腐蚀

Jennifer Stefania Caldas-Ortega
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摘要

如前所述,常规的平板面板C已经使用了大约两年,而新的平板面板X在一两个月内就遭受了严重的局部腐蚀。在本研究中,对化学成分与综材C相似的钢C′进行热处理,以再现综材C的冶金特性(硬度H v;不溶性碳化物量[MC];奥氏体晶粒尺寸d γ)。C (484 Hv);1.2%;经1040℃固溶处理180 s,再450℃回火20 s,可得到12 μ m)。2.0%;在1040℃固溶处理100 s左右,时间比C短,可以再现钢C′在6.8 vol % hno3溶液中的腐蚀,其表面形貌与钢C和钢x相似。[Cr]关系几乎等于相关固溶处理钢的腐蚀速率与[Cr]关系。在0.85、2.8和28 mM NaCl溶液中,缝隙腐蚀的再钝化电位E R.CREV也与[Cr]有关,[Cr]在11.5 ~ 12.8%范围内基本不变,当[Cr]增加到13.4%时,再钝化电位越高。因此,[Cr]值为11.5% (heald X)和12.5% (heald C)对e.r.crev没有影响。综上所述,在残氯增加的情况下,综上所述X的实际缝隙腐蚀是由于综上所述X的自发电极电位(E SP)高于E R.CREV。
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Corrosión
As reported before, conventional group of flat heald, heald C, has used to serve for about two years, while a new group of flat heald, heald X, suffered significant localized corrosion earlier in one or two months. In this study, steel C’ of chemical composition similar to heald C is heat-treated to reproduce the heald C in terms of metallurgical characteristics ( hardness H v ; amount of insoluble carbide [ MC ] ; prior austenite grain size d γ ) . The characteristics of heald C ( 484 Hv ; 1.2 % ; 12 μ m ) is found to be reproduced by a solution-treatment at 1040 ℃ for 180 s, WQ followed by tempering at 450 ℃ for 20 s, AC. Those of heald X ( 474 Hv ; 2.0 % ; 12 μ m ) , lower in hardness and more in insoluble carbide than C, could be reproduced by solution-treatment at 1040 ℃ for around 100 s, shorter time than heald C. The heat treatment condition determined as above is confirmed to corrode the steel C’ in 6.8 vol % HNO 3 solution similarly in surface appearance to healds C and X. Their corrosion rates in the same solution vs. soluble Cr content, [ Cr ] relationship are nearly equal to the corrosion rates vs. [ Cr ] relationship for relevant solution-treated steels. The repassivation potential for crevice corrosion, E R.CREV , in 0.85, 2.8 or 28 mM NaCl solution depends also on [ Cr ] , nearly constant between [ Cr ] range of 11.5 and 12.8 % , and above which becomes more noble with increasing [ Cr ] up to 13.4 % . Then, [ Cr ] values of 11.5 % ( heald X ) and 12.5 % ( heald C ) make no difference in E R.CREV . Real crevice corrosion for heald X was attributed to more noble spontaneous electrode potential, E SP , of heald X than E R.CREV under increased residual chlorine, as reported before.
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