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首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >A Novel Approach to Separate Geometric Error of the Rotary Axis of Multi-axis Machine Tool Using Laser Tracker
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A Novel Approach to Separate Geometric Error of the Rotary Axis of Multi-axis Machine Tool Using Laser Tracker

机译:一种使用激光跟踪器分离多轴机床旋转轴几何误差的新方法

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摘要

It is highly desirable to enhance machining accuracy for multi-axis machine tool, in which the geometric accuracy of rotary axis is a main contributing factor. Thus, how to achieve the fast and accurate identification of each geometric error of rotary axis, as well as its correction and compensation has become a key issue. This paper presents a novel method of geometric error separation of the rotary axis by means of laser tracker. For this method, the direction variation of the vectors composed by some adjacent measuring points during the rotation of turntable is measured, and rotary axis's six geometric errors including three linear displacement and three angular displacement errors can be accurately identified on the basis of the mapping relationship between the vector's direction variation and each geometric error. Meanwhile, the multi-station and time-sharing measurement is adopted based on GPS principle, aiming to overcome the effect of angle measurement error using laser tracker. Eventually, the geometric error separation mathematical model on rotary axis with this novel method is established, and the corresponding measurement algorithms containing the base station calibration and the measuring point determination based on the hybrid genetic algorithm, as well as each geometric error separation algorithm are deduced respectively. Furthermore, the numerical simulations are conducted to examine the validity of the derived algorithms. Results of the comparative experiment demonstrate that high-efficiency and high-precision measurement for the geometric error of the rotary axis can be accomplished by the proposed approach.
机译:非常希望能够提高多轴机床的加工精度,其中旋转轴的几何精度是主要的贡献因素。因此,如何实现旋转轴的每个几何误差的快速准确识别,以及其校正和补偿已成为关键问题。本文介绍了通过激光跟踪器的旋转轴的几何误差分离的新方法。对于该方法,测量由某些相邻测量点组成的矢量的方向变化是测量转盘旋转期间的旋转轴的六个几何误差,包括三个线性位移和三个角位移误差,基于映射关系可以精确地识别在向量的方向变化和每个几何误差之间。同时,基于GPS原理采用多站和时间共享测量,旨在克服使用激光跟踪器的角度测量误差的效果。最终,建立了具有这种新方法的旋转轴上的几何误差分离数学模型,并且推导了基于混合遗传算法的基站校准和测量点确定的相应测量算法,以及每个几何误差分离算法分别。此外,进行数值模拟以检查派生算法的有效性。比较实验结果表明,旋转轴的几何误差的高效率和高精度测量可以通过所提出的方法来实现。

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