首页> 外文期刊>International journal of hydrogen energy >Growth of Cr-Nitrides on commercial Ni-Cr and Fe-Cr base alloys to protect PEMFC bipolar plates
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Growth of Cr-Nitrides on commercial Ni-Cr and Fe-Cr base alloys to protect PEMFC bipolar plates

机译:在商用Ni-Cr和Fe-Cr基合金上生长Cr-氮化物以保护PEMFC双极板

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摘要

Nitridation of Cr-bearing alloys can yield low interfacial contact resistance (ICR), electrically conductive and corrosion-resistant CrN or Cr_2N base surfaces of interest for a range of electrochemical devices, including fuel cells, batteries, and sensors. This paper presents results of exploratory studies of the nitridation of commercially available, high Cr (30-35 wt%) Ni-Cr alloys and a ferritic high Cr (29 wt%) stainless steel for proton exchange membrane fuel cell (PEMFC) bipolar plates. A high degree of corrosion resistance in sulfuric acid solutions designed to simulate bipolar plate conditions and low ICR values were achieved. Oxygen impurities in the nitriding environment were observed to play a significant role in the nitrided surface structures that formed, with detrimental effects for the Ni-Cr base alloys, but beneficial effects for the stainless steel alloy. Positive results from single-cell fuel cell testing are also presented.
机译:含铬合金的氮化可产生低介电接触电阻(ICR),导电和耐腐蚀的CrN或Cr_2N基体表面,可用于许多电化学设备,包括燃料电池,电池和传感器。本文介绍了用于质子交换膜燃料电池(PEMFC)双极板的市售高Cr(30-35 wt%)Ni-Cr合金和铁素体高Cr(29 wt%)不锈钢的氮化研究的探索性结果。设计用于模拟双极板条件和低ICR值的硫酸溶液中具有很高的耐腐蚀性。观察到氮化环境中的氧杂质在形成的渗氮表面结构中起着重要作用,这对Ni-Cr基合金具有不利影响,但对不锈钢合金则有利。还展示了单电池燃料电池测试的积极结果。

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