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Vision-Based Measurement of Two-Dimensional Positioning Errors of Machine Tools

机译:基于视觉的机床二维定位误差测量

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摘要

This paper presents vision-based measurement of two-dimensional positioning errors of machine tools. A pre-calibrated grid plate is used as an artefact. The position of a grid point is measured in an image captured by a charge coupled device (CCD) camera attached to a spindle. Unlike conventional two-dimensional digital scales, the vision-based measurement can target the artefact in any orientation, and thus can be also applied to error calibration of a rotary axis. A longer working distance between the lens and the target is also its potential advantage for safer measurement. The paper demonstrates experimental applications of the vision-based measurement to the measurement of 1) static and 2) dynamic error motions of 1) a linear axis and 2) a rotary axis of a machine tool.
机译:本文提出了基于视觉的机床二维定位误差测量。预先校准的格栅板用作人工制品。网格点的位置是在连接到主轴的电荷耦合器件(CCD)摄像机捕获的图像中测量的。与常规的二维数字标尺不同,基于视觉的测量可以在任何方向上瞄准伪影,因此也可以应用于旋转轴的误差校准。镜头和目标之间更长的工作距离也是其更安全测量的潜在优势。本文演示了基于视觉的测量在以下方面的实验应用:测量机床的1)静态和2)动态误差运动1)线性轴和2)旋转轴。

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