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Straightness error modeling and compensation for gantry type open hydrostatic guideways in grinding machine

机译:龙门式开放式静压导轨的直线度误差建模与补偿

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摘要

This study presents an approach to model and compensate the vertical straightness error of gantry type open hydrostatic guideways. The straightness error is measured at different measurement points on the beam using a laser interferometer. To investigate different trends in the straightness error, a static analysis model is established, based on the error averaging effect considering the guiderail profile error. The linear deviation of the slider is computed and the vertical straightness error is calculated using a least-square method. The simulation results indicate that the measurement points have a big impact on the straightness error. The minimum value appeared when measurement point located at the middle of the X beam. And more closer to Y guide rails, higher value will be. The positions of the measurement points are chosen according to the change trend of the vertical straightness error. Finally, vertical straightness error is compensated and the compensation results are compared between different coordinate values. Experimental results show that the straightness error model and error compensation strategy help to effectively improve the accuracy of gantry type open hydrostatic guideways in grinding machines.
机译:这项研究提出了一种建模和补偿龙门式开放式静液压导轨的垂直平直度误差的方法。使用激光干涉仪在光束的不同测量点测量直线度误差。为了研究直线度误差的不同趋势,基于考虑导轨轮廓误差的误差平均效应,建立了静态分析模型。使用最小二乘法计算滑块的线性偏差,并计算垂直平直度误差。仿真结果表明,测量点对直线度误差影响较大。当测量点位于X射线的中间时,出现最小值。越靠近Y导轨,价值就越高。根据垂直平直度误差的变化趋势选择测量点的位置。最后,补偿垂直平直度误差,并比较不同坐标值之间的补偿结果。实验结果表明,直线度误差模型和误差补偿策略有助于有效提高磨床龙门式开放式静压导轨的精度。

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