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Creep Response and Microstructural Changes During Intermittent Heating of Advanced Tempered Martensitic 9-12Cr Steels

机译:高级钢化马氏体9-12%Cr钢间歇加热过程中蠕变响应和微观结构变化

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Significant developments have been made in recent years in the description of microstructure evolution and its effects on the creep behaviour in advanced 9-12%Cr steels. However, data available for assessing the predictability of the creep behaviour are somewhat scarce since creep testing has generally been for constant temperature and load conditions. The present investigation was conducted on three advanced 9-12%Cr martensitic/ferritic steels (P91, P92 and E911) in an effort to obtain more complete description and understanding of the role of degradation processes in high temperature creep during intermittent heating. A comparison between the creep characteristics of non-steady and monotonously loaded creep specimens has revealed no significant deterioration of the creep strength and fracture resistance of the steels P91, P92 and E911 under non-steady loading in power-law (dislocation) creep. The final part of this paper deals with detailed experimental microstructural and fractographic investigations of crept specimens to explain the observed creep behaviour. Special attention is paid to the thermodynamic calculations using the software package Thermo-Calc, that have been used to predict precipitation reactions during intermittent heating of 9-12% chromium steels. The results of the thermodynamic calculations are in a good agreement with experimental data.
机译:近年来在微观结构演变的描述中取得了重大发展及其对高级9-12%Cr钢中蠕变行为的影响。然而,可用于评估蠕变行为的可预测性的数据有些稀缺,因为蠕变测试一般是恒温和负载条件。本发明的研究是在三个高级9-12%CR马氏体/铁素体钢(P91,P92和E911)上进行的,以便在间歇加热期间获得更完整的描述和理解降解过程在高温蠕变中的作用。非稳定和单型装载蠕变样本的蠕变特性之间的比较揭示了钢P91,P92和E911在幂律(错位)蠕变中的非稳定负载下的蠕变强度和裂缝性的显着恶化。本文的最后一部分涉及悄悄标本的详细实验微观结构和地形调查,以解释观察到的蠕变行为。使用软件包热钙对热力学计算的特别关注,该试剂已被用于预测在9-12%铬钢的间歇加热期间的沉淀反应。热力学计算的结果与实验数据一致。

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