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    • 1. 发明申请
    • Method of applying adhesive to electrochemical cell components
    • 将粘合剂施加到电化学电池组件的方法
    • US20060057286A1
    • 2006-03-16
    • US10939701
    • 2004-09-13
    • Daniel GibbonsMichael BrovarskiLeo White
    • Daniel GibbonsMichael BrovarskiLeo White
    • B05D5/12B05D3/12
    • H01M2/08B05C5/0225H01M2/0222H01M6/12H01M12/06
    • A method of applying liquid adhesive to surfaces of components of an electrochemical cell employing a needle valve applicator. The liquid adhesive is applied by dispensing it through a tubular tip connected to a pneumatically actuated needle valve applicator. The method is effective in applying adhesive to narrow width or difficult to reach surfaces of cell components in a precise, consistent and reproducible manner. In a specific application the adhesive can be applied to the narrow recessed step surrounding the terminal portion of the cathode casing of a zinc/air button cell. In such application the cathode casing may typically be rotated at speeds of between about 50 and 1000 revolutions per minute as adhesive is applied thereto from the applicator. The adhesive provides a tight seal between the cathode casing and cathode assembly, thereby preventing leakage of electrolyte from the cell.
    • 将液体粘合剂施加到使用针阀施加器的电化学电池组件的表面上的方法。 液体粘合剂通过将其分配通过连接到气动致动的针阀施加器的管状尖端而施加。 该方法在以精确,一致和可重现的方式将粘合剂施加到细胞组分的窄宽度或难以到达的表面上是有效的。 在具体应用中,可以将粘合剂施加到围绕锌/空气纽扣电池的阴极壳体的端子部分的窄凹陷步骤。 在这种应用中,当从施加器向其施加粘合剂时,阴极壳体通常可以以每分钟约50至1000转之间的速度旋转。 粘合剂在阴极壳体和阴极组件之间提供紧密的密封,从而防止电解液从电池泄漏。
    • 2. 发明授权
    • Method of applying adhesive to electrochemical cell components
    • 将粘合剂施加到电化学电池组件的方法
    • US07455882B2
    • 2008-11-25
    • US10939701
    • 2004-09-13
    • Daniel W. GibbonsMichael BrovarskiLeo White
    • Daniel W. GibbonsMichael BrovarskiLeo White
    • B05D5/10B05D7/22B05B13/06
    • H01M2/08B05C5/0225H01M2/0222H01M6/12H01M12/06
    • A method of applying liquid adhesive to surfaces of components of an electrochemical cell employing a needle valve applicator. The liquid adhesive is applied by dispensing it through a tubular tip connected to a pneumatically actuated needle valve applicator. The method is effective in applying adhesive to narrow width or difficult to reach surfaces of cell components in a precise, consistent and reproducible manner. In a specific application the adhesive can be applied to the narrow recessed step surrounding the terminal portion of the cathode casing of a zinc/air button cell. In such application the cathode casing may typically be rotated at speeds of between about 50 and 1000 revolutions per minute as adhesive is applied thereto from the applicator. The adhesive provides a tight seal between the cathode casing and cathode assembly, thereby preventing leakage of electrolyte from the cell.
    • 将液体粘合剂施加到使用针阀施加器的电化学电池组件的表面上的方法。 液体粘合剂通过将其分配通过连接到气动致动的针阀施加器的管状尖端而施加。 该方法在以精确,一致和可重现的方式将粘合剂施加到细胞组分的窄宽度或难以到达的表面上是有效的。 在具体应用中,可以将粘合剂施加到围绕锌/空气纽扣电池的阴极壳体的端子部分的窄凹陷步骤。 在这种应用中,当从施加器向其施加粘合剂时,阴极壳体通常可以以每分钟约50至1000转之间的速度旋转。 粘合剂在阴极壳体和阴极组件之间提供紧密的密封,从而防止电解液从电池泄漏。
    • 3. 发明申请
    • Zinc/air cell
    • 锌/空气池
    • US20070054168A1
    • 2007-03-08
    • US11220269
    • 2005-09-06
    • Hao ChangMichael BrovarskiSteven SpechtDavid Pappas
    • Hao ChangMichael BrovarskiSteven SpechtDavid Pappas
    • H01M12/06H01M2/12
    • H01M12/06H01M2/0222H01M4/8605
    • A zinc/air button cell having an air spacer member within the air inlet space of the cathode can. The spacer member may be of solid plastic, rubber, or metal construction inserted into the air inlet space (plenum region) of the cathode can adjacent air holes in the can. The spacer member may be of disk-like configuration with cut out sections therein of varying configurations. The cut out sections in the spacer disk form channels of unoccupied free space underlying the air holes allowing air to pass unobstructed from the air holes to the cathode assembly. The channels of free space are generally much wider than the diameter of the air holes. The wide channels of unoccupied “free space” running between the air holes and cathode assembly improve air flow distribution to the cathode assembly. The spacer disk simultaneously provides sufficient support to the cathode assembly preventing it from bending into the cathode can air inlet space.
    • 在阴极罐的空气入口空间内具有空气间隔件的锌/空气纽扣电池。 隔离构件可以是固体塑料,橡胶或金属结构,其插入阴极罐的空气入口空间(增压区域)中,可以邻近罐中的气孔。 间隔构件可以是盘状构造,其中具有不同构型的切口部分。 间隔盘中的切割部分形成空气孔下方空闲空闲空间的通道,允许空气从空气孔畅通到阴极组件。 自由空间的通道通常比气孔的直径宽得多。 在空气孔和阴极组件之间运行的空闲空闲空间的宽通道改善了对阴极组件的气流分布。 间隔盘同时为阴极组件提供足够的支撑,防止其弯曲进入阴极罐空气入口空间。