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首页> 外文期刊>Journal of Manufacturing Processes >A comprehensive comparison of state-of-the-art manufacturing methods for fuel cell bipolar plates including anticipated future industry trends
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A comprehensive comparison of state-of-the-art manufacturing methods for fuel cell bipolar plates including anticipated future industry trends

机译:全面比较燃料电池双极板材的最新制造方法,包括预期未来的工业趋势

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摘要

This article explains and evaluates contemporary methods for manufacturing bipolar plates (BPPs) for low temperature polymer electrolyte membrane fuel cells (LT-PEMFC) and highlights the potential of new improved approaches. BPPs are an essential component of fuel cells, responsible for distributing reaction gases to facilitate efficient conversion of gaseous electrochemical energy to electricity.BPPs must balance technical properties such as electrical and thermal conductivities, structural strength and corrosion resistance. Graphitic and metallic materials can meet the required specifications with each material offering distinct advantages and disadvantages. Each materials' performance is complimented by a comparison of its manufacturability including: the material costs, production rates and required capital investment.These results are contextualised with respect to the target applications to identify the challenges and advantages of manufacturing methods of choice for BPPs. This analysis shows that the optimal choice of BPP manufacturing method depends entirely on the needs of the target application, in particular the relative importance of manufacturing rate, cost and the expected operational life of the bipolar plate to the fuel cell designer.
机译:本文介绍了对低温聚合物电解质膜燃料电池(LT-PEMFC)制造双极板(BPP)的现代方法,并突出了新改进方法的潜力。 BPPS是燃料电池的必需组分,负责分配反应气体以便于将气态电化学能量的有效转化为电力转化为电力。在电力和导热率,结构强度和耐腐蚀等方面必须平衡技术性质,结构强度和耐腐蚀性。石墨和金属材料可以满足所需规格,每个材料都提供了不同的优点和缺点。通过可制造性的比较包括:材料成本,生产率和所需资本投资,各种材料的性能得到称赞。这些结果是关于目标申请的背景,以确定BPPS制造方法的挑战和优势。该分析表明,BPP制造方法的最佳选择完全取决于目标应用的需求,特别是制造速率,成本和双极板的预期运行寿命与燃料电池设计师的相对重要性。

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