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    • 3. 发明授权
    • Tuning battery electrode porosity technical field
    • 调谐电池电极孔隙技术领域
    • US06656234B2
    • 2003-12-02
    • US09963255
    • 2001-09-26
    • Derek Richard DexterRonald David Brost
    • Derek Richard DexterRonald David Brost
    • H01M404
    • H01M4/02H01M4/20H01M2004/021Y10T29/49115
    • A method is provided for manufacturing a battery 18 having battery electrodes 20 and 22 with a desired porosity, using an electrochemical model 42 and a thermal model 44, that includes determining energy and current requirements for a particular application. Characteristics of the battery 18 in response to said energy and current requirements are determined. The battery characteristics and energy and current requirements are prepared for use in the electrochemical model 42 and the thermal model 44. The porosity of the battery electrodes is determined by solving equations within the electrochemical model 42 and the thermal model 44. Porosity of the battery electrodes is varied until voltage potential across the battery varies by less then a predetermined tolerance factor for an operating range state of charge. A paste mixture is created in response to the desired battery electrode porosity. The paste mixture is applied to a grid followed by curing of the grid and paste.
    • 提供了一种使用电化学模型42和热模型44制造具有期望孔隙率的电池电极20和22的电池18的方法,其包括确定特定应用的能量和电流要求。 确定响应于所述能量和电流要求的电池18的特性。 电池特性和能量和电流要求准备用于电化学模型42和热模型44.电池电极的孔隙率通过求解电化学模型42和热模型44内的方程来确定。电池电极的孔隙率 是变化的,直到电池两端的电压电压相对于工作范围的充电状态变化小于预定的公差系数。 响应于期望的电池电极孔隙率产生糊状混合物。 将糊状混合物施加到格栅上,然后固化网格和糊剂。