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The Corrosion Behaviors of Bulk Nanocrystalline Ingot Iron in Mixed Solution with Sulfuric Acid and Sodium Sulfate

机译:硫酸和硫酸钠混合溶液中块状纳米晶铸铁的腐蚀行为。

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摘要

The electrochemical corrosion properties of bulk nanocrystalline ingot iron (BNII) produced by severe rolling technique and as-received conventional polycrystalline ingot iron (CPII) in.0.1 mol/L H_2SO_4 + 0.25 mol/L Na_2SO_4 solution were studied by potentiodynamic polarization, electrochemical impedance spectroscopy and scanning electron microscope at room temperature. The corrosion current density and capacitance of double electrode layer of BNII were one order of magnitude less than those of CPII respectively, the polarization resistance of BNII was one order of magnitude larger than that of CPII. These electrochemical corrosion results demonstrated that the corrosion resistance of BNII was enhanced in comparison with that of CPII in.0.1 mol/L H_2SO_4 + 0.25 mol/L Na_2SO_4 solution at room temperature. The enhanced corrosion resistance of BNII was attributed to the differences of valence electron configurations (work function, the density distribution of valence electrons and the binding energies of valence electrons) between BNII and CPII from electrochemical corrosion nature.
机译:通过电势极化,电化学阻抗研究了在0.1 mol / L H_2SO_4 + 0.25 mol / L Na_2SO_4溶液中通过严格轧制技术制备的块状纳米晶锭铁(BNII)和按常规方法接收的常规多晶锭铁(CPII)的电化学腐蚀性能。光谱和扫描电镜在室温下。 BNII的双电极层的腐蚀电流密度和电容分别比CPII小一个数量级,BNII的极化电阻比CPII的大一个数量级。这些电化学腐蚀结果表明,在室温下,在0.1 mol / L H_2SO_4 + 0.25 mol / L Na_2SO_4溶液中,BNII的耐腐蚀性比CPII高。由于电化学腐蚀的性质,BNII和CPII之间的价电子构型(功函数,价电子的密度分布和价电子的结合能)的不同,使BNII的耐腐蚀性增强。

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