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Modeling of Austenite Grain Growth During Austenitization in a Low Alloy Steel

机译:低合金钢奥氏体化过程中奥氏体晶粒长大的模型

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The main purpose of this work is to develop a pragmatic model to predict austenite grain growth in a nuclear reactor pressure vessel steel. Austenite grain growth kinetics has been investigated under different heating conditions, involving heating temperature, holding time, as well as heating rate. Based on the experimental results, the mathematical model was established by regression analysis. The model predictions present a good agreement with the experimental data. Meanwhile, grain boundary precipitates and pinning effects on grain growth were studied by transmission electron microscopy. It is found that with the increasing of the temperature, the second-phase particles tend to be dissolved and the pinning effects become smaller, which results in a rapid growth of certain large grains with favorable orientation. The results from this study provide the basis for the establishment of large-sized ingot heating specification for SA508-III steel.
机译:这项工作的主要目的是建立一个实用的模型来预测核反应堆压力容器钢中的奥氏体晶粒长大。已经研究了在不同加热条件下奥氏体晶粒生长动力学,包括加热温度,保温时间和加热速率。根据实验结果,通过回归分析建立了数学模型。模型预测结果与实验数据吻合良好。同时,通过透射电子显微镜研究了晶界沉淀和钉扎对晶粒生长的影响。发现随着温度的升高,第二相颗粒趋于溶解并且钉扎效应变小,这导致某些具有有利取向的大晶粒快速生长。这项研究的结果为建立SA508-III钢的大型铸锭加热规范提供了基础。

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