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    • 1. 发明授权
    • Hermetically sealed battery
    • 密封电池
    • US07335439B2
    • 2008-02-26
    • US10792908
    • 2004-03-05
    • Katsuya KawanoMotoo TadokoroFumiyoshi Yoshinari
    • Katsuya KawanoMotoo TadokoroFumiyoshi Yoshinari
    • H01M2/12H01M10/50H01M2/08
    • H01M2/1282H01M2/1229H01M2/34H01M2/348H01M10/4235H01M2200/00H01M2200/106
    • A hermetically sealed battery is provided, equipped with a opening sealing unit 10 including a Positive Temperature Coefficient (PTC) element without reducing the volume of the outside can, and capable of preventing the generation of a large current in case a short circuit occurs as well as enhancing operational security. The opening sealing unit 10 according to the invention comprises a bottom plate 11 for closing the opening of the outside can 18, a positive electrode cap 12 forming a space for storing a pressure valve, said positive electrode cap being used as a terminal for the positive electrode, a resilient valve 14 having a steel plate 14a on the upper surface, a spring 15 and a PTC element ring 16 disposed on the flange 12a in the positive electrode cap 12. An insulation gasket 17 is mounted onto the periphery of the opening sealing unit 10 to hermetically close the opening of the outside can 18.
    • 提供了一种气密密封的电池,其配备有包括正温度系数(PTC)元件的开口密封单元10,而不会减小外罐的体积,并且能够在发生短路的情况下防止产生大电流 加强运营安全。 根据本发明的开口密封单元10包括用于封闭外罐18的开口的底板11,形成用于存储压力阀的空间的正电极盖12,所述正极帽用作阳极的端子 电极,具有上表面上的钢板14a的弹性阀14,弹簧15和设置在正极帽12中的凸缘12a上的PTC元件环16。 绝缘垫片17安装在开口密封单元10的周边上,以密封地关闭外罐18的开口。
    • 7. 发明授权
    • Nickel-metal hydride storage cell having a high capacity and an excellent cycle characteristic and manufacturing
    • 具有高容量和优异的循环特性和制造的镍氢蓄电池
    • US06368748B1
    • 2002-04-09
    • US09531600
    • 2000-03-20
    • Masao TakeeMotoo TadokoroTadashi IseAkifumi Yamawaki
    • Masao TakeeMotoo TadokoroTadashi IseAkifumi Yamawaki
    • H01M452
    • H01M10/345H01M4/32H01M4/52H01M10/30
    • A nickel-metal hydride storage cell is composed of a non-sintered positive electrode which is filled with a nickel active material whose particles are coated with cobalt compound layers of divalent or greater and a metal hydride electrode which is filled with a surface-treated hydrogen-absorbing alloy. In the cell, the positive electrode non-reactive capacity rate (represented by the Equation 1) and the negative electrode charge depth (represented by the Equation 2) after the initial charge/discharge are 16% or lower, and 80% or lower, respectively. This construction makes it possible to take larger actual cell capacity by setting the value of the negative electrode charge depth to the degree which causes no rise in the cell internal pressure, thereby expanding the capacity of the cell. positive electrode non-reactive capacity rate %=(positive electrode theoretical capacity−actual cell capacity)/positive electrode theoretical capacity×100  Eq. 1; negative electrode charge depth %=(negative electrode remaining capacity+actual cell capacity)/negative electrode whole capacity×100  Eq. 2.
    • 镍氢蓄电池由非烧结正电极组成,其中填充有用二价以上的钴化合物层涂覆其颗粒的镍活性材料和填充有表面处理氢的金属氢化物电极 吸收合金。 在电池中,初始充放电后的正极非反应容量率(由式1表示)和负极电荷深度(以式2表示)为16%以下,80%以下, 分别。 这种结构使得可以通过将负极电荷深度的值设定为不使电池内部压力升高的程度来获得更大的实际电池容量,从而扩大电池的容量。