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Manufacturing process of conductive polymer composite bipolar plate for fuel cell having high gas permeability-resistance and heat-resistance

机译:具有高透气性和耐热性的燃料电池用导电聚合物复合双极板的制造工艺

摘要

A composite bipolar plate for a polymer electrolyte membrane fuel cell (PEMFC) is prepared as follows: a) compounding vinyl ester and graphite powder to form bulk molding compound (BMC) material, the graphite powder content ranging from 60 wt % to 95 wt % based on the total weight of the graphite powder and vinyl ester, wherein carbon fiber 1-20 wt %, modified organo clay or noble metal plated modified organo clay 0.5-10 wt %, and one or more conductive fillers selected form: carbon nanotube (CNT) 0.1-5 wt %, nickel plated carbon fiber 0.5-10 wt %, nickel plated graphite 2.5-40 wt %, and carbon black 2-30 wt %, based on the weight of the vinyl ester resin, are added during the compounding; b) molding the BMC material from step a) to form a bipolar plate having a desired shaped at 80-200° C. and 500-4000 psi.
机译:用于聚合物电解质膜燃料电池(PEMFC)的复合双极板的制备如下:a)将乙烯基酯和石墨粉复合以形成块状模塑料(BMC)材料,石墨粉的含量为60重量%至95重量%。基于石墨粉和乙烯基酯的总重量,其中碳纤维为1-20 wt%,改性有机粘土或镀有贵金属的改性有机粘土为0.5-10 wt%,以及一种或多种选自以下的导电填料:碳纳米管( CNT)基于乙烯基酯树脂的重量,添加0.1-5wt%,镀镍的碳纤维0.5-10wt%,镀镍的石墨2.5-40wt%和碳黑2-30wt%,基于乙烯基酯树脂的重量。复利b)模制来自步骤a)的BMC材料以形成在80-200℃和500-4000psi下具有期望形状的双极板。

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