Influences of laser profiles on the weld quality of glass fiber reinforced PBT using laser transmission welding

Yani Chen, Haiyu Qiao, Qian Li, Xiaodong Yu, Chuanyang Wang
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Abstract

Laser transmission welding (LTW) plays an important role in plastic connection for fabricating large and complex products. The laser profile as a key parameter determines the spatial energy distribution, affecting the temperature gradient of the welding path and the quality of the weld seam. In this study, the effect of two laser profiles, the Gaussian and Flat-top beams on the temperature field and weld quality was studied through experiments and simulation. First, the transmission behavior of the laser beams is studied through the spectrometer and photosensitive paper, revealing the laser spot energy distribution and spatial changes after passing through the laser-transparent layer. Furthermore, the tensile force test demonstrated that the weld seam prepared by the Gaussian beam present higher tensile force, with a tensile force of 634.18 N at the line density of 11.2 J/mm, 24.23 % higher than that of the Flat-top beam. Moreover, the simulation result from the finite element model found that the maximum welding temperature of the Flat-top beam is 39.42 % higher than that of the Gaussian beam, consistent with the results of morphological and mechanical results. This study might present a potential way for selecting the laser profile in LTW, further improving weld quality through optimizing process windows.
使用激光透射焊接玻璃纤维增强型 PBT 时,激光轮廓对焊接质量的影响
激光透射焊接(LTW)在制造大型复杂产品的塑料连接中发挥着重要作用。激光轮廓是决定空间能量分布的关键参数,会影响焊接路径的温度梯度和焊缝质量。本研究通过实验和模拟,研究了高斯光束和平顶光束两种激光剖面对温度场和焊缝质量的影响。首先,通过光谱仪和感光纸研究了激光束的传输行为,揭示了激光穿过激光透明层后的激光光斑能量分布和空间变化。此外,拉力测试表明,高斯光束制备的焊缝具有更高的拉力,在线密度为 11.2 J/mm 时,拉力为 634.18 N,比平顶光束高 24.23 %。此外,有限元模型的模拟结果表明,平顶梁的最高焊接温度比高斯梁高 39.42%,这与形态和力学结果一致。这项研究可能为选择 LTW 激光轮廓提供了一种潜在的方法,通过优化工艺窗口进一步提高焊接质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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