热塑性复合材料连续电阻焊过程的三维瞬态传热模型

IF 1.8 Q3 ENGINEERING, MANUFACTURING Advanced Manufacturing: Polymer & Composites Science Pub Date : 2017-01-02 DOI:10.1080/20550340.2017.1311094
Imad Zammar, M. Huq, I. Mantegh, A. Yousefpour, M. Ahmadi
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引用次数: 5

摘要

热塑性复合材料(TPC)的电阻焊接技术需要利用放置在待焊接表面之间的导电网或加热元件的电阻(焦耳)加热产生的热量在接合界面熔化TPC聚合物。连续电阻焊(CRW)是一种自动化的大规模电阻焊技术,它由沿加热元件移动的电压源组成,沿着其路径形成连续焊缝。本文提出了一个瞬态模型,该模型可以在三个维度上预测冷堆过程中tpc内的传热。该模型本质上是有限元模型,包含了所涉及材料的电阻和导热行为。这种建模方法的意义在于,它捕捉到了电气连接的运动,以及沿着焊缝长度和宽度的电流和电阻加热的不均匀分布。将模拟结果与热电偶和红外相机的实验数据进行了比较,结果与预测焊缝温度变化趋势的结果一致。
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A three-dimensional transient model for heat transfer in thermoplastic composites during continuous resistance welding
Abstract The resistance welding technique for thermoplastic composites (TPCs) entails melting the TPC polymer at the joint interface using heat generated by resistive (Joule) heating of a conductive mesh or heating element placed between the surfaces to be welded. The continuous resistance welding (CRW) is an automated large-scale resistance welding technique that consists of a moving voltage source along the heating element creating a continuous weld along its path. This paper presents a transient model that is developed to predict the heat transfer in TPCs in all three dimensions during the CRW process. The model is finite element in nature and includes both the resistive and thermal conductivity behaviors of the material involved. The significance of this modeling approach is that it captures the movement of the electrical connection, as well as the nonuniform distribution of the current and resistive heating along the length and width of the weld seam. The modeling results are compared with experimental data obtained by thermocouples and an infrared camera, and exhibit solid conformance for predicting the trend of variations in weld temperature.
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来源期刊
CiteScore
4.00
自引率
0.00%
发文量
11
审稿时长
16 weeks
期刊最新文献
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