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Numerical and experimental analysis of resistance projection welding of square nuts to sheets

机译:方形螺母对板材电阻投影焊接的数值和实验分析

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Projection welding of nuts to sheets is a widely utilized manufacturing process in the automotive industry. The process entails challenges due the necessity of joining different sheet thicknesses and nut sizes made from dissimilar materials, and due to the fact of experiencing large local deformations ranging from room temperature to above the melting point. Heating is facilitated by resistance heating and is highly influenced by the contact area resulting from the amount of deformation, which is also temperature dependent due to material softening and frictional conditions. Resort to new materials and applications require a new level of understanding of the process by combining finite element modelling and experimentation. This paper draws from the challenge of developing a three-dimensional computer program for electro-thermo-mechanical modeling of resistance welding and presents, as far as the authors are aware, the first ever three-dimensional simulation of the projection welding of square nuts to sheets by means of finite element analysis. Results are compared with experimental observations and measurements produced by the authors with the aim and objective of assessing the accuracy, reliability and validity of the theoretical and numerical developments. Numerical simulations support the evaluation of the experiments by providing detailed information on the process like the initial heating location and the following temperature development, and allowing to analyze the weldability of the square nut to the sheet under different operating conditions.
机译:投影的螺母焊接到片材是在汽车行业广泛使用的制造过程。该过程需要由于接合由不同材料制成的不同的片材厚度和螺母的尺寸的必要性的挑战,由于经历大的局部变形范围从室温至熔点以上的事实。加热是通过电阻加热容易,并且通过从变形量,这也是温度依赖的,由于材料的软化和摩擦条件导致的接触面积的很大影响。求助于新材料和应用需要结合有限元模拟和实验的理解过程的一个新的水平。本文从开发三维计算机程序的电阻焊接,并提出了电 - 热 - 机械造型,据笔者所知,在投影的第一次三维模拟焊接方螺母来的挑战,借鉴通过有限元分析的装置表。结果与由与目的和目标评估的理论和数值发展的准确性,可靠性和有效性的作者产生的实验观察和测量进行比较。数值模拟通过提供如初始加热位置和下面的温度发展的过程中的详细信息,并允许方形螺母的可焊性分析,以不同的操作条件下在片材支持实验的评价。

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