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In situ monitoring of ultrasonic welding of thermoplastic composites through power and displacement data

机译:通过功率和位移数据现场监测热塑性复合材料的超声波焊接

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摘要

Ultrasonic welding is a very fast joining technique well suited for thermoplastic composites, which does not require the use of foreign materials at the welding interface for either carbon or glass fibre-reinforced substrates. Despite very interesting investigations carried out by several researchers on different aspects of the process, ultrasonic welding of thermoplastic composite parts is not well understood yet. This article presents a deep experimental analysis of the transformations and heating mechanisms at the welding interface and their relationship with the dissipated power and the displacement of the sonotrode as provided by a microprocessor-controlled ultrasonic welder. The main aim of this research is to build up the knowledge to enable straightforward monitoring of the process and ultimately of the weld quality through the feedback provided by the ultrasonic welder.
机译:超声波焊接是一种非常快速的连接技术,非常适用于热塑性复合材料,对于碳纤维或玻璃纤维增​​强的基材,不需要在焊接界面处使用异物。尽管几位研究人员对过程的不同方面进行了非常有趣的研究,但对热塑性复合材料零件的超声焊接尚不十分了解。本文介绍了由微处理器控制的超声波焊接机提供的对焊接界面处的转变和加热机制及其与耗散功率和超声波发生器位移的关系的深入实验分析。这项研究的主要目的是建立知识,以便通过超声波焊机提供的反馈信息来直接监控过程,并最终监控焊接质量。

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