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    • 1. 发明申请
    • BATTERY MODULE
    • 电池模块
    • US20110244296A1
    • 2011-10-06
    • US13074662
    • 2011-03-29
    • Hiroyuki OkudaYoshito KagaAtsuhiro Funahashi
    • Hiroyuki OkudaYoshito KagaAtsuhiro Funahashi
    • H01M10/50
    • H01M10/617H01M10/052H01M10/625H01M10/647H01M10/6551H01M10/6553
    • A battery module (10) has heat absorbers (41) each disposed in an internal space of each of connection portions of the positive and negative electrode terminals (11, 12) so as to be in contact with the connection portion, and wherein at least one of the heat absorbers (41) located closer to a central portion of a multi-cell assembly with respect to the cell stacking direction has a greater volume than at least one of the heat absorbers (41) located closer to a periphery of the multi-cell assembly, and a radiation sheet (42) disposed on a side face of the multi-cell assembly (1P), wherein the radiation sheet (42) covers a current collector-side edge in a side face of the multi-cell assembly (1P) substantially entirely from one end to another end, and the radiation sheet (42) has a tapered shape such as to gradually converge from the current collector-side edge to the opposite side edge toward a central portion of the multi-cell assembly (1P) with respect to a cell stacking direction.
    • 电池模块(10)具有散热器(41),每个都设置在正极和负极端子(11,12)的每个连接部分的内部空间中,以便与连接部分接触,并且其中至少 相对于电池堆叠方向更靠近多电池组件的中心部分的吸热体(41)中的一个具有比位于多个电池组件的周边更靠近的多个吸热体(41)中的至少一个的体积 - 电池组件和设置在多电池组件(1P)的侧面上的辐射片(42),其中辐射片(42)覆盖多电池组件的侧面中的集电器侧边缘 (1P)基本上从一端到另一端,并且所述辐射片(42)具有渐缩形状,以便从所述集电器侧边缘朝向所述多电池组件的中心部分的相对侧边缘逐渐会聚 (1P)相对于电池堆叠方向。
    • 8. 发明申请
    • Method for manufacturing battery module
    • 电池模块制造方法
    • US20110023290A1
    • 2011-02-03
    • US12923843
    • 2010-10-08
    • Yoshitaka ShinyashikiMasayuki FujiwaraHitoshi MaedaAtsuhiro Funahashi
    • Yoshitaka ShinyashikiMasayuki FujiwaraHitoshi MaedaAtsuhiro Funahashi
    • H01M10/00
    • H01M6/46H01M2/0217H01M2/1061H01M2/1077H01M10/0525Y10T29/49108
    • A battery module has a plurality of prismatic batteries (2) stacked in a thickness direction. Two plates (3, 4) are provided between each of the batteries (2), and each of the batteries (2) is compressed by shifting the two plates (3, 4) in directions away from each other. A pair of frame members (10, 20) having opposing surfaces (11, 21) extending along the stacking direction of the batteries (2) are disposed face to face so as to sandwich the batteries (2) in a direction perpendicular to the stacking direction of the batteries. Wedge-shaped spacers (12, 22) inserted between the two plates (3, 4) are provided respectively on the opposing surfaces. By narrowing the gap between the pair of frame members (10, 20), the spacers (12, 22) are allowed to advance inwardly between the two plates (3, 4) so that the two plates are shifted in directions away from each other, whereby the batteries are compressed.
    • 电池模块具有沿厚度方向堆叠的多个棱柱形电池(2)。 在每个电池(2)之间设置两个板(3,4),并且通过使两个板(3,4)彼此远离地移动来压缩每个电池(2)。 具有沿着电池(2)的堆叠方向延伸的相对表面(11,21)的一对框架构件(10,20)面对面设置,以便将电池(2)沿垂直于堆叠 电池方向。 插入在两个板(3,4)之间的楔形间隔件(12,22)分别设置在相对的表面上。 通过缩小一对框架构件(10,20)之间的间隙,允许间隔件(12,22)在两个板(3,4)之间向内前进,使得两个板在彼此远离的方向上移动 ,由此电池被压缩。