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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Effect of nitrogen content in sensitised austenitic stainless steel on the crack growth rate in simulated BWR environment
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Effect of nitrogen content in sensitised austenitic stainless steel on the crack growth rate in simulated BWR environment

机译:模拟BWR环境中敏化奥氏体不锈钢中氮含量对裂纹扩展速率的影响

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摘要

The focus of the study is to establish the role of nitrogen addition to type 304L stainless steel, in sensitised condition, on the crack growth rate (CGR) by intergranular stress corrosion cracking (IGSCC) in the simulated boiling water reactor (BWR) environment. The CGR studies were carried out for two heats of type 304L stainless steel with 0.10 and 0.16 wt.% nitrogen and at different dissolved oxygen (DO) levels in high temperature demineralised water whose chemistry was maintained in a recirculating loop. The degree of sensitisation (DOS) was characterised quantitatively by double loop electrochemical potentiodynamic reactivation (DL-EPR) technique. The results clearly show that the susceptibility to IGSCC was substantially lower in the stainless steel with a higher level of nitrogen as reflected by the CGR values. This was attributed to the beneficial role of nitrogen addition against sensitization i.e. lesser coverage of the chromium depleted regions and higher level of chromium in the depleted regions in the stainless steels with higher nitrogen content.
机译:研究的重点是确定在敏感条件下,在模拟沸水反应堆(BWR)环境中,晶种间应力腐蚀开裂(IGSCC)对304L型不锈钢添加氮对裂纹扩展速率(CGR)的作用。 CGR研究是在高温软化水中对两种加热的304L不锈钢(含0.10和0.16 wt。%的氮)和不同的溶解氧(DO)水平进行的,其化学反应保持在循环回路中。敏化度(DOS)通过双环电化学电位动力学再活化(DL-EPR)技术定量表征。结果清楚地表明,如CGR值所反映的,在氮含量较高的不锈钢中,IGSCC的敏感性大大降低。这归因于氮添加对敏化的有益作用,即,在具有较高氮含量的不锈钢中,铬贫化区域的覆盖率较小,而铬贫化区域中的铬含量较高。

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