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    • 11. 发明专利
    • Filtering method of sealing agent for liquid crystal display element and method for manufacturing the same
    • 用于液晶显示元件的密封剂的过滤方法及其制造方法
    • JP2011048177A
    • 2011-03-10
    • JP2009196962
    • 2009-08-27
    • Kyoritsu Kagaku Sangyo KkRoki Techno Co Ltd協立化学産業株式会社株式会社ロキテクノ
    • SHIRAHAMA YOSHIHARUITO KAZUHIKO
    • G02F1/1339
    • PROBLEM TO BE SOLVED: To provide a filtering method of a sealing agent for a liquid crystal display element by which a filtering step for removing a particle, an aggregate or un-intended foreign matter having a size causing fluctuation of distance between substrates can be attained at pressure lower than conventional one and to provide a method for manufacturing the sealing agent for the liquid crystal display element including the filtering method.
      SOLUTION: In the filtering method of the sealing agent for the liquid crystal display element having viscosity of 3.0×10
      4 to 5.0×10
      5 mPa s at a normal temperature using a filter, the filter has a filter layer having a pleat structure wherein filter accuracy of a downstream side is made finer than that of an upstream side and has, as the whole filter, such a flow characteristic that 0.2 to 0.6 MPa differential pressure is generated when a fluid having viscosity of 350,000 mPa s flows at 0.2 mm/min flow rate.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 解决问题的方法:提供一种用于液晶显示元件的密封剂的过滤方法,通过该过滤方法除去颗粒的过滤步骤,具有导致基板之间的距离波动的尺寸的聚集体或未预期的异物 可以在低于常规压力的压力下获得,并且提供一种制造包括该过滤方法的液晶显示元件用密封剂的方法。 解决方案:在正常情况下,粘度为3.0×10 4 至5.0×10 5 mPa s的液晶显示元件用密封剂的过滤方法 使用过滤器的过滤器具有具有褶裥结构的过滤层,其下游侧的过滤精度比上游侧的精度更高,并且作为整个过滤器具有这样的流动特性,即0.2至0.6MPa的压差 当具有350,000mPa·s粘度的流体以0.2mm / min流速流动时产生。 版权所有(C)2011,JPO&INPIT
    • 12. 发明专利
    • Method of manufacturing divided object or thin piece of plate-like member by utilizing stress of adhesive resin
    • 通过利用粘合树脂的应力制造板状物的分离对象或薄层的方法
    • JP2010149193A
    • 2010-07-08
    • JP2008304450
    • 2008-11-28
    • Kyoritsu Kagaku Sangyo Kk協立化学産業株式会社
    • KAMIMURA TAICHI
    • B26F3/00B26F3/08B28D5/00H01L21/301
    • PROBLEM TO BE SOLVED: To provide a method of dividing or thinning a generally plate-like member to any size by utilizing the curing stress and/or the thermal expansion/contraction stress of an adhesive agent without requiring complicated steps.
      SOLUTION: This method is to divide or thin the generally plate-like member to any size by applying the curing stress and/or the thermal expansion/contraction stress of the adhesive agent to the generally plate-like member. A film having a modulus of elasticity nearer that of the cured adhesive agent than the generally plate-like member is cured and bonded to the generally plate-like member. The film is stretched to reduce the adhesion of the generally plate-like member to the adhesive agent layer. Hence, the generally plate-like member can be separated easily from the adhesive agent after the curing.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种通过利用粘合剂的固化应力和/或热膨胀/收缩应力而不需要复杂的步骤来将普通板状构件分割或变薄的任何尺寸的方法。 解决方案:该方法是通过将粘合剂的固化应力和/或热膨胀/收缩应力施加到大致板状构件上来将大致板状构件分割或者薄化成任何尺寸。 与普通板状构件相比,具有比固化粘合剂更接近的弹性模量的膜固化并结合到大致板状构件。 该膜被拉伸以降低大致板状构件对粘合剂层的粘合力。 因此,在固化后,通常板状构件可以容易地与粘合剂分离。 版权所有(C)2010,JPO&INPIT
    • 15. 发明专利
    • Manufacturing method of laminated structure, and adhesive used therefor
    • 层压结构的制造方法及其使用的粘合剂
    • JP2009024055A
    • 2009-02-05
    • JP2007186811
    • 2007-07-18
    • Kyoritsu Kagaku Sangyo Kk協立化学産業株式会社
    • KOJIMA KAZUYUKIKINO YUJI
    • C09J5/00C09J4/00C09J11/00
