Study of stress corrosion cracking susceptibility of irradiated ferrite-martensitic stainless steel 07Kh12NMFB in supercritical water. Part 2. Development of corrosion crack identification technique and analysis of autoclave test results

B. Margolin, N. Pirogova, A. Sorokin, V. I. Kohonov, A. V. Dub, I. A. Safonov
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Abstract

The studies of stress corrosion cracking have been carried out for the stainless ferritic-martensitic steel with chromium content of 12% irradiated to a damage neutron dose of ~12 dpa. This steel was chosen as a candidate material for the internals of supercritical water-cooled reactors (SWCR).The first part of the paper was devoted to autoclave testing of specially designed disk specimens under constant load in a supercritical water environment (at 450°C and 250 atm pressure). In this part of the article the developed technique for corrosion cracks identification is presented and analysis of autoclave tests results is performed.As a result of the experiments performed, the threshold stress values below which stress corrosion cracking initiation doesn’t occur. The values of threshold stresses are determined for the studied steel irradiated at temperatures of 390 and 550°C. Possible mechanisms of stress corrosion cracking of the studied steel are analyzed and directions for further research are proposed.
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超临界水中辐照铁素体-马氏体不锈钢 07Kh12NMFB 的应力腐蚀开裂敏感性研究。第 2 部分。腐蚀裂纹识别技术的开发和高压釜试验结果分析
对铬含量为 12% 的不锈铁素体-马氏体钢进行了应力腐蚀开裂研究,辐照破坏中子剂量约为 12 dpa。论文的第一部分专门讨论了在超临界水环境(450°C 和 250 atm 压力)中恒定载荷下对特殊设计的圆盘试样进行高压釜测试的情况。文章的这一部分介绍了已开发的腐蚀裂纹识别技术,并对高压釜试验结果进行了分析。在 390 和 550°C 温度下辐照所研究的钢材,确定了临界应力值。分析了所研究钢材应力腐蚀开裂的可能机制,并提出了进一步研究的方向。
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