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    • 1. 发明申请
    • ELECTROLYTE STORAGE STRUCTURE FOR A LITHIUM BATTERY
    • 锂电池电解质储存结构
    • US20120301753A1
    • 2012-11-29
    • US13246836
    • 2011-09-27
    • Chin-Ming ChenTe-Chuan LaiJing-Yih Cherng
    • Chin-Ming ChenTe-Chuan LaiJing-Yih Cherng
    • H01M10/42
    • H01M10/052H01M2/38H01M10/0585H01M10/42
    • An electrolyte storage structure for a lithium battery made of a battery core having a stack with positive electrode plates, negative electrode plates and separating films, a battery core positive electrode welded with the positive electrode plate, a battery core negative electrode welded with the negative electrode plate, electrolyte, and a cup for receiving the battery core, positive electrode plate, the negative electrode plate and the electrolyte. The cup has a receiving space for accommodating the electrolyte core, the positive electrode plate and the negative electrode plate, and the electrolyte is disposed separately from the battery core. The electrolyte is released and flows into the receiving space for infiltrating the battery core before the battery is set to use. The battery core is infiltrated and saturated with the electrolyte. Then the saturated lithium battery undergoes following procedures of charging and activation to generate a finished lithium battery.
    • 一种由具有正极板,负极板和分离膜的堆叠的具有电池芯的锂电池的电解质储存结构,与正极板焊接的电池芯正极,与负极焊接的电池芯负极 板,电解质和用于接收电池芯,正极板,负极板和电解质的杯。 杯具有用于容纳电解质芯,正极板和负极板的容纳空间,电解质与电池芯分开设置。 在电池设置使用之前,电解液被释放并流入接收空间以渗透电池芯。 电池芯渗入并饱和电解质。 然后饱和锂电池进行充电和激活的以下步骤以产生成品锂电池。