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首页> 外文期刊>Welding in the World: Journal of the International Institute of Welding: Journal of the International Institute of Welding >Modelling and thermal simulation of absorber-free quasi-simultaneous laser welding of transparent plastics
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Modelling and thermal simulation of absorber-free quasi-simultaneous laser welding of transparent plastics

机译:透明塑料的无吸收性准同步激光焊接的建模与热仿真

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摘要

The growing demands on the quality of plastic components and the trend towards miniaturisation are posing a great challenge on plastics processing technology. As many complex components can no longer be manufactured in a single step, joining processes such as laser transmission welding are gaining in importance. In classic laser transmission welding, the joining partners have different optical properties. The upper joining partner is transparent in the laser wavelength range, whilst the lower partner is absorbent due to the addition of absorber materials. In medical and biotechnological applications, the addition of absorber materials is often undesirable due to strict biocompatibility requirements. If, on the other hand, radiation sources are used which emit radiation in the area of the natural absorption of the plastic (lambda = 1600-2000 nm), untreated transparent plastics can also be welded. In this work, a theoretical model will be presented to calculate the temperature distribution and progression during quasi-simultaneous welding using a thulium fibre laser (lambda = 1940 nm). A sensitivity analysis is carried out to investigate the influence of different parameters on the heat affected zone (HAZ). The simulated HAZ is then compared with the HAZ from the experimental work.
机译:越来越大的对塑料成分质量和小型化趋势的需求造成了对塑料加工技术的巨大挑战。由于许多复杂的部件不能再在单个步骤中制造,因此激光传输焊接的连接过程是重要的。在经典激光传动焊接中,连接伴侣具有不同的光学性质。上层合作伙伴在激光波长范围内是透明的,而由于添加吸收材料,下部伴侣是吸收性的。在医疗和生物技术应用中,由于严格的生物相容性要求,添加吸收材料通常是不希望的。另一方面,如果使用辐射源,其在塑料(Lambda = 1600-2000nm)的自然吸收区域中发出辐射,则也可以焊接未处理的透明塑料。在这项工作中,将提出理论模型以使用纤维激光器(Lambda = 1940nm)来计算准焊接期间的温度分布和进展。进行敏感性分析,以研究不同参数对热影响区(HAZ)的影响。然后将模拟HAZ与实验工作中的HAZ进行比较。

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