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Ferritic stainless steels as bipolar plate material for polymer electrolyte membrane fuel cells

机译:铁素体不锈钢作为聚合物电解质膜燃料电池的双极板材料

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摘要

Both interfacial contact resistance (ICR) measurements and electrochemical corrosion techniques were applied to ferritic stainless steels in a solution simulating the environment of a bipolar plate in a polymer electrolyte membrane fuel cell (PEMFC). Stainless steel samples of AISI434, AISI436, AISI441, AISI444, and AISI446 were studied, and the results suggest that AISI446 could be considered as a candidate bipolar plate material. In both polymer electrolyte membrane fuel cell anode and cathode environments, AISI446 steel underwent passivation and the passive films were very stable. An increase in the ICR between the steel and the carbon backing material due to the passive film formation was noted. The thickness of the passive film on AISI446 was estimated to be 2.6 nm for the film formed at -0.1 V in the simulated PEMFC anode environment and 3.0 nm for the film formed at 0.6 V in the simulated PEMFC cathode environment. Further improvement in the ICR will require some modification of the passive film, which is dominated by chromium oxide.
机译:界面接触电阻(ICR)测量和电化学腐蚀技术都应用于模拟聚合物电解质膜燃料电池(PEMFC)中双极板环境的溶液中的铁素体不锈钢。研究了AISI434,AISI436,AISI441,AISI444和AISI446的不锈钢样品,结果表明AISI446可被视为候选的双极板材料。在聚合物电解质膜燃料电池的阳极和阴极环境中,AISI446钢都经过钝化处理,并且钝化膜非常稳定。注意到由于钝化膜的形成,钢和碳背衬材料之间的ICR增加。对于在模拟PEMFC阳极环境中以-0.1 V形成的膜,估计AISI446上的无源膜厚度为2.6 nm,对于在模拟PEMFC阴极环境中以0.6 V形成的膜,估计为3.0 nm。 ICR的进一步改进将需要对被动膜进行一些修改,该被动膜以氧化铬为主。

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