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    • 123. 发明公开
    • PROTECTION ELEMENT AND SECONDARY BATTERY DEVICE
    • 瑞典克朗
    • EP2287879A1
    • 2011-02-23
    • EP09750503.6
    • 2009-05-14
    • Sony Chemical & Information Device Corporation
    • KIMURA YujiASADA TakahiroYONEDA YoshihiroSUZUKI Kazuaki
    • H01H37/76H01M10/44
    • H01M2/34H01H37/761H01M10/0525H01M10/4235
    • [Abstract] Provided are a protection element and a secondary battery device employing the protection element which is capable of stably retaining a flux on a soluble conductor at a predetermined position, enabling appropriate blowout of the soluble conductor in the event of an abnormality. This protection element has: a soluble conductor 13 which is disposed on an insulation baseboard 11; is connected to a power supply path of a device targeted to be protected; and the blowout at a predetermined abnormal electric power occurs; a flux 19 coated on a surface of the soluble conductor 13; and an insulation cover member 14 which is mounted on the baseboard 11, for covering the soluble conductor 13. The protection element comprises a protrusive stripe 20 forming a stepped portion 20a for retaining the flux 19 at a predetermined position in contact with the flux 19. The stepped portion 20a is formed in opposite to a center part of the soluble conductor 13 on an interior face of the insulation cover member 14.
    • [摘要]提供一种使用保护元件的保护元件和二次电池装置,该保护元件能够在预定位置的可溶性导体上稳定地保持焊剂,使得在异常情况下能够适当地喷出可溶性导体。 该保护元件具有:设置在绝缘基板11上的可溶性导体13; 连接到被保护的设备的电源路径; 并且发生在预定的异常电力下的井喷; 涂覆在可溶性导体13的表面上的焊剂19; 以及安装在基板11上用于覆盖可溶性导体13的绝缘盖构件14.保护元件包括形成阶梯部分20a的突出条20,用于将焊剂19保持在与焊剂19接触的预定位置。 阶梯部分20a形成在绝缘覆盖件14的内表面上与可溶性导体13的中心部分相对。
    • 124. 发明公开
    • Latent curing agent
    • 拉特特·哈特
    • EP2210909A1
    • 2010-07-28
    • EP10162712.3
    • 2005-08-04
    • Sony Chemical & Information Device Corporation
    • Kamiya, Kazunobu
    • C08G59/40C08G59/70C08L63/00
    • C08G18/706C08G18/8029C08G18/8093C08G59/4028C08G59/70
    • An aluminum chelating agent-based latent curing agent is provided that can rapidly cure thermosetting epoxy resins at relatively low temperatures. A method for producing the aluminum chelating agent-based latent curing agent is also provided that enables relatively facile control of the curing conditions therefor. The latent curing agent holds an aluminum chelating agent in a porous resin obtained by the interfacial polymerization of a polyfunctional isocyanate compound, and when the latent curing agent is incorporated in a curable epoxy resin composition for differential scanning calorimetric (DSC) measurement, the DSC exothermic peak temperature of the curable epoxy resin composition for DSC measurement that contains the latent curing agent that has been treated by immersion in a nonaqueous polar solvent can be brought to not less than the DSC exothermic peak temperature of the curable epoxy resin composition for DSC measurement that incorporates the latent curing agent that has not been subjected to the immersion treatment.
    • 提供了一种基于铝螯合剂的潜在性固化剂,可以在相对低的温度下快速固化热固性环氧树脂。 还提供了一种制备基于铝螯合剂的潜在性固化剂的方法,其能够相对容易地控制其固化条件。 潜在性固化剂在通过多官能异氰酸酯化合物的界面聚合获得的多孔树脂中保持铝螯合剂,并且当将潜在性固化剂引入用于差示扫描量热(DSC)测量的可固化环氧树脂组合物中时,DSC放热 含有通过浸渍在非水极性溶剂中进行处理的潜在性固化剂的DSC测定用固化型环氧树脂组合物的峰值温度可以不低于用于DSC测定的固化性环氧树脂组合物的DSC放热峰温度, 掺入未进行浸渍处理的潜在性固化剂。
    • 126. 发明公开
    • METHOD OF TRANSFERRING ADHESIVE FILM
    • 转移粘合剂膜的方法
    • EP2144283A1
    • 2010-01-13
    • EP09708886.8
    • 2009-02-03
    • Sony Chemical & Information Device Corporation
    • KONISHI, Misao
    • H01L21/60G09F9/00H05K3/32H05K3/36
    • H05K3/323H01L24/27H01L2224/83101H01L2924/07811H01L2924/14H01L2924/15788H05K2203/0195H05K2203/0278H05K2203/0338H05K2203/1105H05K2203/1476Y10T156/1153Y10T156/1911H01L2924/00
    • To provide a method for transferring an adhesive film, which is capable of preventing defects or loss of edge portions of the transferred adhesive layer to the adherend so as to ensure the contact area of the adherend and the adhesive layer, and hence is capable of improving the adhesive strength of the adhesive layer to the adherend, as well as improving a stability of the product quality by preventing contaminants from being mixed in the adhesive layer. The method for transferring an adhesive film of the present invention includes: conveying the adhesive film to an area between the heating part and the adherend; pressurizing the adhesive film with the heating part from the side of the release layer and heating the adhesive layer up to a first heating temperature so as to bring the adhesive layer into contact with the adherend; bringing a high temperature heating part, which is disposed downstream of the heating part with respect to the conveyance direction of the adhesive film, into contact with the adhesive film from the side of the release layer, and heating the adhesive layer up to a second heating temperature so as to cut the adhesive layer; and releasing the release layer from the adhesive layer which is in contact with the adherend, and transferring the adhesive layer which is in contact with the adherend to the adherend.
    • 为了提供一种能够防止所转印的粘合剂层的边缘部分向被粘物的缺陷或损失从而确保被粘物与粘合剂层的接触面积并且因此能够改善粘合剂膜的转印方法 粘合剂层对被粘物的粘合强度,以及通过防止污染物混入粘合剂层来提高产品质量的稳定性。 本发明的转印粘合膜的方法包括:将粘合膜传送到加热部分和被粘物之间的区域; 从释放层一侧用加热部分对粘合剂膜加压,并将粘合剂层加热至第一加热温度,以使粘合剂层与被粘物接触; 使相对于所述粘接膜的输送方向配置在所述加热部的下游侧的高温加热部从所述脱模层侧与所述粘接膜接触,将所述粘接层加热至第二加热 温度以切割粘合剂层; 并从与被粘物接触的粘合剂层释放脱模层,并将与被粘物接触的粘合剂层转印到被粘物上。