Cryogenic strength improvement by utilizing room-temperature deformation twinning in a partially recrystallized VCrMnFeCoNi high-entropy alloy

Yong Hee Jo(Pohang University of Science and Technology), Sung Yong Jung(Pohang University of Science and Technology), Wookjin Choi(Pohang University of Science and Technology), Seok Su Sohn(Pohang University of Science and Technology), Hyoung Seop Kim(Pohang University of Science and Technology), Byeong‐Joo Lee(Pohang University of Science and Technology), Nack J. Kim(Pohang University of Science and Technology), Sanghan Lee(Pohang University of Science and Technology)
Nature Communications
June 12, 2017
Cited by 456Open Access
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Abstract

The excellent cryogenic tensile properties of the CrMnFeCoNi alloy are generally caused by deformation twinning, which is difficult to achieve at room temperature because of insufficient stress for twinning. Here, we induced twinning at room temperature to improve the cryogenic tensile properties of the CrMnFeCoNi alloy. Considering grain size effects on the critical stress for twinning, twins were readily formed in the coarse microstructure by cold rolling without grain refinement by hot rolling. These twins were retained by partial recrystallization and played an important role in improving strength, allowing yield strengths approaching 1 GPa. The persistent elongation up to 46% as well as the tensile strength of 1.3 GPa are attributed to additional twinning in both recrystallized and non-recrystallization regions. Our results demonstrate that non-recrystallized grains, which are generally avoided in conventional alloys because of their deleterious effect on ductility, can be useful in achieving high-strength high-entropy alloys.


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