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Improving Corrosion Resistance of Q235 Steel by Ni-Cr Alloyed Layer 被引量:1

Improving Corrosion Resistance of Q235 Steel by Ni-Cr Alloyed Layer
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摘要 Ni-Cr alloyed layer was formed on surface of Q235 steel by double glow plasma surface metallurgy to improve the corrosion resistance of substrate. The composition and microstructure of alloyed layer was analyzed by SEM and XRD. Potentiodynamic polarization and electrochemical impedance spectroscopy was applied to evaluate the corrosion resistance of the alloyed layer. The results showed working pressure had a great effect on structure of Ni-Cr alloyed layer, and the dense and smooth alloyed layer was prepared at 50 Pa working pressure. Compared with substrate, Ni-Cr alloyed layer exhibited higher corrosion potential, lower corrosion current density and larger charge transfer resistance, which indicated that Ni-Cr alloyed layer significantly modified the corrosion resistance of Q235 steel. Ni-Cr alloyed layer was formed on surface of Q235 steel by double glow plasma surface metallurgy to improve the corrosion resistance of substrate. The composition and microstructure of alloyed layer was analyzed by SEM and XRD. Potentiodynamic polarization and electrochemical impedance spectroscopy was applied to evaluate the corrosion resistance of the alloyed layer. The results showed working pressure had a great effect on structure of Ni-Cr alloyed layer, and the dense and smooth alloyed layer was prepared at 50 Pa working pressure. Compared with substrate, Ni-Cr alloyed layer exhibited higher corrosion potential, lower corrosion current density and larger charge transfer resistance, which indicated that Ni-Cr alloyed layer significantly modified the corrosion resistance of Q235 steel.
作者 HUANG Jun ZHANG Pingze WU Hongyan BI Qiang 黄俊;张平则;WU Hongyan;BI Qiang(College of Materials and Technology,Nanjing University of Aeronautics and Astronautics Nanjing 210016,China;College of Math and Physics,Nanjing University of information Science and Technology,Nanjing 210044,China)
出处 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2012年第1期33-37,共5页 武汉理工大学学报(材料科学英文版)
基金 the Jiangsu Province Technology Results Transformation Special Funds (No. BA2007036)
关键词 double glow plasma surface metallurgy Ni-Cr alloyed layer potentiodynamic polarization electrochemical impedance spectroscopy corrosion resistance double glow plasma surface metallurgy Ni-Cr alloyed layer potentiodynamic polarization electrochemical impedance spectroscopy corrosion resistance
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