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首页> 外文期刊>Nuclear engineering and technology >Role of residual ferrites on crevice SCC of austenitic stainless steels in PWR water with high-dissolved oxygen
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Role of residual ferrites on crevice SCC of austenitic stainless steels in PWR water with high-dissolved oxygen

机译:剩余铁氧体对高溶血氧气水中奥氏体不锈钢缝隙SCC的作用

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The crevice stress corrosion cracking (SCC) susceptibility of austenitic stainless steels was evaluated in simulated pressurized water reactor (PWR) environments. To simulate the abnormal condition in temporary clamping devices on leaking small bore pipes, crevice bent beam (CBB) tests were performed in the oxygenated as well as hydrogenated conditions. No SCC cracks were found for SS316 in both conditions. SS304 also showed good resistance in the hydrogenated condition. However, all SS304 specimens showed SCC cracks in the oxygenated condition, indicating poor crevice SCC resistance. It was found that residual ferrites were selectively dissolved because of the galvanic corrosion coupled with the neighbouring austenite phase, resulting in SCC initiation in SS304. Crack morphologies were mostly transgranular assisted by the damaged δ-ferrite and deformation-induced slip bands.
机译:在模拟加压水反应器(PWR)环境中评估了奥氏体不锈钢的缝隙应力腐蚀裂化(SCC)敏感性。为了在泄漏小孔管上模拟临时夹紧装置的异常情况,缝隙弯曲梁(CBB)试验在氧化和氢化条件下进行。在这两种条件下没有发现SS316的SCC裂缝。 SS304还显示出良好的氢化条件耐受性。然而,所有SS304样本都显示出含氧条件的SCC裂缝,表明粘缝差。结果发现,由于与相邻奥氏体相结合的电抗腐蚀,因此选择性地溶解了残留的铁氧体,从而导致SS304中的SCC引发。裂纹形态由受损的δ-铁素体和变形诱导的滑动带的变形辅助。

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