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Prediction of the Temperature Distribution During Friction Stir Welding (Fsw) With A Complex Curved Welding Seam: Application In The Automotive Industry

机译:用复杂的弯曲焊接接缝预测摩擦搅拌焊接(FSW)的温度分布:在汽车工业中的应用

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Advanced welding of complex geometries promises significant development in the automotive industry. Friction Stir Welding (FSW) as a solid-state welding technique has spread quickly since its initial development by TWI in 1991. It has found applications in various industries, including railway, automotive, maritime and aerospace. Temperature during FSW plays a significant role, therefore thermal analysis of the process provides the opportunity to understand the process in detail, and also allows one to save energy and cost as well. However, experimental investigation of the thermal behaviour is challenging, because of inaccuracy in the measuring instruments. Thus, Finite Element Methods (FEMs) offer an appropriate approach for thermal modelling of the process. There is also a dilemma in defining the perpendicular movement of the tool on a curved surface. To clarify the problem, the tool needs to follow a regular pattern during curved movement, and it should have a perpendicular position to the surface at each point. However, previous literature modelled only a single point movement for the tool. Thus, the finite element package needs to be modified to develop a precise perpendicular movement for the tool. In this paper, a VDISP user defined subroutine is used to modify Abaqus? software for thermal analysis of a complex curved plate. The results of the paper show that the problem of the perpendicular movement of the tool is resolved and the thermal behaviour of the FSW is done with remarkable accuracy.
机译:复杂几何形状的先进焊接承诺汽车行业的显着发展。摩擦搅拌焊接(FSW)作为固态焊接技术自1991年通过TWI的初始开发以来迅速传播。它发现了各种行业的应用,包括铁路,汽车,海事和航空航天。温度在FSW期间发挥着重要作用,因此该过程的热分析提供了详细了解该过程的机会,并且还允许一个节省能源和成本。然而,由于测量仪器中的不准确性,对热行为的实验研究是具有挑战性的。因此,有限元方法(FEMS)提供了一种用于该过程的热建模的适当方法。在弯曲表面上限定工具的垂直移动也存在困境。为了阐明问题,工具需要在弯曲运动期间遵循规则的图案,并且应该在每个点处具有垂直位置。然而,以前的文献仅为工具的单点运动进行了建模。因此,需要修改有限元件以开发工具的精确垂直运动。在本文中,VDISP用户定义的子程序用于修改ABAQUS?复杂弯曲板的热分析软件。本文的结果表明,解决了该工具的垂直运动的问题,并且以显着的精度完成了FSW的热行为。

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