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Microstructure Instability of Candidate Fuel Cladding Alloys: Corrosion and Stress Corrosion Cracking Implications

机译:候选燃料熔覆合金的微观结构不稳定性:腐蚀和应力腐蚀开裂的含义

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摘要

This paper addresses some of the overarching aspects of microstructure instability expected from both high temperature and radiation exposure that could affect the corrosion and stress corrosion cracking (SCC) resistance of the candidate austenitic Fe-Cr-Ni alloys being considered for the fuel cladding of the Canadian supercritical water-cooled reactor (SCWR) concept. An overview of the microstructure instability expected by both exposures is presented prior to turning the focus onto the implications of such instability on the corrosion and SCC resistance. Results from testing conducted using pre-treated (thermally-aged) Type 310S stainless steel to shed some light on this important issue are included to help identify the outstanding corrosion resistance assessment needs.
机译:本文探讨了高温和辐射暴露下可能会影响微观组织不稳定性的一些主要方面,这些方面可能会影响候选奥氏体Fe-Cr-Ni合金(考虑将其用作燃料包壳)的耐腐蚀和应力腐蚀开裂(SCC)性。加拿大超临界水冷堆(SCWR)的概念。在将重点放在这种不稳定性对腐蚀和耐SCC的影响之前,先介绍了两次暴露所预期的微观结构不稳定性。使用预处理(热时效)310S型不锈钢进行的测试结果揭示了这一重要问题,有助于确定出色的耐腐蚀性评估需求。

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