Effect of rolling temperature on microstructure and mechanical properties of hot-rolled Mg-Al-Ca-Zn-Mn alloys

Author:

Chen Qingrui,Li Chunxiao,Lv Ning,Chen Rongshi,Mao Yaozong

Abstract

Abstract In order to address the problems of traditional magnesium alloys, such as the easy formation of basal texture and poor plasticity at room temperature, a multivariate micro alloyed Mg-1Al-0.9Ca-0.5Zn-0.4Mn material has been designed by taking advantage of the unique role of solute atoms such as Ca. The effects of its rolling process on grain size, second phase, texture, and tensile properties were compared and analyzed. The results show that the rolling temperature will significantly change the organization and properties: a small number of large-sized reticulate phases, linear phases, and granular phases will exist along the rolling direction inside the Mg-1Al-0.9Ca-0.5Zn-0.4Mn alloy. When the rolling temperature is raised, it will change the number and size of the second phase and microstructure morphology. For three plates rolled at 300°C, the best-combined strength-plasticity mechanical properties were presented in this work; elongation is 2.5%, tensile strength is 167 MPa, and yield strength is 146 MPa along the RD, respectively. Besides, some larger-sized phases still exist in this alloy, which affects its mechanical properties.

Publisher

IOP Publishing

Reference7 articles.

1. Development and application of plastic processing technologies of magnesium alloys;Pan;Acta Metallurgica Sinica,2021

2. Overview of advancement and development trend on magnesium alloy;Xu;Journal of Magnesium and Alloys,2019

3. Microstructure and Texture Evolution of Mg-14Gd-0.5Zr Alloy during Rolling and Annealing under Different Temperatures;Li;Acta Metallurgica Sinica-English Letters,2022

4. Tailoring the Texture and Mechanical Anisotropy of Multi-cross Rolled Mg–Zn–Gd Alloy by Annealing;Li;Acta Metallurgica Sinica(English Letters),2022

5. Highly deformable Mg-Al-Ca alloy with Al2Ca precipitates;Zhu;Acta Materialia,2020

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