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The effect of clamping sequence on dimensional variability in sheet metal assembly

机译:夹紧顺序对钣金装配中尺寸变化的影响

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Finite element (FE) modelling techniques have become a popular tool for exploring welding and clamping sequence dependence in sheet metal assemblies. In the current paper, the dimensional variability associated with different assembly clamping sequences is investigated with a FE contact modelling approach implemented in the commercial code Abaqus. A simplified channel section assembly consisting of a top hat and bottom plate is the case study investigated. Expected variation modes of bow and twist were used to simulate key variability sources in the main structural component under investigation; the top hat of the channel section. It was found that final assembly variability can change considerably depending on clamp sequence selection. It was also found that different clamp sequences can control particular modes of variation better than others, and that there is not one particular clamping sequence that is the best for containing all variation modes. An adaptable assembly process is therefore suggested, where given the shape of input components the best available clamping sequence is selected. Comparison of the performance of the proposed adaptable clamping sequence to traditional fixed clamping sequences shows improvements for the dimensional control of variability in non-rigid components. While introducing such a method in production would require inspection of each component being assembled and investigation of the alternative clamping sequences, given access to fast and detailed dimensional inspection technology such as optical coordinate measuring machines (OCMM's), the approach shows promise for future application.
机译:有限元(FE)建模技术已成为探索钣金组件中焊接和夹紧顺序相关性的一种流行工具。在当前的论文中,使用商业代码Abaqus中实现的有限元接触建模方法研究了与不同装配夹紧顺序相关的尺寸可变性。案例研究研究了一个由顶帽和底板组成的简化通道部分组件。使用弓和扭曲的预期变化模式来模拟正在研究的主要结构部件中的关键变化源。频道部分的大礼帽。已经发现,最终装配的可变性可以根据钳位序列的选择而显着改变。还发现,不同的钳位序列可以比其他钳位序列更好地控制特定的变化模式,并且没有一种特定的钳位序列最适合包含所有变化模式。因此,建议采用一种适应性强的组装过程,在此过程中,根据输入组件的形状,选择最佳的可用夹紧顺序。所提出的可适应夹紧顺序与传统固定夹紧顺序的性能比较表明,对非刚性零件可变性的尺寸控制进行了改进。尽管在生产中引入这种方法将需要检查每个组装的组件并研究替代的夹紧顺序,但只要能够使用快速详细的尺寸检查技术(例如光学坐标测量机(OCMM)),该方法就有望在未来得到应用。

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