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基于光学自准直的旋转轴五自由度误差运动测量方法。

An optical method based auto-collimation for measuring five degrees of freedom error motions of rotary axis.

机构信息

School of Instrument Science and Opto-electronics Engineering, Hefei University of Technology, Hefei 230009, China.

College of Control Science and Engineering, China University of Petroleum (UPC), Qingdao 266580, China.

出版信息

Rev Sci Instrum. 2022 Dec 1;93(12):125110. doi: 10.1063/5.0127199.

Abstract

The paper presents an optical method based on auto-collimation to simultaneously measure five degrees of freedom error motions of the rotary axis. The proposed method consists of the collimated lasers, beam splitters, focusing lens, quadrant photodiode detectors, a high-precision steel ball, and a special mirror fixed to the rotary axis. The mathematical model is established byoptical ray tracing, and the corresponding optical path is also simulated by OpticStudio. Meanwhile, an adjusting mechanism for X-Y micro-displacement, based on the elastic deformation of the material, is designed to adjust the installation eccentricity error of the high-precision steel ball. The calibration results of the proposed system demonstrate that the displacement errors are ±0.25 µm within the measuring range of ±10 µm, and the tilt angle errors are ±0.6 arcsec within the measuring range of ±25 arcsec. Taking a direct drive (DD) motor as the test object, the radial error motions of the rotary axis range from -3.2 to 4.1 µm, the axial error motions range from -4.9 to 4.7 µm, and the tilt error motions around the X and Y axes range from -2.8 to 1.8 arcsec and -2.6 to 2.0 arcsec, respectively.

摘要

本文提出了一种基于自准直的光学方法,可同时测量旋转轴的五个自由度误差运动。该方法由准直激光器、分光镜、聚焦透镜、四象限光电二极管探测器、高精度钢球和固定在旋转轴上的特殊反射镜组成。通过光线追迹建立了数学模型,并通过 OpticStudio 对相应的光路进行了模拟。同时,设计了一种基于材料弹性变形的 X-Y 微位移调整机构,用于调整高精度钢球的安装偏心误差。该系统的校准结果表明,在 ±10 µm 的测量范围内,位移误差为±0.25 µm,在 ±25 arcsec 的测量范围内,倾斜角误差为±0.6 弧秒。以直接驱动(DD)电机为测试对象,旋转轴的径向误差运动范围为-3.2 至 4.1 µm,轴向误差运动范围为-4.9 至 4.7 µm,绕 X 和 Y 轴的倾斜误差运动范围分别为-2.8 至 1.8 弧秒和-2.6 至 2.0 弧秒。

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