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首页> 外文期刊>Journal of Fuel Cell Science and Technology >Plasma Nitrided Type 349 Stainless Steel for Polymer Electrolyte Membrane Fuel Cell Bipolar Plate - Part II: Nitrided in Ammonia Plasma
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Plasma Nitrided Type 349 Stainless Steel for Polymer Electrolyte Membrane Fuel Cell Bipolar Plate - Part II: Nitrided in Ammonia Plasma

机译:聚合物电解质膜燃料电池双极板的等离子氮化349型不锈钢-第二部分:氨等离子氮化

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摘要

Austenitic 349 stainless steel was nitrided in an NH_3 plasma. A low interfacial contact resistance was obtained with the nitrided steel. Glancing angle X-ray diffraction suggests that the nitrided layer is very thin and possibly amorphous. X-ray photoelectron spectroscopy (XPS) studies show that the nitrided layer is composed of mixed oxides and nitrides of Fe~(3+) and Cr~(3+). Contaminations of V and Sn were also observed, though their influence on the as-nitrided surface conductivity is not clear. The nitrided samples were investigated in a simulated polymer electrolyte membrane fuel cell (PEMFC) environment, and showed excellent corrosion resistance. The XPS depth profile indicated that the passive film, which formed on the plasma-nitrided steel in the PEMFC anode environment, is composed of mixed oxides and nitrides, in which chromium oxideitride dominates the surface chemistry. No V or Sn was detected on the surface after the polarization tests. For the PEMFC bipolar plate application, nitridation in NH_3 plasma is a promising surface treatment approach, though more research is needed to investigate the influence of the plasma density and substrate bias on the surface conductivity and performance of the nitrided steel in PEMFC environments.
机译:奥氏体349不锈钢在NH_3等离子体中氮化。与氮化钢获得低的界面接触电阻。掠射角X射线衍射表明氮化层非常薄并且可能是非晶的。 X射线光电子能谱研究表明,氮化层由Fe〜(3+)和Cr〜(3+)的混合氧化物和氮化物组成。还观察到了V和Sn的污染,尽管它们对氮化态表面电导率的影响尚不清楚。在模拟的聚合物电解质膜燃料电池(PEMFC)环境中研究了氮化样品,并显示出优异的耐腐蚀性。 XPS深度剖面表明,在PEMFC阳极环境中等离子氮化钢上形成的钝化膜由混合氧化物和氮化物组成,其中氧化铬/氮化物占主导地位。极化测试后在表面未检测到V或Sn。对于PEMFC双极板应用,在NH_3等离子体中进行氮化是一种很有前途的表面处理方法,尽管还需要进行更多的研究来研究等离子体密度和衬底偏压对PEMFC环境中氮化钢的表面电导率和性能的影响。

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