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首页> 外文期刊>Journal of Materials Research and Technology >Corrosion and SCC initiation behavior of low-alloy high-strength steels microalloyed with Nb and Sb in a simulated polluted marine atmosphere
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Corrosion and SCC initiation behavior of low-alloy high-strength steels microalloyed with Nb and Sb in a simulated polluted marine atmosphere

机译:低合金高强度钢的腐蚀和SCC起始行为在模拟污染海洋气氛中微合金化与SB的微合金化

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Corrosion and stress corrosion cracking (SCC) behavior of some low-alloy high-strength steels microalloyed with Nb and Sb were in detail studied in a simulated polluted marine atmosphere. The results indicated that the high-strength steel without Nb and Sb was badly damaged by corrosion and very susceptive to SCC in a SO2-containing marine atmosphere, which was characterized by high corrosion rate and a large number of potential initiation sites for SCC cracks. By contrast, Nb addition affected little on atmospheric corrosion rate, but weakened the role of hydrogen at the boundaries of prior austenite grain and lath bainite. Sb addition significantly reduced the corrosion rate by optimizing the properties of rust layer through its synergy with Cu, and inhibited the localized anodic dissolution and acidification effect underneath. Thus, the combined addition of Nb and Sb increased the resistance to atmospheric corrosion and substantially inhibited SCC initiation.
机译:在模拟污染的海洋气氛中研究了微合金化的一些低合金高强度钢的腐蚀和应力腐蚀裂纹(SCC)行为。结果表明,没有Nb和Sb的高强度钢被腐蚀严重损坏,并且SCC在含SO2的海洋气氛中非常易受损坏,其特征在于高腐蚀速率和SCC裂缝的大量潜在发起位点。相比之下,Nb加法对大气腐蚀速率影响很小,但削弱了氢在现有奥氏体晶粒和Lath Bainite的界限处的作用。通过用Cu的协同作用优化铁锈层的性能,Sb添加显着降低了腐蚀速率,并抑制了下面的局部阳极溶解和酸化效果。因此,Nb和Sb的组合添加增加了对大气腐蚀的抗性,并且基本上抑制了SCC引发。

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