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Interactive Quality Inspection of Measured Deviations in Sheet Metal Assemblies

机译:金属板组件中测量偏差的互动质量检验

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摘要

We present an exploratory data analysis approach for finite element (FE) simulations to interactively inspect measured deviations in sheet metals arising in automotive applications. Exterior car body parts consist of large visible surfaces, and strict tolerances must be met by them to satisfy both aesthetic requirements and quality performance requirements. To fulfill quality requirements like gap and flushness, exterior vehicle components have adjustable mechanical boundaries. These boundaries are used to influence the shape and position of a sheet metal part relative to its chassis. We introduce a method that supports an inspection engineer with an interactive framework that makes possible a detailed analysis of measured sheet metal deviation fields generated from 3D scans. An engineer can interactively change boundary conditions and obtains the resulting deviation field in real-time. Thus, it is possible to determine viable and desirable adjustments efficiently, leading to time and cost savings in the assembly process.
机译:我们提出了一个有限元(FE)模拟的探索性数据分析方法,以互动地检查汽车应用中所产生的纸张金属中的测量偏差。外部车身部件由大型可见表面组成,它们必须符合严格的公差,以满足美学要求和质量性能要求。为了满足间隙和冲洗等质量要求,外部车辆部件具有可调节的机械边界。这些边界用于影响金属板部分相对于其底盘的形状和位置。我们介绍一种支持具有交互式框架的检查工程师的方法,该方法可以详细分析从3D扫描产生的测量钣金偏差场。工程师可以相互作用地改变边界条件并实时获得所产生的偏差场。因此,可以有效地确定可行性和理想的调整,导致组装过程中的时间和成本节省。

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