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Modelling the High Temperature Deformation of Ti-6AI-4V

机译:模拟Ti-6AI-4V的高温变形

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摘要

The hot deformation behaviour of the alpha / beta Ti-6A1-4V alloy was investigated at various temperatures and strain rates by means of compression and torsion tests. As expected, the peak flow stress increased with increasing strain rate and decreased as the initial sample temperature was increased. The different flow behaviours observed are discussed in terms of the volume fraction of each phase. The dual phase Ti-6A1-4V alloy was assumed to be a composite material containing a soft phase and a hard phase. By taking into consideration the phase-to-phase interaction and volume fraction change with temperature, constitutive models are proposed to simulate the deformation behaviours. By application of the rule of mixtures the modelled yield stresses showed good agreement with the experiment results.
机译:通过压缩和扭转试验研究了α/βTi-6A1-4V合金在各种温度和应变速率下的热变形行为。如预期的那样,峰值流动应力随着应变率的增加而增加,并且随着初始样品温度的升高而降低。根据各相的体积分数讨论了观察到的不同流动行为。假设双相Ti-6A1-4V合金是包含软相和硬相的复合材料。考虑到相间相互作用和体积分数随温度的变化,提出了本构模型来模拟变形行为。通过应用混合规则,模拟的屈服应力与实验结果显示出良好的一致性。

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