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Laser Welding of Transmitting High-Performance Engineering Thermoplastics

机译:透射高性能工程热塑性塑料的激光焊接

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摘要

Laser processing is a rapidly growing key technology driven by several advantages such as cost and performance. Laser welding presents numerous advantages in comparison with other welding technologies, providing high reliability and cost-effective solutions. Significant interest in this technology, combined with the increasing demand for high-strength lightweight structures has led to an increasing interest in joining high-performance engineering thermoplastics by employing laser technologies. Laser transmission welding is the base method usually employed to successfully join two polymers, a transmitting one through which the laser penetrates, and another one responsible for absorbing the laser radiation, resulting in heat and melting of the two components. In this work, the weldability of solely transmitting high-performance engineering thermoplastic is analyzed. ERTALON 6 SA, in its white version, is welded by a pulsed Nd:YAG laser. Tensile tests were performed in order to evaluate the quality of each joint by assessing its strength. A numerical model of the joint is also developed to support the theoretical approaches employed to justify the experimental observations.
机译:激光加工是一项快速增长的关键技术,它受到成本和性能等诸多优势的推动。与其他焊接技术相比,激光焊接具有许多优势,可提供高可靠性和具有成本效益的解决方案。对这项技术的浓厚兴趣,再加上对高强度轻质结构的需求不断增加,导致人们对利用激光技术连接高性能工程热塑性塑料的兴趣日益浓厚。激光透射焊接是通常用来成功连接两种聚合物的基本方法,一种透射激光使激光穿透,另一种负责吸收激光辐射,从而导致两种成分的热量和熔化。在这项工作中,分析了仅传输高性能工程热塑性塑料的可焊性。白色版本的ERTALON 6 SA由脉冲Nd:YAG激光焊接而成。进行拉伸测试以通过评估其强度来评估每个关节的质量。还开发了接头的数值模型,以支持用于证明实验观察合理的理论方法。

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