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Effect of small-sized conductive filler on the properties of an epoxy composite for a bipolar plate in a PEMFC

机译:小型导电填料对PEMFC双极板用环氧复合材料性能的影响

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This paper focused on using a conductive polymer composite (CPC) as a potential replacement for the conventional graphite bipolar plate used in polymer electrolyte membrane fuel cells (PEMFC). Based on the requirements established by the US Department of Energy (DOE), the in-plane electrical conductivity and flexural strength are required to be greater than l00S/cm and 25MPa, respectively. The high filler loading is needed to satisfy the high in-plane electrical conductivity. However, the high filler loading reduces the flexural strength and manufacturability of the composite. In this study, the composites were prepared by compounding using an internal mixer followed by compression moulding. The combination of 10 vol% carbon black (CB) as the second filler with synthetic graphite/epoxy (SG/EP) resulted in the following composite properties: 150 S/cm (in-plane conductivity), 55 S/cm (through-plane conductivity), and 38.8 MPa (flexural strength). Used as the second filler, the CB, which had a small-sized diameter, formed conductive networks that filled the voids between the SG and polymer matrix. The in-plane electrical conductivity and flexural strength of the CB/SG/EP composites at the optimum composition exceeded the requirement for bipolar plate applications.
机译:本文的重点是使用导电聚合物复合材料(CPC)替代聚合物电解质膜燃料电池(PEMFC)中使用的常规石墨双极板。根据美国能源部(DOE)制定的要求,要求面内电导率和抗弯强度分别大于100S / cm和25MPa。为了满足高的面内电导率,需要高的填料填充量。但是,高的填充量降低了复合材料的弯曲强度和可制造性。在这项研究中,复合材料是通过使用内部混合器进行配混,然后进行压模来制备的。 10vol%的炭黑(CB)作为第二种填料与合成石墨/环氧树脂(SG / EP)的组合产生以下复合特性:150 S / cm(面内电导率),55 S / cm(直通面)平面电导率)和38.8 MPa(抗弯强度)。具有较小直径的CB用作第二填料,形成了导电网络,该导电网络填充了SG和聚合物基体之间的空隙。在最佳组成下,CB / SG / EP复合材料的面内电导率和抗弯强度超过了双极板应用的要求。

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