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    • 2. 发明申请
    • LITHIUM ION SECONDARY CELL
    • 锂离子二次电池
    • US20120202097A1
    • 2012-08-09
    • US13394909
    • 2010-08-11
    • Naoki KimuraTakenori Ishizu
    • Naoki KimuraTakenori Ishizu
    • H01M10/04H01M10/02H01M2/02
    • H01M10/0587H01M10/0525Y02T10/7011
    • In a lithium ion secondary cell including a wound group 20 in which a positive electrode 24 including a positive electrode mixture layer 5 and a negative electrode 22 including a negative electrode mixture layer 6 are wound with the interposition of separators 21, 23, a winding starting edge 22S is disposed more towards an inner peripheral side than the positive electrode 24; a winding ending edge 22E is disposed more towards an outer peripheral side than a winding ending edge 24E; the winding starting edges 24S, 22S, and the winding ending edges 24S, 22E are disposed within a flat portion of the wound group 20; and the negative electrode mixture layer 6 covering a surface of the positive electrode mixture layer 5 is disposed on an inner and an outer circumferential surface of the positive electrode mixture layer 5.
    • 在包括卷绕组20的锂离子二次电池中,其中包括正极合剂层5的正极24和包含负极混合物层6的负极22缠绕有隔离层21,23,绕组起始 边缘22S更靠近正极24的内周侧设置; 卷绕结束边缘22E比卷绕结束边缘24E更靠外侧设置; 卷绕起始边缘24S,22S和卷绕终止边缘24S,22E设置在卷绕组20的平坦部分内; 覆盖正极复合层5的表面的负极合剂层6配置在正极合剂层5的内周面和外周面上。
    • 3. 发明申请
    • SECONDARY BATTERY MODULE
    • 二次电池模块
    • US20080118824A1
    • 2008-05-22
    • US11942236
    • 2007-11-19
    • Mikio OGUMATakenori ISHIZU
    • Mikio OGUMATakenori ISHIZU
    • H01M2/20
    • H01M2/30H01M2/0207H01M2/0275H01M2/345H01M10/42
    • The present invention provides a secondary battery module capable of securing safety at a time of abnormal battery operations by using a film-type secondary battery. A module 30 is provided with 8 pieces of single batteries 20 each using a laminate film as its battery container. The 8 pieces of single batteries are disposed in a layer-stacked state. A conducting plate 17 is placed in a manner to face one single battery 20a disposed at one end of the 8 pieces of the single batteries 20. A pushing member 14 is formed between the single battery 20a and conducting plate 17. A conducting plate 18 is disposed on a side of the conducting plate 17 opposite to the pushing member 14. The pushing member 14 has projected portions 14b. The conducting member 17 has through-holes 17a formed so that the projected portions are able to pass through. The conducting plates 17 and 18 are coupled by a coupling portion 21. When any one of the single batteries 20 and single battery 20a expands at a time of abnormal battery operations, the projected portions pass through the through-holes to break off the coupling at the coupling portion 21.
