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Modelling the spot shape influence on high-speed transmission lap welding of thermoplastics films

机译:模拟光斑形状对热塑性薄膜高速传输搭接焊接的影响

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摘要

Modelling high-speed laser lap welding of thermoplastic films has been accomplished and the influence of laser beam spot shape, dimensions, and position relative to sample displacement was analysed. Engineering parameters predicted by the model were applied to lap weld of high- and low-density polyethylene transparent samples with thickness between 10 and 100 μm, and experimentally validated. Experimental set-up allowed reaching welding constant linear velocities up to10 m/s. Theoretical and experimental data show coincidence. Weld strength increases for larger beam spot diameters, and elliptical beam spots increase weld efficiency, allowing higher processing speeds or decreasing required laser power. An angular deviation of elliptical beam spot with regard to the sample's movement direction causes an increase of weld strength and a decrease of welding speed.
机译:已经完成了对热塑性薄膜的高速激光搭接焊接的建模,并分析了激光束光斑形状,尺寸和位置相对于样品位移的影响。该模型预测的工程参数适用于厚度为10至100μm的高密度和低密度聚乙烯透明样品的搭接焊,并进行了实验验证。实验设置允许达到恒定的焊接线速度,最高可达10 m / s。理论和实验数据表明是一致的。对于较大的束斑直径,焊接强度会增加,而椭圆形束斑会提高焊接效率,从而可以提高加工速度或降低所需的激光功率。椭圆形束斑相对于样品的移动方向的角度偏差导致焊接强度的增加和焊接速度的降低。

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