Effect of N+Implantation on Surface Characteristics of 316L Stainless Steels for Bipolar Plate in PEMFC

被引:7
|
作者
Kim, Yu-Sung [1 ]
Kim, Dae-Wook [1 ]
Lee, In-Sik [1 ]
Yoon, Sungook [2 ]
Kim, Daeil [3 ]
Jun, Shinhee [4 ]
Cha, Byung-Chul [1 ]
机构
[1] Korea Inst Ind Technol KITECH, Ulsan Reg Div, Adv Mfg Proc R&D Grp, 55 Jongga Ro, Ulsan 44313, South Korea
[2] Korea Shipbldg & Offshore Engn Co Ltd, Bangeojinsunhwando Ro 1000, Ulsan 44032, South Korea
[3] Univ Ulsan, Sch Mat Sci & Engn, 55-12 Techno Saneop Ro, Ulsan 44776, South Korea
[4] Bosung Trading & Engn Co Ltd, 55,Cheoyongsaneop 4 Gil, Ulsan 44776, South Korea
关键词
plasma immersion ion implantation; bipolar plate; corrosion resistance; IMMERSION ION-IMPLANTATION; CORROSION BEHAVIOR; FUEL-CELLS; LOW-ENERGY; RESISTANCE; TEXTURE; DESIGN;
D O I
10.3390/coatings10070604
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Nitrogen was implanted into 316L stainless steel by plasma immersion ion implantation (PIII) for surface modification. Due to nitrogen implantation, the corrosion resistance and interfacial contact resistance (ICR) were improved compared to the bare 316L stainless steel. The improved corrosion resistance was attributed to the formation of the expanded austenite phase (gamma(N)). The phase formation was found to be closely related to the evolution of the (111) plane texture. The formation of gamma(N)is strongly related to applied bias voltages. When bias voltages were increased to 15 kV, the gamma(N)phase was partially decomposed due to the formation of excessive nitride, including the CrN phase. For the ICR, increased crystallite size is effective in reducing contact resistance, which might arise from a reduced number of the grain boundary with electron scattering. In particular, the applied bias voltage of 10 kV was the most effective to both corrosion resistance and ICR, and its performance satisfies the demand for a bipolar plate in the Polymer Electrolyte Membrane Fuel Cells (PEMFC).
引用
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页数:10
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