Microstructure evolution and recrystallization behavior of cold-rolled Zr-1Sn-0.3Nb-0.3Fe-0.1Cr alloy during annealing

被引:17
|
作者
Jiang, Yi-lan [1 ,2 ]
Liu, Hui-qun [1 ,2 ]
Yi, Dan-qing [1 ,2 ]
Lin, Gao-yong [1 ,2 ]
Dai, Xun [3 ]
Zhang, Rui-qian [3 ]
Sun, Yong-duo [3 ]
Liu, Shao-qiang [3 ]
机构
[1] Cent S Univ, Sch Mat Sci & Engn, Changsha 410083, Hunan, Peoples R China
[2] Cent S Univ, Key Lab Nonferrous Mat, Minist Educ, Changsha 410083, Hunan, Peoples R China
[3] Nucl Power Inst China, Sci & Technol Reactor Fuel & Mat Lab, Chengdu 610213, Sichuan, Peoples R China
关键词
zirconium alloy; recrystallization; microstructure; texture evolution; kinetics; COMMERCIALLY PURE TITANIUM; GRAIN-GROWTH; TEXTURE EVOLUTION; ZIRCONIUM ZR702; ZR; NB; FE; MECHANISMS; SIMULATION; N18;
D O I
10.1016/S1003-6326(18)64697-7
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
The effects of cold-rolling reduction, annealing temperature, and time on recrystallization behavior and kinetics of cold-rolled Zr-1 Sn-0.3Nb-0.3Fe-0.1Cr alloy were investigated using the Vickers hardness test, scanning electronic microscopy (SEM), transmission electron microscopy (TEM) and electron backscatter diffractometry (EBSD). The results show that the rate of the recrystallization increased with increasing annealing temperature and rolling reduction. Recrystallized grains nucleated preferentially at sites with high density dislocation and deformation stored energy and then grew into integral grains. Recrystallization texture changed from < 10 (1) over bar0 //RD to (11<(2) over bar>0)//RD. The grain orientation changed from random orientation to the orientation with the maximum misorientation around 30 degrees. Recrystallization kinetics and maps were constructed based on the Johnson-Mehl- Avrami-Kolmogorov (JMAK) equation to derive parameters sensitive to the microstructure. The activation energies for recrystallization of 30%, 50% and 70% cold-rolling reductions were determined to be 240, 249 and 180 kJ/mol, respectively.
引用
收藏
页码:651 / 661
页数:11
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