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    • 7. 发明授权
    • Process for fabrication of low basis weight electrode active blanks
    • 制造低基重电极活性毛坯的方法
    • US07252797B2
    • 2007-08-07
    • US10669080
    • 2003-09-22
    • Brian D. PanzerWilliam C. Thiebolt, III
    • Brian D. PanzerWilliam C. Thiebolt, III
    • B29C43/24B29B9/00
    • H01M4/131H01M4/0435H01M4/485H01M4/525H01M4/58H01M4/661H01M10/0525H01M2300/0042
    • The present invention is directed to calendaring an electrode active admixture, such as of a transition metal oxide, and particularly silver vanadium oxide, into an electrode structure. To obtain electrode structures of a desired low basis weight requires calendaring a paste of the active material into a first sheet tape, which is subsequently subjected to secondary and ternary calendering steps. Secondary calendaring is performed in a direction reverse or orthogonal to that used to form the initial sheet tape. The final calendaring step is performed in a third direction aligned 180° with respect to the first direction, but with the second structure rotated bottom over top with respect to the orientation that formed the first and second structures. The ternary calendaring step provides for fibrillation of the fluoro-polymeric binder in a direction reverse to the initial direction to form the product low basis weight electrode active structure.
    • 本发明涉及将电极活性混合物如过渡金属氧化物,特别是银钒氧化物压延到电极结构中。 为了获得所需的低基重的电极结构,需要将活性材料的糊料压延成第一片材带,随后进行二次和三元压延步骤。 在与用于形成初始片材带的方向相反或正交的方向上进行二次压延。 最终压延步骤在相对于第一方向成180°的第三方向上执行,但是第二结构相对于形成第一和第二结构的取向在底部上方旋转。 三元压延步骤提供了氟化聚合物粘合剂在与初始方向相反的方向上的原纤化,以形成低基重电极活性结构。