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The effect of the change in the microscopic structures of the iron on corrosion resistance and passivated properties

机译:铁的微观结构变化对耐蚀性和钝化性能的影响

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摘要

The passive film of iron showed n-type semiconductor characteristic in borate buffer solution, and its donor concentration increased slightly after tensile strain in the present study. However, comparing with solution-annealed sample, the anodic passive film formed on tensile-strained one was highly protective. The more dislocations on tensile-strained sample promoted the diffusion of iron and oxygen vacancy. Moreover, more donor density (mainly oxygen vacancies) promoted the diffusion of oxygen. They all facilitated tensile-strained sample to form Fe_2O_3 and thicker passive film on the surface. More Fe_2O_3 and thicker passive film on the surface of tensile-strained iron could improve corrosion resistance.
机译:在硼酸盐缓冲溶液中,铁的钝化膜表现出n型半导体特性,在本研究中,铁的钝化膜在拉伸应变后略有增加。但是,与固溶退火样品相比,在拉伸应变样品上形成的阳极钝化膜具有很高的保护性。拉伸应变样品上的更多位错促进了铁和氧空位的扩散。此外,更高的供体密度(主要是氧空位)促进了氧的扩散。他们都促进了拉伸应变样品在表面上形成Fe_2O_3和更厚的钝化膜。拉伸铁表面上更多的Fe_2O_3和较厚的钝化膜可以提高耐蚀性。

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