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    • 1. 发明授权
    • Nonaqueous electrolyte secondary battery and producing method thereof
    • 非水电解质二次电池及其制造方法
    • US07687195B2
    • 2010-03-30
    • US11328065
    • 2006-01-10
    • Takeshi AbeSyuichi YamashitaHiroyuki Suzuki
    • Takeshi AbeSyuichi YamashitaHiroyuki Suzuki
    • H01M2/18
    • H01M2/36H01M2/022H01M2/0413H01M2/18H01M2/34H01M10/052H01M10/0587Y10T29/4911
    • The present invention provides for a nonaqueous electrolyte secondary battery and a producing method therefor, in which a grooved portion provided in an upper portion of the outer casing of the nonaqueous electrolyte secondary battery protrudes toward the inner portion of the outer casing, a group of electrodes being housed in the outer casing, a positive electrode and a negative electrode being wound in a spiral manner while facing each other through a separator in the group of electrodes, and a sealing member is placed on the upper portion of the grooved portion through insulated packing to seal the opening of the outer casing in an airtight manner, and whereby a circular insulating plate 10 provided with an arced opening 12 and cut portions 13 and 14 is arranged between the upper portion of the group of electrodes and the lower surface of the grooved portion, the cut portions 13 and 14 extending from end portions 12a and 12b of the opening 12, and the inner peripheral side of the cut portions 13 and 14 of the circular insulating plate is raised from the outer peripheral side of the cut portions 13 and 14. Such insulating plate does not adversely affect the injection property of the electrolytic solution used in producing the nonaqueous electrolyte secondary battery as to provide it with excellent battery performance and excellent productivity.
    • 本发明提供一种非水电解质二次电池及其制造方法,其中设置在非水电解质二次电池的外壳的上部的开槽部朝向外壳的内部突出,一组电极 被容纳在外壳中,正电极和负极以螺旋状卷绕,同时通过电极组中的隔膜彼此面对,并且通过绝缘包装将密封构件放置在带槽部分的上部 以密封的方式密封外壳的开口,由此设置有弧形开口12和切割部分13和14的圆形绝缘板10设置在电极组的上部和带槽的下表面之间 从开口12的端部12a,12b延伸的切断部13,14以及铜的内周侧 圆形绝缘板的t部分13和14从切割部分13和14的外周侧升高。这种绝缘板对用于制造非水电解质二次电池的电解液的注入性能没有不利影响,以提供 它具有出色的电池性能和出色的生产率。
    • 2. 发明申请
    • Nonaqueous electrolyte secondary battery and producing method thereof
    • 非水电解质二次电池及其制造方法
    • US20060154137A1
    • 2006-07-13
    • US11328065
    • 2006-01-10
    • Takeshi AbeSyuichi YamashitaHiroyuki Suzuki
    • Takeshi AbeSyuichi YamashitaHiroyuki Suzuki
    • H01M2/18H01M2/04H01M2/08H01M10/04
    • H01M2/36H01M2/022H01M2/0413H01M2/18H01M2/34H01M10/052H01M10/0587Y10T29/4911
    • The present invention provides for a nonaqueous electrolyte secondary battery and a producing method therefor, in which a grooved portion provided in an upper portion of the outer casing of the nonaqueous electrolyte secondary battery protrudes toward the inner portion of the outer casing, a group of electrodes being housed in the outer casing, a positive electrode and a negative electrode being wound in a spiral manner while facing each other through a separator in the group of electrodes, and a sealing member is placed on the upper portion of the grooved portion through insulated packing to seal the opening of the outer casing in an airtight manner, and whereby a circular insulating plate 10 provided with an arced opening 12 and cut portions 13 and 14 is arranged between the upper portion of the group of electrodes and the lower surface of the grooved portion, the cut portions 13 and 14 extending from end portions 12a and 12b of the opening 12, and the inner peripheral side of the cut portions 13 and 14 of the circular insulating plate is raised from the outer peripheral side of the cut portions 13 and 14. Such insulating plate does not adversely affect the injection property of the electrolytic solution used in producing the nonaqueous electrolyte secondary battery as to provide it with excellent battery performance and excellent productivity.
