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Numerical analysis of single sided spot welding process used in sheet to tube joining

机译:板对管连接中单面点焊工艺的数值分析

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摘要

As a new kind of lightweight structure, hydroformed tubes are now widely used in vehicle bodies. The single sided spot welding (SSSW) is a variation of resistance welding used in joining hydroformed closed tubular parts and vehicle structures. During the process of SSSW, large deformation and complex contact status of the workpieces occur because there is no inside support. The time variation of the contact region and pressure distribution changes the flow paths for electric current timely and brings a fierce shunting at the position far away from the axis line, which prevents the heat concentration at the faying surface of workpieces. The characteristics of SSSW different from those of classical resistance welding mentioned above make it difficult to determine rational welding processing parameters for SSSW. In the present paper, a comprehensive structural-thermoelectric model is established. Using the incrementally coupled analysis of finite element analysis, the electrical, thermal and mechanical aspects of sheet to tube process using SSSW are investigated. The mechanical characteristic of specimens during the squeeze and welding progress, the electric current density transient distribution, the nugget formation process, and the effects of welding parameters for SSSW are discussed. It is found that ring nugget is obtained by sheet to tube SSSW. Modifying electrode force during welding cycle is a valid method to obtain acceptable nugget with shorter welding time or less energy. The calculated results of nugget size and location are in good agreement with those of experimental observations.
机译:作为一种新型的轻量化结构,液压成型管现已广泛应用于车身。单面点焊(SSSW)是电阻焊的一种变型,用于连接液压成形的封闭管状零件和车辆结构。在SSSW加工过程中,由于没有内部支撑,因此会发生较大的变形和工件的复杂接触状态。接触区域的时间变化和压力分布会及时改变电流的流动路径,并在远离轴线的位置产生剧烈的分流,防止热量集中在工件的接合面上。 SSSW的特性不同于上述经典电阻焊的特性,因此难以确定合理的SSSW焊接工艺参数。本文建立了一个综合的结构热电模型。使用有限元分析的增量耦合分析,研究了使用SSSW的板到管工艺的电气,热和机械方面。讨论了挤压和焊接过程中试样的力学特性,电流密度瞬态分布,熔核形成过程以及焊接参数对SSSW的影响。已经发现,通过片对管的SSSW获得了环核。在焊接周期中修改电极力是一种有效的方法,可以以较短的焊接时间或更少的能量获得可接受的熔核。熔核大小和位置的计算结果与实验观察结果非常吻合。

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