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    • 1. 发明公开
    • Integrated sealed secondary battery
    • 集成密封二次电池
    • EP1033772A2
    • 2000-09-06
    • EP00301601.1
    • 2000-02-29
    • MATSUSHITA ELECTRIC INDUSTRIAL CO., LTD.Toyota Jidosha Kabushiki Kaisha
    • Takaki, MitsuguFukuda, ShinsukeYuasa, ShinichiHamada, Shinji
    • H01M10/50
    • H01M10/613H01M10/625H01M10/647H01M10/651H01M10/652H01M10/6556H01M10/6557H01M10/6567
    • In an integrated sealed secondary battery (1) in which a plurality of cells (2) are arranged in a row, cooling medium passages (21) are formed on both sides of the row of the cells (2), and cooling medium passages (18) are formed between adjacent cells such as to effect communication between the cooling medium passages (21,21) on both sides. The cross-sectional areas of the cooling medium passages (21,21) on both sides are made different so as to generate pressure difference at both ends of the cooling medium passages (18) between the cases. The cooling medium passages (21) on both sides are formed in a meandering manner by the provision of projection strips that extend alternately downwards from the top wall and upwards from the bottom wall of the cooling medium passages (21).
      Air escape apertures (43) are formed between the top wall (42) of the cooling medium passages (21) and top ends (41a) of the projection strips (41) that extend downwards from the top wall of the cooling medium passages.
    • 在多个单电池(2)排列成一列的一体型密闭型二次电池(1)中,在一列单电池(2)的两侧形成有冷却介质通路(21),冷却介质通路 18)形成在相邻的单元之间,以便实现两侧的冷却介质通道(21,21)之间的连通。 两侧的冷却介质通路(21,21)的横截面积不同,以便在壳体之间的冷却介质通路(18)的两端产生压力差。 两侧的冷却介质通道(21)通过设置从顶壁向下交替延伸并从冷却介质通道(21)的底壁向上延伸的突出条形成蜿蜒形状。 在冷却介质通道(21)的顶壁(42)和从冷却介质通道的顶壁向下延伸的凸条(41)的顶端(41a)之间形成排气孔(43)。