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An investigation into the use of additive manufacture for the production of metallic bipolar plates for polymer electrolyte fuel cell stacks

机译:使用增材制造技术生产用于聚合物电解质燃料电池堆的金属双极板的研究

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摘要

The bipolar plate is of critical importance to the efficient and long lasting operation of a polymer electrolyte fuel cell (PEMFC) stack. With advances in membrane electrode assembly design, greater attention has been focused on the bipolar plate and the important role it plays. Although carbon composite plates are a likely candidate for the mass introduction of fuel cells, it is metallic plates made from thin strip materials which could deliver significant advantages in terms of part cost, electrical performance and size. However, there are some disadvantages. Firstly, interfacial stability of the metal interconnect is difficult to achieve. Secondly, and the issue addressed here, is the difficultly and cost in developing new plate designs when there are very significant tooling costs associated with manufacture. The use of selective laser melting (SLM: an additive manufacturing technique) was explored to produce metallic bipolar plates for PEMFC as a route to inexpensively test several plate designs without committing to tooling. Crucial to this was proving that, electrically, bipolar plates fabricated by SLM behave similarly to those produced by conventional manufacturing techniques. This research presents the development of a small stack to compare the short term performance of metallic plates made by machining against those made by SLM. Experimental results demonstrate that the cell performance in this case was unaffected by the manufacturing method used and it is therefore concluded that additive manufacturing could be a very useful tool to aid the rapid development of metallic bipolar plate designs.
机译:双极板对于聚合物电解质燃料电池(PEMFC)堆的高效且持久运行至关重要。随着膜电极组件设计的进步,人们对双极板及其发挥的重要作用越来越关注。尽管碳复合板很可能成为大规模引入燃料电池的候选材料,但它是由薄条材料制成的金属板,在零件成本,电气性能和尺寸方面可以提供明显的优势。但是,有一些缺点。首先,难以实现金属互连的界面稳定性。其次,这里要解决的问题是,当与制造相关的工具成本非常高时,开发新的印版设计会很困难且成本很高。探索了使用选择性激光熔化(SLM:一种增材制造技术)来生产用于PEMFC的金属双极板的方法,该方法可廉价地测试几种板的设计而无需使用工具。对此至关重要的是,证明由SLM制造的双极板在电性能上与常规制造技术相似。这项研究提出了一种小叠板的开发,以比较机加工金属板和SLM制板的短期性能。实验结果表明,这种情况下的电池性能不受所用制造方法的影响,因此得出结论,增材制造可能是帮助快速发展金属双极板设计的非常有用的工具。

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