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热处理和深冷处理对激光焊接AZ31B微观结构演变及力学性能的影响

The Influence of Heat and Cryogenic Treatment on Microstructure Evolution and Mechanical Properties of Laser-Welded AZ31B.

作者信息

Xu Yulang, Qian Peng, Qiao Yanxin, Yin Wujia, Jiang Zhiwei, Li Jingyong

机构信息

Advanced Welding Technology Provincial Key Laboratory, Jiangsu University of Science and Technology, Zhenjiang 212003, China.

出版信息

Materials (Basel). 2023 Jun 30;16(13):4764. doi: 10.3390/ma16134764.

Abstract

The pores and coarse lamellar MgAl that inevitably occur in the weld zone are the major challenge for laser-welded magnesium (Mg) alloys including AZ31B. In order to improve microstructure uniformity and eliminate welding defects, a new process assisted with combination of heat and cryogenic treatment was applied in this study. The results showed that after solution treatment, the number and size of precipitates decreased and the uniformity of the microstructure improved. After cryogenic treatment, the lamellar MgAl was cracked into particles, and the grain size was refined. After solution + cryogenic treatment, AlMn substituted the lamellar MgAl. Through studying the changes in microhardness, precipitates, and microstructure under different treatments, it was found that the conversation of MgAl from lamellar state into particle-like state as well as the appearance of dispersed AlMn particles played a second-phase strengthening role in improving the mechanical properties of Mg alloy laser-welded joint, and the tensile strength (258.60 MPa) and elongation (10.90%) of the sample were 4.4% and 32.6% higher than those of the as-welded joint.

摘要

焊缝区不可避免出现的气孔和粗大片状MgAl是包括AZ31B在内的激光焊接镁(Mg)合金面临的主要挑战。为了提高微观结构均匀性并消除焊接缺陷,本研究采用了一种热与低温处理相结合的新工艺。结果表明,固溶处理后,析出相的数量和尺寸减少,微观结构的均匀性得到改善。低温处理后,片状MgAl开裂成颗粒,晶粒尺寸细化。固溶+低温处理后,AlMn取代了片状MgAl。通过研究不同处理下的显微硬度、析出相和微观结构的变化,发现MgAl从片状状态转变为颗粒状状态以及分散的AlMn颗粒的出现,在提高Mg合金激光焊接接头力学性能方面起到了第二相强化作用,样品的抗拉强度(258.60 MPa)和伸长率(10.90%)比焊态接头分别提高了4.4%和32.6%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/266f/10343521/7764035a1942/materials-16-04764-g001.jpg

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