Effect of cold-rolling and annealing temperature on microstructure, texture evolution and mechanical properties of FeCoCrNiMn high-entropy alloy

被引:18
作者
Liao, Luhai [1 ,2 ]
Cheng, Yifan [1 ]
Dai, Shang [3 ]
Khan, Muhammad Abubaker [3 ]
Zhang, He [1 ]
Li, Fengguang [1 ]
机构
[1] Hubei Univ Automot Technol, Sch Mat Sci & Engn, Shiyan 442002, Peoples R China
[2] Wuhan Univ Sci & Technol, Minist Educ, Key Lab Ferrous Met & Resources Utilizat, Wuhan 430081, Peoples R China
[3] Univ Sci & Technol Beijing, Sch Mat Sci & Engn, Beijing 100083, Peoples R China
来源
JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY-JMR&T | 2024年 / 33卷
关键词
High-entropy alloys; Cold rolling; Annealing; Microstructure and mechanical properties; TWINNING-INDUCED PLASTICITY; STACKING-FAULT ENERGY; AUSTENITIC STAINLESS-STEEL; SUBSTRUCTURE EVOLUTION; TWIP-STEEL; STRAIN; DEFORMATION; PHASE; RECRYSTALLIZATION; DISLOCATION;
D O I
10.1016/j.jmrt.2024.09.124
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This study investigates the effects of cold rolling and annealing on the microstructure, texture, and mechanical properties of FeCoCrNiMn high-entropy alloys. Utilizing vacuum induction melting, the alloy was initially cast into ingots and hot-rolled into plates, which were subsequently cold-rolled to various thicknesses and annealed at different temperatures. Microstructural analyses were conducted using X-ray diffraction and electron backscatter diffraction techniques, revealing a persistent face-centered cubic structure across all conditions. The texture evolution demonstrated a shift from Copper and S components to dominant Goss and Brass components as cold rolling intensified, suggesting the formation of Brass-type texture in FeCoCrNiMn at high deformation. Mechanical testing showed that the alloy's yield and tensile strengths significantly increased with cold rolling, reaching optimum values at similar to 66 % reduction. Annealing at 750 degrees C enhanced both strength and ductility, primarily through grain refinement and the formation of Sigma 3 annealing twin boundaries, which dominated the microstructure of recrystallized grains. The study confirms that the low stacking fault energy of the alloy facilitates the activation of twinning and transformation-induced plasticity mechanisms, crucial for the observed enhancements in mechanical properties.
引用
收藏
页码:683 / 697
页数:15
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