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Mathematical models for predicting the austenite grain size in hot working of GCr15 steel

机译:用于预测GCr15钢热加工过程中奥氏体晶粒尺寸的数学模型

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The objective of this study is to develop a set of mathematical models which can predict the austenite grain size of GCr15 steel in hot working process. The models can describe the evolution of grain size during dynamic recrystallization (DRX), metadynamic recrystallization (MDRX), static recrystallization (SRX), and grain growth process after recrystallization. respectively. The DRX behavior in GCr15 steel was investigated by the single hot compression tests, and the double compression tests with different inter-stage delay times were used to research the kinetics of MDRX and SRX. The tests were performed on the Glecble-3800 thermo-mechanical simulation machine at temperature from 950 to 1150 degrees C, strain rate from 0.01 to 50 s(-1) and initial austenite grain size from 26.3 to 90.0 mu m. In addition, a set of specimens were heated to 950, 1050, 1100 and 1150 degrees C for 0-480 s to determine the grain growth model after recrystallization. The predicted results of grain size are in good agreement with the measured ones.
机译:这项研究的目的是建立一套数学模型,以预测GCr15钢在热加工过程中的奥氏体晶粒尺寸。这些模型可以描述动态重结晶(DRX),亚动态重结晶(MDRX),静态重结晶(SRX)和重结晶后晶粒生长过程中晶粒尺寸的演变。分别。通过单次热压缩试验研究了GCr15钢中的DRX行为,并使用具有不同级间延迟时间的两次压缩试验研究了MDRX和SRX的动力学。测试是在Glecble-3800热机械模拟机上进行的,温度范围为950至1150摄氏度,应变速率为0.01至50 s(-1),初始奥氏体晶粒尺寸为26.3至90.0微米。另外,将一组样品加热至950、1050、1100和1150摄氏度0-480 s,以确定重结晶后的晶粒生长模型。晶粒尺寸的预测结果与实测值吻合良好。

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