Effects of laser oscillation on metal mixing, microstructure, and mechanical property of Aluminum–Copper welds

IF 14 1区 工程技术 Q1 ENGINEERING, MANUFACTURING International Journal of Machine Tools & Manufacture Pub Date : 2023-05-01 DOI:10.1016/j.ijmachtools.2023.104020
Wenkang Huang , Wayne Cai , Teresa J. Rinker , Jennifer Bracey , Wenda Tan
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引用次数: 2

Abstract

Laser welding of dissimilar metals is important in many industrial applications. However, as dissimilar metals get mixed during the melting process, intermetallic compounds are often formed in the welds which can significantly undermine the electrical and mechanical properties of the welds. This poses a critical challenge to the widespread utilization of this welding technique. Compared with conventional line-scan laser welding, oscillating laser welding offers additional processing parameters to control the welding process. Although some work has been reported on oscillating laser welding of dissimilar metals, a mechanistic understanding of this process was still missing. The research objective of this work was to reveal the physical mechanisms and evaluate their relative significance to the fluid flow, metal mixing, and microstructure evolution in the molten pool in oscillating laser welding of dissimilar metals. A combination of experiments and simulations was leveraged to achieve the objective. Four fluid flows have been found to determine the metal mixing in the molten pool, and their dependences on the laser oscillating parameters were discussed. In addition, the thermo-solutal conditions of the molten pool solidification were quantified as functions of the laser oscillating parameters, and the effects of the thermo-solutal conditions on the final weld microstructures were analyzed.

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激光振荡对铝铜焊缝金属混合、显微组织和力学性能的影响
异种金属的激光焊接在许多工业应用中都很重要。然而,由于不同金属在熔化过程中混合在一起,焊缝中经常会形成金属间化合物,这会严重破坏焊缝的电气和机械性能。这对这种焊接技术的广泛应用提出了严峻的挑战。与传统的线扫描激光焊接相比,振荡激光焊接提供了额外的工艺参数来控制焊接过程。尽管已经报道了一些关于不同金属的振荡激光焊接的工作,但对这一过程的机械理解仍然缺失。本工作的研究目的是揭示不同金属振荡激光焊接中的物理机制,并评估其对熔池中流体流动、金属混合和微观结构演变的相对意义。实验和模拟的结合被用来实现这一目标。发现了四种流体流动来确定熔池中的金属混合,并讨论了它们对激光振荡参数的依赖性。此外,将熔池凝固的热溶质条件量化为激光振荡参数的函数,并分析了热溶质条件对最终焊缝微观结构的影响。
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来源期刊
CiteScore
25.70
自引率
10.00%
发文量
66
审稿时长
18 days
期刊介绍: The International Journal of Machine Tools and Manufacture is dedicated to advancing scientific comprehension of the fundamental mechanics involved in processes and machines utilized in the manufacturing of engineering components. While the primary focus is on metals, the journal also explores applications in composites, ceramics, and other structural or functional materials. The coverage includes a diverse range of topics: - Essential mechanics of processes involving material removal, accretion, and deformation, encompassing solid, semi-solid, or particulate forms. - Significant scientific advancements in existing or new processes and machines. - In-depth characterization of workpiece materials (structure/surfaces) through advanced techniques (e.g., SEM, EDS, TEM, EBSD, AES, Raman spectroscopy) to unveil new phenomenological aspects governing manufacturing processes. - Tool design, utilization, and comprehensive studies of failure mechanisms. - Innovative concepts of machine tools, fixtures, and tool holders supported by modeling and demonstrations relevant to manufacturing processes within the journal's scope. - Novel scientific contributions exploring interactions between the machine tool, control system, software design, and processes. - Studies elucidating specific mechanisms governing niche processes (e.g., ultra-high precision, nano/atomic level manufacturing with either mechanical or non-mechanical "tools"). - Innovative approaches, underpinned by thorough scientific analysis, addressing emerging or breakthrough processes (e.g., bio-inspired manufacturing) and/or applications (e.g., ultra-high precision optics).
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