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    • 8. 发明授权
    • Electrical energy storage module and method for producing an electrical energy storage module
    • 电能储存模块及其制造方法
    • US09570729B2
    • 2017-02-14
    • US14366926
    • 2012-10-29
    • Robert Bosch GmbH
    • Alexander SchmidtAndy TiefenbachVolker DoegeMartin Kessler
    • H01M2/20H01M2/26H01M10/04H01M10/18H01M10/0525H01M10/052
    • H01M2/204H01M2/206H01M2/26H01M10/0418H01M10/0472H01M10/052H01M10/0525H01M10/18Y02E60/126Y02P70/54Y10T29/49108
    • The invention relates to an electrical energy storage module, comprising at least one storage cell stack (7) that has a plurality of groups of first planar parallel energy storage cells (1), each having first electrode elements (1a), and a plurality of groups of second planar parallel energy storage cells (2) arranged planar parallel to the group of first energy storage cells (1), said second groups each having second electrode elements (2a). The groups of first and second energy storage cells (1; 2) are arranged alternately along a first direction of extension of the storage cell stack (7) and the first electrode elements (1a) have a polarity on a side face of the storage cell stack (7) that is different from the second electrode elements (2a) on the side face of the storage cell stack (7). The energy storage module further comprises a plurality of flat contact elements (5) that are arranged on the side faces of the storage cell stack (7), galvanically connect adjacent groups of first and second energy storage cells (1; 2), and contact substantially all first or second electrode elements (1a; 2a) of the adjacent groups of first and second energy storage cells (1; 2) across the width of the storage cell stack (7) in each case.
    • 本发明涉及一种电能存储模块,包括至少一个存储单元堆叠(7),其具有多组第一平面平行储能单元(1),每组具有第一电极元件(1a)和多个 一组平行于第一能量存储单元(1)的第二平面平行储能单元(2),所述第二组各自具有第二电极元件(2a)。 第一和第二储能单元(1; 2)的组沿存储单元堆叠(7)的第一延伸方向交替布置,并且第一电极元件(1a)在存储单元的侧面具有极性 堆叠(7),其与存储电池组(7)的侧面上的第二电极元件(2a)不同。 能量存储模块还包括布置在存储单元堆叠(7)的侧面上的多个平坦接触元件(5),电连接相邻的第一和第二能量存储单元(1; 2)组和接触 在每种情况下跨越存储单元堆叠(7)的宽度的第一和第二能量存储单元(1; 2)的相邻组的基本上所有的第一或第二电极元件(1a; 2a)。
    • 10. 发明授权
    • Bipolar all-solid-state battery
    • 双极全固态电池
    • US09373869B2
    • 2016-06-21
    • US14114838
    • 2011-05-27
    • Takumi Tanaka
    • Takumi Tanaka
    • H01M4/13H01M10/42H01M10/0585H01M10/0562H01M10/04H01M10/052H01M10/12H01M10/28H01M10/18H01M4/70
    • H01M10/4235H01M4/70H01M10/0418H01M10/052H01M10/0562H01M10/0585H01M10/127H01M10/18H01M10/282Y02E60/122Y02P70/54Y02T10/7011
    • Provided is a bipolar all-solid-state battery capable of preventing breakage of a current collector of a bipolar electrode to suitably prevent a short circuit from occurring, and a method for producing the above-mentioned bipolar all-solid-state battery. The bipolar all-solid-state battery includes: a bipolar electrode having a current collector and an electrode active material layer including a cathode active material layer containing a cathode active material, formed on one surface of the current collector, and an anode active material layer containing an anode active material, formed on the other surface of the current collector, and a solid electrolyte layer containing a solid electrolyte. The bipolar all-solid-state battery has a plurality of the bipolar electrodes laminated via the solid electrolyte layer and a reinforcing layer formed on the surface of the current collector is disposed between the end of the electrode active material layer and the surface of the current collector.
    • 提供一种能够防止双极性电极的集电体破裂以适当地防止发生短路的双极全固态电池,以及用于制造上述双极全固体电池的方法。 所述双极全固体电池包括:具有集电体的双极电极和形成在所述集电体的一个表面上的包含正极活性物质的正极活性物质层的电极活性物质层和负极活性物质层 含有形成在集电体的另一个表面上的负极活性物质和含有固体电解质的固体电解质层。 双极全固态电池具有通过固体电解质层层叠的多个双极电极,并且形成在集电体的表面上的增强层设置在电极活性物质层的端部与电流表面之间 集电极。