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    • 2. 发明申请
    • Electrodes having wiped edges
    • 具有擦拭边缘的电极
    • US20050274001A1
    • 2005-12-15
    • US10864798
    • 2004-06-10
    • Jon WestThomas McCallThomas Audit
    • Jon WestThomas McCallThomas Audit
    • H01M4/04H01M4/42
    • H01M4/0404H01M4/0409H01M4/0411Y10T29/49115
    • A method and apparatus for extruding materials, including electrolytically active materials, onto metallic substrates used in the production of electrodes. The method and apparatus facilitates the production of improved electrodes for use in energy storage devices, such as rechargeable batteries. A preferred device may include a base, a spreader, edge guides and wipers. The wipers, or doctor blades, clean a portion of the substrate during the extrusion process. This provides a clean edge on which a current collector can be welded. The clean edge enables an electrode that is more reliable, more easily used during the battery manufacturing process, and may also provide for lower internal resistance of the energy storage cell.
    • 一种用于将材料(包括电解活性材料)挤出到用于生产电极的金属基底上的方法和装置。 该方法和装置有助于生产用于诸如可再充电电池的能量存储装置中使用的改进的电极。 优选的装置可以包括底座,吊具,边缘导向件和擦拭器。 刮水器或刮刀在挤出过程中清洁基材的一部分。 这提供了可以焊接集电器的干净边缘。 清洁边缘使电极在电池制造过程中更可靠,更容易使用,并且还可以提供能量存储单元的较低的内部电阻。
    • 3. 发明申请
    • Nickel precoat for electrode plates
    • 镍电极板预涂层
    • US20050277024A1
    • 2005-12-15
    • US10867205
    • 2004-06-15
    • Jon WestThomas AuditThomas McCall
    • Jon WestThomas AuditThomas McCall
    • H01M4/52H01M4/58H01M4/66H01M4/80H01M10/34
    • H01M4/669H01M4/661H01M4/667H01M4/803H01M10/345
    • The disclosure relates to increasing the performance of batteries by reducing the internal resistance of the electrodes and improving the adhesion of electrolytic materials to metal substrates used in the manufacture of electrodes for energy storage cells. In one embodiment, the present invention may be illustrated as a system and method for increasing battery performance by precoating the electrode plates with nickel, to improve the adherence of the metal hydrides, or other electrolytic materials, to the metallic substrate. For example, by precoating a nickel plated steel substrate with powdered nickel at or near the glass transition temperature of 1100° C., the adhesion of nickel metal hydride powder is improved, providing an electrode with reduced internal resistance, when compared to electrodes in which the metal substrate is not precoated with nickel.
    • 本公开涉及通过降低电极的内部电阻并改善电解质材料与用于制造用于储能电池的电极的金属基底的粘合性来提高电池的性能。 在一个实施例中,可以将本发明示出为通过用镍预涂电极板来提高电池性能的系统和方法,以改善金属氢化物或其它电解材料对金属基底的粘附。 例如,通过在玻璃化转变温度为1100℃的条件下预涂涂覆镍粉末的镍基板,镍金属氢化物粉末的粘附性得到改善,提供了具有降低的内部电阻的电极,当与其中 金属基体不用镍预涂。
    • 5. 发明申请
    • Conductive element between terminal and collector
    • 端子和收集器之间的导电元件
    • US20050266308A1
    • 2005-12-01
    • US10853769
    • 2004-05-26
    • Jon WestThomas McCallThomas Audit
    • Jon WestThomas McCallThomas Audit
    • H01B1/00H01B1/12H01M2/26H01M2/30H01M10/00
    • H01M2/26H01B1/122H01M2/30H01M10/00Y10T29/49117
    • A collector to terminal conductive element, or tab, for use with multiple-contact current collectors in the manufacture and use of energy storage cells. The collector to terminal conductive element of the present invention provides for lower internal resistance and higher conductivity than previous positive devices, thereby achieving higher current handling capacity and lower discharge temperatures. The conductive element of the present invention is manufactured separately from the collector itself, to avoid problems with alignment during the process of connecting the collector to the energy storage device and to facilitate the tab's connection to the cell terminal. In one preferred embodiment, the terminal to collector conductive element is useful for creating current paths between the anode of a coiled cell energy storage device and a battery terminal.
    • 集电器到端子导电元件或接头,用于在制造和使用能量存储单元时与多接触集电器一起使用。 本发明的集电极至端子导电元件提供比以前的正器件更低的内部电阻和更高的导电性,从而实现更高的电流处理能力和更低的放电温度。 本发明的导电元件与收集器本身分离地制造,以避免在将集电器连接到能量存储装置的过程中的对准问题,并且便于标签与电池端子的连接。 在一个优选实施例中,端子到集电极导电元件可用于在卷绕的电池储能装置的阳极和电池端子之间产生电流路径。