首页> 外文会议>Society of Plastics Engineers Annual Technical Conference >EFFECTS OF MOLDING PROCESS PARAMETERS ON THE CONDUCTIVITY ENHANCEMENT OF INJECTION MOLDED BIPOLAR PLATE USED FOR FUEL CELL
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EFFECTS OF MOLDING PROCESS PARAMETERS ON THE CONDUCTIVITY ENHANCEMENT OF INJECTION MOLDED BIPOLAR PLATE USED FOR FUEL CELL

机译:成型工艺参数对注射成型燃料电池用双极性板电导率增强的影响

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The PEMFC of bipolar plate is one of important key components for fuel cell. In this study, PPS+50% carbon fiber (CF) was fabricated by injection molding (IM), injection-compression molding (ICM) and additive changing (PPS+20% CF+30% Graphite). The in-plane conductivity (IPC) measured by four point probe and the through-plane resistance (TPR) measured by contact resistance method for molded were performed. The carbon fiber orientation and bands were examined by SEM. It was found that optimum molding condition improved TPR by 31% and IPC reaches 56S/cm, ICM improved TPR by 39% and IPC reached 73S/cm. For 30% graphite additive replacing CF improved TPR by 88% and IPC reached 124S/cm.
机译:双极板的PEMFC是燃料电池的重要关键组件之一。在这项研究中,PPS + 50%碳纤维(CF)是通过注射成型(IM),注射压缩成型(ICM)和添加剂变化(PPS + 20%CF + 30%石墨)制成的。进行通过四点探针测量的面内导电率(IPC)和通过接触电阻法测量的通面电阻(TPR)以进行模制。通过SEM检查碳纤维的取向和带。发现最佳的成型条件使TPR提高了31%,IPC达到了56S / cm,ICM使TPR提高了39%,并且IPC达到了73S / cm。对于30%的石墨添加剂替代CF,TPR改善了88%,IPC达到124S / cm。

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