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Hot Deformation Behaviors and Processing Maps of 2024 Aluminum Alloy in As-cast and Homogenized States

机译:2024铝合金铸态和均质态的热变形行为和加工图

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The isothermal hot compression tests of as-cast and homogenized 2024 aluminum alloy were carried out under wide range of deformation temperatures (623-773 K) and strain rates (0.001-10 s(-1)). The constitutive equations for both initial states were established based on Arrhenius model, and the processing maps were constructed based on the dynamic material model. The results show that the flow stress of samples is evidently affected by both the strain rate and deformation temperature, and the flow stress in homogenized state is always higher than that in as-cast state. Through calculating the correlation coefficient (R) and average absolute relative error of the established constitutive equations, it indicates that Arrhenius model can only provide a rough estimation on the flow stress. However, a much more precise value of the flow stress was obtained by introducing the strain compensation into Arrhenius model, since the effects of strain on the material constants were well considered. Furthermore, according to the processing maps, a suggested range of deformation temperature and strain rate for hot forming process were given then: temperature range 710-773 K and strain rate range 0.001-1 s(-1) for as-cast state, and temperature range 680-773 K and strain rate range 0.003-0.22 s(-1) for homogenized state.
机译:在较宽的变形温度范围(623-773 K)和应变速率(0.001-10 s(-1))下对铸态和均质的2024铝合金进行了等温热压缩试验。基于Arrhenius模型建立了两种初始状态的本构方程,并基于动态材料模型构造了加工图。结果表明,样品的流变应力明显受应变率和变形温度的影响,均质态的流变应力始终高于铸态的流变应力。通过计算已建立的本构方程的相关系数(R)和平均绝对相对误差,表明Arrhenius模型只能对流动应力进行粗略估计。但是,由于充分考虑了应变对材料常数的影响,因此通过将应变补偿引入Arrhenius模型中,可以得到更为精确的流动应力值。此外,根据加工图,给出了热成形过程的变形温度和应变率的建议范围:铸态的温度范围为710-773 K,应变率范围为0.001-1 s(-1),以及对于均质状态,温度范围为680-773 K,应变速率范围为0.003-0.22 s(-1)。

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