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    • 3. 发明申请
    • BATTERY
    • 电池
    • US20130078492A1
    • 2013-03-28
    • US13701996
    • 2011-06-06
    • Takeshi SasakiSumio MoriMinoru TeshimaTaro Yamafuku
    • Takeshi SasakiSumio MoriMinoru TeshimaTaro Yamafuku
    • H01M2/30H01M4/00
    • H01M2/30H01M2/0217H01M2/22H01M2/263H01M4/00
    • The present invention suppresses movement of a power generating element in a case of a battery while minimizing an increase in a workload in an assembly process of the battery.In the battery including: a power generating element 3; a case BC housing the power generating element 3; an electrode terminal 5 disposed outside the case; a current collector 4 connected to the power generating element 3; and a fixing member FE for fixing the current collector 4 to the case BC and having electric conductivity, the current collector 4 and the fixing member FE forming an energizing path between the power generating element 3 and the electrode terminal 5, a spacer 11 which is positioned by engagement with the fixing member FE and which suppresses movement of the power generating element 3 is disposed between the fixing member FE and the power generating element 3.
    • 本发明抑制了在电池的情况下的发电元件的移动,同时最小化电池的组装过程中的工作量的增加。 在电池中包括:发电元件3; 容纳发电元件3的壳体BC; 设置在壳体外部的电极端子5; 连接到发电元件3的集电器4; 以及用于将集电体4固定到壳体BC并具有导电性的固定构件FE,集电体4和固定构件FE在发电元件3和电极端子5之间形成通电路径,隔离件11是 通过与固定构件FE的接合定位,并且抑制发电元件3的移动被设置在固定构件FE和发电元件3之间。
    • 4. 发明申请
    • Nonaqueous electrolytic cell and its manufacturing method
    • 非水电解槽及其制造方法
    • US20100178570A1
    • 2010-07-15
    • US12310653
    • 2007-08-31
    • Suguru KozonoKazusa YukimotoShigeki YamateTaro YamafukuYoshihiro KatayamaAtsushi FunabikiToshiyuki Nukuda
    • Suguru KozonoKazusa YukimotoShigeki YamateTaro YamafukuYoshihiro KatayamaAtsushi FunabikiToshiyuki Nukuda
    • H01M6/16H01M10/26H01M10/04
    • H01M10/0525H01M4/40H01M4/505H01M4/525H01M4/625H01M10/052H01M10/0568H01M10/0569H01M10/4235H01M2300/0025Y02T10/7011Y10T29/49108
    • The invention aims to suppress gas generation in a nonaqueous electrolytic cell having a negative electrode containing negative active material such as lithium titanate and particularly suppress swelling in a nonaqueous electrolytic cell by suppressing gas generation at the time of storage at a high temperature. The nonaqueous electrolytic cell comprises a nonaqueous electrolyte containing an electrolytic salt and a nonaqueous solvent, a positive electrode, and a negative electrode containing a negative electrode material into/from which lithium ions are inserted/extracted at a potential higher than the lithium potential by 1.2 V. The nonaqueous electrolytic cell is characterized in that the nonaqueous electrolyte contains vinylene carbonate, the negative electrode has a coat thereon, and the nonaqueous electrolytic cell is used in a range of negative electrode potential nobler than the lithium potential by 0.8 V. A nonaqueous electrolytic cell manufacturing method is characterized in that a nonaqueous electrolyte containing vinylene carbonate is used, the initial charge-discharge is carried out under a condition that the negative potential in the completed charged state exceeds the lithium potential by 0.8 V, a coat is formed on the surface of the negative electrode or a coat is formed on the surface of the negative electrode at the initial charge-discharge in such a way at least once, the negative potential is lowered below the lithium potential by 0.4 V.
    • 本发明旨在抑制具有含钛酸锂等负极活性物质的负极的非水电解液中的气体产生,并且通过抑制在高温下储存时的气体产生而特别抑制非水电解槽中的溶胀。 非水电解液包含含有电解质盐和非水溶剂的非水电解质,正极和含有负极材料的负极,锂离子以高于锂电位的电位插入/提取1.2倍 非水电解质的特征在于,非水电解质含有碳酸亚乙烯酯,负极上具有涂层,非水电解质电池的电位比锂电位低0.8V。 电解槽制造方法的特征在于,使用含有碳酸亚乙烯酯的非水电解液,在完成充电状态的负电位超过锂电位0.8V的条件下进行初始充放电,在 负极的表面或涂层形成在其上 在初始充放电时负极的表面至少一次,负电位降低到低于锂电位0.4V。