Effect of large pre-deformation on the microstructure, texture and mechanical properties of Al-Zn-Mg alloy extruded profiles

被引:0
|
作者
Chang, Cong [1 ]
Li, Hui [2 ]
Huang, Yuanchun [3 ,4 ]
机构
[1] College of Materials Science and Engineering, Taiyuan University of Technology, Taiyuan,030024, China
[2] College of Mechanical Engineering, Taiyuan University of Science and Technology, Taiyuan,030024, China
[3] College of Mechanical and Electrical Engineering, Central South University, Changsha,410083, China
[4] Light Alloy Research Institute, Central South University, Changsha,410083, China
基金
中国国家自然科学基金;
关键词
Brinell Hardness - Magnesium alloys - Tensile strength - Zinc alloys;
D O I
10.1016/j.jallcom.2024.177497
中图分类号
学科分类号
摘要
The effect of large pre-deformation on the microstructural evolution and mechanical property anisotropy of large-sized Al-Zn-Mg alloy extruded profiles with thin-walls and high-ribs was investigated. The increase in pre-deformation reduces the time required for the alloy to reach peak hardness during aging at 120 °C, but leads to a decrease in peak hardness. The undeformed alloy exhibits the highest ultimate tensile strength (UTS) of 527 MPa and yield strength (YS) of 497 MPa in the 90° direction, accompanied by a low elongation (EL) of 12.7 %, highlighting significant anisotropy. At a large pre-deformation of 38 %, UTS, YS, and EL dramatically fall, with IPA values of 2.43 %, 3.77 %, and 11.96 %, respectively. Increased pre-deformation promotes the formation of substructures without altering the texture type, which remains predominantly A1* and A2* textures, but reduces texture intensity. After aging treatment, the primary intragranular precipitates are η' phases, and dislocations generated by pre-deformation stimulate the heterogeneous nucleation of η' phases and their transformation to η phases. Additionally, increased pre-deformation leads to the growth and uneven distribution of precipitates and an increase in the width of the precipitate-free zones (PFZ). The reduced anisotropy is attributed to decreased texture intensity, increased dislocation substructures, higher η phase content, and expanded PFZ width. Pre-deformation between 8 % and 18 % effectively maintains mechanical properties while reducing anisotropy. These findings provide insights into optimizing pre-deformation treatments to balance mechanical properties and anisotropy in Al-Zn-Mg alloy profiles. © 2024 Elsevier B.V.
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