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Higher efficiency modeling of surface location errors by using a multi-scale milling simulation

机译:使用多尺度铣削仿真,表面定位误差更高的效率建模

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The dynamic process behavior during milling often leads to vibrations or even chatter and, thereby, to surface location errors. In this paper, a multi-scale simulation system is presented, which can predict these errors efficiently by combining a dexel-based workpiece representation with a CSG-based process model and an oscillator-based system for the process dynamics. The different modeling techniques are described, and the run-time of the combined system is compared to a single-scale system in which the CSG-based model is used for every process step. Furthermore, the simulation is validated by examining the generated surface of a micromachined workpiece.
机译:铣削期间的动态过程行为通常导致振动甚至颤动,从而地表位置误差。在本文中,提出了一种多尺度仿真系统,其可以通过将基于CSG的过程模型和基于振荡器的系统组合的基于CSG的工件表示与用于过程动态的振荡器的系统组合来实现这些误差。描述了不同的建模技术,并且将组合系统的运行时间与单级系统进行比较,其中每个过程步骤使用基于CSG的模型。此外,通过检查微机械工件的产生表面来验证模拟。

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