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Research on the welding process of aluminum alloy based on high power fiber laser

机译:基于大功率光纤激光器的铝合金焊接工艺研究

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To research the formation and variation principle of the weld seam and molten pool for aluminum alloy high power fiber laser welding, the welding experiments for 5052 aluminum alloy were carried out. The influences of laser power, scanning velocity and protection gas on the welding process were systematically researched. The results show that with the increase of power and scanning velocity, the depth to width ratio first increases and then decreases. The ratio reaches the maximum value at 2.6 KW and 30 mm/s, respectively. When the power located at 2.6 KW to 2.8 KW or the velocity located at 25 mm/s to 30 mm/s, stable deep penetration welding can be obtained. The weld seam shows relative flat appearance and the molten pool presents typical "T shape" topography. Moreover, the protection gas also influences the appearance of the weld seam. Using the independently designed fixture, the quality of the weld seam can be well improved.
机译:为了研究铝合金高功率光纤激光焊接的焊缝和熔池的形成及变化规律,对5052铝合金进行了焊接实验。系统研究了激光功率,扫描速度和保护气体对焊接工艺的影响。结果表明,随着功率和扫描速度的增加,深宽比先增大然后减小。该比率分别在2.6 KW和30 mm / s时达到最大值。当功率位于2.6 KW至2.8 KW或速度位于25 mm / s至30 mm / s时,可以获得稳定的深熔焊。焊缝显示出相对平坦的外观,熔池呈现出典型的“ T形”形貌。此外,保护气体还影响焊缝的外观。使用独立设计的夹具,可以很好地改善焊缝质量。

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