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    • 3. 发明授权
    • Tempered thin-walled cathode can
    • 钢化薄壁阴极罐
    • US5582932A
    • 1996-12-10
    • US435195
    • 1995-05-05
    • John E. OltmanJohn D. Burns
    • John E. OltmanJohn D. Burns
    • H01M2/02H01M4/24H01M4/42H01M4/62H01M12/06H01M2/04
    • H01M2/0222H01M12/06H01M2/0257H01M2/027H01M2/0272H01M2/0275H01M4/244H01M4/42H01M4/62H01M2300/0085
    • This invention pertains to alkaline electrochemical cells, typically to metal-air cells of the button-type. Non-reactive elements of cells of the invention are thinner than corresponding non-reactive elements of prior art cells. Such elements can be made thinner because of improved structures of such elements. The anode can is made from a metal strip structure having a higher steel content. The cathode can has a modified temper, which improves relative stiffness and rigidity while retaining sufficient ductility. The seal disposed between the anode can and the cathode can is made thinner. Structure of the corner of the cathode can between the bottom and the side wall is improved. By so reducing the thicknesses of non-reactive elements of the cell, and thus the volume occupied by such non-reactive elements, the fraction of the cell devoted to holding electrochemically reactive anode material therein is increased, with corresponding increase in the milliampere hour capacity of the cell.
    • 本发明涉及碱性电化学电池,通常用于按钮型金属 - 空气电池。 本发明的细胞的非反应性元件比现有技术细胞的相应的非反应性元件薄。 由于这些元件的结构改进,这些元件可以变得更薄。 阳极罐由具有较高钢含量的金属带结构制成。 阴极可以具有改进的回火,其改善相对刚度和刚度,同时保持足够的延展性。 设置在阳极罐和阴极罐之间的密封件制成更薄。 底部和侧壁之间阴极的角部结构得到改善。 通过这样减小电池的非反应性元件的厚度,并因此降低了这种非反应性元件占据的体积,致使其中保持电化学反应性阳极材料的电池部分增加,相应地增加了毫安小时容量 的细胞。
    • 5. 发明授权
    • Rechargeable battery assemblies and methods of constructing rechargeable battery assemblies
    • 可充电电池组件和可充电电池组件的构造方法
    • US08460816B2
    • 2013-06-11
    • US12576106
    • 2009-10-08
    • Stephen D. JulstromTimothy S. MonroeMead C. KillionJohn E. Oltman
    • Stephen D. JulstromTimothy S. MonroeMead C. KillionJohn E. Oltman
    • H01M2/30H01M6/00
    • H01M10/46H01F38/14H01F2003/005H01M10/425H02J7/025H02J50/12H02J50/70Y10T29/49108
    • Rechargeable battery assemblies and methods of constructing rechargeable battery assemblies are provided. Rechargeable battery assemblies can include a storage cell and receive circuitry comprising a receive coil operatively connected to receive control circuitry, the receive coil configured to receive inductively coupled current, the receive control circuitry configured to rectify the current and communicate charging power to the storage cell, the coil wound around a shield/core comprising magnetically permeable material, and the shield/core disposed around the storage cell. Methods of constructing rechargeable battery assemblies can include disposing a shield/core comprising magnetically permeable material around a storage cell; winding a receive coil around the shield/core; and providing the receive coil in operative connection with receive control circuitry and the storage cell, the receive coil configured to receive inductively coupled current, and the receive control circuitry configured to rectify the current and communicate charging power to the storage cell.
    • 提供可充电电池组件和构造可充电电池组件的方法。 可再充电电池组件可以包括存储单元和接收电路,接收电路包括可操作地连接到接收控制电路的接收线圈,接收线圈被配置为接收电感耦合电流,接收控制电路被配置为对电流进行整流并且向存储单元通信充电电力, 卷绕在包括导磁材料的屏蔽/芯体周围的线圈,以及设置在存储单元周围的屏蔽/芯。 构造可充电电池组件的方法可以包括在存储单元周围设置包括导磁材料的屏蔽/芯体; 围绕屏蔽/芯线缠绕接收线圈; 以及将所述接收线圈与所述接收控制电路和所述存储单元操作连接,所述接收线圈被配置为接收电感耦合电流,并且所述接收控制电路被配置为对所述电流进行整流并且向所述存储单元传送充电电力。