A study of hot compression behavior of an as-cast FeCrCuNi2Mn2 high-entropy alloy

被引:16
|
作者
Sajadi, Seyyed Ali [1 ]
Toroghinejad, Mohammad Reza [1 ,2 ]
Rezaeian, Ahmad [1 ]
Ebrahimi, Gholam Reza [3 ]
机构
[1] Isfahan Univ Technol, Dept Mat Engn, Esfahan 8415683111, Iran
[2] Shahid Beheshti Univ, Fac Mech & Energy Engn, Tehran, Iran
[3] Ferdowsi Univ Mashhad, Mat & Met Engn Dept, Mashhad, Razavi Khorasan, Iran
关键词
FeCrCuNi2Mn2 high-entropy alloy; hot compression; Constitutive modeling; dynamic recrystallization; work hardening rate; microstructure; DEFORMATION-BEHAVIOR; DYNAMIC RECRYSTALLIZATION; CONSTITUTIVE ANALYSIS; PROCESSING MAPS; FLOW;
D O I
10.1016/j.jallcom.2021.162732
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
In this study, hot deformation behavior of an as-cast FeCrCuNi2Mn2 high-entropy alloy (HEA) was evaluated. For this purpose, hot compression tests were carried out in the temperature range of 600-1000 degrees C and initial strain rate range of 0.001-0.1 s(-1). Flow stresses under different deformation conditions were then friction-corrected. Work hardening rate analysis was used to evaluate the occurrence of dynamic re crystallization. Microstructures of the hot compressed specimens were characterized using optical microscopy. Strain-dependent constitutive equations were developed using the data obtained from the Sellars-Tegart-Garofalo equation. The critical and peak strain and the critical and peak stress, as dynamic recrystallization parameters, were extracted from the work hardening rate versus stress curves. The results indicated that the modeled flow stresses were generally lower than the measured ones, which could be attributed to the impact of friction on the flow stress. Microstructural observations after hot compression tests as well as evaluation of work hardening rate versus stress curves showed typical dynamic re crystallization characteristics under different deformation conditions. In addition, with increase in deformation temperature and decrease in strain rate, more DRX grains were formed along grain boundaries and shear bands, resulting in a decrease in the flow stress. The size of the DRX grains was strongly affected by deformation temperature and increased with increase in temperature. The normalized critical stress and strain for the initiation of DRX were calculated as epsilon(c)/epsilon(p) = 0.60 and sigma c/sigma p = 0.86, respectively. The activation energy of hot deformation was determined to be 708 kJ/mol. It was noticed that the developed constitutive equations could accurately predict the flow stress behavior of the studied alloy over a wide range of experimental conditions. (C) 2021 Elsevier B.V. All rights reserved.
引用
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页数:15
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