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    • 4. 发明专利
    • レーザー光を用いた接合方法及びレーザー接合用中間部材
    • 使用激光束的加工方法和激光加工的中间部件
    • JP2015006803A
    • 2015-01-15
    • JP2014180788
    • 2014-09-05
    • 早川ゴム株式会社Hayakawa Rubber Co Ltd
    • YAMADA KOSAKUMURAKAMI HIROBUMIFUJITA KAZUYA
    • B29C65/16B23K26/18
    • 【課題】レーザー接合用中間部材の第1部材側、及びレーザー接合用中間部材を第2部材側の両方を確実に軟化又は溶融させることにより、第1部材及び第2部材の接合強度を十分に高める。【解決手段】レーザー光透過性を有する第1部材1と、レーザー光吸収性を有する第2部材2との間に、レーザー光吸収性を有するレーザー接合用中間部材30を介在させ、第1部材1及び第2部材2をレーザー接合用中間部材30により接合するレーザー光を用いた接合方法において、レーザー接合用中間部材30の全体のレーザー光吸収率を40%以上60%以下に設定し、第1レーザー光吸収層31のレーザー光吸収率を20%以上に設定し、第2レーザー光吸収層32のレーザー光吸収率を20%以上に設定する。【選択図】図3
    • 要解决的问题:为了充分增强激光接合用中间构件的第一构件侧和激光接合用中间构件的第二构件侧的可靠地软化或熔融,第一构件和第二构件的接合强度。 解决方案:在使用激光束的接合方法中,其中传输激光束的第一构件1和吸收激光束的第二构件2通过用于激光接合吸收激光束的中间构件30接合,通过将用于激光接合的中间构件30 第一构件1和第二构件2,在第一激光束吸收层的激光束吸收比的状态下,将激光接合用中间构件30的整体的激光束吸收率设定为40%以上且60%以下 31被设定为20%以上,第二激光束吸收层32的激光束吸收率为20%以上。
    • 8. 发明专利
    • Joining method using laser beam
    • 使用激光束的接合方法
    • JP2012030559A
    • 2012-02-16
    • JP2010173871
    • 2010-08-02
    • Hayakawa Rubber Co Ltd早川ゴム株式会社
    • YAMADA KOSAKUMURAKAMI HIROBUMIFUJITA KAZUYA
    • B29C65/16B23K26/18B23K26/20B23K26/32
    • B29C65/1635B29C65/1654B29C65/168B29C66/112B29C66/1122B29C66/116B29C66/5221B29C66/65B29C66/71B29C66/73921B29K2023/06B29K2023/12B29K2023/18B29K2027/06B29K2069/00
    • PROBLEM TO BE SOLVED: To secure a sealing property in addition to high joint strength in mutual joining of tubular members through an intermediate member by allowing the joining in a wide joint area without providing a flange or the like, and by suppressing dislocation of the intermediate member prior to the joining.SOLUTION: The method includes a joining preparation step of inserting a resin second tubular member 20 to the inside of a resin first tubular member 10 which transmits a laser beam L and arranging a resin laser beam joining intermediate member 30 which absorbs the laser beam L between the inner periphery of the first tubular member 10 and the outer periphery of the second tubular member 20. After the joining preparation step, a joining step of joining the first and second tubular members 10, 20 to each other through the intermediate member 30 by emitting the laser beam L from the outside of the first tubular member 10 to heat the intermediate member 30 is performed.
    • 要解决的问题:通过允许在宽的接合区域中的接合而不设置凸缘等,并且通过抑制位错来确保管状构件通过中间构件相互连接的高接合强度的密封性 的中间构件。 解决方案:该方法包括:接合准备步骤,将树脂第二管状构件20插入到透射激光束L的树脂第一管状构件10的内部,并布置吸收激光的树脂激光束接合中间构件30 在第一管状构件10的内周和第二管状构件20的外周之间的梁L。接合准备步骤之后,通过中间构件将第一和第二管状构件10,20彼此接合的接合步骤 通过从第一管状构件10的外部发射激光束L以加热中间构件30来执行。 版权所有(C)2012,JPO&INPIT
    • 9. 发明专利
    • Method for producing conductive particle, and conductive particle produced by the same
    • 生产导电颗粒的方法和由其生产的导电颗粒
    • JP2011249233A
    • 2011-12-08
    • JP2010123212
    • 2010-05-28
    • Hayakawa Rubber Co Ltd早川ゴム株式会社
    • YAMADA KOSAKUKAWAGUCHI AKIOGOTO YASUO
    • H01B13/00H01B5/00
    • PROBLEM TO BE SOLVED: To provide an excellent conductive particle which holds an excellent compression characteristic belonging to a substrate polymer particle, has no deterioration in conductivity without any deterioration in the adhesion of a plated film even after being affected by compressive deformation, and has little load to environment and a human body, and a method for producing the conductive particle.SOLUTION: The method for producing the conductive particle includes: a primary dope step of doping iodine to a substrate polymer particle and adjusting a polymer/iodine compound; a secondary dope step of making metal species react on the polymer/iodine compound to adjust a metal iodide composite; a reduction step of reducing the metal iodide composite to a metal particle and scattering metal particles to be a core of a plating film on a substrate polymer surface; and an electroless deposition step of making the plating film grow with metals scattered on the substrate polymer particle surface obtained in the reduction step as a core.
