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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science >Finite-element modelling and updating of laser spot weld joints in a top-hat structure for dynamic analysis
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Finite-element modelling and updating of laser spot weld joints in a top-hat structure for dynamic analysis

机译:高顶帽结构中激光点焊接头的有限元建模和更新,用于动态分析

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Spot welds made by resistance spot welding are used extensively in automotive engineering. However, owing to increasing demands in the use of advanced and lightweight materials, laser welding has become a popular alternative for producing spot welds. Because of the complexity and uncertainties of laser welds and thus formed structures, the finite-element (FE) modelling of the welds for dynamic analysis is a research issue. This article first outlines some of the existing modelling works of spot welds. Then, a hat-plate structure used for this study is described and its FE representations are explained. The welds are modelled using CWELD elements in MSC/NASTRAN and their feasibility for representing laser spot welds is investigated. Numerical results for the initial FE model differ considerably from that of their experimental counterparts; hence, a model updating procedure is carried out to minimize the discrepancy between the two sets of results. In this work, the updating is posed as an optimization problem and is performed using the structural optimization capability (SOL 200) in MSC/NASTRAN. Two stages of updating are conducted, that is (a) updating FE models of individual components and (b) updating an FE model of the welded structure. Crucial steps in updating are explained. It is found that by selecting the right updating parameters, the CWELD element can be used to represent laser spot welds with good accuracy.
机译:由电阻点焊制成的点焊在汽车工程中被广泛使用。但是,由于对使用先进轻质材料的需求不断增加,激光焊接已成为生产点焊的一种流行替代方法。由于激光焊缝及其形成的结构的复杂性和不确定性,用于动态分析的焊缝的有限元(FE)建模是一个研究问题。本文首先概述了点焊的一些现有建模工作。然后,描述了用于这项研究的帽板结构,并解释了其有限元表示。使用MSC / NASTRAN中的CWELD元素对焊缝进行建模,并研究了其代表激光点焊的可行性。初始有限元模型的数值结果与实验中的数值结果有很大的不同。因此,执行模型更新过程以最小化两组结果之间的差异。在这项工作中,更新被视为一个优化问题,并使用MSC / NASTRAN中的结构优化功能(SOL 200)进行了更新。进行更新的两个阶段,即(a)更新各个组件的有限元模型和(b)更新焊接结构的有限元模型。说明了更新中的关键步骤。发现通过选择正确的更新参数,CWELD元素可用于以良好的精度表示激光点焊。

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