Influences of linear and angular compensation on volumetric accuracy of precision machine tools

Lingtao Weng, Weiguo Gao, Dawei Zhang, Guangming Sun, Wenjie Tian, Teng Liu
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引用次数: 3

Abstract

Geometric errors of machine tools are one of the main contributors for machining inaccuracies. A multi-step error measurement and compensation method is proposed in this paper to investigate the effects of different geometric errors on volumetric errors. The kinematic error chain is built using multi-body system theory (MBS) and homogenous transformation matrices first. Then, the original geometric errors without any compensations are measured and the deviations of tool tip caused by different geometric errors are calculated. Furthermore, various compensation strategies considering diverse geometric errors effects are carried out in the machine tool to validate the predicted volumetric errors. The multi axis calibrator, which can detect six errors of a translational axis in one measurement, is used to measure the variations of 18 errors of translational axes and volumetric diagonal errors of a three axes machine tool. Besides, the squareness errors were measured by a ball-bar. The pragmatic effects of positioning, straightness, angular and squareness errors on volumetric errors are derived from comparisons between various compensation results. Results reveal that linear errors effect the whole volumetric positioning errors while the angular errors mainly effect the volumetric positioning errors of the region far from reference coordinate point.
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线补偿和角补偿对精密机床体积精度的影响
机床的几何误差是造成加工不精度的主要原因之一。为了研究不同几何误差对体积误差的影响,提出了一种多步误差测量与补偿方法。首先利用多体系统理论和齐次变换矩阵建立运动误差链;然后测量不加补偿的原始几何误差,计算不同几何误差引起的刀尖偏差;此外,考虑不同几何误差影响,在机床上实施了各种补偿策略,以验证预测的体积误差。利用一次可检测平移轴6个误差的多轴校准器,测量了三轴机床平移轴18个误差和体积对角线误差的变化。此外,还用球杆测量了垂直度误差。通过对各种补偿结果的比较,得出了定位误差、直线度误差、角度误差和垂直度误差对体积误差的实际影响。结果表明,线性误差影响整体的体积定位误差,而角度误差主要影响远离参考坐标点区域的体积定位误差。
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