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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Error Distribution of a 5-Axis Measuring Machine Based on Sensitivity Analysis of Geometric Errors
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Error Distribution of a 5-Axis Measuring Machine Based on Sensitivity Analysis of Geometric Errors

机译:基于几何误差灵敏度分析的5轴测量机的误差分布

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Geometric errors are inevitably introduced into any multiaxis measuring system, and the geometric error is one of the main factors that seriously affects the measurement accuracy. The present work investigates the error distribution of the prototype of a 5-axis measuring machine based on sensitivity analysis of geometric errors. The measurement error modeling of the 5-axis measuring machine is first established via the homogeneous coordinate transformation, and the Sobol global sensitivity analysis method is then employed to quantify the influence of geometric errors on the measurement result with the sensitivity index. The result shows that most of the angular errors are the crucial geometric errors seriously affecting the measurement result. These errors are supposed to be fully considered in the accuracy design and manufacturing stages. The error levels of the crucial geometric errors were distributed and readjusted according to the sensitivity analysis result. Some practical approaches to distribute and improve the crucial geometric errors have been given in detail. The error distribution method is effective to equalize the influence of the crucial geometric errors on the measurement result as possible. The findings of this study provide significant meanings for the optimal design and accurate manufacturing of the 5-axis measuring machine, and the proposed method can be used to improve the measurement accuracy of the 5-axis measuring machine.
机译:几何误差不可避免地引入任何多轴测量系统,几何误差是严重影响测量精度的主要因素之一。基于几何误差的灵敏度分析,研究了本作5轴测量机原型的误差分布。首先通过均匀坐标变换建立5轴测量机的测量误差建模,然后采用Sobol全局灵敏度分析方法来量化几何误差与灵敏度指数对测量结果的影响。结果表明,大多数角度误差是严重影响测量结果的重要几何误差。这些误差应该在精度设计和制造阶段充分考虑。根据敏感性分析结果分布和重新调整关键几何误差的误差水平。已经详细给出了分配和改善关键几何误差的一些实际方法。错误分布方法有效地均衡尽可能均衡对测量结果上的关键几何误差的影响。该研究的结果为5轴测量机的最佳设计和精确制造提供了重要意义,并且可以使用所提出的方法来提高5轴测量机的测量精度。

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