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    • 28. 发明申请
    • ELECTRODE TERMINAL CONNECTING MEMBER FOR BATTERY MODULE
    • 电极端子电极端子连接器
    • US20110091763A1
    • 2011-04-21
    • US12920644
    • 2009-03-07
    • Youngsun ParkHan Eun KimYonghan LeeJohn E. NamgoongSain ParkMasayuki Wakebe
    • Youngsun ParkHan Eun KimYonghan LeeJohn E. NamgoongSain ParkMasayuki Wakebe
    • H01M2/24
    • H01M10/0413H01M2/1077H01M2/206H01M2/347H01M6/46H01M10/0472
    • Disclosed herein is a conductive electrode terminal connecting member configured to electrically connect plate-shaped secondary battery cells (‘battery cells’) constituting a battery module to each other. The electrode terminal connecting member includes a left-wing connection part to which electrode terminals of left-side battery cells are connected so as to achieve electrical connection in series or in series and in parallel between the battery cells, and a right-wing connection part to which electrode terminals of right-side battery cells are connected so as to achieve electrical connection in series or in series and in parallel between the battery cells. The left-wing connection part is provided with slits through which the electrode terminals of the respective battery cells are inserted, and the right-wing connection part is provided with slits through which the electrode terminals of the respective battery cells are inserted. During electrical connection, the electrode terminals of the respective battery cells are inserted through the slits of the left- and right-wing connection parts, are bent such that the electrode terminals of the respective battery cells come into tight contact with the top of the electrode terminal connecting member, and then the electrode terminals of the respective battery cells are coupled to the electrode terminal connecting member by welding.
    • 这里公开了一种导电电极端子连接构件,其被构造成将构成电池模块的板状二次电池单元(“电池单元”)彼此电连接。 电极端子连接部件包括:左侧电池单元的电极端子与左侧电池单元连接的左侧连接部,以实现电池单元之间串联或串联并联的电连接;右侧连接部 右侧电池单元的电极端子连接到电池单元串联或串联并联的电连接。 左翼连接部分设置有各个电池单元的电极端子插入的狭缝,右翼连接部分设置有插入各个电池单元的电极端子的狭缝。 在电连接期间,各个电池单元的电极端子通过左右连接部分的狭缝插入,弯曲成使得各个电池单元的电极端子与电极的顶部紧密接触 端子连接构件,然后各个电池单元的电极端子通过焊接耦合到电极端子连接构件。
    • 29. 发明申请
    • VACUUM-SEALING-TYPE FLEXIBLE-FILM PRIMARY BATTERY AND METHOD OF MANUFACTURING THE SAME
    • 真空密封型柔性电池一次电池及其制造方法
    • US20110045337A1
    • 2011-02-24
    • US12708807
    • 2010-02-19
    • Young Gi LeeKwang Man KimMin Gyu ChoiSang Hyo LeeJong Dae Kim
    • Young Gi LeeKwang Man KimMin Gyu ChoiSang Hyo LeeJong Dae Kim
    • H01M6/02H01M6/00H01M4/485
    • H01M6/40H01M4/366H01M4/76H01M6/02H01M6/181H01M10/0472
    • Provided are a vacuum-sealing-type flexible-film primary battery and a method of manufacturing the same. The primary battery includes a battery assembly comprising a positive electrode plate including a positive electrode collector having a first conductive carbon layer disposed on a surface-treated inner surface of a first pouch and a positive electrode layer disposed on the first conductive carbon layer of the positive electrode collector, a negative electrode plate including a negative electrode collector having a second conductive carbon layer disposed on a surface-treated inner surface of a second pouch and a negative electrode layer disposed on the second conductive carbon layer of the negative electrode collector, and an adhesion/post-injection polymer electrolyte layer interposed between the positive electrode plate and the negative electrode plate, wherein the battery assembly is completely sealed. The flexible-film primary battery may employ the pouch as a collector film to improve flexibility. Also, the flexible-film primary battery may be completely sealed using the pouch to improve a retention period and cell performance. Furthermore, the flexible-film primary battery may be manufactured using a screen printing technique, thereby facilitating a roll-to-roll sequential process.
    • 提供真空密封型柔性膜一次电池及其制造方法。 一次电池包括电池组件,该电池组件包括正电极板,该正电极板包括具有设置在第一小袋的表面处理内表面上的第一导电碳层的正电极集电体和设置在阳极的第一导电碳层上的正电极层 电极集电体,负极板,具有设置在第二袋的表面处理内表面上的第二导电性碳层的负极集电体和设置在负极集电体的第二导电性碳层上的负极层, 插入正极板和负极板之间的粘合/后注入聚合物电解质层,其中电池组件被完全密封。 柔性膜一次电池可以采用袋作为收集膜来提高柔韧性。 此外,柔性膜一次电池可以使用袋完全密封,以改善保留期和电池性能。 此外,可以使用丝网印刷技术来制造柔性膜一次电池,从而便于卷对卷顺序处理。