Ultra-strong and strain-hardenable ultrafine-grained medium-entropy alloy via enhanced grain-boundary strengthening

  • Park, Jeong Min
  • Yang, Dae Cheol
  • Kim, Han-Jin
  • Kim, Dong Geun
  • Lee, Sunghak
  • ... Sohn, Seok Su
  • 외 1명
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초록

An equiatomic VCoNi medium-entropy alloy possesses high sensitivity to grain-boundary strengthening, achieved by severe lattice distortions. Its ultrafine-grain structure enables 1.5 Gigapascal yield strength even for the fully recrystallized alloy with a single face-centered cubic structure. The high density of grain boundaries also generates high back stresses via piling up of massive dislocations, and the low cross-slip probabilities produce not only robust dislocation-mediated plasticity but also high back stress contribution to flow stress, which affords high strain-hardening capability to ultrafine-grain alloys, with 1.7 Gigapascal ultimate tensile strength with remarkable ductility. Our approach provides a new method for developing ultrastrong metallic materials.

키워드

Medium-entropy alloysevere plastic deformationultrafine grain structuresevere lattice distortiongrain boundary strengthening
제목
Ultra-strong and strain-hardenable ultrafine-grained medium-entropy alloy via enhanced grain-boundary strengthening
저자
Park, Jeong MinYang, Dae CheolKim, Han-JinKim, Dong GeunLee, SunghakKim, Hyoung SeopSohn, Seok Su
DOI
10.1080/21663831.2021.1913768
발행일
2021-04-20
유형
Article
저널명
Materials Research Letters
9
7
페이지
315 ~ 321