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Corrosion behavior of stainless steels in crevice under cyclic corrosion test - Effect of alloying elements

机译:循环腐蚀试验下不锈钢在缝隙中的腐蚀行为 - 合金元素的影响

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Cyclic corrosion tests, consisting of 0.86 kmol m-3 NaCl solution spraying, drying, and wetting process, were conducted using a crevice-structured spot-weld specimen of ferritic stainless steels in order to investigate the effect of alloying elements on the corrosion behavior. The addition of Ni to 18Cr1Mo ferritic stainless steels was the most effective in decreasing the maximum corrosion depth in the crevice. Mo was an effective alloying element and the increase of Cr was not effective. Ni and Mo acted as effective elements decreasing the critical passive current densities and the addition of Ni was the most effective in lowering repassivation pH in acidic NaCl aqueous solutions. The result that the maximum corrosion depth decreases remarkably in the crevice could be attributed to the benefitical effect of Ni that inhibit anodic dissolution and accelerate repassivation.
机译:以铁素体不锈钢缝隙结构点焊试样为材料,对0.86 kmol m-3 NaCl溶液喷涂、干燥和润湿过程进行了循环腐蚀试验,研究了合金元素对腐蚀行为的影响。在18Cr1Mo铁素体不锈钢中加入Ni对降低缝隙最大腐蚀深度最有效。Mo是一种有效的合金元素,Cr的增加是无效的。Ni和Mo是降低临界被动电流密度的有效元素,Ni的加入对降低酸性NaCl水溶液中的再钝化pH值最为有效。缝隙中最大腐蚀深度显著减小的结果可归因于Ni的有益作用,即抑制阳极溶解并加速再钝化。

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