材料科学
氯化物
涂层
冶金
腐蚀
镁
奥氏体
奥氏体不锈钢
应力腐蚀开裂
沸腾
复合材料
微观结构
化学
有机化学
作者
Kamleshwar Kumar,Seema Bhadauria,Abhinav Pratap Singh
标识
DOI:10.1002/mawe.202100199
摘要
Abstract The present study proposes a protective TiO 2 coating against chloride driven stress corrosion cracking problem of 316L austenitic stainless steel. To test the performance of the proposed coating, the severe chloride‐based boiling magnesium chloride solution at 155 °C was chosen. For experimentation, the constant strain‐based U‐bend specimens were coated with TiO 2 using atmospheric plasma spray method. The results indicated higher resistance by TiO 2 coated specimens against stress corrosion cracking problem, while the bare specimens experienced severe damage in the boiling magnesium chloride solution under various strain loading configurations. The coating‐electrolyte system of TiO 2 coated sample demonstrated over seven times higher resistance, eventually led to reduction in corrosion rate over fifteen times compared to the bare 316L stainless steel in the boiling magnesium chloride solution. This improved performance of the coated 316L stainless steel is attributed to inhibition of outward diffusion of iron‐chromium‐nickel in the corrosive environment and the high chemical stability of TiO 2 .
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