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Dynamic softening behaviors of 7075 aluminum alloy

机译:7075铝合金的动态软化行为

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The dynamic softening behaviors during hot deformation of 7075 aluminum alloy were studied by isothermal hot compression tested at temperatures of 250, 300, 350, 400 and 450 °C and strain rates of 0.01, 0.1, 1 and 10 s ' on Gleeblel500.The results show that the temperature changes have a significant effect on the dynamic softening rate. It is indicated that the considerable dynamic softening rate associated with dynamic recrystallization leads flow stress value decreasing gradually. A group of coefficients needed by the phenomenological constitutive model containing a softening ratio item were calculated by the multiple linear regression method. The optical microstructures show that the grains of billets compressed become more and more refined with strain rate increasing as well as the degree of dynamic softening and work-hardening higher. The phenomenological constitutive description of 7075 aluminum alloy can accurately describe the relationships among flow stress, temperature, strain rate, strain and dynamic softening, and offer the basic model for plastic forming process simulation.
机译:通过在Gleeblel500上于250、300、350、400和450°C的温度下以及0.01、0.1、1和10 s'的应变速率下进行的等温热压缩试验研究了7075铝合金在热变形过程中的动态软化行为。结果表明,温度变化对动态软化速率有显着影响。结果表明,与动态再结晶有关的相当大的动态软化速率导致流动应力值逐渐减小。通过多元线性回归方法计算包含软化率项的现象本构模型所需的一组系数。光学显微组织表明,随着应变率的增加以及动态软化和加工硬化程度的提高,被压缩的钢坯晶粒越来越细化。 7075铝合金的现象学本构描述可以准确地描述流变应力,温度,应变率,应变和动态软化之间的关系,并为塑性成形过程仿真提供基本模型。

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