首页> 外文期刊>International Journal of Minerals,Metallurgy and Materials >Coarsening behavior of MX carbonitrides in type 347H heat-resistant austenitic steel during thermal aging
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Coarsening behavior of MX carbonitrides in type 347H heat-resistant austenitic steel during thermal aging

机译:347H型耐热奥氏体钢在热时效过程中的碳氮化合物的粗化行为

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摘要

In this work, the growth kinetics of MX (M = metal, X = C/N) nanoprecipitates in type 347H austenitic steel was systematically studied. To investigate the coarsening behavior and the growth mechanism of MX carbonitrides during long-term aging, experiments were performed at 700, 800, 850, and 900A degrees C for different periods (1, 24, 70, and 100 h). The precipitation behavior of carbonitrides in specimens subjected to various aging conditions was explored using carbon replicas and transmission electron microscopy (TEM) observations. The corresponding sizes of MX carbonitrides were measured. The results demonstrates that MX carbonitrides precipitate in type 347H austenitic steel as Nb(C,N). The coarsening rate constant is time-independent; however, an increase in aging temperature results in an increase in coarsening rate of Nb(C,N). The coarsening process was analyzed according to the calculated diffusion activation energy of Nb(C,N). When the aging temperature was 800-900A degrees C, the mean activation energy was 294 kJ center dot mol(-1), and the coarsening behavior was controlled primarily by the diffusion of Nb atoms.
机译:在这项工作中,系统地研究了347H型奥氏体钢中MX(M =金属,X = C / N)纳米沉淀的生长动力学。为了研究MX碳氮化物在长期老化过程中的粗化行为和生长机理,我们在700、800、850和900A摄氏度下进行了不同时期(1、24、70和100小时)的实验。使用碳复制和透射电子显微镜(TEM)观察了碳氮化物在各种老化条件下的沉淀行为。测量了MX碳氮化物的相应尺寸。结果表明,MX碳氮化物在347H型奥氏体钢中以Nb(C,N)的形式析出。粗化速率常数与时间无关;然而,时效温度的升高导致Nb(C,N)粗化率的提高。根据计算得出的Nb(C,N)扩散激活能分析了粗化过程。当时效温度为800-900A时,平均活化能为294 kJ中心点mol(-1),且粗化行为主要由Nb原子的扩散控制。

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