taaguchi方法在AA 2024激光焊接中的应用研究

Souradip Paul, A. Duggirala, S. Mitra
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引用次数: 2

摘要

铝合金在航空工业中被广泛用于制造轻质结构。激光焊接在现代应用中,与传统的焊接技术相比,激光焊接具有许多优点。工艺参数的选择是获得良好焊接接头的关键。这种选择是特定于应用和材料的。铝合金由于其物理性质,在激光焊接时需要特别注意。本研究的目的是实现细焊缝宽度、深熔接和优异的力学性能。为此,利用脉冲ND: YAG激光焊接机,研究了不同激光参数对对接结构焊缝宽度的影响。在田口进行了实验设计,使焊缝从传导模式生长到锁孔模式。工艺参数(峰值功率、扫描速度、频率、脉冲宽度)是不同的,同时保持聚焦距离、保护气体和焊接策略等变量对所有实验都是通用的。所用材料为AA 2024。对于所研究的所有参数,焊缝宽度、焊缝上的裂纹和气孔都得到了观察。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study of Laser Beam Welding of AA 2024 Using Taguchi Methodology
Aluminium alloys are widely used in aeronautic industry to produce light weight structures. Laser welding is used in modern applications and has many advantages over conventional welding techniques to join Aluminium alloys. Selection of process parameters is crucial in obtaining a good weld joint. This selection is specific to application and material. Aluminium alloys need special attention while welding with laser due to their physical properties. The objective of this study is to realize fine weld width, deep penetration joint with excellent mechanical properties. Hence, the influence of different laser parameters on the weld width in butt joint configuration is investigated using pulsed ND: YAG laser welding machine. The experiments are designed in Taguchi in such a way that the weld bead grows from conduction mode to keyhole mode. Process parameters (peak power, scanning speed, frequency, pulse width) are varied while keeping variables like focusing distance, shielding gas ad weld strategies are common for all the experiments. The material used is AA 2024. For all the investigated parameters, the weld width, cracks and pores on the weld bead are observed.
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