Prediction of Microstructure Evolution in Hot Backward Extrusion of Ti-6Al-4V Alloy

J. Yeom, J. Kim, J. Hong, N. Park, C. Lee
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引用次数: 3

Abstract

Microstructure evolution of Ti-6Al-4V alloy during hot backward extrusion process was simulated with the combined approaches of finite element method (FEM) and microstructure prediction model. From experimental analysis, it can be found that the change of microstructure during hot forming process of titanium alloy has a close relation to α/β phase transformation and grain growth behaviour. A microstructure prediction model was established by considering the change of volume fractions and grain size of both phases varying with process variables and then implemented into the user-defined subroutine of FEM analysis. In order to demonstrate the reliability of the model, the volume fraction and grain size of primary α phase during the hot backward extrusion process of Ti-6Al-4V alloy were simulated. The simulation results were compared with the experimental ones.
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Ti-6Al-4V合金热反向挤压组织演变预测
采用有限元法和显微组织预测模型相结合的方法,模拟了Ti-6Al-4V合金热反向挤压过程中的显微组织演变。实验分析表明,钛合金热成形过程中组织的变化与α/β相变和晶粒生长行为密切相关。考虑两相的体积分数和晶粒尺寸随工艺变量的变化,建立了微观组织预测模型,并将其实现到自定义的有限元分析子程序中。为了验证该模型的可靠性,对Ti-6Al-4V合金热反向挤压过程中初生α相的体积分数和晶粒尺寸进行了模拟。仿真结果与实验结果进行了比较。
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