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    • 4. 发明申请
    • PROCESS FOR PRODUCING ORGANIC ELECTROLUMINESCENT PANEL
    • 生产有机电致发光面板的方法
    • US20110124136A1
    • 2011-05-26
    • US13003269
    • 2009-06-30
    • Takamasa HirayamaAkihisa MurataYukio ArimitsuTakashi YamaokaMasaaki Sato
    • Takamasa HirayamaAkihisa MurataYukio ArimitsuTakashi YamaokaMasaaki Sato
    • H01L33/00
    • H01L51/50C08K7/22C09J5/06C09J7/38C09J2201/128C09J2205/102C09J2205/11C09J2205/302H01L51/001H01L51/0096H01L2227/326Y10T156/1163Y10T156/1195
    • Provided is a process for producing an organic EL panel by using an ultrathin glass plate, in which the ultrathin glass plate is not “fractured” or “cut” in the production process, the organic EL element is formed reliably when formed by vacuum deposition, and recovered without damage after the production process, and there is no need for installing an additional step of cleaning the rear face of the ultrathin glass plate. The process for producing an organic EL panel according to the present invention is a process for producing an organic electroluminescent panel by forming an organic electroluminescent element on an ultrathin glass plate by vacuum deposition method, comprising forming electrodes on the ultrathin glass plate, by temporarily fixing the ultrathin glass plate to a supporting plate via a double-sided adhesive tape having a thermal release adhesive layer formed at least on one face of the base material layer, containing heat-expandable microspheres that start expansion and/or foaming at temperature higher than the vacuum deposition temperature.
    • 本发明提供一种通过使用超薄玻璃板在生产过程中不“断裂”或“切割”的超薄玻璃板制造有机EL面板的方法,当通过真空沉积形成时可靠地形成有机EL元件, 并且在生产过程之后没有损坏地恢复,并且不需要安装清洁超薄玻璃板的后表面的附加步骤。 根据本发明的有机EL面板的制造方法是通过真空蒸镀法在超薄玻璃板上形成有机电致发光元件来制造有机电致发光面板的方法,其特征在于,在所述超薄玻璃板上,通过临时固定 超薄玻璃板通过双面胶带连接到支撑板上,该双面胶带具有形成在基材层的至少一个表面上的热分解粘合剂层,该热剥离粘合剂层含有在高于所述基材层的温度下开始膨胀和/或发泡的热膨胀性微球 真空沉积温度。
    • 6. 发明申请
    • HEAT-PEELABLE DOUBLE-SIDED PRESSURE-SENSITIVE ADHESIVE SHEET
    • 耐高温双面压敏粘合片
    • US20100119757A1
    • 2010-05-13
    • US12450917
    • 2008-04-15
    • Daisuke ShimokawaYukio Arimitsu
    • Daisuke ShimokawaYukio Arimitsu
    • B32B7/06C09J7/00B32B7/04
    • H01G4/308C08K3/346C09J7/38C09J11/04C09J2201/134C09J2205/102C09J2205/11H01G4/30Y10T156/1052Y10T428/1405
    • Provided is a heat-peelable double-sided pressure-sensitive adhesive sheet that is advantageously usable in the step of cutting a multilayer ceramic sheet performed in a high-temperature atmosphere. Also provided is a process for the cutting of a multilayer ceramic sheet using the above-mentioned sheet.The heat-peelable double-sided pressure-sensitive adhesive sheet includes a substrate; arranged on one side thereof, a heat-expandable pressure-sensitive adhesive layer containing heat-expandable microspheres; and arranged on the other side, a temporary-fixing pressure-sensitive adhesive layer containing a lipophilic layered clay mineral. The lipophilic layered clay mineral is preferably a layered silicate. The lipophilic layered clay mineral may be present in an amount of 0.1 to 45 parts by weight per 100 parts by weight of a base polymer of a pressure-sensitive adhesive constituting the temporary-fixing pressure-sensitive adhesive layer.
    • 提供一种可热切剥离的双面粘合片,其有利地用于在高温气氛中进行的多层陶瓷片的切割工序。 还提供了使用上述片材切割多层陶瓷片的方法。 可热剥离的双面粘合片包括基材; 设置在其一侧,包含热膨胀性微球的热膨胀性压敏粘合剂层; 并且在另一侧上布置有包含亲油层状粘土矿物的临时固定压敏粘合剂层。 亲油性层状粘土矿物优选为层状硅酸盐。 亲水性层状粘土矿物质可以以每100重量份构成临时定影压敏粘合剂层的压敏粘合剂的基础聚合物计为0.1至45重量份的量存在。