Effect of roll speed ratio on the texture and microstructural evolution of an FCC high-entropy alloy during differential speed rolling

被引:4
作者
H.T.Jeong
W.J.Kim
机构
[1] DepartmentofMaterialsScienceandEngineering,HongikUniversity
关键词
D O I
暂无
中图分类号
TG335 [轧制工艺];
学科分类号
080201 ; 080503 ;
摘要
A very coarse-grained(335 μm) Fe41Mn25Ni24Co8Cr2high-entropy alloy with a single FCC phase was cold rolling to a 80% reduction in thickness using the differential speed rolling technique with various speed ratios(SRs) ranging between 1 and 4. As the SR was increased, the volume fraction of the region of high-density micro-shear bands increased to accommodate the higher shear strain. At SR = 4, the entire thickness of the sheet was covered with micro-shear bands, and ultrafine(sub)grains with a size of1.4 μm were uniformly formed along the shear bands. A continuous dynamic recrystallization(CDRX)mechanism occurred during rolling, and a higher SR accelerated the CDRX process. During conventional rolling(at SR=1), a brass {110}<112 > orientation texture with minor components of S {123}<634> and Cu{112}<111 > orientations developed. At higher SRs, shear texture developed as the main type, while the development of rolling texture was suppressed. The microstructure at SR=4 obtained after annealing at973 K showed a fully recrystallized microstructure composed of a five times smaller grain size(4 μm)with a higher intensity of γ fiber texture compared with that prepared by conventional rolling. The samples processed with high SRs exhibited better tensile properties compared with the conventionally rolled sample in terms of strength and ductility after annealing. The current results demonstrate that by using differential speed rolling with a high SR, one can achieve a significantly finer and more homogeneous microstructure, stronger shear texture, and superior tensile mechanical properties for an FCC high-entropy alloy compared to that obtained by conventional rolling. The strength of the as-rolled and annealed samples was quantitatively explained by considering the contribution of grain size and dislocation density to strengthening.
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页码:152 / 166
页数:15
相关论文
共 51 条
[1]   Grainsizeandtemperatureeffectonthetensilebehavioranddeformationmechanismsofnon-equiatomicFe41Mn25Ni24Co8Cr2highentropyalloy [J].
H.T.Jeong ;
W.J.Kim .
Journal of Materials Science & Technology, 2020, 42 (07) :190-202
[2]  
Severe warm-rolling mediated microstructure and texture of equiatomic CoCrFeMnNi high entropy alloy: A comparison with cold-rolling[J] . Saha J.,Ummethala G.,Malladi S.R.K.,Bhattacharjee P.P..Intermetallics . 2021
[3]   Effect of Grain Refinement and Dispersion of Particles and Reinforcements on Mechanical Properties of Metals and Metal Matrix Composites through High-Ratio Differential Speed Rolling [J].
Bahmani, Ahmad ;
Kim, Woo-Jin .
MATERIALS, 2020, 13 (18)
[4]   Viewpoint on the Formation and Evolution of Annealing Twins During Thermomechanical Processing of FCC Metals and Alloys [J].
Bozzolo, Nathalie ;
Bernacki, Marc .
METALLURGICAL AND MATERIALS TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE, 2020, 51 (06) :2665-2684
[5]  
Fine-tuning of mechanical properties in V 10 Cr 15 Mn 5 Fe 35 Co 10 Ni 25 high-entropy alloy through high-pressure torsion and annealing[J] . Peyman Asghari-Rad,Praveen Sathiyamoorthi,Nhung Thi-Cam Nguyen,Jae Wung Bae,Hamed Shahmir,Hyoung Seop Kim.Materials Science & Engineering A . 2020 (C)
[6]  
Microstructures and mechanical properties of the non-equiatomic FeMnNiCoCr high entropy alloy processed by differential speed rolling[J] . H.T. Jeong,W.J. Kim.Materials Science & Engineering A . 2018
[7]  
Correlation between dislocation-density-based strain hardening and microstructural evolution in dual phase TC6 titanium alloy[J] . Ran Shi,Zhihua Nie,Qunbo Fan,Fuchi Wang,Yu Zhou,Xin Liu.Materials Science & Engineering A . 2018
[8]  
Transition of twinning behavior in CoCrFeMnNi high entropy alloy with grain refinement[J] . S.J. Sun,Y.Z. Tian,H.R. Lin,H.J. Yang,X.G. Dong,Y.H. Wang,Z.F. Zhang.Materials Science & Engineering A . 2018
[9]  
Strengthening in Al 0.25 CoCrFeNi high-entropy alloys by cold rolling[J] . Jinxiong Hou,Min Zhang,Shengguo Ma,Peter. K. Liaw,Yong Zhang,Junwei Qiao.Materials Science & Engineering A . 2017
[10]  
Effect of strain path on microstructure and texture formation in cold-rolled and annealed FCC equiatomic CoCrFeMnNi high entropy alloy[J] . S.R. Reddy,M.Z. Ahmed,G.D. Sathiaraj,P.P. Bhattacharjee.Intermetallics . 2017