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Study On Behavior Of Plasma Nitrided 316l In Pemfc Working Conditions

机译:Pemfc工作条件下等离子渗氮316l行为的研究

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Stainless steel bipolar plates for the polymer electrolyte membrane fuel cell (PEMFC) offer many advantages over conventional machined graphite and graphite-composites. However, the interfacial ohmic loss between the metallic bipolar plate and membrane electrode assembly due to corrosion decreases the overall power output of PEMFC. A lower temperature (at 370 ℃) plasma nitriding was applied to modify the surface of stainless steel 316L bipolar plates. The results of electrochemical measurements show that corrosion resistance of the plasma nitrided 316L is improved in simulated PEMFC anode/cathode environments purged with H_2/air at 70 ℃. The surface conductivity of the nitrided layer is better than that of the air-formed oxide film. The interfacial contact resistance (ICR) between the passive film and carbon paper increases very little after potentiostatic polarization for 4 h, which indicates potential for good stability of this material in highly corrosive fuel cell environments.
机译:与传统的机加工石墨和石墨复合材料相比,用于聚合物电解质膜燃料电池(PEMFC)的不锈钢双极板具有许多优势。但是,由于腐蚀导致的金属双极板和膜电极组件之间的界面欧姆损耗降低了PEMFC的总功率输出。采用较低温度(370℃)的等离子体渗氮对不锈钢316L双极板的表面进行改性。电化学测量结果表明,在70℃下用H_2 /空气吹扫的模拟PEMFC阳极/阴极环境中,等离子体渗氮316L的耐蚀性得到了改善。氮化层的表面电导率比空气形成的氧化膜的表面电导率好。恒电位极化4 h后,钝化膜与碳纸之间的界面接触电阻(ICR)几乎没有增加,这表明该材料在高度腐蚀性的燃料电池环境中具有良好稳定性的潜力。

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