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Evolution of activation energy during hot deformation of AA7150 aluminum alloy

机译:AA7150铝合金热变形过程中活化能的演变

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摘要

The hot deformation behavior of a homogenized AA7150 aluminum alloy was studied in compression tests conducted at various temperatures (573-723 K) and strain rates (0.001-10 s~(-1)). The flow stress behavior and microstructural evolution were observed during the hot deformation process. A revised Sellars' constitutive equation was proposed, which considered the effects of the deformation temperature and strain rate on the material variables and which provided an accurate estimate of the hot deformation behavior of the AA7150 aluminum alloy. The results revealed that the activation energy for the hot deformation of the AA7150 aluminum alloy is not a constant value but rather varies as a function of the deformation conditions. The activation energy for hot deformation decreased with increasing deformation temperature and strain rate. The peak flow stresses under various deformation conditions were predicted by a revised constitutive equation and correlated with the experimental data with excellent accuracy.
机译:在各种温度(573-723 K)和应变率(0.001-10 s〜(-1))下进行的压缩试验中研究了均质AA7150铝合金的热变形行为。在热变形过程中观察到流动应力行为和微观结构演变。提出了修正的塞拉斯本构方程,该方程考虑了变形温度和应变速率对材料变量的影响,并为AA7150铝合金的热变形行为提供了准确的估计。结果表明,AA7150铝合金热变形的活化能不是恒定值,而是随变形条件而变化的。热变形的活化能随变形温度和应变速率的增加而降低。通过修正的本构方程预测了在各种变形条件下的峰值流应力,并与实验数据相关,具有极高的精度。

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