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Application of laser in seam welding of dissimilar steel to aluminium joints for thick structural components

机译:激光在异种钢与厚结构件铝接头的缝焊中的应用

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摘要

Laser welding-brazing technique, using a continuous wave (CW) fibre laser with 8000 W of maximum power, was applied in conduction mode to join 2 mm thick steel (XF350) to 6 mm thick aluminium (AA5083-H22), in a lap joint configuration with steel on the top. The steel surface was irradiated by the laser and the heat was conducted through the steel plate to the steel-aluminium interface, where the aluminium melts and wets the steel surface. The welded samples were defect free and the weld micrographs revealed presence of a brittle intermetallic compounds (IMC) layer resulting from reaction of Fe and Al atoms. Energy Dispersive Spectroscopy (EDS) analysis indicated the stoichiometry of the IMC as Fe2Al5 and FeAl3, the former with maximum microhardness measured of 1145 HV 0.025/10. The IMC layer thickness varied between 4 to 21 μm depending upon the laser processing parameters. The IMC layer showed an exponential growth pattern with the applied specific point energy (Esp) at a constant power density (PD). Higher PD values accelerate the IMC layer growth. The mechanical shear strength showed a narrow band of variation in all the samples (with the maximum value registered at 31.3 kN), with a marginal increase in the applied Esp. This could be explained by the fact that increasing the Esp results into an increase in the wetting and thereby the bonded area in the steel-aluminium interface.
机译:激光焊接-钎焊技术使用最大功率为8000 W的连续波(CW)光纤激光器,以传导模式应用,将2毫米厚的钢(XF350)与6毫米厚的铝(AA5083-H22)搭接在一起接头配置,顶部为钢。用激光照射钢表面,并将热量通过钢板传导至钢-铝界面,在此铝会熔化并润湿钢表面。焊接后的样品无缺陷,焊接显微照片显示,由于铁和铝原子的反应而导致存在脆性金属间化合物(IMC)层。能量色散谱(EDS)分析表明,IMC的化学计量为Fe2Al5和FeAl3,前者的最大显微硬度为1145 HV 0.025 / 10。 IMC层的厚度根据激光加工参数在4至21μm之间变化。 IMC层在恒定的功率密度(PD)下显示了具有所施加的特定点能量(Esp)的指数增长模式。较高的PD值会加速IMC层的增长。机械剪切强度在所有样品中均显示出窄的变化带(最大值记录为31.3 kN),所施加的Esp略有增加。这可以通过以下事实来解释,即增加Esp会导致润湿增加,从而增加钢-铝界面的结合面积。

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