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    • 12. 发明公开
    • EINRICHTUNG ZUM ELEKTRISCHEN ZUSAMMENSCHALTEN VON ZELLEN EINES BATTERIEPACK MITTELS ZELLVERBINDEM UND BATTERIEPACK MIT SOLCHEN ZELLVERBINDEM
    • 用于蓄电池组细胞的电连接装置,使用的电池连接器和电池组这样的电池单元连接器
    • EP2483949A1
    • 2012-08-08
    • EP10767922.7
    • 2010-09-30
    • Bayerische Motoren Werke AktiengesellschaftDiehl Stiftung & Co. KG
    • HECK, HaraldVOLEK, AndreasHOJDA, RalfMARX, UweWICH, HaraldPECHLOFF, RolfWARMUTH, FrankHOPSCH, DirkSEYBOLD, JörgGOESMANN, HubertusHAUCK, AxellePETZ, Philipp
    • H01M2/10H01M2/20
    • H01M2/1077H01M2/206H01M10/425
    • A device for electrically interconnecting cells (12) in a battery pack (11) by means of cell connectors (15) and a battery pack (11) with such cell connectors (15) are characterized as being easy to fit and functionally safe by virtue of the fact that at least one mounting plate (16), which is intended to be latched on the battery pack (11) in a mounting frame (17), in accordance with the geometric guidelines for cell terminals (13) which are to be connected to one another, is equipped with cell connectors (15), which are electrically insulated from one another and which each have flexible brackets (19) for elastically bearing the apex regions (23) thereof against the end faces (26) of cell terminals (13). The brackets (19), which are supported with one edge in the manner of a torsion spring on the mounting plate (16), are part of a leadframe, which also comprises conductor tracks (32), integrally connected thereto, for example for the connection of a battery management system. Preferably, holes (25) are stamped into the bracket apex regions (23), and, once the mounting plate (16) has been positioned on the cells (12), the brackets (19) are connected in a force-fitting manner or cohesively, in particular are laser-welded, to the cell terminal end faces (26) along the contours of said holes. For this purpose, the mounting plate (16) has through-openings (27) which are larger than the holes (25), coaxially with respect to said holes.
    • 用于在电池组(11)电互连的细胞(12),该装置包括电池连接器(15),它们是彼此电绝缘的上的安装板(16)和被布置用于连接两个电池极。 各电池连接器包括一个柔性支架通过一个连接区域延伸本身。 柔性支架加上与曲折形的方式连接的区域中的弹簧弹性的结构,并与从所述安装板的顶点区域隔开。 每个小区连接器在连接区域中的两个支架之间在安装板保持。 用于在电池组(11)电互连的细胞(12),该装置包括电池连接器(15),它们是彼此电绝缘的上的安装板(16)和被布置用于连接两个电池极。 各电池连接器包括一个柔性支架通过一个连接区域延伸本身。 柔性支架加上与曲折形的方式连接的区域中的弹簧弹性的结构,并与从所述安装板的顶点区域隔开。 每个小区连接器在连接区域中的两个支架之间在安装板保持。 从其respectivement连接区域拒之门外所述支架在安装板上的托架端保持。 电池连接器通过在安装板铆钉状热件安装。 托架-端部从所述安装板,其中每个支架包括在形成有用于与小区极连接的接触区域中的孔(25)运行的。 该孔被设置在所述支架的垂直区域形成。 所述安装板包括在其中孔在安装电池连接器的布置状况的接触区域中的通孔中。 孔的轮廓经过侧面安装在支架上的细胞极。 电池连接件的孔包括一连接件,谁的材料在寻求的方式选择并在连接器片在热接合工艺中细胞磁极的侧表面的材料连接在一起:如焊接或钎焊,或者冷 在加电和/或材料配合的方式接合过程。 安装板安装有从双帧和单件式导体网络,其具有到端部形成为连接销由铜,铜合金,铝或铝合金,的冲压格栅。 电池连接器由铜,铜合金,铝或铝合金制成。 接触区域由铜,铜合金,铝,铝合金,钢,镍或镍合金制成。 一个独立的claimsoft包括用于电池组。
    • 20. 发明公开
    • HOCHSTROM-STECKVERBINDER
    • 高功率连接器
    • EP2649684A1
    • 2013-10-16
    • EP11785336.6
    • 2011-11-11
    • Bayerische Motoren Werke Aktiengesellschaft
    • GOESMANN, HubertusPETZ, PhilippHAUCK, Axelle
    • H01R13/20H01R13/15
    • H01R13/15H01R13/187
    • The invention describes a high-current plug connector for currents of more than 100 A, in particular more than 200 A. The high-current plug connector of the invention comprises a first connection element (10) which comprises a first contact section (11) and a first connection section (12), and also a second connection element (20) which comprises a second contact section (21) and a second connection section (22). The high-current plug connector also has a spring element (30), which is arranged between the first and the second contact section (11, 21), for establishing an electrical connection between the first and the second connection element (10, 20), wherein the first and the second connection section are each connected to an electrical conductor (13, 23). The first and the second contact section (11, 21) are each in the form of flat pieces. A first, planar contact area (11 A) is formed on a front face of the first contact section, and a second, planar contact area (21 A) is formed on a front face of the second contact section (21), wherein the spring element (30) is clamped exclusively between the first and the second contact areas (11A, 21A) in order to electrically connect the first and the second contact section (11, 21).