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Hot Deformation Behavior of a 2024 Aluminum Alloy Sheet and its Modeling by Fields-Backofen Model Considering Strain Rate Evolution

机译:2024铝合金薄板的热变形行为及其考虑应变率演化的Fields-Backofen模型建模

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摘要

The deformation behavior of a 2024 aluminum alloy sheet at elevated temperatures was studied by uniaxial hot tensile tests over the nominal initial strain rate range of 0.001–0.1 s ?1 and temperature range of 375–450 °C. In order to analyze the deformation behavior with higher accuracy, a digital image correlation (DIC) system was applied to determine the strain distribution during hot tensile tests. Local stress-strain curves for different local points on the specimens were calculated. The strain rate evolution of each point during the tensile tests was investigated under different deformation conditions. Then, an improved Fields–Backofen (FB) model, taking into account the local strain rate evolution instead of the fixed strain rate, was proposed to describe the constitutive behaviors. It has been found that obvious non-uniform strain distribution occurred when the true strain was larger than 0.3 during hot tensile tests. The strain rate distribution during deformation was also non-uniform. It showed increasing, steady, and decreasing variation tendencies for different points with the increasing of strain, which led to the local flow stress being different at different local points. The flow stresses predicted by the improved FB model showed good agreement with experimental results when the strain rate evolutions of local points during tensile tests were considered. The prediction accuracy was higher than that of traditional FB models.
机译:通过单轴热拉伸试验研究了2024铝合金板材在高温下的变形行为,其额定初始应变速率范围为0.001–0.1 s?1,温度范围为375–450°C。为了以更高的精度分析变形行为,使用了数字图像相关(DIC)系统来确定热拉伸测试过程中的应变分布。计算了试样上不同局部点的局部应力-应变曲线。研究了在不同变形条件下拉伸试验过程中每个点的应变速率演变。然后,提出了一种改进的Fields-Backofen(FB)模型,该模型考虑了局部应变率的演变而不是固定应变率,来描述本构行为。已经发现,在热拉伸试验中,当真实应变大于0.3时,会出现明显的不均匀应变分布。变形期间的应变率分布也不均匀。随着应变的增加,不同点的变化趋势呈现出增加,稳定和减小的趋势,这导致了不同局部点处的局部流应力不同。当考虑拉伸过程中局部点的应变速率演变时,改进的FB模型预测的流应力与实验结果显示出良好的一致性。预测精度高于传统的FB模型。

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