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Corrosion Behavior of Candidate Alloys used in Supercritical Water Environment

机译:超临界水环境中候选合金的腐蚀行为

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Supercritical water reactor (SCWR) isa type of high-temperature and high-pressure water-cooledreactor that could provide higher thermal efficiency thancurrent in-service light water reactors (LWRs). The aim ofthis article is to study the candidate materials with goodcorrosion resistance and appropriate material propertiesthat may be used in SCWR. The emphasis is placed on thecorrosion phenomena and stress corrosion cracking (SCC)of the four selected alloys including nickel-based alloy(Haynes230), martensitic steels (P92), austenitic steels(304H) and high-entropy alloys (Al Co Cr Fe Ni Ti). Thesematerials were tested in the high temperature watercirculation loop with supercritical water environment(550/650°C, 25Mpa). In mass gain analyses, the highentropyalloys and Haynes 230 displayed the bestcorrosion resistance among the four alloys. These alloyswere also evaluated in a supercritical water environmentby U-bend test or creviced bend beam (CBB) test toexamine their resistance to stress corrosion cracking. Themorphologies of the surfaces and cross-section of thesamples were examined by SEM and EDX. Furthermore,the quantitative analysis of the cracks on the surfaces ofthe samples were also carried out.
机译:超临界水反应器(SCWR)是一种高温和高压水冷反应堆可以提供更高的热效率当前的服务灯水反应器(LWRS)。目标是这篇文章是研究候选材料耐腐蚀性和适当的材料特性可以在SCWR中使用。重点放在了腐蚀现象和压力腐蚀裂解(SCC)在包括镍基合金的四种选定的合金中(Haynes230),马氏体钢(P92),奥氏体钢(304h)和高熵合金(Al Co Cr Fe Ni Ti)。这些材料在高温水中进行了测试具有超临界水环境的循环环(550/650°C,25MPa)。在质量增益分析中,高层复合物合金和海恩斯230展示了最好的四种合金之间的耐腐蚀性。这些合金也在超临界水环境中进行评估通过U形弯曲测试或裂缝弯曲光束(CBB)测试检查它们对应力腐蚀开裂的抵抗力。这表面的形态和横截面的形态通过SEM和EDX检查样品。此外,地表裂缝的定量分析还进行了样品。

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