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Improved anticorrosion properties and electrical conductivity of 316L stainless steel as bipolar plate for proton exchange membrane fuel cell by lower temperature chromizing treatment
Authors:Lijun Yang  Lijun Jiang  Lei Zhu  Xuyu Jian  Zhong Wang
Affiliation:Energy Materials and Technology Research Institute, Beijing General Research Institute for Nonferrous Metals, Beijing 100088, China
Abstract:The lower temperature chromizing treatment is developed to modify 316L stainless steel (SS 316L) for the application of bipolar plate in proton exchange membrane fuel cell (PEMFC). The treatment is performed to produce a coating, containing mainly Cr-carbide and Cr-nitride, on the substrate to improve the anticorrosion properties and electrical conductivity between the bipolar plate and carbon paper. Shot peening is used as the pretreatment to produce an activated surface on stainless steel to reduce chromizing temperature. Anticorrosion properties and interfacial contact resistance (ICR) are investigated in this study. Results show that the chromized SS 316L exhibits better corrosion resistance and lower ICR value than those of bare SS 316L. The chromized SS 316L shows the passive current density about 3E−7 A cm−2 that is about four orders of magnitude lower than that of bare SS 316L. ICR value of the chromized SS 316L is 13 mΩ cm2 that is about one-third of bare SS 316L at 200 N cm−2 compaction forces. Therefore, this study clearly states the performance advantages of using chromized SS 316L by lower temperature chromizing treatment as bipolar plate for PEMFC.
Keywords:Proton exchange membrane fuel cell (PEMFC)  Stainless steels  Chromizing  Corrosion  Interfacial contact resistance (ICR)
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