材料科学
再结晶(地质)
极限抗拉强度
合金
粒度
延伸率
冶金
位错
微观结构
动态再结晶
晶界强化
复合材料
晶粒生长
材料的强化机理
拉伸试验
晶界
热机械加工
作者
Wei Zhou,Zhanjiang Li,Li Chen,Chunfu Hong,Aisheng Guo,Pinqiang Dai
标识
DOI:10.1177/02670836261443786
摘要
In this study, we prepared a partially recrystallized heterogeneous grain structure (HGS) in Fe 40 Ni 20 Co 20 Cr 20 high-entropy alloy via thermomechanical treatment. The HGS contained recrystallized grains (RGs) and non-recrystallized grains (NRGs), with a recrystallization ratio of 39.4% and an average grain size of 1.88 μm. During tensile deformation, heterogeneous deformation-induced strengthening occurred, and dislocations continuously accumulated at RG–NRG interfaces, strengthening the alloy via dislocation interactions. This structure significantly improved the strength of the HEA, yielding a tensile strength of 820 MPa and uniform elongation of 15.7%. The HGS optimized the strength–ductility balance, providing a reference for developing high-performance HEAs.
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