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添加锌对铸态Mg-Gd-Y-Zr合金微观结构、力学性能及断裂行为的影响

Effect of Zn Addition on the Microstructure, Mechanical Properties, and Fracture Behavior of As-Cast Mg-Gd-Y-Zr Alloys.

作者信息

Xia Xiangsheng, Yang Echuan

机构信息

Southwest Technology and Engineering Research Institute, Chongqing 400039, China.

School of Mechanical Engineering, Chongqing University of Technology, Chongqing 400054, China.

出版信息

Materials (Basel). 2023 Mar 29;16(7):2720. doi: 10.3390/ma16072720.

Abstract

The microstructure and mechanical properties of semi-continuous casting Mg-Gd-Y-Zr magnesium alloys with different Zn contents were studied in this paper. The results showed that an increase in Zn content resulted in gradual refinement of the grains and a gradual increase in the volume fraction of the second phase. At a Zn content of 0.7 wt%, the microstructure was mainly composed of the α-Mg matrix and the Mg5(GdY) and long-period stacking order (LPSO) phases. An increase in the Zn content lowered the volume fraction of the Mg5(GdY) phase and increased the volume fraction of the LPSO phase. At a Zn content of 3.3 wt%, the microstructure was mainly composed of the α-Mg matrix and the LPSO phase. Among these alloys, the alloy without Zn addition showed an optimal ultimate tensile strength and yield strength of 229 MPa and 185 MPa, respectively, while the alloy with 3.3 wt% Zn showed an excellent elongation after fracture of 4.5%. The tensile fracture analysis indicated that the cracks of the alloy without Zn mainly originated at the trigeminal junction of the grain boundary, the cracks of the 0.7 wt% Zn and 1.5 wt% Zn alloy mainly originated at the interface of the Mg/lamellar LPSO phase, and the cracks of the 3.3 wt% Zn alloy mainly originated at the bulk LPSO phase of the grain boundary and then propagated along the bulk LPSO phase.

摘要

本文研究了不同锌含量的半连续铸造Mg-Gd-Y-Zr镁合金的微观结构和力学性能。结果表明,锌含量的增加导致晶粒逐渐细化,第二相体积分数逐渐增加。当锌含量为0.7 wt%时,微观结构主要由α-Mg基体、Mg5(GdY)相和长周期堆垛有序(LPSO)相组成。锌含量的增加降低了Mg5(GdY)相的体积分数,增加了LPSO相的体积分数。当锌含量为3.3 wt%时,微观结构主要由α-Mg基体和LPSO相组成。在这些合金中,未添加锌的合金表现出最佳的抗拉强度和屈服强度,分别为229 MPa和185 MPa,而锌含量为3.3 wt%的合金表现出优异的4.5%的断裂伸长率。拉伸断口分析表明,未添加锌的合金裂纹主要起源于晶界三叉交汇处,0.7 wt%锌和1.5 wt%锌合金的裂纹主要起源于Mg/层状LPSO相界面,3.3 wt%锌合金的裂纹主要起源于晶界的块状LPSO相,然后沿块状LPSO相扩展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ca47/10095757/db9ae1adc82b/materials-16-02720-g001.jpg

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