Effects of Recrystallization on Microstructure and Texture Evolution of Cold-Rolled Ti-6Al-4V Alloy

被引:0
作者
Haitao Jiang
Peng Dong
Shangwu Zeng
Bo Wu
机构
[1] University of Science and Technology Beijing,National Engineering Research Center for Advanced Rolling Technology
来源
Journal of Materials Engineering and Performance | 2016年 / 25卷
关键词
advanced characterization; heat treatment; microscopy; optical metallography; rolling; titanium; x-ray;
D O I
暂无
中图分类号
学科分类号
摘要
The effects of recrystallization during annealing process on microstructure and texture evolution of cold-rolled Ti-6Al-4V alloy plates were investigated. The plates after cold rolling with a thickness reduction of 5, 10, and 15% were annealed under different conditions of 750 °C for 1 h, 800 °C for 1 h, and 800 °C for 1.5 h, respectively. It was found out that the recrystallization temperature decreased with increasing rolling reduction due to higher storage energy, while the extension of annealing time caused grain growth. For the cold-rolled plate with a reduction of 10%, the resulting microstructure showed more equal-axis grains after annealing at 800 °C for 1 h, among different conditions. Moreover, the XRD results showed that the cold-rolled plate composed mainly of {0001} 〈10-10〉 basal texture, {10-11} 〈1-210〉 and {01-12} 〈10-10〉 pyramidal textures, and {01-10} 〈10-10〉 prismatic texture, and that the weak {10-11} 〈1-210〉 texture was transformed to components {01-12} 〈10-10〉 and {01-10} 〈10-10〉, which were expected to improve formability. Electron back-scattered diffraction results ascertained that two mechanisms, i.e., recrystallization sites of preferred orientations and favorable grain growth both played important roles in static recrystallization.
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页码:1931 / 1938
页数:7
相关论文
共 109 条
[1]  
Morton PH(1976)Titanium Alloys for Engineering Structures Philos. Trans. R. Soc. 282 401-411
[2]  
Music O(2010)A Review of the Mechanics of Metal Spinning J. Mater. Process. Technol. 210 3-23
[3]  
Allwood JM(1995)Titanium for Aerospace: Rationale and Applications Adv. Perform. Mater. 2 349-368
[4]  
Kawai K(2010)Grain Size and Reversible Beta-to-Omega Phase Transformation in a Ti Alloy Scr. Mater. 63 613-616
[5]  
Boyer RR(2014)Effects of Deformation Rate on Ductility of Ti-6Al-4V Material Proc. Eng. 81 754-759
[6]  
Wang YB(2011)Numerically Controlled Bending Performance of Medium Strength TA18 Titanium Alloy Tubes Under Different Die Sets Sci. China Technol. Sci. 54 841-852
[7]  
Zhao YH(2011)Microstructure and Thermal Stress Distributions in Laser Carbonitriding Treatment of Ti-6Al-4V Alloy J. Manuf. Sci. E. 133 379-399
[8]  
Lian Q(2005)Effect of Deformation Twinning on Microstructure and Texture Evolution During Cold Rolling of CP-Titanium Mater. Sci. Eng. A 398 209-219
[9]  
Liao XZ(2014)Microstructural and Textural Evolution of Pure Titanium During Differential Speed Rolling and Subsequent Annealing J. Mater. Sci. 49 3166-3176
[10]  
Valiev RZ(2013)High Tensile Ductility of Ti-Based Amorphous Matrix Composites Modified from Conventional Ti-6Al-4V Titanium Alloy Acta Mater. 61 3012-3026