首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >A physically-based constitutive model for high temperature deformation of Cu-0.36Cr-0.03Zr alloy
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A physically-based constitutive model for high temperature deformation of Cu-0.36Cr-0.03Zr alloy

机译:Cu-0.36Cr-0.03Zr合金高温变形的基于物理的本构模型

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摘要

Hot deformation behavior of Cu-0.36Cr-0.03Zr alloy is investigated by hot compression tests in a wide range of temperatures (800, 900, 950 degrees C) and strain rates (0.001, 0.01, 0.1, 1, 10, 20 s(-1)). For eliminating friction effects during tests and adiabatic effects at high strain rates, true stress-strain curves are friction corrected and then temperature corrected to elucidate real hot deformation behavior. True stress-strain curves after correction exhibit typical characteristics of dynamic recovery and dynamic recrystallization. The deformation activation energy of this alloy under this test condition is calculated as 432.6 KJ/Mol. Based on the stressedislocation relation and kinetics of dynamic recrystallization, a physically-based constitutive model is developed. The predicted stresses agree well with experimental ones with the correlation coefficient (R) of 0.9982 and the average absolute relative error (AARE) of 3.47%. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过在广泛的温度(800、900、950摄氏度)和应变速率(0.001、0.01、0.1、1、10、20 s( -1))。为了消除测试过程中的摩擦效应和高应变率下的绝热效应,需要对真实的应力-应变曲线进行摩擦校正,然后对温度进行校正,以阐明真实的热变形行为。校正后的真实应力-应变曲线表现出动态恢复和动态再结晶的典型特征。在该试验条件下该合金的形变活化能计算为432.6 KJ / Mol。基于应力分配关系和动态再结晶动力学,建立了基于物理的本构模型。预测应力与实验应力非常吻合,相关系数(R)为0.9982,平均绝对相对误差(AARE)为3.47%。 (C)2015 Elsevier B.V.保留所有权利。

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