Kinetic interplay between chemical short-range order and grain boundaries in NiCoCr alloys under irradiation

  • Kim, Hyeonwoo
  • Lee, Ho
  • Kim, Kanghyeon
  • Fan, Yue
  • Kim, Sangtae
  • 외 2명
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초록

Chemical short-range order (CSRO) and grain boundary (GB) engineering are routes to enhance radiation damage tolerance in alloys. Here, we reveal that CSRO and GB interact in a sink-strength-dependent manner under irradiation in NiCoCr. Near a weak sink (Σ3 GB), CSRO reduces defect cluster growth by slowing interstitial diffusion and enhancing vacancy-interstitial recombinations. In contrast, near strong sinks such as Σ5 GBs, CSRO and GB act competitively for interstitial accumulation but synergistically to suppress large stacking-fault tetrahedra growth via enhanced recombination. Such mechanistic duality underscores the need for coordinated control of CSRO stability and GB sink strength to enhance radiation damage tolerance.

키워드

Short-range ordermolecular dynamicsirradiation damagegrain boundarydefectsHIGH-ENTROPY ALLOYSAUSTENITIC STAINLESS-STEELINDUCED SEGREGATIONRADIATION-DAMAGEATOMIC-SCALEMIGRATIONIMPACT
제목
Kinetic interplay between chemical short-range order and grain boundaries in NiCoCr alloys under irradiation
저자
Kim, HyeonwooLee, HoKim, KanghyeonFan, YueKim, SangtaeJin, MiaomiaoYang, Yang
DOI
10.1080/21663831.2026.2644262
발행일
2026-06
유형
Article; Early Access
저널명
MATERIALS RESEARCH LETTERS
14
6
페이지
642 ~ 651