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    • 39. 发明申请
    • BATTERY MODULE AND METHOD OF MAKING A BATTERY
    • 电池模块和电池制作方法
    • WO1994010710A1
    • 1994-05-11
    • PCT/US1993010346
    • 1993-10-28
    • VALENCE TECHNOLOGY, INC.
    • VALENCE TECHNOLOGY, INC.CHEU, Scot, S.
    • H01M02/26
    • H01M6/46H01M2/266
    • A battery module includes a number of electrically connected electrochemical cells. In a preferred embodiment, the battery includes multi-cell batteries in which electrodes are separated from different potential electrodes by a layer of polymer electrolyte. The battery module is formed from a number of multi-cell batteries stacked on top of one another, the electrodes of each multi-cell being electrically connected to one another, and the different potential electrodes of each multi-cell being electrically connected to one another so that a battery module having desired power characteristics is formed. The battery module includes electrically conductive spacers for electrically connecting tabs on the electrodes to tabs on other electrodes and tabs on the different potential electrodes to tabs on other different potential electrodes and for preventing damage to the tabs or the electrodes or different potential electrodes from bending the tabs excessively.
    • 电池模块包括多个电连接的电化学电池。 在优选实施例中,电池包括多电池电池,其中电极通过聚合物电解质层与不同的电极分离。 电池模块由堆叠在彼此之上的多个多电池电池形成,每个多电池单元的电极彼此电连接,并且每个多电池单元的不同电位电极彼此电连接 从而形成具有期望功率特性的电池模块。 电池模块包括用于将电极上的突片电连接到不同电位电极上的其他电极和突片上的突片到其它不同电位电极上的突片的导电间隔件,并且用于防止突片或电极或不同电位电极的损坏 标签过多
    • 40. 发明申请
    • METHOD AND APPARATUS FOR COATING ALKALI OR ALKALINE EARTH METALS
    • 用于涂覆碱金属或碱土金属的方法和装置
    • WO1992022382A1
    • 1992-12-23
    • PCT/US1992005130
    • 1992-06-17
    • VALENCE TECHNOLOGY, INC.
    • VALENCE TECHNOLOGY, INC.KOKSBANG, ReneJENSEN, Gert, Lykke
    • B05C01/08
    • C23C2/006B05C1/0813
    • A process and apparatus therefore for forming a layer of metal on a substrate which comprises the steps of: forming a bath of a molten metal in a vessel (18); circulating the molten metal in the vessel (18) such that the molten metal is projected in the form of a standing wave (22) above the upper surface of the vessel; transporting a substrate (14) along a path which traverses the upper surface of the vessel (18); and transferring the projected molten metal to one surface of the substrate either directly by directly contacting the projected molten metal with the surface of the substrate or indirectly by transferring the projected metal to a transfer roll (24) which in turn transfers the molten metal to substrate (14) which is in contact with the roll (24). The thickness of the metal coating is controlled by means of a horizontally and vertically adjustable chilling roll (26) contacting the uncoated surface of the substrate (14).
    • 因此,用于在基底上形成金属层的方法和装置包括以下步骤:在容器(18)中形成熔融金属浴; 使熔融金属在容器(18)中循环,使得熔融金属以驻波(22)的形式在容器的上表面上方突出; 沿着穿过所述容器(18)的上表面的路径输送衬底(14); 并且将投射的熔融金属直接通过将投射的熔融金属与基底的表面直接接触或间接地将投射的金属转移到转移辊(24),转印辊(24)又将熔融金属转移到基底 (14)与辊(24)接触。 通过与衬底(14)的未涂覆表面接触的水平和垂直可调冷却辊(26)来控制金属涂层的厚度。