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Stress-Strain Curves and Modified Material Constitutive Model for Ti-6Al-4V over the Wide Ranges of Strain Rate and Temperature

机译:宽应变速率和温度范围内Ti-6Al-4V的应力-应变曲线和修正的材料本构模型

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摘要

The mechanical properties of Ti-6Al-4V alloy are sensitive to strain rate and temperature load. The finite element simulation results of high-speed machining Ti-6Al-4V alloy depend on the accurate description of dynamic deformation. However, it is hard to describe the flow stress behavior in current constitutive models in a complex high-speed machining process for Ti-6Al-4V alloy. In this paper, the stress-strain curves of Ti-6Al-4V alloy under the wide ranges of strain rate and temperature are obtained by high-velocity uniaxial impact tests. The apparent coupling between temperature and strain is observed, which proves that the temperature is dependent on a hardening effect for Ti-6Al-4V alloy. A function describing the coupling between temperature and strain is then introduced into the modification for the original Johnson-Cook (JC) constitutive model. The maximum deviation between the predicted data from using the proposed modified JC constitutive model and experimental data is reduced from 10.43% to 4.19%. It can be concluded that the modified JC constitutive model is more suitable to describe the temperature-dependent hardening effect, which provides strong support for accurate finite element simulation of high-speed machining Ti-6Al-4V alloy.
机译:Ti-6Al-4V合金的机械性能对应变率和温度载荷敏感。高速加工Ti-6Al-4V合金的有限元模拟结果取决于动态变形的准确描述。但是,在Ti-6Al-4V合金的复杂高速加工过程中,很难描述当前本构模型中的流应力行为。本文通过高速单轴冲击试验获得了Ti-6Al-4V合金在较大应变速率和温度范围内的应力-应变曲线。观察到温度和应变之间的表观耦合,这证明温度取决于Ti-6Al-4V合金的硬化效果。然后,将描述温度和应变之间耦合的函数引入原始Johnson-Cook(JC)本构模型的修改中。使用建议的改进的JC本构模型得到的预测数据与实验数据之间的最大偏差从10.43%减少到4.19%。可以得出的结论是,改进的JC本构模型更适合描述随温度变化的硬化效果,这为高速加工Ti-6Al-4V合金的精确有限元模拟提供了有力的支持。

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