材料科学技术(英文版)2022,Vol.111Issue(16) :152-166.

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

H.T.Jeong W.J.Kim
材料科学技术(英文版)2022,Vol.111Issue(16) :152-166.

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

H.T.Jeong 1W.J.Kim1
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作者信息

  • 1. Department of Materials Science and Engineering,Hongik University,Mapo-gu,Sangsu-dong 72-1,Seoul 121-791,Republic of Korea
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Abstract

A very coarse-grained(335 μm)Fe41Mn25Ni24CO8Cr2 high-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 en-tire thickness of the sheet was covered with micro-shear bands,and ultrafine(sub)grains with a size of 1.4 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 at 973 K showed a fully recrystallized microstructure composed of a five times smaller grain size(4 μm)with a higher intensity of y fiber texture compared with that prepared by conventional rolling.The sam-ples 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 mi-crostructure,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 sam-ples was quantitatively explained by considering the contribution of grain size and dislocation density to strengthening.

Key words

High entropy alloys/Differential speed rolling/Texture/Grain refinement/Strength/Severe plastic deformation

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基金项目

National Re-search Foundation of Korea funded by the Korean government(MSIT)(NRF 2020R1A4A1018826)

出版年

2022
材料科学技术(英文版)
中国金属学会 中国材料研究学会 中国科学院金属研究所

材料科学技术(英文版)

CSTPCDCSCDSCI
影响因子:0.657
ISSN:1005-0302
被引量1
参考文献量60
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