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INVESTIGATION ON THE MELTING OF THE WELD INTERFACE IN CONTINUOUS ULTRASONIC WELDING OF THERMOPLASTIC COMPOSITES

机译:热塑性复合材料连续超声波焊接焊接界面熔化研究

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Continuous ultrasonic welding is a new promising high-speed joining technique for thermoplastic composites. At the moment no straightforward method exists to find an optimum welding speed to easily obtain high strength joints. However, for static ultrasonic welding a systematic approach is available. Therefore, the aim of this study is to understand whether the optimum welding time in static ultrasonic welding can be related to the welding speed in continuous ultrasonic welding. The duration of the welding stages in static and continuous welding were compared in order to find similarities and discrepancies. The duration of the welding stages in continuous ultrasonic welding was estimated by analysing the weld interface and measuring the distances of the stages in the fractured interface around the location where the weld was stopped. No significant difference in weld duration was found for the first welding stage in which the mesh energy director is flattened. However, the second stage in which the energy director and adherends melt simultaneously, lasted much longer for the continuous welding process. This was possibly caused by the more constraining boundary conditions in the continuous welding process. In conclusion, the optimum welding speed in continuous welding was lower than the expected optimum welding speed based on the optimum welding time in static ultrasonic welding, because the second welding stage lasted longer in the continuous ultrasonic welding process.
机译:连续超声波焊接是一种用于热塑性复合材料的新有希望的高速连接技术。目前,不存在简单的方法以找到最佳的焊接速度,以易于获得高强度接头。但是,对于静态超声波焊接,可提供系统的方法。因此,本研究的目的是了解静态超声波焊接中的最佳焊接时间是否可以与连续超声波焊接中的焊接速度有关。比较静电和连续焊接中的焊接阶段的持续时间,以找到相似性和差异。通过分析焊接界面并测量焊接围绕焊接停止的位置的裂缝界面中的距离的距离来估计连续超声波焊接中的焊接阶段的持续时间。对于第一焊接阶段,没有发现焊接持续时间的显着差异,其中网格能源导向器被扁平。然而,第二阶段,能源导演和同时熔化熔化,持续更长时间用于连续焊接过程。这可能是由连续焊接过程中更约束的边界条件引起的。总之,连续焊接中的最佳焊接速度低于静电超声波焊接中最佳焊接时间的预期最佳焊接速度,因为第二焊接阶段在连续超声波焊接过程中持续更长时间。

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