    • PROBLEM TO BE SOLVED: To provide a manufacturing method of a laminated structure that comprises performing molding and adhesion by a two-step curing using a one-pack adhesive and can control the cured thickness of the adhesive, and a curable resin adhesive usable for the method. SOLUTION: The manufacturing method of a laminated structure comprising a first transparent substrate and a second transparent substrate glued by a curable resin adhesive comprises (1) a step of applying a curable resin adhesive comprising (a) a photocurable resin, (b) a photopolymerization initiator and (c) a substance capable of absorbing and/or reflecting and/or shielding light within the absorption wavelength region of the photopolymerization initiator on one surface of the first transparent substrate, (2) a step of partially photocuring the applied curable resin adhesive by irradiating it with light through the first transparent substrate, (3) a step for bringing the second transparent substrate into contact with the partially cured curable resin adhesive, and (4) a step for photocuring the partially cured curable resin adhesive by irradiating it with light through the first and/or the second transparent substrate thereby gluing the first transparent substrate to the second transparent substrate. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种层压结构体的制造方法,其包括通过使用单组分胶粘剂的两步固化进行成型和粘合,并且可以控制粘合剂的固化厚度,以及可固化树脂粘合剂 可用于该方法。 解决方案:包括第一透明基板和由可固化树脂粘合剂胶合的第二透明基板的层压结构体的制造方法包括:(1)施加可固化树脂粘合剂的步骤,所述固化树脂粘合剂包含(a)可光固化树脂,(b )光聚合引发剂和(c)能够吸收和/或反射和/或遮蔽光聚合引发剂在第一透明基材的一个表面上的吸收波长区域内的光的物质,(2)部分光固化所施加的 (3)使第二透明基板与部分固化的固化性树脂粘合剂接触的工序,以及(4)通过使固化性树脂粘合剂的部分固化固化的粘合剂的光固化步骤 用光照射第一和/或第二透明基板,从而将第一透明基板粘贴到第二透明基板上 表面底物。 版权所有(C)2009,JPO&INPIT
    • 17. 发明专利
    • Aligning method using magnetic field and/or electric field and manufacturing method of aligned material using this aligning method
    • 使用磁场和/或电场的对准方法和使用该对准方法的对准材料的制造方法
    • JP2008070772A
    • 2008-03-27
    • JP2006251113
    • 2006-09-15
    • Kyoritsu Kagaku Sangyo KkTokyo Metropolitan Univ公立大学法人首都大学東京協立化学産業株式会社
    • KAMIMURA TAICHISUGITANI MASAOTSUBOUCHI MIKIHIKOKIMURA TSUNEHISAKIMURA TAKUMASAOKAMOTO SHINPEI
    • G02B5/30G02F1/1337
    • PROBLEM TO BE SOLVED: To provide a method for aligning a member having no anisotropy in a desired direction by using a method which is simple and can be applied to extensive combination and to manufacture an aligned material having a desired function by using this technique. SOLUTION: The member which is not in a range where magnetic interaction substantially produces in relation to size and magnetic susceptibility anisotropy and/or which is not in a range where electric interaction substantially produces in relation to size and dielectric constant anisotropy, is called "a member having no anisotropy" in the following. The member which is in a range where magnetic interaction substantially produces in relation to size and magnetic susceptibility anisotropy and/or which is in a range where electric interaction substantially produces in relation to size and dielectric constant anisotropy, is called "a member having anisotropy" in the following. The method for aligning the member having no anisotropy by which a composite member formed by sticking the member having no anisotropy and the member having anisotropy and aligning is aligned by using at least one among a magnetic field and an electric field is provided. Further a manufacturing method of the aligned material using this aligning method is provided. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种通过使用简单且可广泛组合应用的方法来使所需方向上不具有各向异性的构件对准的方法,并且通过使用该方法制造具有所需功能的对准材料 技术。 解决方案:不在相对于尺寸和磁化率各向异性的磁相互作用基本产生的范围内和/或不在相对于尺寸和介电常数各向异性产生电相互作用的范围内的构件是 在下文中称为“不具有各向异性的成员”。 磁性相互作用基本上与尺寸和磁化率各向异性相关的范围内和/或相对于尺寸和介电常数各向异性基本上产生电相互作用的范围内的部件被称为“具有各向异性的部件” 在下面的。 提供了通过使用磁场和电场中的至少一种来对准不具有各向异性的构件的方法,通过该构件对通过粘附不具有各向异性的构件形成的复合构件和具有各向异性和取向的构件进行对准。 此外,提供了使用该对准方法的对准材料的制造方法。 版权所有(C)2008,JPO&INPIT