Battery and process for preparing the same
    5.
    发明授权
    Battery and process for preparing the same 失效
    电池和制备方法

    公开(公告)号:US06670070B2

    公开(公告)日:2003-12-30

    申请号:US09742074

    申请日:2000-12-22

    IPC分类号: H01M1050

    摘要: A conventional battery has a problem that a large short-circuit current was generated with temperature rise due to internal short-circuit or the like, and therefore, the temperature of the battery further increases due to exothermic reaction to increase the short-circuit current. The present invention has been carried out in order to solve the above problems. The battery of the present invention is a battery wherein at least one of a positive electrode 1 and a negative electrode 2 comprises an active material layer 6 containing an active material 8 and an electronically conductive material 9 contacted to the active material 8, wherein a solid electrolytic layer 3 is interposed between the above positive electrode 1 and the negative electrode 2, and wherein the above electronically conductive material 9 comprises an electrically conductive filler and a resin so that resistance increases with temperature rise.

    摘要翻译: 传统的电池具有由于内部短路等引起的温度上升而产生大的短路电流的问题,因此,由于放热反应而导致的电池的温度进一步升高以增加短路电流。 为了解决上述问题,已经进行了本发明。 本发明的电池是电池,其中正电极1和负电极2中的至少一个包括含有活性材料8的活性材料层6和与活性材料8接触的电子导电材料9,其中固体 电解质层3夹在上述正极1和负极2之间,其中上述电子导电材料9包括导电填料和树脂,使电阻随温度升高而增加。

    Cell and method of producing the same
    6.
    发明授权
    Cell and method of producing the same 失效
    电池及其制造方法

    公开(公告)号:US06440608B1

    公开(公告)日:2002-08-27

    申请号:US09485693

    申请日:2000-02-25

    IPC分类号: H01M432

    摘要: Conventional batteries have a problem that, in case the battery temperature should rise due to an internal short-circuit, etc., a large short-circuit current develops to generate heat. It follows that the battery temperature further increases, which can result in a further increase of the short-circuit current. The battery of the invention, which has been completed to solve the problem, is a battery in which a positive electrode (1) has an active material containing nickel, at least one of the positive electrode (1) and a negative electrode (2) has an active material layer (6) comprising an active material (8) and an electron conductive material (9) in contact with the active material (8), and an electrolyte layer (3) is interposed between the positive electrode (1) and the negative electrode (2), wherein the electron conductive material (9) contains a conductive filler and a resin so that the electrode is designed to increase its resistivity with a temperature rise.

    摘要翻译: 传统的电池存在如下问题:如果由于内部短路等导致电池温度上升,则产生大的短路电流以产生热量。 因此,电池温度进一步升高,这可能导致短路电流的进一步增加。已经完成解决该问题的本发明的电池是其中正电极(1)具有的电池 含有镍的活性物质,所述正极(1)和负极(2)中的至少一个具有活性物质层(6),所述活性物质层包含活性物质(8)和电子传导性材料(9),所述活性物质层 活性物质(8)和电解质层(3)插入在正极(1)和负极(2)之间,其中电子传导材料(9)含有导电填料和树脂,使得电极 旨在增加其电阻率随温度升高。

    ENERGY STORAGE DEVICE CELL
    9.
    发明申请
    ENERGY STORAGE DEVICE CELL 有权
    能源储存装置细胞

    公开(公告)号:US20120114982A1

    公开(公告)日:2012-05-10

    申请号:US13287383

    申请日:2011-11-02

    IPC分类号: H01M16/00 H01M4/64

    摘要: Provided is an energy storage device cell capable of enhancing energy density. The energy storage device cell includes: a battery main body including battery anode plate members and battery cathode plate members, in which the battery cathode plate members are placed at both ends in a stack direction; common anode plate members each including a common anode collector foil having a through-hole formed therein and common anode electrode layers, the common anode plate members being stacked on the battery cathode plate members placed at both ends in the stack direction of the battery main body; capacitor cathode plate members each including a capacitor cathode collector foil and a capacitor cathode electrode layer, in which the capacitor cathode electrode layer is placed between the common anode plate member and the capacitor cathode collector foil.

    摘要翻译: 提供能够提高能量密度的能量存储装置单元。 储能装置单元包括:电池主体,其具有电池阳极板构件和电池阴极板构件,其中电池阴极板构件沿堆叠方向放置在两端; 公共阳极板构件,每个阳极板构件均包括具有形成在其中的通孔的共用阳极集电体箔和公共阳极电极层,共同的阳极板构件堆叠在电池阴极板构件上,电池阴极板构件沿电池主体的堆叠方向 ; 电容器阴极板部件均包括电容器阴极集电体箔和电容器阴极电极层,其中电容器阴极电极层位于公共阳极板部件和电容器阴极集电体箔之间。