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Creep behaviour and microstructure evolution of advanced creep-resistant 9%Cr martensitic steels under cyclic thermal loading

机译:循环热载荷下先进蠕变9%Cr马氏体钢的蠕变行为和微观结构演变

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摘要

The effect of cyclic thermal loading on the creep behaviour and microstructure evolution of three creep strength enhanced 9%Cr ferritic-martensitic steels (P91, P92 and E911) was investigated. The temperature cycles consisted of cooling the specimen after creep exposure from the creep testing temperature of 600 degrees C to room temperature and then heating it up again to the creep testing temperature. Standard creep tests at the same creep testing temperature were carried out simultaneously for comparison. The results of the thermal cycled and standard creep tests showed no detrimental effect of intermittent heating on the creep behaviour of the specimens during the cycled tests. Microstructural investigations revealed no substantial differences in the types and chemical compositions of precipitating phases for the specimens after standard or cyclic creep in the three steels examined. There is no reason to expect substantially different creep behaviour for specimens experiencing standard or cyclic creep, provided that the specimens possess similar microstructures.
机译:研究了循环热负荷对三次蠕变强度增强的9%Cr铁素体 - 马氏体钢(P91,P92和E911)的蠕变行为和微观结构演化的影响。温度循环包括在蠕变暴露于600℃的蠕变曝光后冷却样品到室温,然后再次加热到蠕变测试温度。在相同的蠕变测试温度下的标准蠕变试验同时进行以进行比较。热循环和标准蠕变试验的结果表明,在循环试验期间,对样品的蠕变行为的间歇加热没有不利影响。微观结构研究显示,在检查的三个钢中标准或循环蠕变后,样品沉淀阶段的类型和化学成分没有大量差异。如果样品具有相似的微观结构,则没有理由预期标本的标本或循环蠕变的标本的蠕变行为。

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