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Welding Simulation of Non-Nominal Structures With Clamps

机译:带夹钳的非标称结构的焊接模拟

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In any industrial assembly process, there are a number of sources of variation. Variation in the manufacturing process leads to component variation, which, together with fixture variation and variation stemming from the joining process, propagates to the final product. In order to analyze and diminish the effect of variation, it is important to identify and be able to simulate the phenomena contributing to final variation. In this paper, the focus is variation in welding distortion arising from non-nominal components that are joined. In the welding process, it has been shown that variation in components and in fixtures influences the size and distribution of weld-induced distortion. Hence, in order to accurately simulate geometric variation of an assembly joined by weld joints, variation simulation and welding simulation need to be performed in combination. Previous research that focused on the combination of variation simulation and welding simulation has not considered components that are clamped. Instead the components were treated as rigid bodies at non-nominal positions prior to welding. In many industrial applications, clamps are used when assemblies are welded, and it is therefore important to quantify the influence that clamping has on welding of non-nominal components. In this paper, we simulate the combination of variation in components and fixtures with welding, considering that the components are clamped prior to welding. Although clamps will force the components closer to their nominal positions along the weld joint, they also introduce a stress field in the structure, which together with the welding process may cause additional distortion. Two case studies are performed and analyzed: a T-weld joint and a butt-weld joint. The results show that welding distortion depends on fixture error even in the presence of clamps.
机译:在任何工业组装过程中,都有许多变化的来源。制造过程中的变化会导致组件变化,这些变化与夹具变化和源自连接过程的变化一起传播到最终产品。为了分析和减少变异的影响,重要的是要识别并能够模拟导致最终变异的现象。在本文中,重点是由非标称零件的连接引起的焊接变形的变化。在焊接过程中,已经表明,零件和固定装置的变化会影响焊接引起的变形的大小和分布。因此,为了精确地模拟通过焊接接头接合的组件的几何变化,需要结合进行变化模拟和焊接模拟。先前专注于变化模拟和焊接模拟相结合的研究并未考虑被夹紧的组件。取而代之的是,在焊接之前,将零件在非标称位置上视为刚体。在许多工业应用中,在焊接组件时会使用夹具,因此,重要的是量化夹具对非标称零件焊接的影响。在本文中,考虑到在焊接之前将组件夹紧,我们模拟了组件和夹具随焊接的变化。尽管夹具将迫使零件沿着焊接接头更靠近其标称位置,但它们还会在结构中引入应力场,该应力场与焊接过程一起可能导致额外的变形。进行并分析了两个案例研究:T形焊接接头和对接焊接接头。结果表明,即使存在夹具,焊接变形也取决于夹具误差。

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