Unveiling the microstructure evolution based on deformation mechanisms and dynamic recrystallization in as-extruded AZ31 Mg alloys during uniaxial compression

被引:21
作者
Cui, Chao [1 ]
He, Jian [1 ]
Wang, Wenke [1 ]
Chen, Wenzhen [1 ,2 ]
Zhang, Wencong [1 ,2 ]
Chen, Xuemin [1 ]
Hou, Jiabin [1 ]
机构
[1] Harbin Inst Technol, Sch Mat Sci & Engn, Room A301, Weihai 264209, Peoples R China
[2] Weihai Lightweight Mat & Forming Engn Res Ctr, Weihai 264209, Peoples R China
基金
中国国家自然科学基金;
关键词
AZ31 Mg alloy; Microstructure; Texture; Deformation mechanism; Dynamic recrystallization; GD-Y ALLOY; MAGNESIUM ALLOY; TEXTURE DEVELOPMENT; PLASTIC-DEFORMATION; BEHAVIOR; TEMPERATURE; SIMULATION; PREDICTION; BOUNDARIES; EXTRUSION;
D O I
10.1016/j.jallcom.2021.162417
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
A series of uniaxial compression experiments were carried out on the as-extruded AZ31 Mg alloy with < 10-10 > - < 11-20 > //ED (extrusion direction) double fiber texture at 200-350 degrees C. The microstructure evolution during the work hardening and dynamic softening stages were systematically investigated based on deformation mechanisms and dynamic recrystallization (DRX), respectively. Experimental and simulation results demonstrated that in the work hardening stage, the dominant deformation mechanisms were the basal < a > slip and {10-12} twinning at 250 degrees C, while the basal < a > slip and prismatic < a > slip 350 degrees C. The appearance of profuse {10-12} twins at 250 degrees C not only effectively refined the microstructure but also quickly promoted the formation of strong < 0001 > //CD (compression direction) texture. Moreover, the activation of twin variants was mainly dependent on their own Schmid factor that was higher in < 10-10 > // CD grains, resulting in the earlier disappearance of the < 10-10 > //ED texture component than the < 11-20 > //ED texture component. In contrast, owing to the limited of {10-12} twins, the samples at 350 degrees C exhibited a weak fiber texture with diffusely distributed of basal plane along the CD. In the dynamic softening stage, high temperature increased both the grain size and proportion of DRXed grains, resulting in a more homogeneous microstructure. More importantly, the continuous DRX (CDRX) transformed into discontinuous DRX (DDRX) as the temperature increased from 250 degrees C to 350 degrees C. The similar orientation between the new CDRXed grains and parent grains at 250 degrees C preserved the strong < 0001 > //CD texture, while at 350 degrees C the basal texture was significantly weakened due to the random orientation DDRXed grains and higher activation of pyramidal < c + a > slip. These findings are beneficial for the optimization of the temperature range of the MDF process. (c) 2021 Elsevier B.V. All rights reserved.
引用
收藏
页数:15
相关论文
共 44 条
[1]   Application of texture simulation to understanding mechanical behavior of Mg and solid solution alloys containing Li or Y [J].
Agnew, SR ;
Yoo, MH ;
Tomé, CN .
ACTA MATERIALIA, 2001, 49 (20) :4277-4289
[2]   Effect of grain boundaries on texture formation during dynamic recrystallization of magnesium alloys [J].
Barrett, Christopher D. ;
Imandoust, Aidin ;
Oppedal, Andrew L. ;
Inal, Kaan ;
Tschopp, Mark A. ;
El Kadiri, Haitham .
ACTA MATERIALIA, 2017, 128 :270-283
[3]   Twin recrystallization mechanisms in magnesium-rare earth alloys [J].
Basu, I. ;
Al-Samman, T. .
ACTA MATERIALIA, 2015, 96 :111-132
[4]   Texture enhancement during grain growth of magnesium alloy AZ31B [J].
Bhattacharyya, J. J. ;
Agnew, S. R. ;
Muralidharan, G. .
ACTA MATERIALIA, 2015, 86 :80-94
[5]   Dynamic recrystallization behavior and hot workability of AZ41M magnesium alloy during hot deformation [J].
Cai, Zhiwei ;
Chen, Fuxiao ;
Ma, Fengjie ;
Guo, Junqing .
JOURNAL OF ALLOYS AND COMPOUNDS, 2016, 670 :55-63
[6]   Modeling strain rate sensitivity and high temperature deformation of Mg-3Al-1Zn alloy [J].
Chapuis, Adrien ;
Liu, Qing .
JOURNAL OF MAGNESIUM AND ALLOYS, 2019, 7 (03) :433-443
[7]   Investigating the temperature dependency of plastic deformation in a Mg-3Al-1Zn alloy [J].
Chapuis, Adrien ;
Liu, Qing .
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2018, 725 :108-118
[8]   Enhanced mechanical property of AZ31B magnesium alloy processed by multi-directional forging method [J].
Chen Cai ;
Song LingHui ;
Du XingHao ;
Wu BaoLin .
MATERIALS CHARACTERIZATION, 2017, 131 :72-77
[9]   A comprehensive analysis on microstructure evolution of Mg-5.65Zn-0.66Zr alloy during hot deformation [J].
Cheng, Qian ;
Chen, Liang ;
Tang, Jianwei ;
Zhao, Guoqun ;
Sun, Lu ;
Zhang, Cunsheng .
JOURNAL OF MAGNESIUM AND ALLOYS, 2021, 9 (02) :520-531
[10]  
Cui C., 2021, J MAGNES ALLOY, DOI [10.1016/j.jma.2021.01.001, DOI 10.1016/J.JMA.2021.01.001]