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Investigation of the Localized Corrosion and Passive Behavior of Type 304 Stainless Steels with 0.2–1.8 wt B

机译:含0.2–1.8 wt%B的304型不锈钢的局部腐蚀和钝化行为的研究

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摘要

The pitting corrosion resistance and passive behavior of type 304 borated stainless steels (Febalance–18Cr–12Ni–1.5Mn–(0.19, 0.78, and 1.76 wt %)B) manufactured through conventional ingot metallurgy were investigated. The alloys were composed of an austenitic matrix and Cr2B phase, and the volume fraction of Cr2B increased from 1.68 to 22.66 vol % as the B content increased from 0.19 to 1.76 wt %. Potentiodynamic polarization tests measured in aqueous NaCl solutions revealed that the pitting corrosion resistance was reduced as the B content increased and the pits were initiated at the matrix adjacent to the Cr2B phase. It was found that the reduced resistance to pitting corrosion by B addition was due to the formation of more defective and thinner passive film and increased pit initiation sites in the matrix.
机译:研究了通过传统铸锭冶金法制造的304型硼酸化不锈钢(Febalance–18Cr–12Ni–1.5Mn–(0.19、0.78和1.76 wt%)B)的耐点蚀性和钝化行为。合金由奥氏体基体和Cr2B相组成,随着B含量从0.19 wt%增加到Cr2B的体积分数从1.68 vol。%增加到22.66 vol%。在NaCl水溶液中进行的电位动力学极化测试表明,随着B含量的增加,耐点蚀性降低,并且在与Cr2B相相邻的基体上产生了点蚀。发现通过添加B降低的耐点蚀性是由于在基体中形成更多的缺陷和更薄的钝化膜以及增加的点蚀起始位点。

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