Constitutive behavior and microstructural evolution of FeMnSiCrNi shape memory alloy subjected to compressive deformation at high temperatures

被引:22
作者
Jiang, Shuyong [1 ]
Wang, Yu [2 ]
Zhang, Yanqiu [1 ]
Xing, Xiaodong [1 ]
Yan, Bingyao [2 ]
机构
[1] Harbin Engn Univ, Coll Mech & Elect Engn, Harbin 150001, Heilongjiang, Peoples R China
[2] Harbin Engn Univ, Coll Mat Sci & Chem Engn, Harbin 150001, Heilongjiang, Peoples R China
基金
中国国家自然科学基金;
关键词
Shape memory alloy; FeMnSiCrNi alloy; Constitutive behavior; Microstructure evolution; Plastic deformation; EPSILON MARTENSITIC-TRANSFORMATION; FLOW BEHAVIOR; DYNAMIC RECRYSTALLIZATION; TEXTURE EVOLUTION; RECOVERY STRESS; ALUMINUM-ALLOY; CYCLE FATIGUE; EQUATION; GAMMA; STEEL;
D O I
10.1016/j.matdes.2019.108019
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Constitutive behavior and microstructural evolution of FeMnSiCrNi shape memory alloy (SMA) subjected to compressive deformation at high temperatures were investigated based on the different deformation conditions. According to Arrhenius type equation, the constitutive equation of FeMnSiCrNi SMA was constructed according to strain compensation, where material parameters vary with increasing strain. The involved constitutive equation can effectively predict the flow stress during dynamic recrystallization (DRX) of FeMnSiCrNi SMA. All the compressed FeMnSiCrNi samples consist of epsilon martensite and gamma austenite. In addition, dislocations, stacking faults and austenite twins were also found in the deformed FeMnSiCrNi samples. Owing to the occurrence of DRX, the grain size increases with increasing deformation temperature. Furthermore, with increasing deformation temperature, the fraction of large angle grain boundaries increases while the one of low angle grain boundaries decreases. Deformation temperature also affects the texture of FeMnSiCrNi SMA. With increasing deformation temperature, < 110 > texture becomes weak gradually in the 'gamma austenite, but < 001 > texture and cube texture are intensified gradually along with the onset of < 110 > and < 111 > fiber textures. Moreover, epsilon martensite possesses < 11 (2) over bar2 > fiber texture. (C) 2019 The Authors. Published by Elsevier Ltd.
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页数:16
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