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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Effect of Tungsten on Long-Term Microstructural Evolution and Impression Creep Behavior of 9Cr Reduced Activation Ferritic/Martensitic Steel
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Effect of Tungsten on Long-Term Microstructural Evolution and Impression Creep Behavior of 9Cr Reduced Activation Ferritic/Martensitic Steel

机译:钨对9CR减少激活铁素体/马氏体钢的长期微观结构演化和印模蠕变行为的影响

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摘要

The present study describes the changes in the creep properties associated with microstructural evolution during thermal exposures to near service temperatures in indigenously developed reduced activation ferritic-martensitic steels with varying tungsten (1 and 1.4 wt pct W) contents. The creep behavior has been studied employing impression creep (IC) test, and the changes in impression creep behavior with tungsten content have been correlated with the observed microstructures. The results of IC test showed that an increase in 0.4 pct W decreases the creep rate to nearly half the value. Creep strength of 1.4 pct W steel showed an increase in steels aged for short durations which decreased as aging time increased. The microstructural changes include coarsening of precipitates, reduction in dislocation density, changes in microchemistry, and formation of new phases. The formation of various phases and their volume fractions have been predicted using the JMatPro software for the two steels and validated by experimental methods. Detailed transmission electron microscopy analysis shows coarsening of precipitates and formation of a discontinuous network of Laves phase in 1.4 W steel aged for 10,000 hours at 823 K (550 A degrees C) which is in agreement with the JMatPro simulation results. (C) The Minerals, Metals & Materials Society and ASM International 2016
机译:本研究中描述了具有微结构演变过程中的热暴露在自行研制的活化减少铁素体 - 马氏体钢具有不同钨(1和1.4重%W)相关联的内容到接近工作温度在蠕变特性的变化。蠕变行为进行了研究采用印象蠕变(IC)的测试,并在印象蠕变行为与钨含量的变化已经与所观察到的微结构相关。 IC测试的结果表明,增加0.4厘▼降低蠕变速度近一半。 1.4 PCTW¯¯钢的蠕变强度显示出老化短的持续时间,其减少作为老化时间增加钢的增加。的微观结构的变化包括粗大化的析出物,降低位错密度,在微量化学变化,并形成新的相。各个阶段,其体积分数的形成已经使用了这两种钢的JMatPro软件预测和通过实验方法验证。详细透射电子显微镜分析显示粗大化的析出物和形成在1.4 W功率钢老化在823K(550甲摄氏度),这是在与所述JMatPro模拟结果一致万小时Laves相的不连续网络的。 (c)2016年矿物质,金属和材料协会和ASM国际

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