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Glue-free assembly of glass fiber reinforced thermoplastics using laser light

机译:使用激光对玻璃纤维增​​强的热塑性塑料进行无胶组装

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摘要

The use of laser light for bonding of continuous fiber reinforced thermoplastic composites (CFTPC) offers new possibilities to overcome the constraints of conventional joining technologies. Laser bonding is environmentally friendly as no chemical additive or glue is necessary. Accuracy and flexibility of the laser process as well as the quality of the weld seams provide benefits which are already used in many industrial applications. Laser transmission welding has already been introduced in manufacturing of short fiber thermoplastic composites. The laser replaces hot air in tapelaying systems for pre-preg carbon fiber placement. The paper provides an overview concerning the technical basics of the joining process and outline some material inherent characteristics to be considered when using continuous glass fiber reinforced composites The technical feasibility and the mechanical characterization of laser bonded CFTPC are demonstrated. The influence of the different layer configurations on the laser interaction with the material is investigated and the dependency on the mechanical strength of the weld seem is analyzed. The results show that the laser provides an alternative joining technique and offers new perspectives to assemble structural components emerging in automotive or aeronautical manufacturing. It overcomes the environmental and technical difficulties related to existing gluing processes.
机译:将激光用于连续纤维增强热塑性复合材料(CFTPC)的粘结提供了克服常规粘结技术限制的新可能性。激光焊接对环境无害,因为不需要化学添加剂或胶水。激光加工的准确性和灵活性以及焊缝的质量提供了许多工业应用中已经使用的好处。在短纤维热塑性复合材料的制造中已经引入了激光透射焊接。激光代替了铺带系统中的热空气,以进行预浸碳纤维的放置。本文概述了连接过程的技术基础,并概述了使用连续玻璃纤维增​​强复合材料时要考虑的一些材料固有特性。论证了激光粘合CFTPC的技术可行性和机械性能。研究了不同层结构对激光与材料相互作用的影响,并分析了其对焊缝机械强度的依赖性。结果表明,激光提供了一种替代的连接技术,并为组装汽车或航空制造中出现的结构部件提供了新的视角。它克服了与现有胶合工艺相关的环境和技术难题。

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