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Modeling and experimental investigation of induction welding of thermoplastic composites and comparison with other welding processes

机译:热塑性复合材料感应焊接的建模和实验研究以及与其他焊接工艺的比较

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摘要

A three-dimensional finite element model of the induction welding of carbon fiber/polyphenylene sulfide thermoplastic composites is developed. The model takes into account a stainless steel mesh heating element located at the interface of the two composite adherends to be welded. This heating element serves to localize the heating where it is needed most, i.e. at the weld interface. The magnetic, electrical, and thermal properties of the carbon fiber/polyphenylene sulfide composite and other materials are identified experimentally or estimated and implemented in the model. The model predicts the temperature–time curves during the heating of the composite and is used to define processing parameters leading to high-quality welded joints. The effect of the heating element size and input current on the thermal behavior is investigated, both experimentally and using the developed model. The welds quality is assessed through microscopic observations of the weld interfaces, mechanical testing, and observations of the fracture surfaces. A comparison with two other welding processes, namely resistance welding and ultrasonic welding is finally conducted.
机译:建立了碳纤维/聚苯硫醚热塑性复合材料感应焊接的三维有限元模型。该模型考虑了位于两个要焊接的复合被粘物的界面处的不锈钢网状加热元件。该加热元件用于将加热局部化在最需要的地方,即在焊接界面处。碳纤维/聚苯硫醚复合材料和其他材料的磁,电和热性能可以通过实验确定,也可以在模型中估算和实施。该模型可预测复合材料加热过程中的温度-时间曲线,并用于定义导致高质量焊接接头的工艺参数。通过实验和使用开发的模型,研究了加热元件尺寸和输入电流对热行为的影响。焊接质量是通过对焊接界面的微观观察,机械测试以及对断裂表面的观察来评估的。最后与其他两种焊接工艺进行了比较,即电阻焊和超声焊。

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