Hot Deformation Behavior and Microstructural Evolution of PM Ti43Al9V0.3Y with Fine Equiaxed γ and B2 Grain Microstructure

具有细等轴γ和B2晶粒组织的PM Ti43Al9V0.3Y的热变形行为和组织演变

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作者:Dongdong Zhang, Yuyong Chen, Guoqing Zhang, Na Liu, Fantao Kong, Jing Tian, Jianfei Sun

Abstract

The hot deformation behavior and microstructure evolution of powder metallurgy (PM) Ti43Al9V0.3Y alloy with fine equiaxed γ and B2 grains were investigated using uniaxial hot compression. Its stress exponent and activation energy were 2.78 and 295.86 kJ/mol, respectively. The efficiency of power dissipation and instability parameters were evaluated, and processing maps at 50% and 80% strains were developed. It is demonstrated that the microstructure evolution was dependent on the temperature, strain, and strain rate. Both temperature and strain increases led to a decrease in the γ phase. Moreover, dynamic recrystallization (DRX) and grain boundary slip both played important roles in deformation. Reasonable parameters for secondary hot working included temperatures above 1100 °C but below 1200 °C with a strain rate of less than 1 s-1 at 80% strain. Suitable hot working parameters at 50% strain were 1150-1200 °C/≤1 s-1 and 1000-1200 °C/≤0.05 s-1.

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