Elucidating the effect of circular and tailing laser beam shapes on keyhole necking and porosity formation during laser beam welding of aluminum 1060 using a multiphysics computational fluid dynamics approach

IF 1.7 4区 工程技术 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY Journal of Laser Applications Pub Date : 2023-10-12 DOI:10.2351/7.0001150
Qamar Hayat, Pasquale Franciosa, Giovanni Chianese, Anand Mohan, Dariusz Ceglarek, Alexander Griffiths, Christopher Harris
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Abstract

In the attempt to produce lighter battery packs at a lower cost, replacing common copper parts with aluminum components has been a popular approach in recent years. With regard to joining technologies, there is a growing interest in applying laser beam welding in battery pack manufacturing due to several advantages such as single-sided and noncontact access while maintaining a narrow heat-affected zone. Motivated by the need to control and reduce weld porosity in AA1060 battery busbar welding with the ultimate goal to enhance durability and reduce electrical resistance, this paper has been developed with the aim to studying the effect of laser beam shaping on porosity formation and, hence, generate knowledge about the underlying physics of the welding process itself. First, a multiphysics computational fluid dynamics model has been developed and calibrated to experimental data; then, the model has been deployed to study the effect of both circular and tailing beam shapes on melt pool dynamics and the evolution of porosity due to the instability of the keyhole. The study elucidated the importance of the keyhole’s necking on porosity formation. Findings showed that the tail beam shapes, compared to the circular spot, have a pronounced effect on the reduction of the necking effect of the keyhole—this helps to reduce number of collapsing events of the keyhole itself, thereby leading to the reduction of porosity formation.
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用多物理场计算流体动力学方法研究了圆形和尾形激光束形状对1060铝合金激光焊接过程中锁眼颈缩和气孔形成的影响
为了以更低的成本生产更轻的电池组,近年来用铝组件代替常见的铜部件一直是一种流行的方法。在连接技术方面,由于具有单面和非接触式连接,同时保持狭窄的热影响区等优点,人们对将激光束焊接应用于电池组制造越来越感兴趣。为了控制和减少AA1060电池母线焊接中的焊缝孔隙率,最终达到提高耐久性和降低电阻的目的,本文的目的是研究激光束整形对孔隙率形成的影响,从而产生关于焊接过程本身的潜在物理知识。首先,建立了一个多物理场计算流体动力学模型,并根据实验数据进行了校准;然后,利用该模型研究了圆梁和尾梁两种形状对熔池动力学的影响以及锁孔不稳定导致的孔隙度演化。研究阐明了锁孔颈度对孔隙度形成的重要性。研究结果表明,与圆点相比,尾梁形状对减小锁孔颈缩效应有显著的影响,这有助于减少锁孔本身的坍塌事件数量,从而减少孔隙形成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.60
自引率
9.50%
发文量
125
审稿时长
>12 weeks
期刊介绍: The Journal of Laser Applications (JLA) is the scientific platform of the Laser Institute of America (LIA) and is published in cooperation with AIP Publishing. The high-quality articles cover a broad range from fundamental and applied research and development to industrial applications. Therefore, JLA is a reflection of the state-of-R&D in photonic production, sensing and measurement as well as Laser safety. The following international and well known first-class scientists serve as allocated Editors in 9 new categories: High Precision Materials Processing with Ultrafast Lasers Laser Additive Manufacturing High Power Materials Processing with High Brightness Lasers Emerging Applications of Laser Technologies in High-performance/Multi-function Materials and Structures Surface Modification Lasers in Nanomanufacturing / Nanophotonics & Thin Film Technology Spectroscopy / Imaging / Diagnostics / Measurements Laser Systems and Markets Medical Applications & Safety Thermal Transportation Nanomaterials and Nanoprocessing Laser applications in Microelectronics.
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