    • 本发明提供一种非水电解质二次电池及其制造方法,其中设置在非水电解质二次电池的外壳的上部的开槽部朝向外壳的内部突出,一组电极 被容纳在外壳中,正电极和负极以螺旋状卷绕,同时通过电极组中的隔膜彼此面对,并且通过绝缘包装将密封构件放置在带槽部分的上部 以密封的方式密封外壳的开口,由此设置有弧形开口12和切割部分13和14的圆形绝缘板10设置在电极组的上部和带槽的下表面之间 从开口部12的端部12a,12b延伸的切断部13,14,以及开口部12的内周侧 圆形绝缘板的切割部分13和14从切割部分13和14的外周侧升高。 这样的绝缘板不会对制造非水电解质二次电池时使用的电解液的注入性产生不良影响,能够提供优良的电池性能和优异的生产率。
    • 4. 发明申请
    • SEALED CELL AND METHOD FOR MANUFACTURING THE SAME
    • 密封细胞及其制造方法
    • US20100077603A1
    • 2010-04-01
    • US12568770
    • 2009-09-29
    • Syuichi YamashitaHiromitsu SuwaKazuo Tomimoto
    • Syuichi YamashitaHiromitsu SuwaKazuo Tomimoto
    • H01M10/04
    • H01M2/0413Y10T29/4911
    • A method for manufacturing a sealed cell includes the following steps. A step of producing an iron-based terminal cap, which includes an external terminal projecting toward the outside of the cell, a flange, and a hole in the flange, the hole having a diameter smaller on the inner side than on the outer side of the cell. A step of producing an aluminum-based safety valve, which includes a conductive contact portion projecting toward the inside of the cell, a peripheral portion, and a pin-like projection in the peripheral portion. A step of riveting the projection and the hole together by inserting the projection into the hole and crushing the tip of the projection. A step of welding the terminal cap and the safety valve by applying high-energy radiation to the part of the cap that is in the vicinity of the riveted part.
    • 密封容器的制造方法包括以下工序。 铁基端帽的制造步骤,其包括朝向电池外部突出的外部端子,凸缘和凸缘中的孔,该孔的内侧的直径比外侧更小 细胞。 一种制造铝基安全阀的步骤,其包括在电池内部突出的导电接触部分,周边部分和周边部分中的销状突起。 通过将突起插入孔并破碎突起的尖端来将突起和孔铆接在一起的步骤。 通过向位于铆接部附近的帽部的高能辐射施加焊接端子帽和安全阀的步骤。
    • 6. 发明授权
    • Sealed battery
    • 密封电池
    • US08697269B2
    • 2014-04-15
    • US12331843
    • 2008-12-10
    • Syuichi YamashitaHaruhiko Yamamoto
    • Syuichi YamashitaHaruhiko Yamamoto
    • H01M2/12
    • H01M2/0426H01M2/1241H01M10/0525
    • A sealed battery terminal 18 of a first aspect of the invention includes an electrically-conductive terminal cap 19, a rupture disk 25 made of flexible electrically conductive material electrically connected to the electrically-conductive terminal cap 19, and an electrically-conductive terminal plate 20 abutting the rupture disk 25. In the sealed battery terminal 18, an opening 23c is formed in the terminal plate 20, the rupture disk 25 is arranged to close the opening 23c, and an abutting part of an inner periphery of the opening of the terminal plate 20 and the rupture disk 25 is welded by a high energy beam at a plurality of places. Accordingly, a sealed battery terminal having a safety valve system in which the rupture disk placed in the cap and the terminal plate are electrically connected directly by welding with the high energy beam can be provided.
    • 本发明第一方面的密封电池端子18包括导电端子盖19,由导电端子盖19电连接的柔性导电材料制成的断裂片25和导电端子板20 在密封电池端子18中,在端子板20上形成有开口23c,突起片25被设置成封闭开口23c,并且端子的开口的内周的邻接部分 板20和破裂盘25在多个位置被高能束焊接。 因此,可以提供具有安全阀系统的密封电池端子,其中放置在盖中的破裂盘和端子板通过与高能束的焊接直接电连接。
    • 7. 发明申请
    • SEALED CELL AND METHOD FOR MANUFACTURING SAME
    • 密封细胞及其制造方法
    • US20140038005A1
    • 2014-02-06
    • US14111134
    • 2012-04-25
    • Kenji YamatoSyuichi YamashitaYuma Yamaguchi
    • Kenji YamatoSyuichi YamashitaYuma Yamaguchi
    • H01M2/12
    • H01M2/1235H01M2/0225H01M2/0413H01M2/046H01M2/1241H01M2/263Y10T29/4911
    • An object of the present invention is to manufacture a sealed cell having a highly conductive sealing body with a safety valve at high productivity. In order to accomplish above object, the present invention espouses a method of manufacturing a sealed cell including: preparing a terminal cap and a safety valve, the terminal cap including an external terminal projecting toward the outside of the cell, and a flange, and the safety valve including a conductive contact portion projecting toward the inside of the cell, and a peripheral portion and having an outer periphery bent toward the outside of the cell so as to form a bent portion; temporarily fixing the safety valve and the terminal cap together at the bent portion after coupling the safety valve and the terminal cap to each other; and conductively adhering the flange and the peripheral portion to each other near the bent portion.
    • 本发明的目的是以高生产率制造具有安全阀的具有高导电性密封体的密封电池。 为了实现上述目的,本发明涉及一种密封电池的制造方法,包括:准备端子帽和安全阀,所述端子帽包括朝向电池外部突出的外部端子和凸缘,并且, 安全阀,包括朝向电池内部突出的导电接触部分,以及周边部分,并且具有朝向电池单元的外部弯曲的外周,以形成弯曲部分; 在将安全阀和端子帽彼此连接之后,将弯曲部分的安全阀和端子帽临时固定在一起; 并且在弯曲部分附近将凸缘和周边部分彼此导电地粘合。