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    • 1. 发明授权
    • Cylindrical AAA alkaline dry battery
    • 圆柱形AAA碱性干电池
    • US09105897B2
    • 2015-08-11
    • US12529894
    • 2009-03-16
    • Yasuhiko Syoji
    • Yasuhiko Syoji
    • H01M6/08H01M2/02H01M2/30H01M2/34
    • H01M6/085H01M2/0235H01M2/0267H01M2/30H01M2/344
    • The invention relates to a cylindrical AAA alkaline dry battery including: a positive terminal protruding from one end face of the alkaline dry battery; a negative terminal protruding from the other end face; and an external label covering the alkaline dry battery. The diameter Dp (mm) and protruding height Hp (mm) of the positive terminal and the diameter Dn (mm) and protruding height Hn (mm) of the negative terminal satisfy the relation (1): 2.5≦Dn−Dp≦4.1 (1), and the relation (2): 0.8≦Hp−Hn≦1.1 (2). This permits easy and reliable identification of the polarities of the terminals, making it possible to provide a cylindrical AAA alkaline dry battery which is unlikely to be installed reversely.
    • 本发明涉及一种圆柱形AAA碱性干电池,其包括:从所述碱性干电池的一个端面突出的正极端子; 从另一端面突出的负极端子; 以及覆盖碱性干电池的外部标签。 正极端子的直径Dp(mm)和突出高度Hp(mm),负极端子的直径Dn(mm)和突出高度Hn(mm)满足关系式(1):2.5≦̸ Dn-Dp≦̸ 4.1 (1),关系式(2):0.8≦̸ Hp-Hn≦̸ 1.1(2)。 这允许容易且可靠地识别端子的极性,使得可以提供不太可能反向安装的圆柱形AAA碱性干电池。
    • 3. 发明申请
    • ALKALINE PRIMARY BATTERY
    • 碱性电池
    • US20130065112A1
    • 2013-03-14
    • US13636094
    • 2011-11-22
    • Shunsuke UzukaShinichi SumiyamaYasuhiko Syoji
    • Shunsuke UzukaShinichi SumiyamaYasuhiko Syoji
    • H01M6/08H01M2/02
    • H01M6/085H01M4/06H01M4/50
    • Disclosed is an alkaline primary battery including: a bottomed cylindrical battery case; a cylindrical positive electrode having a hollow, being in contact with an inner wall of the battery case, and including manganese dioxide; a gel negative electrode being in the hollow of the positive electrode, and including zinc or a zinc alloy; a separator interposed between the positive electrode and the negative electrode; and an alkaline electrolyte. The positive electrode has an electric capacity C1 and a height L1, the negative electrode has an electric capacity C2 and a height L2, the electric capacity C1 and the electric capacity C2 satisfy the relational expression (1): 1.05≦C2/C1≦1.25   (1), and the height L1 and the height L2 satisfy the relational expression (2): 0.85≦L2/L1≦f(C2/C1)   (2), where f(C2/C1)=−0.3058×C2/C1+1.3153.
    • 公开了一种碱性一次电池,其包括:有底圆筒形电池盒; 具有与电池壳体的内壁接触并且包括二氧化锰的中空的圆柱形正电极; 凝胶负极位于正极的中空部,并且包含锌或锌合金; 夹在正极和负极之间的隔膜; 和碱性电解质。 正极具有电容C1和高度L1,负极具有电容C2和高度L2,电容C1和电容C2满足关系式(1):1.05≦̸ C2 / C1≦̸ 1.25(1),高度L1和高度L2满足关系式(2):0.85≦̸ L2 / L1≦̸ f(C2 / C1)(2)其中f(C2 / C1)= -0.3058×C2 /C1+1.3153。
    • 5. 发明授权
    • Alkaline electrochemical cell with a blended zinc powder
    • 碱性电化学电池与混合锌粉
    • US08202651B2
    • 2012-06-19
    • US13198807
    • 2011-08-05
    • Danan Fan
    • Danan Fan
    • H01M4/42
    • H01M4/12H01M4/244H01M4/42H01M6/08H01M6/085
    • An electrochemical cell with a blended zinc powder is disclosed. The blended zinc powder includes selected portions of a first zinc powder and a second zinc powder. In a preferred embodiment, the first and second powders are divided into groups based on ranges in their particle size distribution. Particle characteristics such as roughness and elongation are used to selected groups of both powders that are combined to produce the blended zinc powder. The blended zinc powders enable battery manufacturers to maximize the cell's run time while minimizing the cost of the zinc.
    • 公开了一种具有混合锌粉的电化学电池。 混合锌粉末包括第一锌粉末和第二锌粉末的选定部分。 在优选的实施方案中,基于其粒度分布的范围将第一和第二粉末分成组。 将粒子特性如粗糙度和伸长率用于组合的两种粉末的选定组,以生产混合的锌粉末。 混合的锌粉使电池制造商能够最大限度地提高电池的运行时间,同时最大限度地降低锌的成本。
    • 7. 发明授权
    • Alkaline electrochemical cell with a blended zinc powder
    • 碱性电化学电池与混合锌粉
    • US08017271B2
    • 2011-09-13
    • US12731214
    • 2010-03-25
    • Danan Fan
    • Danan Fan
    • H01M4/42
    • H01M4/12H01M4/244H01M4/42H01M6/08H01M6/085
    • An electrochemical cell with a blended zinc powder is disclosed. The blended zinc powder includes selected portions of a first zinc powder and a second zinc powder. In a preferred embodiment, the first and second powders are divided into groups based on ranges in their particle size distribution. Particle characteristics such as roughness and elongation are used to selected groups of both powders that are combined to produce the blended zinc powder. The blended zinc powders enable battery manufacturers to maximize the cell's run time while minimizing the cost of the zinc.
    • 公开了一种具有混合锌粉的电化学电池。 混合锌粉末包括第一锌粉末和第二锌粉末的选定部分。 在优选的实施方案中,基于其粒度分布的范围将第一和第二粉末分成组。 将粒子特性如粗糙度和伸长率用于组合的两种粉末的选定组,以生产混合的锌粉末。 混合的锌粉使电池制造商能够最大限度地提高电池的运行时间,同时最大限度地降低锌的成本。