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    • 6. 发明授权
    • Secondary battery and secondary battery module
    • 二次电池和二次电池模块
    • US09461296B2
    • 2016-10-04
    • US13885927
    • 2010-11-30
    • Ryuji KohnoTakuro TsunakiYutaka SatoMitsuru Koseki
    • Ryuji KohnoTakuro TsunakiYutaka SatoMitsuru Koseki
    • H01M2/04H01M2/06H01M2/30H01M2/20H01M2/26
    • H01M2/30H01M2/0404H01M2/06H01M2/204H01M2/263
    • A secondary battery includes a battery casing accommodating an electricity-generating element group, and a battery cover having through-holes and sealing an opening in the battery casing. A first face at one end of each of positive and negative electrode connecting plates, which are each formed from a single plate of metal, is connected to a non-coated section of the electricity-generating element group. A second face at the other end of each of the positive and negative electrode connecting plates is a face onto which a busbar is welded, and the second face is exposed outward from one of the through-holes. Insulating base materials are interposed between THE positive and negative electrode connecting plates and an outer circumference of each through-hole, the insulating base materials and the battery cover are connected by brazing, and the insulating base materials and the positive and negative electrode connecting plates are connected by brazing.
    • 二次电池包括容纳发电元件组的电池壳体和具有密封电池壳体中的开口的通孔的电池盖。 由单一金属板形成的正极和负极连接板的一端的第一面连接到发电元件组的未涂覆部分。 正极和负极连接板的另一端的第二面是焊接母线的面,第二面从一个通孔向外露出。 绝缘基材插入在正极和负极连接板之间以及每个通孔的外周,绝缘基材和电池盖通过钎焊连接,绝缘基材和正极和负极连接板是 通过钎焊连接。
    • 9. 发明申请
    • Secondary Battery And Secondary Battery Module
    • 二次电池和二次电池模块
    • US20130260212A1
    • 2013-10-03
    • US13885927
    • 2010-11-30
    • Ryuji KohnoTakuro TsunakiYutaka SatoMitsuru Koseki
    • Ryuji KohnoTakuro TsunakiYutaka SatoMitsuru Koseki
    • H01M2/30
    • H01M2/30H01M2/0404H01M2/06H01M2/204H01M2/263
    • A secondary battery includes a battery casing accommodating an electricity-generating element group, and a battery cover having through-holes and sealing an opening in the battery casing. A first face at one end of each of positive and negative electrode connecting plates, which are each formed from a single plate of metal, is connected to a non-coated section of the electricity-generating element group. A second face at the other end of each of the positive and negative electrode connecting plates is a face onto which a busbar is welded, and the second face is exposed outward from one of the through-holes. Insulating base materials are interposed between THE positive and negative electrode connecting plates and an outer circumference of each through-hole, the insulating base materials and the battery cover are connected by brazing, and the insulating base materials and the positive and negative electrode connecting plates are connected by brazing.
    • 二次电池包括容纳发电元件组的电池壳体和具有密封电池壳体中的开口的通孔的电池盖。 由单一金属板形成的正极和负极连接板的一端的第一面连接到发电元件组的未涂覆部分。 正极和负极连接板的另一端的第二面是焊接母线的面,第二面从一个通孔向外露出。 绝缘基材插入在正极和负极连接板之间以及每个通孔的外周,绝缘基材和电池盖通过钎焊连接,绝缘基材和正极和负极连接板是 通过钎焊连接。
    • 10. 发明授权
    • Process of producing grids for a battery
    • 生产电池网格的过程
    • US4443918A
    • 1984-04-24
    • US283990
    • 1981-07-16
    • Ryosuke MorinariMitsuru Koseki
    • Ryosuke MorinariMitsuru Koseki
    • H01M4/73B23P13/00
    • H01M4/73Y10T29/10
    • This invention relates to a process of producing plate grids for a lead acid storage battery. The process of the invention comprises the step of striking hard particles against surfaces of grid material to form roughness on the surfaces of the plate grids. The hard particles may be struck against surfaces of a lead alloy strip which the plate grids are to be made of by expanding or punching. They may be struck against surfaces of a mesh-like lead alloy strip which is formed by expanding or punching a lead alloy strip. Otherwise, they may be struck against the surfaces of a lead alloy strip and then against the surfaces of the mesh-like lead alloy strip which is formed by expanding or punching the roughened lead alloy strip.
    • 本发明涉及铅酸蓄电池板栅的制造方法。 本发明的方法包括将硬颗粒撞击在栅格材料的表面上以在板栅表面上形成粗糙度的步骤。 硬质颗粒可以撞击铅合金带的表面,铅板合金条通过膨胀或冲压而制成。 它们可以撞击通过膨胀或冲压铅合金带形成的网状铅合金带的表面。 否则,它们可以撞击铅合金带的表面,然后撞击通过膨胀或冲压粗糙化的铅合金带形成的网状铅合金带的表面。