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Individualizing Locator Adjustments of Assembly Fixtures Using a Digital Twin

机译:使用数字孪生对装配夹具的定位器进行个性化调整

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Implementing the concept of a digital twin in full production provides enough data on each individual assembly for real-time control of production processes. Taking advantage of this opening, this paper proposes individualized locator adjustments as a new method to improve the geometrical quality of assemblies. In this method, all locators in the assembly fixture can be adjusted for each individual assembly based on the scan data of the mating parts of that assembly. The optimal adjustment of every locator for each individual assembly is obtained using an optimization algorithm and nonrigid variation simulation tools (computer-aided tolerancing tools). This method is applied to three industrial cases and geometrical variations and the mean deviation from nominal positions are compared to nonindividualized adjustments and also when there are no adjustments. The results show that applying this method, an improvement of up to 81% in geometrical variation and 78% in the mean deviation of assemblies can be obtained compared to assemblies without adjustments. These improvements are 60% and 57% higher than nonindividualized adjustments of locators for the variation and the mean deviation, respectively. Moreover, a modification on the optimization algorithm has been proposed that reduces the amount of required adjustments.
机译:在全面生产中实施数字孪生的概念可为每个组件提供足够的数据,以实时控制生产过程。利用此开口的优势,本文提出了个性化的定位器调整作为提高装配几何质量的新方法。在这种方法中,可以基于该组件的配合零件的扫描数据为每个单独的组件调整组件固定装置中的所有定位器。使用优化算法和非刚性变化模拟工具(计算机辅助公差工具),可以获得针对每个单独组件的每个定位器的最佳调整。此方法适用于三种工业情况,并且将几何变化和与名义位置的平均偏差与非个性化调整进行比较,并且在没有调整的情况下也进行比较。结果表明,与不进行调整的组件相比,使用此方法可以将组件的几何变化提高81%,将组件的平均偏差提高78%。这些改进分别比定位器的非个性化调整分别提高了60%和57%。此外,已经提出了对优化算法的修改,该修改减少了所需的调整量。

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