Quantitative analysis of microstructure evolution induced by temperature rise during(α+β) deformation of TA15 titanium alloy

被引:2
|
作者
Liang-Gang Guo [1 ]
Shuai Zhu [1 ]
He Yang [1 ]
Xiao-Guang Fan [1 ]
Fu-Long Chen [2 ,3 ]
机构
[1] State Key Laboratory of Solidification Processing,Northwestern Polytechnical University
[2] Beijing Aeronautical Manufacturing Technology Research Institute
[3] Aeronautical Key Laboratory for Plastic Forming Technologies
基金
中国国家自然科学基金;
关键词
TA15 titanium alloy; Temperature rise; Deformation heat; Microstructure evolution model;
D O I
暂无
中图分类号
TG146.23 [];
学科分类号
摘要
Temperature rise is a significant factor influencing microstructure during(α+β) deformation of TA15 titanium alloy.An experiment was designed to explore microstructure evolution induced by temperature rise due to deformation heat.The experiment was carried out in(α+β) phase field at typical temperature rise rates.The microstructures of the alloy under different temperature rise rates were observed by scanning electron microscopy(SEM).It is found that the dissolution rate of primary equiaxed a phase increases with the increase in both temperature and temperature rise rate.In the same temperature range,the higher the temperature rise rate is,the larger the final content and grain size of primary equiaxed a phase are due to less dissolution time.To quantitatively depict the evolution behavior of primary equiaxed a phase under any temperature rise rates,the dissolution kinetics of primary equiaxed a phase were well described by a diffusion model.The model predictions,including content and grain size of primary equiaxed a phase,are in good agreement with experimental observations.The work provides an important basis for the prediction and control of microstructure during hot working of titanium alloy.
引用
收藏
页码:223 / 229
页数:7
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