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首页> 外文期刊>Anti-Corrosion Methods and Materials >Effect of diffusion alloying time on corrosion resistance and surface conductivity of niobium-alloying-modified AISI430 stainless steel for DFAFC bipolar plate
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Effect of diffusion alloying time on corrosion resistance and surface conductivity of niobium-alloying-modified AISI430 stainless steel for DFAFC bipolar plate

机译:扩散合金时间对DFAFC双极板铌合金改性AISI430不锈钢耐腐蚀性和表面电导率的影响

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Purpose The purpose of this study is to improve the surface electrical conductivity and corrosion resistance of AISI430 stainless steel (430 SS) as bipolar plates for direct formic acid fuel cell (DFAFC). Design/methodology/approach The niobium diffusion layers have been successfully synthesized on 430 SS substrate by the plasma surface diffusion alloying technique under different diffusion alloying time. Findings The surface morphology of Nb-modified 430 SS prepared under the diffusion alloying time of 2 h is more homogeneous, relatively sleek and compact without surface micropore and other common surface blemishes. The potentiostatic and potentiodynamic polarization measurements manifest that Nb-modified 430 SS prepared under the diffusion alloying time of 2 h enormously ameliorate the corrosion resistance of bare 430 SS compared with other Nb-modified 430 SS samples and its corrosion current density is maintained at -1.4 mu A cm(-2) in simulated anodic environment of DFAFC (0.05 M H2SO4 + 2 ppm HF + 10 M formic acid at 50 degrees C). Originality/value The effect of diffusion alloying time on the corrosion resistance and surface conductivity of Nb-modified 430 SS has been carefully studied. The Nb-modified 430 SS samples prepared at the diffusion alloying time of 2 h have the best surface electrical conductivity and corrosion resistance in the simulated anodic environment of DFAFC.
机译:目的本研究的目的是提高AISI430不锈钢(430SS)的表面电导率和耐腐蚀性,作为用于直接甲酸燃料电池(DFAFC)的双极板。设计/方法/方法通过不同扩散合金时间的等离子体表面扩散合金技术在430SS衬底上成功地合成了铌扩散层。发现在2小时的扩散合金时间内制备的Nb改性430Ss的表面形态是更均匀的,相对时尚的,无表面微孔和其他常见表面瑕疵。恒电位和电位极化偏振测量表明,在2小时的扩散合金时间下制备的Nb改性430Ss非常改善裸430ss的耐腐蚀性与其他Nb改性的430 ss样品相比,其腐蚀电流密度保持在-1.4在DFAFC的模拟阳极环境中的MU A CM(-2)(0.05M H 2 SO 4 + 2ppm HF + 10M甲酸,50℃)。原创性/值仔细研究了扩散合金时间对NB改性430SS耐腐蚀性和表面电导率的影响。在2小时的扩散合金时间在2小时内制备的Nb改性的430SS样品在DFAFC的模拟阳极环境中具有最佳的表面电导率和耐腐蚀性。

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