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An overview on constitutive modelling to predict elevated temperature flow behaviour of fast reactor structural materials

机译:预测快速反应堆结构材料高温流动行为的本构模型概述

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This overview emphasized the aspects of formulation and application of various constitutive models developed by us in recent past viz. Johnson- Cook (JC), modified Zerilli-Armstrong (MZA), strain compensated Arrhenius type model and artificial neural network (ANN) model to predict elevated temperature flow behaviour of fast reactor structural materials. It has been shown that the JC model is not able to represent the high temperature flow behaviour of both alloy D9 and the modified 9Cr-1Mo as it does not incorporate the coupled effect of strain and temperature, and of strain rate and temperature. The new materials model based on Zerilli-Armstrong (ZA) equation considers the coupled effects of temperature and strain and of strain rate and temperature on the flow stress and hence has the capability to predict flow stress over a wider domain temperature and strain rate in comparison with JC model. The formulation and application of strain compensated Arrhenius type constitutive model to predict high temperature flow behaviour of alloy D9 and modified 9Cr-1Mo has been discussed. Development and application of a generic ANN based constitutive model to predict high temperature deformation behaviour of austenitic stainless steels has been highlighted. Finally, a comparative analysis of the merits and shortcomings of these models has been made.
机译:此概述强调了我们在最近的过去即开发的各种本构模型的制定和应用方面。 Johnson-Cook(JC),改进的Zerilli-Armstrong(MZA),应变补偿Arrhenius型模型和人工神经网络(ANN)模型可预测快堆结构材料的高温流动行为。已经表明,JC模型不能代表合金D9和改性的9Cr-1Mo的高温流动行为,因为它没有考虑应变和温度以及应变率和温度的耦合效应。基于Zerilli-Armstrong(ZA)方程的新材料模型考虑了温度和应变以及应变率和温度对流动应力的耦合影响,因此具有在较宽的域温度和应变率下预测流动应力的能力与JC模型。讨论了预测合金D9和改性9Cr-1Mo高温流动行为的应变补偿Arrhenius型本构模型的建立和应用。突出了基于ANN的本构模型来预测奥氏体不锈钢高温变形行为的开发和应用。最后,对这些模型的优缺点进行了比较分析。

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