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    • 5. 发明授权
    • Nonaqueous secondary battery
    • 非水二次电池
    • US07727674B2
    • 2010-06-01
    • US11509845
    • 2006-08-25
    • Toshio YanagidaYoshinobu OkumuraYasuhiro YamauchiNaoya NakanishiToshiyuki Nohma
    • Toshio YanagidaYoshinobu OkumuraYasuhiro YamauchiNaoya NakanishiToshiyuki Nohma
    • H01M4/66
    • H01M10/05H01M4/0404H01M4/131H01M4/133H01M4/66H01M4/661H01M4/662H01M4/667H01M4/669H01M6/10
    • A nonaqueous secondary battery 10 of the invention has an active material compound layer 14 deposed over at least one face of a collector 12 made of metal foil and is equipped with a positive electrode 11 having a portion 13 in a part of which metal is exposed. The positive electrode 11 together with the exposed-metal portion 13 faces a negative electrode 17 through an interposed separator 23, and on that part of the exposed-metal portion 13 that faces the negative electrode 17 through the interposed separator 23 there is formed a protective layer 16 made of a material whose electronic conductivity is lower than that of the metal and which moreover is non-insulative. With such nonaqueous secondary battery 10, should part of an electrode pierce the separator and contact with the other electrode, the battery will be gently discharged, thereby averting abnormal heat generation by the battery and additionally enabling the battery's abnormality to be sensed by the equipment via the fall in battery voltage. Thus, there is provided a nonaqueous secondary battery of excellent safety that can prevent abnormal heat generation due to a short circuit caused by burr, powder or the like piercing the separator.
    • 本发明的非水系二次电池10具有在由金属箔制成的集电体12的至少一个面上形成的活性物质化合物层14,并且配备有在其一部分露出金属的部分13的正极11。 正极11与暴露金属部13一起通过插入的隔板23面对负极17,并且通过插入的隔板23与露出金属部13的面对负极17的那部分形成保护 层16由电子导电率低于金属的材料制成,而且是非绝缘的。 对于这样的非水系二次电池10,电极的一部分应该与隔板接触并与另一个电极接触,电池将被轻轻地排出,从而避免电池发生异常的发热,并且还能够使电池的异常被设备通过 电池电压下降。 因此,提供了一种极好的安全性的非水二次电池,其可以防止由于由穿孔分离器的毛刺,粉末等导致的短路引起的异常发热。
    • 7. 发明授权
    • Non-aqueous electrolyte secondary battery and manufacturing methods of an electrode used therein
    • 非水电解质二次电池及其中使用的电极的制造方法
    • US07258948B2
    • 2007-08-21
    • US10781948
    • 2004-02-20
    • Yoshikumi MiyamotoJun OkazakiRyuji OhshitaHitoshi TanakaYoshinobu Okumura
    • Yoshikumi MiyamotoJun OkazakiRyuji OhshitaHitoshi TanakaYoshinobu Okumura
    • H01M2/16H01M4/00H01M10/04H01M4/82
    • H01M4/0402H01M4/0435H01M4/13H01M4/62H01M10/0431H01M10/0525Y10T29/49115
    • To provide a non-aqueous electrolyte secondary battery adapted to prevent an internal short circuit between an positive electrode and a negative electrode caused by the penetration of electrically conductive micro particles through a separator, which occurs when winding up electrodes, and manufacturing methods of an electrode used therein, whereby the non-aqueous electrolyte secondary battery having a coiled electrode assembly is formed through the multilayer winding of an positive electrode 90 having a metallic collector 76 coated with an positive electrode mixture 78 composed of an positive electrode active material that occludes and liberates lithium ions, a negative electrode 86 having a metallic collector 82 coated with a negative electrode mixture 84, composed of a negative electrode active material that occludes and liberates lithium ions, and a separator 72 interposed between the positive electrode and the negative electrode, wherein the positive electrode 90 has an insulating layer 100 formed by means of the dried coating method, the heat seal tape method, or the hot melt coating method on a portion of the metallic collector 76 which is uncoated with the positive electrode mixture 78 and opposed to the negative electrode 86 coated with the negative electrode mixture 84, through the separator 72.
    • 提供一种非水电解质二次电池,其适用于防止由导电性微粒通过隔膜引起的正极和负极之间的内部短路,所述隔板在卷绕电极时发生,并且电极的制造方法 由此,具有线圈电极组件的非水电解质二次电池通过具有金属集电体76的正极90的多层绕组形成,该金属集电体76涂覆有由正极活性物质构成的正极混合物78,所述正极合剂78封闭并释放 锂离子,具有由负极活性物质封闭并释放锂离子的负极混合物84涂敷的金属集电体82的负极86以及置于正极和负极之间的隔板72,其中, 正极90具有绝缘性 通过干燥涂布方法形成的层100,热封带法或热熔涂覆法,在金属集电体76的未涂覆有正极合剂78并与涂覆有正极混合物78的负极86相对的部分上 负极混合物84,通过分离器72。
    • 8. 发明授权
    • Battery module and method of manufacturing thereof
    • 电池模块及其制造方法
    • US06599660B2
    • 2003-07-29
    • US09799627
    • 2001-03-07
    • Takashi OdaHideki OkajimaYukichi UesugiHitoshi TanakaYoshinobu Okumura
    • Takashi OdaHideki OkajimaYukichi UesugiHitoshi TanakaYoshinobu Okumura
    • H01M642
    • H01M2/202H01M2/022Y10T29/49114
    • A battery module of the present invention comprises an annular connecting member 10 having an aperture 14 at a position corresponding to a cap 8 provided on a sealing plate 7 and between the sealing member 7 of one cell B and a bottom of a can 6 of the other cell A. The annular connecting member 10 comprises an annular base portion 11 having its outer diameter smaller than an inner diameter of the opening portion of the can 6, a convex portion 12 with bottom protruding upward or downward alternately from the annular base portion 11, and a projection 13 projecting from the bottom of the convex portion 12. Thereby, the connecting portion between the cell A and the cell B has a collecting path of a length between both projections 13, namely, a length between the sealing plate 7 of the cell B and the bottom of the can 6 of the cell A, whereby the voltage drop across the connecting portion decreases, resulting in a battery module having high operation voltage.
    • 本发明的电池模块包括环形连接构件10,该环形连接构件10在对应于设置在密封板7上的帽8的位置和一个单元B的密封构件7和罐6的底部之间的位置处具有孔14 环形连接构件10包括其外径小于罐6的开口部分的内径的环形基部11,具有从环形基部11交替地向上或向下突出的底部的凸部12 以及从凸部12的底部突出的突起13.由此,电池A和电池B之间的连接部分具有在两个突起13之间的长度的收集路径,即,两个突起13的密封板7之间的长度 电池B和电池A的罐6的底部,由此连接部分两端的电压降降低,导致电池模块具有高的工作电压。