    • 本发明提供了一种二次电池模块,其能够通过使用薄膜型二次电池来确保在异常电池操作时的安全性。 模块30设置有8个单电池20,每个使用层叠膜作为其电池容器。 8片单电池以层叠状态配置。 导电板17以面对设置在8个单电池20的一端的一个单电池20a的方式放置。 推动构件14形成在单个电池20b和导电板17之间。 导电板18设置在导电板17的与推动部件14相对的一侧。 推动构件14具有突出部分14b。 导电构件17具有形成为使得突出部能够通过的通孔17a。 导电板17和18通过耦合部分21耦合。 当单个电池20和单个电池20a中的任何一个在电池操作异常时膨胀时,突出部分穿过通孔,从而在耦合部分21处断开耦合。
    • 6. 发明申请
    • ASSEMBLED BATTERY
    • 组装电池
    • US20080063932A1
    • 2008-03-13
    • US11696616
    • 2007-04-04
    • Takenori ISHIZUTooru KOJIMA
    • Takenori ISHIZUTooru KOJIMA
    • H01M2/14
    • H01M2/206H01M10/052H01R4/029Y02T10/7011
    • The present invention provides an assembled battery which can improve output density. The assembled batter is configured by connecting four unit cells in series. The unit cells are disposed in parallel such that their polarities are alternate. Unit cells adjacent to each other are connected by a connection member 40. The connection member 40 is composed of a stacked metal plate obtained by stacking two metal plates 40a and 40b. Copper and nickel producing binary alloy by welding are used for the metal plates 40a and 40b, respectively. Since a volume resistance of copper is about ¼ of that of nickel, a ratio of volume resistances of metals used for the metal plates 40a and 40b, respectively, becomes ½ or less. Both end portions of the connection member 40 are joined to a positive electrode external terminal of one of the adjacent unit cells and a negative electrode external terminal of the other by resistance welding, respectively. Copper and nickel used for the metal plates 40a and 40b are alloyed by resistance welding.
    • 本发明提供一种可以提高输出密度的组合电池。 组装的面板通过串联连接四个单元电池来配置。 单位电池平行设置,使得它们的极性是交替的。 彼此相邻的单元电池通过连接构件40连接。连接构件40由通过堆叠两个金属板40a和40b而获得的堆叠金属板构成。 铜和镍生产二元合金通过焊接分别用于金属板40a和40b。 由于铜的体积电阻约为镍的体积电阻的1/4,所以分别用于金属板40a和40b的金属体积电阻的比率变为1/2或更小。 连接构件40的两端部分别通过电阻焊接接合到相邻单元电池中的一个的正电极外部端子和另一个的负极外部端子。 用于金属板40a和40b的铜和镍通过电阻焊合成。
    • 10. 发明授权
    • Secondary battery module having connection breal off mechanism in case of abnormal battery operation
    • 二次电池模块在电池异常操作的情况下具有连接断开机构
    • US08080328B2
    • 2011-12-20
    • US11942236
    • 2007-11-19
    • Mikio OgumaTakenori Ishizu
    • Mikio OgumaTakenori Ishizu
    • H01M2/00
    • H01M2/30H01M2/0207H01M2/0275H01M2/345H01M10/42
    • The present invention provides a secondary battery module capable of securing safety at a time of abnormal battery operations by using a film-type secondary battery. A module 30 is provided with 8 pieces of single batteries 20 each using a laminate film as its battery container. The 8 pieces of single batteries are disposed in a layer-stacked state. A conducting plate 17 is placed in a manner to face one single battery 20a disposed at one end of the 8 pieces of the single batteries 20. A pushing member 14 is formed between the single battery 20a and conducting plate 17. A conducting plate 18 is disposed on a side of the conducting plate 17 opposite to the pushing member 14. The pushing member 14 has projected portions 14b. The conducting member 17 has through-holes 17a formed so that the projected portions are able to pass through. The conducting plates 17 and 18 are coupled by a coupling portion 21. When any one of the single batteries 20 and single battery 20a expands at a time of abnormal battery operations, the projected portions pass through the through-holes to break off the coupling at the coupling portion 21.
    • 本发明提供了一种二次电池模块,其能够通过使用薄膜型二次电池来确保在异常电池操作时的安全性。 模块30设置有8个单电池20,每个使用层叠膜作为其电池容器。 8片单电池以层叠状态配置。 导电板17以面对设置在8个单电池20的一端的单个电池20a的方式放置。推动构件14形成在单个电池20a和导电板17之间。导电板18是 设置在与推动构件14相对的导电板17的一侧上。推动构件14具有突出部分14b。 导电构件17具有形成为使得突出部能够通过的通孔17a。 导电板17和18通过耦合部分21耦合。当单个电池20和单个电池20a中的任何一个在电池操作异常时膨胀时,突出部分穿过通孔以断开耦合在 联接部21。