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A review of composite bipolar plates in proton exchange membrane fuel cells: Electrical properties and gas permeability

机译:质子交换膜燃料电池复合双极板的综述:电性能和透气性

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摘要

Proton exchange membrane fuel cells (PEMFCs) consist of bipolar plates, end plates, membrane electrode assemblies, and gas diffusion layers. Among these components, the bipolar plates (BPs) are the main components because they contribute significantly to the volume, cost, and weight of the PEMFC. Owing to their good electrical and thermal conductivities, graphite and metallic materials are conventional materials for BPs. However, graphite BPs lack mechanical strength, and it is difficult to machine channels on these BPs due to the intrinsic brittleness of the material. Metallic BPs have relatively high density and require surface modifica-tion and coating to suppress surface corrosion. Recently, thermoplastic or thermosetting composites reinforced with carbon-based conductive fillers have attracted significant attention because of their superior corrosion resistance and low density. In this paper, we comprehensively review the electrical conductivities of composite BPs in terms of their carbon-based fillers, matrix materials, and the manufacturing process. Next, various surface treatments aimed at improving the interfacial contact resistance of composites are discussed. Finally, methods used for reducing gas permeabilities of composite BPs are summarized.
机译:质子交换膜燃料电池(PEMFC)由双极板,端板,膜电极组件和气体扩散层组成。在这些组分中,双极板(BPS)是主要成分,因为它们对PEMFC的体积,成本和重量显着贡献。由于其良好的电气和热导体,石墨和金属材料是BPS的常规材料。然而,石墨BPS缺乏机械强度,并且由于材料的内在脆性,难以在这些BPS上机器通道。金属BPS具有相对高的密度,需要表面模拟和涂层以抑制表面腐蚀。最近,由于其优越的耐腐蚀性和低密度,热塑性或热固性复合材料吸引了显着的关注。在本文中,我们在碳基填料,基质材料和制造过程方面全面地审查了复合BPS的电导率。接下来,讨论了旨在提高复合材料的界面接触电阻的各种表面处理。最后,总结了用于降低复合体BPS的气体渗透性的方法。

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