首页> 外文会议>Annual Technical Conference of the Society of Plastics Engineers >EFFECTS OF MOLDING PARAMETERS CONTROL ON FIBER ORIENTATION AND DISTRIBUTION LEADING TO HIGH ELECTRICAL CONDUCTIVITIES OF INJECTION MOLDED BIPOLAR PLATES
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EFFECTS OF MOLDING PARAMETERS CONTROL ON FIBER ORIENTATION AND DISTRIBUTION LEADING TO HIGH ELECTRICAL CONDUCTIVITIES OF INJECTION MOLDED BIPOLAR PLATES

机译:模塑参数控制对纤维取向和分布的影响,导致注塑双极板高电导率

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Electrical polymer composites for molding of bipolar plate are easily fabricated. In this study, PPS filled with 50wt% carbon fiber (CF) and PPS mixed with 50wt% CF + 20wt% Graphite (GP) were used for injection molding of a bipolar plate to study the associated fiber orientation and distribution and their effects on surface conductivity under various molding conditions. The flat plates were both convectional injection molded (CIM) and injection compression molded (ICM). In-plane conductivity (IPC) and through-plane resistance (TPR) of the bipolar plates was measured. Under proper molding conditions, TPR and IPC can be improved by 54% and 48%, respectively, in CIM, whereas TPR was improved by 70% and IPC improved by 184% in ICM. IPC can reach 156S/cm when molded by ICM.
机译:用于模制双极板的电聚合物复合材料易于制造。在该研究中,填充有50wt%的碳纤维(CF)和PPS与50wt%CF + 20wt%石墨(GP)的PPS用于注射双极板以研究相关的纤维取向和分布及其对表面的影响在各种成型条件下的电导率。平板均为对映射成型(CIM)和注射压缩模塑(ICM)。测量平面内电导率(IPC)和双极板的通孔电阻(TPR)。在适当的模塑条件下,CIM分别可以提高54%和48%,而TPR分别提高70%,IPC在ICM中提高184%。 ICM模制时,IPC可达到156秒/厘米。

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