Modelling and optimization of laser welding of Al2024 aluminium alloy

田口方法 焊接 激光束焊接 克里金 材料科学 结构工程 响应面法 铝合金 激光功率缩放 激光器 工程类 数学 冶金 复合材料 统计 光学 物理
作者
Upama Dey,Aparna Duggirala,S. Mitra
出处
期刊:World Journal of Engineering [Emerald (MCB UP)]
卷期号:21 (4): 741-753 被引量:8
标识
DOI:10.1108/wje-10-2022-0421
摘要

Purpose Aluminium alloys can be used as lightweight and high-strength materials in combination with the technology of laser beam welding, an efficient joining method, in the manufacturing of automotive parts. The purposes of this paper are to conduct laser welding experiments with Al2024 in the lap joint configuration, model the laser welding process parameters of Al2024 alloys and use propounded models to optimize the process parameters. Design/methodology/approach Laser welding of Al2024 alloy has been conducted in the lap joint configuration. Then, the influences of explanatory variables (laser peak power, scanning speed and frequency) on outcome variables (weld width [WW], throat length [TL] and breaking load [BL]) have been investigated with Poisson regression analysis of the data set derived from experimentation. Thereafter, a multi-objective genetic algorithm (MOGA) has been used using MATLAB to find the optimum solutions. The effects of various input process parameters on the responses have also been analysed using response surface plots. Findings The promulgated statistical models, derived with Poisson regression analysis, are evinced to be well-fit ones using the analysis of deviance approach. Pareto fronts have been used to demonstrate the optimization results, and the maximized load-bearing capacity is computed to be 1,263 N, whereas the compromised WW and TL are 714 µm and 760 µm, respectively. Originality/value This work of conducting laser welding of lap joint of Al2024 alloy incorporating the Taguchi method and optimizing the input process parameters with the promulgated statistical models proffers a neoteric perspective that can be useful to the manufacturing industry.

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