    • 要解决的问题为了提供一种优良的导电性颗粒,其具有属于基材聚合物颗粒的优异的压缩特性,即使在受到压缩变形的影响之后,电导率的粘合性也不会降低, 并且对环境和人体几乎没有负担,以及导电粒子的制造方法。 解决方案:导电颗粒的制造方法包括:向基材聚合物颗粒掺杂碘并调节聚合物/碘化合物的初级掺杂步骤; 使金属物质在聚合物/碘化合物上反应以调节金属碘化物复合物的次要掺杂步骤; 还原步骤是将金属碘化物复合物还原成金属颗粒,并将金属颗粒作为基板聚合物表面上的镀膜的核心散射; 以及使在所述还原工序中得到的所述基板聚合物粒子表面上散布的金属为核心的所述镀膜生长的化学沉积步骤。 版权所有(C)2012,JPO&INPIT
    • 10. 发明专利
    • Joining method using laser beam
    • 使用激光束的接合方法
    • JP2011240497A
    • 2011-12-01
    • JP2010111679
    • 2010-05-14
    • Hayakawa Rubber Co Ltd早川ゴム株式会社
    • YAMADA KOSAKUMURAKAMI HIROBUMIFUJITA KAZUYA
    • B29C65/16B23K26/32B29K21/00
    • B29C65/168B29C65/1616B29C65/1635B29C65/1654B29C65/1674B29C65/4815B29C65/5057B29C66/343B29C66/54B29C66/71B29C66/712B29C66/8322B29K2033/12B29K2023/12
    • PROBLEM TO BE SOLVED: To join members made of materials which can not easily be welded to each other together to have sufficient joining strength by a joining method using a laser beam.SOLUTION: An intermediate material 5 made of a polymer alloy is arranged between a first member 2 and a second member 3. The polymer alloy contains a first resin having fusibility with a resin constituting the first member 2 and a second resin having fusibility with a resin constituting the second member 3. The difference between the solubility parameter of the resin constituting the first member 2 and the solubility parameter of the first resin is set to be 1.0 or below, and the difference between the solubility parameter of the resin constituting the second member 3 and the solubility parameter of the second resin is set to be 1.0 or below. The difference in solubility parameter of the first and second resins of the polymer alloy is made smaller than the difference in solubility parameter of the resin constituting the first member 2 and the resin constituting the second member 3. The intermediate material 5 is heated by being irradiated with the laser beam, the first resin in the polymer alloy and the first member 2 are fused together, and the second resin in the polymer alloy and the second member 3 are fused together.
    • 要解决的问题:通过使用激光束的接合方法将不能容易地彼此焊接在一起的材料制成具有足够的接合强度的构件。 解决方案:由聚合物合金制成的中间材料5布置在第一构件2和第二构件3之间。聚合物合金包含与构成第一构件2的树脂具有可熔性的第一树脂和具有可熔性的第二树脂 树脂构成第二构件3.构成第一构件2的树脂的溶解度参数与第一树脂的溶解度参数之间的差设定为1.0以下,构成树脂的溶解度参数之差 第二构件3和第二树脂的溶解度参数设定为1.0以下。 使聚合物合金的第一和第二树脂的溶解度参数的差异小于构成第一构件2的树脂和构成第二构件3的树脂的溶解度参数的差异。中间材料5通过照射被加热 利用激光束,聚合物合金中的第一树脂和第一构件2熔合在一起,并且聚合物合金中的第二树脂和第二构件3熔合在一起。 版权所有(C)2012,JPO&INPIT