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通过控制激光振荡幅度对免热处理压铸铝合金的微观结构和力学性能进行研究。

Investigation of the Microstructure and Mechanical Properties of Heat-Treatment-Free Die-Casting Aluminum Alloys Through the Control of Laser Oscillation Amplitude.

作者信息

Xu Hong, Shao Jinyi, Han Lijun, Wang Rui, Jiang Zhigong, Miao Guanghui, Zhang Zhonghao, Cheng Xiuming, Bai Ming

机构信息

Key Laboratory of Automotive Materials Ministry of Education, School of Material Science and Technology, Jilin University, Changchun 130022, China.

College of Materials Science and Engineering, Jilin University, Changchun 130025, China.

出版信息

Materials (Basel). 2025 Mar 7;18(6):1194. doi: 10.3390/ma18061194.

Abstract

In this study, laser oscillation welding was utilized to offer an effective solution for the joint welding of heat-treatment-free die-cast aluminum alloys, which expands the practical applications of automotive structural parts and heat sinks for electronic devices. The effects of oscillation amplitude on the macro-morphology, microstructure, and properties of the alloy weld were examined, and a molten pool flow model was developed to compare the behavior of the molten pool with and without oscillation. The results show that increasing the oscillation amplitude eliminates the coarse Al(Fe,Mn)Si phase, resulting in a finer and more uniform distribution of the eutectic Si and MgSi phases. At an oscillation amplitude of 7 mm, the maximum tensile shear load and displacement were 2761 N and 1.17 mm, respectively. Laser oscillation was found to enhance the fluidity of the molten pool, reduce porosity, improve weld quality, and effectively decrease cracks and inhomogeneous grain distribution. These findings provide a research basis for optimizing the laser oscillation welding process and for the practical welding of fabricated devices.

摘要

在本研究中,采用激光振荡焊接为免热处理压铸铝合金的接头焊接提供了一种有效解决方案,这拓展了汽车结构部件和电子设备散热器的实际应用。研究了振荡幅度对合金焊缝宏观形貌、微观结构和性能的影响,并建立了熔池流动模型,以比较有振荡和无振荡情况下熔池的行为。结果表明,增大振荡幅度可消除粗大的Al(Fe,Mn)Si相,使共晶硅和MgSi相分布更细且更均匀。在振荡幅度为7 mm时,最大拉伸剪切载荷和位移分别为2761 N和1.17 mm。发现激光振荡可提高熔池流动性、减少气孔率、改善焊接质量,并有效减少裂纹和不均匀晶粒分布。这些研究结果为优化激光振荡焊接工艺及实际焊接制造设备提供了研究依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d0ac/11944263/9c1f03d5150f/materials-18-01194-g001.jpg

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