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Simulation of Impulse Resistance Welding for Thermoplastic Matrix Composites

机译:热塑性基体复合材料耐冲击焊接的模拟

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摘要

The impulse resistance welding (IRW) process is modelled using a three-dimensional transient finite element model (FEM) featuring heat transfer and consolidation. The welding of single lap joints is simulated for APC-2 laminates, with additional PEEK film inserted at the welding interface. The effects of the power signal on (a) temperature uniformity in the welding interface and (b) processing times are investigated. Two welding configurations are evaluated; in the first one, the heating clement outside the welding stack is left in-air, while in the second case, it is embedded in a conductive medium in order to improve temperature homogeneity within the welding interface. Based on criteria of consolidation and thermal degradation, optimum processing windows were simulated.
机译:使用具有传热和固结特征的三维瞬态有限元模型(FEM)对脉冲电阻焊接(IRW)过程进行建模。模拟了APC-2层压板的单搭接接头的焊接,并在焊接界面处插入了额外的PEEK膜。研究了功率信号对(a)焊接界面温度均匀性和(b)处理时间的影响。评估了两种焊接配置;在第一种情况下,将焊接堆外部的加热元件留在空气中,而在第二种情况下,将其嵌入导电介质中,以提高焊接界面内的温度均匀性。基于固结和热降解的标准,模拟了最佳加工窗口。

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