔热颜料共轭体16的捏合水溶液10,其中比重小于1的陶瓷基或玻璃基气球颗粒11与隔热层 通过使用作为粘合剂的水溶性树脂防热粘合剂12,比重大于1的颜料13。 然后,将上述涂料干燥以形成隔热绝热膜层3.捏合的水溶液10通过将水14和水溶性树脂隔热粘合剂12混合到陶瓷基或玻璃基气球 比较重量小于1的颗粒11以获得初级捏合物15,并将比重大于1的隔热颜料13揉合到所获得的捏合物15中。(C)2013,JPO&INPIT
    • 9. 发明专利
    • Foamed plastic composite heat insulation material and production method thereof
    • 泡沫塑料复合材料绝热材料及其生产方法
    • JP2013014037A
    • 2013-01-24
    • JP2011147053
    • 2011-07-01
    • Star Hard Kkスターハード株式会社Tsuruoka Shuji鶴岡 修司Tsuruoka Toyohide鶴岡 豊秀
    • TATEISHI MASANORI
    • B29C44/00B29K105/04B32B5/22E04B1/80
    • PROBLEM TO BE SOLVED: To provide a foamed plastic composite heat insulation material excellent in heat shielding properties, heat insulation properties, durability properties and antibacterial properties.SOLUTION: A number of ceramic base or glass-based balloon particles 11 which are covered with a water-soluble resin 12 and which specific gravity are less than one and a kneading solution 10 including a number of coupling bodies of balloon particles and heat shielding pigments 16 combined with the ceramic base or glass-based balloon particles 11 and the heat shielding pigments 13 using the water-soluble resin 12 as a binder are coated and dried on both sides of a core material 2 which is constituted of a foamed plastic, and a number of coupling bodies of the balloon particles and the heat shielding pigments 16 combined with the balloon particles 11 and the heat shielding pigments 13 using the water-soluble resin 12 as the heat shielding binder on surface layers 3A of both the sides of a core material 2 are arranged and heat insulation coating film layers 3 where a number of the balloon particles 11 are arranged using the water-soluble resin 12 as the binder on inner layers 3B are formed.
    • 要解决的问题:提供隔热性,隔热性,耐久性和抗菌性优异的发泡塑料复合隔热材料。 解决方案:多个陶瓷基体或玻璃基气球颗粒11被水溶性树脂12覆盖,比重小于1,捏合溶液10包括多个气球颗粒的偶联体和 与使用作为粘合剂的水溶性树脂12的陶瓷基体或玻璃基球囊11和遮光颜料13结合的隔热颜料16在由发泡体构成的芯材2的两面上被涂布并干燥 塑料,以及使用水溶性树脂12作为两侧的表面层3A上的热屏蔽粘合剂的球囊颗粒和隔热颜料16的组合的多个耦合体和气囊颗粒11和遮光颜料13 布置有芯材2的绝热涂膜3,其中使用作为粘合剂的水溶性树脂12布置在内层3B上的气球颗粒11的数量为fo rmed 版权所有(C)2013,JPO&INPIT