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Diffractive beam shaping for enhanced laser polymer welding

机译:增强型激光聚合物焊接的衍射束整形

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Laser welding of polymers increasingly finds application in a large number of industries such as medical technology, automotive, consumer electronics, textiles or packaging. More and more, it replaces other welding technologies for polymers, e. g. hot-plate, vibration or ultrasonic welding. At the same rate, demands on the quality of the weld, the flexibility of the production system and on processing speed have increased. Traditionally, diode lasers were employed for plastic welding with flat-top beam profiles. With the advent of fiber lasers with excellent beam quality, the possibility to modify and optimize the beam profile by beam-shaping elements has opened. Diffractive optical elements (DOE) can play a crucial role in optimizing the laser intensity profile towards the optimal M-shape beam for enhanced weld seam quality. We present results on significantly improved weld seam width constancy and enlarged process windows compared to Gaussian or flat-top beam profiles. Configurations in which the laser beam diameter and shape can be adapted and optimized without changing or aligning the laser, fiber-optic cable or optical head are shown.
机译:聚合物的激光焊接越来越多地发现在医疗技术,汽车,消费电子,纺织品或包装等大量行业中的应用。越来越多,它取代了聚合物的其他焊接技术,例如G。热板,振动或超声波焊接。以相同的速度,对焊缝质量的要求,生产系统的灵活性和加工速度增加。传统上,二极管激光器用于具有平顶梁轮廓的塑料焊接。随着光束质量优良的光纤激光器的出现,通过光束整形元件改变和优化光束轮廓的可能性。衍射光学元件(DOE)可以在优化朝向最佳M形梁的激光强度曲线上发挥至关重要的作用,以提高焊缝质量。与高斯或平顶梁轮廓相比,我们提出了显着改善的焊缝宽度恒定和放大过程窗口的结果。示出了在不改变或对准激光器,光纤电缆或光学头的情况下可以调整和优化激光束直径和形状的配置。

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