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Computational analysis of inter-material mixing and weld-flaw formation during dissimilar-filler-metal friction stir welding (FSW)

机译:异填充金属摩擦搅拌焊(FSW)过程中材料间混合和焊缝形成的计算分析

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Purpose - Friction stir welding (FSW) butt-joining involving the use of a dissimilar filler metal insert between the retreating and advancing portions of the workpiece is investigated computationally using a combined Eulerian-Lagrangian (CEL) finite element analysis (FEA). The emphasis of the computational analysis was placed on the understanding of the inter-material mixing and weld-flaw formation during a dissimilar-material FSW process. The paper aims to discuss these issues. Design/methodology/approach - The FEA employed is of a two-way thermo-mechanical character (i.e. frictional-sliding/plastic-work dissipation was taken to act as a heat source in the energy conservation equation), while temperature is allowed to affect mechanical aspects of the model through temperature-dependent material properties. Within the analysis, the workpiece and the filler-metal insert are treated as different materials within the Eulerian subdomain, while the tool was treated as a conventional Lagrangian subdomain. The use of the CEL formulation within the workpiece insert helped avoid numerical difficulties associated with excessive Lagrangian element distortion. Findings - The results obtained revealed that, in order to obtain flaw-free FSW joints with properly mixed filler and base materials, process parameters including the location of the tool relative to the centerline of the weld must be selected judiciously. Originality/value - To the authors' knowledge, the present work is the first reported attempt to simulate FSW of dissimilar materials.
机译:目的-摩擦搅拌焊接(FSW)对接涉及在工件的后退和前进部分之间使用不同的填充金属嵌件,并通过组合的欧拉-拉格朗日(CEL)有限元分析(FEA)进行了计算研究。计算分析的重点放在对异种材料FSW过程中材料间混合和焊缝形成的理解上。本文旨在讨论这些问题。设计/方法/方法-所采用的FEA具有双向热机械特性(即在能量守恒方程中采用了摩擦滑动/塑性功耗散作为热源),同时允许温度影响通过与温度相关的材料属性来确定模型的机械方面。在分析中,将工件和填充金属插入物视为欧拉子域中的不同材料,而将工具视为常规的拉格朗日子域。在工件刀片中使用CEL配方有助于避免与拉格朗日元素过度变形相关的数值困难。发现-获得的结果表明,为了获得具有正确混合的填料和基础材料的无缺陷FSW接头,必须谨慎选择工艺参数,包括工具相对于焊缝中心线的位置。原创性/价值-据作者所知,本工作是首次报道的模拟异种材料FSW的尝试。

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