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一种用于实时检测旋转工作台五自由度误差运动的嵌入式传感器系统。

An Embedded Sensor System for Real-Time Detecting 5-DOF Error Motions of Rotary Stages.

作者信息

Lou Zhi-Feng, Hao Xiu-Peng, Cai Yin-Di, Lu Tien-Fu, Wang Xiao-Dong, Fan Kuang-Chao

机构信息

Key Laboratory for Precision and Non-traditional Machining Technology of Ministry of Education, Dalian University of Technology, Dalian 116023, China.

School of Mechanical Engineering, the University of Adelaide, Adelaide, SA 5005, Australia.

出版信息

Sensors (Basel). 2019 Jun 27;19(13):2855. doi: 10.3390/s19132855.

Abstract

The geometric error motions of rotary stages greatly affect the accuracy of constructed machines such as machine tools, measuring instruments, and robots. In this paper, an embedded sensor system for real-time measurement of two radial and three angular error motions of a rotary stage is proposed, which makes use of a rotary encoder with multiple scanning heads to measure the rotational angle and two radial error motions and a miniature autocollimator to measure two tilt angular errors of the axis of rotation. The assembly errors of the grid disc of the encoder and the mirror for autocollimator are also evaluated and compensated. The developed measuring device can be fixed inside the rotary stage. In the experiments, radial error motions of two points on the axis ( = 5 mm and 60 mm) were measured and calibrated with LVDTs, and the data showed that the radial error motions of the axis were less than 20 μm, and the calibration residual errors were less than 2 μm. When intermittent external forces were applied to the stage, the change of the stage's error motion could also be monitored accurately.

摘要

旋转工作台的几何误差运动会极大地影响诸如机床、测量仪器和机器人等所构建机器的精度。本文提出了一种用于实时测量旋转工作台两个径向和三个角向误差运动的嵌入式传感器系统,该系统利用具有多个扫描头的旋转编码器来测量旋转角度和两个径向误差运动,并利用微型自准直仪来测量旋转轴的两个倾斜角误差。还对编码器的光栅盘和自准直仪的反射镜的装配误差进行了评估和补偿。所开发的测量装置可固定在旋转工作台内部。在实验中,使用线性可变差动变压器(LVDT)对轴上两点( = 5毫米和60毫米)的径向误差运动进行了测量和校准,数据表明轴的径向误差运动小于20微米,校准残余误差小于2微米。当对工作台施加间歇性外力时,也能够准确监测工作台误差运动的变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23f7/6651088/330384ee03b2/sensors-19-02855-g001.jpg

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