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Influence of beam space shape on weld formation in laser keyhole welding

机译:激光键孔焊接中光束空间形状对焊缝形成的影响

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Abstract: In laser welding of metals with a high power continuous CO$- 2$/ laser, a so-called keyhole is formed in the material. The keyhole greatly affects the absorption of laser and makes remarkable influence on the weld formation. Based on the energy balance in the keyhole, this paper presents an analytical mathematical model about the quantitative relationship between the weld formation and the welding parameters. The model takes into account of the plasma absorption for laser beam, and involves most of the important welding parameters such as laser power, welding speed, focal position, therm-physical properties of metal and the space shape of focused laser beam. The influence of the space shape of focused laser beam upon the weld formation is specially discussed. The beam space shape is dependent on the laser beam quality, beam formation system and focus position. The analysis shows that, when the focused beam become thinner and the focus depth become larger, the laser weld will be deeper and narrower. The influences of the beam quality, focal length and focus position on the weld formation are analyzed. Through comparison with the experiments carried on various laser processing systems with different focused beam shapes, the theoretical analysis is in good agreement with the experiments.!15
机译:摘要:用高功率连续CO $ -2 $ /激光对金属进行激光焊接时,材料中形成了所谓的锁眼。锁孔会极大地影响激光的吸收,并对焊缝的形成产生显着影响。基于锁孔内的能量平衡,本文提出了一种关于焊缝形成与焊接参数之间定量关系的解析数学模型。该模型考虑了激光束的等离子体吸收,并涉及大多数重要的焊接参数,例如激光功率,焊接速度,焦点位置,金属的热物理性质以及聚焦激光束的空间形状。特别讨论了聚焦激光束的空间形状对焊缝形成的影响。光束空间的形状取决于激光束质量,光束形成系统和聚焦位置。分析表明,当聚焦光束变细且聚焦深度变大时,激光焊接会越来越深和越来越窄。分析了光束质量,焦距和焦点位置对焊缝形成的影响。通过与在具有不同聚焦光束形状的各种激光处理系统上进行的实验进行比较,理论分析与实验非常吻合!15

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