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Effect of Selective Dissolution on Stress Corrosion Cracking Susceptibility of Austenitic and Duplex Stainless Steels in Alkaline Solutions

机译:选择性溶解对碱性溶液中奥氏体和双相不锈钢应力腐蚀开裂敏感性的影响

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The formation of nickel-rich layers on austenitic stainless steels in strong caustic solutions was reported in 1970's. Recently, a more detailed study has shown the nature of the de-alloying process and established firm links with the other metal-environment systems that show de-alloying and associated stress corrosion cracking (SCC) in strong caustic environments. In this study, the role of de-alloying in SCC of the austenitic and duplex stainless steel AISI 304 (EN1.4301) and S322205 (EN1.4462) is evaluated in 50% NaOH and also in NaCI/Na_2S containing caustic environments (pulping liquors) at 413 K (140°C) and 463 K (190°C). The results show that selective dissolution of alloying elements occurs on surface of the specimens and at the crack tip and strain is necessary for selective dissolution. The proposal that the rate determining step in SCC is generation of vacancies by selective dissolution at the crack tip will be confirmed in the further detailed examinations. Chromium, iron and molybdenum are dissolving selectively and/or precipitating during the process which affects the general corrosion and SCC susceptibility depending on the alloy composition and microstructure of the steel. FEG-SEM examination shows that the de-alloyed layer exhibits extremely fine nanoporosity.
机译:据报道,在1970年代,在强碱溶液中在奥氏体不锈钢上形成了富镍层。最近,一项更详细的研究显示了脱合金工艺的性质,并与其他金属环境系统建立了牢固的联系,这些系统显示了在强腐蚀性环境中的脱合金和相关的应力腐蚀开裂(SCC)。在这项研究中,在50%NaOH以及含NaCl / Na_2S的苛性环境(制浆)中评估了脱合金在奥氏体和双相不锈钢AISI 304(EN1.4301)和S322205(EN1.4462)的SCC中的作用。液体)在413 K(140°C)和463 K(190°C)的温度下。结果表明,合金元素的选择性溶解发生在试样表面和裂纹尖端,应变是选择性溶解所必需的。 SCC中的速率确定步骤是通过在裂纹尖端选择性溶解而产生空位的提议将在进一步的详细检查中得到证实。铬,铁和钼在加工过程中会选择性溶解和/或析出,这会影响一般的腐蚀和SCC敏感性,具体取决于钢的合金成分和微观结构。 FEG-SEM检查表明,脱合金层显示出极好的纳米多孔性。

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