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Investigation of PVD coating on Corrosion resistance of metallic bipolar plates in PEM fuel cell

机译:PEM燃料电池中金属双极板耐蚀性的PVD涂层研究

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Metallic bipolar plates for the proton exchange membrane fuel cell (PEMFC) offer many advantages over conventional graphitic materials. These include relative low cost, high strength, and ease of manufacture. As a metallic bipolar plate can be easily shaped from thin sheet with complex shape, significant improvement in the fuel cell power/volume ratio can be achieved. However, corrosion of the metallic bipolar plates is a severe problem. Corrosion affects the performance and lifetime of a fuel cell. The 5052 aluminum alloy and SS 316L stainless steel were studied for their performance with that of the graphite. The physical vapor deposition (PVD) coating of YZU001 like-diamond film was applied on the 5052 aluminum alloy. The corrosion rates were determined by Tafel -extrapolation method from the polarization curves. The coated aluminum, 316L stainless steel and graphite were fabricated into single cell to measure contact resistance and to test cell performance. The results indicated that metallic bipolar plates, PVD coated 5052 aluminum and SS 316L, performed better than that of the graphite material at the low voltage and shorter cell life.
机译:与常规石墨材料相比,用于质子交换膜燃料电池(PEMFC)的金属双极板具有许多优势。这些包括相对低成本,高强度和易于制造。由于金属双极板可以容易地由具有复杂形状的薄片成形,因此可以实现燃料电池功率/体积比的显着改善。但是,金属双极板的腐蚀是一个严重的问题。腐蚀会影响燃料电池的性能和寿命。研究了5052铝合金和SS 316L不锈钢与石墨的性能。将YZU001类金刚石薄膜的物理气相沉积(PVD)涂层涂覆在5052铝合金上。根据极化曲线,通过塔菲尔外推法确定腐蚀速率。将涂层铝,316L不锈钢和石墨制成单个电池,以测量接触电阻​​并测试电池性能。结果表明,PVD涂层的5052铝和SS 316L的金属双极板在低压下的性能优于石墨材料,并且电池寿命更短。

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