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An improved machine tool volumetric error compensation method based on linear and squareness error correction method

机译:一种基于线性和平方纠错方法的改进的机床容积误差补偿方法

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摘要

Error compensation is one of effective and economical means to improve the machining accuracy of machine tools. The measurement accuracy of kinematic errors has great impact on the accuracy of machine tool error modeling. Some measurement errors are inevitably generated due to the distortion of the slide table and the limit of local measuring stroke. To solve these problems, an improved machine tool volumetric error compensation method is proposed in this paper, based on linear and squareness error correction method. The linear errors, including position errors and straightness errors, are corrected by considering the distance effect between optical mirror groups and the surface of worktable. The squareness errors are corrected through modifying local squareness errors measured with double ball bar to global squareness errors, with the aid of straightness errors measured with multi-laser calibrator. Then volumetric errors are obtained based on multi-body system theory, and volumetric diagonal errors are measured with laser interferometer. It is illustrated that the bidirectional systematic deviation of positioning of four volumetric diagonals reduced about 81.3%, 35.2%, 29.2%, and 4.5% respectively by using this improved machine tool volumetric error compensation method, and it is of obvious advantages in contrast with traditional compensation method with direct measurement data. The improved error compensation method proposed in this paper has universal applicability and has great significance on machine tool accuracy improvement.
机译:误差补偿是提高机床加工精度的有效且经济的手段之一。运动误差的测量精度对机床误差建模的准确性产生了很大影响。由于幻灯片表的失真和局部测量笔划的极限,一些测量误差是不可避免的。为了解决这些问题,本文提出了一种改进的机床容积误差补偿方法,基于线性和平方纠错方法。通过考虑光学镜组和工作台表面之间的距离效应,校正了线性误差,包括位置误差和直线误差。通过通过用多激光校准器测量的直线误差,通过修改用双球杆测量的本地平方误差来校正平方误差。然后基于多体系系统理论获得体积误差,并用激光干涉仪测量体积对角线误差。示出了通过使用这种改进的机床容积误差补偿方法,四个容量对角线定位的双向系统偏差分别降低了约81.3%,35.2%,29.2%和4.5%,与传统相比之下是明显的优势具有直接测量数据的补偿方法。本文提出的改进的误差补偿方法具有通用适用性,对机床准确性提高具有重要意义。

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