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厚2219铝合金电子束焊接接头的微观结构演变及力学性能

Microstructure Evolution and Mechanical Properties of Thick 2219 Aluminum Alloy Welded Joints by Electron-Beam Welding.

作者信息

Chang Zhilong, Huang Minghui, Wang Xiaobo, Wang Houqin, Sun Guangda, Zhou Li

机构信息

College of Mechanical and Electrical Engineering, Central South University, Changsha 410083, China.

Beijing Institute of Astronautical Systems Engineering, Beijing 100076, China.

出版信息

Materials (Basel). 2023 Nov 3;16(21):7028. doi: 10.3390/ma16217028.

Abstract

In this study, 2219 aluminum alloy thick plate was joined by electron beam welding. Defect-free joints with excellent surface formation were obtained. There were significant differences in the microstructure along the thickness direction of the weld zone (WZ). The upper region of the WZ was mainly striated grains, while the lower region was fine equiaxed grains. The WZ of 2219 joint is composed of α-Al and Al-Cu eutectic. Fine equiaxed grains were formed in the partially melted zone (PMZ) due to the existence of high-melting nucleation particles including Ti-Al and Ti-Zr compounds. The eutectic microstructure in the PMZ and the heat-affected zone (HAZ) presented net-like and block-shape distribution. Due to the formation of fine grains and high content of Al-Cu eutectic, the WZ showed the highest microhardness (80 HV). Therefore, the 2219 joint obtained excellent mechanical properties. The tensile strength of the 2219 joint was equal to that of the base metal (BM), but the elongation of the 2219 joint significantly decreased to 15.1%, about 67.7% of that of BM. The fracture mode of the 2219 joint presented typical ductile fracture.

摘要

在本研究中,采用电子束焊接对2219铝合金厚板进行连接。获得了表面成形良好且无缺陷的接头。沿焊缝区(WZ)厚度方向的微观结构存在显著差异。焊缝区的上部区域主要是柱状晶,而下部区域是细小等轴晶。2219接头的焊缝区由α-Al和Al-Cu共晶组成。由于存在包括Ti-Al和Ti-Zr化合物在内的高熔点形核颗粒,在部分熔化区(PMZ)形成了细小等轴晶。部分熔化区和热影响区(HAZ)中的共晶微观结构呈现出网状和块状分布。由于细晶的形成以及Al-Cu共晶的高含量,焊缝区表现出最高的显微硬度(80 HV)。因此,2219接头获得了优异的力学性能。2219接头的抗拉强度与母材(BM)相当,但2219接头的伸长率显著降低至15.1%,约为母材伸长率的67.7%。2219接头的断裂模式呈现典型的韧性断裂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a29e/10647801/b7e47896f165/materials-16-07028-g001.jpg

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