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一种用于测量载物台倾斜运动的基于液体表面的三轴倾斜传感器。

A Liquid-Surface-Based Three-Axis Inclination Sensor for Measurement of Stage Tilt Motions.

作者信息

Shimizu Yuki, Kataoka Satoshi, Ishikawa Tatsuya, Chen Yuan-Liu, Chen Xiuguo, Matsukuma Hiraku, Gao Wei

机构信息

Department of Finemechanics, Tohoku University, Sendai 980-8579, Japan.

出版信息

Sensors (Basel). 2018 Jan 30;18(2):398. doi: 10.3390/s18020398.

Abstract

In this paper a new concept of a liquid-surface-based three-axis inclination sensor for evaluation of angular error motion of a precision linear slide, which is often used in the field of precision engineering such as ultra-precision machine tools, coordinate measuring machines (CMMs) and so on, is proposed. In the liquid-surface-based three-axis inclination sensor, a reference float mounting a line scale grating having periodic line grating structures is made to float over a liquid surface, while its three-axis angular motion is measured by using an optical sensor head based on the three-axis laser autocollimation capable of measuring three-axis angular motion of the scale grating. As the first step of research, in this paper, theoretical analysis on the angular motion of the reference float about each axis has been carried out based on simplified kinematic models to evaluate the possibility of realizing the proposed concept of a three-axis inclination sensor. In addition, based on the theoretical analyses results, a prototype three-axis inclination sensor has been designed and developed. Through some basic experiments with the prototype, the possibility of simultaneous three-axis inclination measurement by the proposed concept has been verified.

摘要

本文提出了一种基于液面的三轴倾斜传感器的新概念,用于评估精密直线导轨的角误差运动,该直线导轨常用于超精密机床、坐标测量机(CMM)等精密工程领域。在基于液面的三轴倾斜传感器中,安装有具有周期性线光栅结构的线刻度光栅的参考浮体漂浮在液面上,同时其三轴角运动通过基于能够测量刻度光栅三轴角运动的三轴激光自准直的光学传感头进行测量。作为研究的第一步,本文基于简化的运动学模型对参考浮体绕各轴的角运动进行了理论分析,以评估实现所提出的三轴倾斜传感器概念的可能性。此外,基于理论分析结果,设计并开发了一个三轴倾斜传感器原型。通过对该原型进行的一些基础实验,验证了所提出概念同时进行三轴倾斜测量的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/21cc/5856120/93184782db81/sensors-18-00398-g001.jpg

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