Strength-ductility mechanism of combined heterostructured CoCrFeMnNi high-entropy alloy prepared by laser heat-treatment process

被引:0
|
作者
Chen, Jie [1 ]
Wang, Chengchi [1 ]
Ling, Jianjun [1 ]
Wang, Pengfei [1 ]
Li, Jingge [1 ]
Jin, Haizhou [2 ]
Cao, Yu [1 ]
机构
[1] Wenzhou Univ, Coll Mech & Elect Engn, Zhejiang Prov Key Lab Laser Proc Robot, Wenzhou 325035, Zhejiang, Peoples R China
[2] Xinhai Valve Co Ltd, Wenzhou 325035, Zhejiang, Peoples R China
关键词
High-entropy alloy; Laser surface heat-treatment; Combined heterostructured structure; Strength-ductility synergy; TENSILE PROPERTIES; DEFORMATION MECHANISMS; ENHANCED STRENGTH; GRAIN-SIZE; MICROSTRUCTURE; BEHAVIOR; EVOLUTION;
D O I
10.1016/j.intermet.2024.108511
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Two types of typical combined heterostructured CoCrFeMnNi high-entropy alloys with superior mechanical properties that evade the strength-ductility trade-off are fabricated using laser heat-treatment process. The lamellar grain structure with relatively high microhardness can hardly be observed due to the short time annealing at low temperature (873 K for 5 min) before laser scanning. The hetero-deformation induced strengthening, as well as the excellent deformation ability of the bottom hard region which can enhance the interaction between nanotwin-dislocation and maintains the large microhardness difference among the soft-hard layers, are the main factors that improve the yield strength of CoCrFeMnNi high-entropy alloy. Moreover, the combined heterostructured structure without lamellar deformed bands is demonstrated to have a relatively better uniform elongation, which is attributed to the stronger deformation ability of the non-recrystallized grains in the bottom hard region and the effective delay of the crack growth. Consequently, the combined heterostructured structure without lamellae is a promising way to simultaneously improve the strength and ductility, which can be efficiently prepared by the laser surface heat-treatment technique.
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页数:13
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