Welding method and a battery and a separator

    公开(公告)号:JP5363450B2

    公开(公告)日:2013-12-11

    申请号:JP2010242035

    申请日:2010-10-28

    CPC classification number: Y02E60/12

    Abstract: PROBLEM TO BE SOLVED: To provide a welding method which scarcely cause a damage on a separator when welding a collector to an electrode body, and to provide a battery and a separator. SOLUTION: A laminate electrode body 100 laminating a positive electrode plate P and a negative electrode plate N with a separator S interposed therebetween is welded to collector plates 110, 120. A separator S having a sulfonation region V subjected to sulfonation, and a non-sulfonation region X not subjected to sulfonation is used. When the positive electrode collector plate 110 is welded to the laminate electrode body 100, the positive electrode collector plate 110 is welded in a state where the non-sulfonation region X is arranged in a place to which heat is transmitted easily. COPYRIGHT: (C)2012,JPO&INPIT

    溶接装置、溶接方法、及び電池の製造方法
    4.
    发明专利
    溶接装置、溶接方法、及び電池の製造方法 审中-公开
    焊接装置,焊接方法和电池的制造方法

    公开(公告)号:JPWO2013186862A1

    公开(公告)日:2016-02-01

    申请号:JP2014520848

    申请日:2012-06-12

    Abstract: レーザ溶接において、溶融池の深部に酸化皮膜が残存することなく、所望の溶け込み深さを達成可能な技術を提供する。加工点(P)に集光するレーザを照射する溶接装置(1)であって、前記加工点において、前記レーザは、第一レーザと、前記第一レーザよりも小さいビーム径を有する第二レーザと、が重畳されて成る重畳レーザと同様のプロファイルを有し、前記レーザのプロファイルにおける、前記第一レーザに対応する部分は、熱伝導型溶接を行える程度のパワー密度を有し、前記レーザのプロファイルにおける、前記第二レーザに対応する部分は、キーホール型溶接を行える程度のパワー密度を有する。

    Abstract translation: 在激光焊接中,而不对深熔池氧化物膜保留,提供了一个可能的技术实现期望的穿透深度。 用于照射激光的焊接设备聚焦在处理点(P)(1),在处理点上,激光,具有第一激光器,光束直径比第一激光小的第二激光 如果具有相同的轮廓并通过叠加,在激光的轮廓形成叠加激光,对应于所述第一激光的部分具有的功率密度足以执行一热传导式焊接,激光 在配置文件中,对应于部分所述第二激光器具有的功率密度足以执行一个锁孔型焊接。

    Laser welded assembly
    5.
    发明专利
    Laser welded assembly 有权
    空值

    公开(公告)号:JP4248226B2

    公开(公告)日:2009-04-02

    申请号:JP2002321542

    申请日:2002-11-05

    Abstract: PROBLEM TO BE SOLVED: To provide an assembly which enables the proportion of a non-welded part to be reduced or laser-transmissible resin members to be laser-welded together. SOLUTION: First, a case 142 of a laser-transmissible thermoplastic resin is molded by inserting a busbar unit 148 of a laser non-transmissible thermoplastic resin, and the case 142 and a housing 140 are laser-welded together. Next, a lid 144 of a laser-transmissible thermoplastic resin is loosely fitted to the surface of the case 142 and a welded surface 290 and a welded surface 292 are irradiated with a laser beam vertically right from above. Thus the welded surface 290 irradiated with the laser beam of a busbar unit main body 162 and the lower surface 184 of a rib, and the welded surface 292 and the part near a pressing surface 160 are melt-mixed and the melt-mixed parts are cured on account of a drop in temperature following the shift of an irradiation spot of the laser beam. The welding operation ends once the laser beam irradiation spot has made a single circumferential trip moving at an even speed on a closed curve along the inside of a protrusion 158 and the assembly with an inner space closed airtightly is manufactured. COPYRIGHT: (C)2004,JPO

    Abstract translation: 要解决的问题:提供一种能够使非焊接部分的比例减小或激光可透过的树脂构件被激光焊接在一起的组件。 解决方案:首先,通过插入激光不透过的热塑性树脂的汇流排单元148来模制激光可透过的热塑性树脂的外壳142,将外壳142和外壳140激光焊接在一起。 接下来,激光可透过的热塑性树脂的盖144松散地配合到壳体142的表面,并且焊接表面290和焊接表面292从上方垂直地照射激光束。 因此,用母线单元主体162的激光束和肋的下表面184照射的焊接面290和焊接面292以及靠近按压面160的部分熔融混合,熔融混合部分为 由于激光束的照射点的移动而导致的温度下降而固化。 一旦激光束照射点在突出部158的内部以闭合曲线以均匀的速度移动一个圆周跳动,则焊接操作结束,并且制造具有气密密封的内部空间的组件。 版权所有(C)2004,JPO

    Junction structure and bonding method of electronic equipment for the bus bar and the connecting terminal

    公开(公告)号:JP4325550B2

    公开(公告)日:2009-09-02

    申请号:JP2004368304

    申请日:2004-12-20

    Abstract: PROBLEM TO BE SOLVED: To provide a method of welding each connection terminal well to a bus bar without altering the welding method for each connection terminal even when a plurality of connection terminals of different material having different wire size are welded. SOLUTION: Under a state where a plurality of connection terminals 7A-7C of different material having different wire size having a body portion 1 composed of a copper based material and a plurality of tubular protrusions 5A-5C protruding integrally and tubularly from the body portion 1 to have insertion holes 3A-3C and having a fusing port on the distal end side of each protrusion are inserted into respective insertion holes 3A-3C, each fusing portion on the distal end side is fused with a laser beam 8 thus welding the tubular protrusions 5A-5C and the connection terminals 7A-7C. Protrusion height of each tubular protrusion 5A-5C is adjusted depending on the material and wire size of each connection terminal 7A-7C such that bonding strength to each connection terminal 7A-7C has a predetermined value or above thus adjusting the length of the fusing portion on the distal end side. COPYRIGHT: (C)2006,JPO&NCIPI

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