双探头平面度误差分离模型的实验研究与建立

Zhang Lei, Yang Xiumin, Liang Xiaofei, Guan Peng, Zhang Ke
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引用次数: 1

摘要

在时域上,在双探针直线度误差分离技术的基础上,提出了一种基于误差分离技术测量平面度误差的新方法——双探针平面度误差分离测量。给出了双探头平面度误差分离测量的原理,建立了相应的数学模型,并进行了仿真分析和实验验证。理论仿真和实验结果证明了分离原理的正确性和有效性(1)通过对双探头误差分离测量数据的分析,可以得到被测面板的平整度和导轨的直线度误差。(2)在双探头测量时,传感器初始位置的累积误差是线性的;(3)与平面度误差分离技术相比,双探头误差分离技术使用的单探头或双探头较少,因此无需考虑在一个平面上安装多个传感器,消除了传感器初始位置非线性累积误差带来的问题。因此,本文提出的双探头平面度误差分离测量方法可以使平面度误差分离技术得到更广泛的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental research and establishment of the model of the two-probe flatness error separation
In the time domain, on the basis of two-probe straightness error separation technology, this paper gives a new measurement measuring the flatness error based on the error separation technology - the two-probe flatness error separation measurement. It also gives the principle of the two-probe flatness error separation measurement, establishes the corresponding mathematical models, and carries on the simulation analysis and experiment testifying. Theoretical simulation and experimental result have proved the correctness and effectiveness of the separation principle (1) after analyzing the data with the two-probe error separation measurement, we can obtain the flatness of the panel measured as well as the straight error of the guiding rail.(2) when measuring with the two-probe measurement, the accumulation error of the initial position of the sensors is linear, so it can not influent the assessment of the error.(3) the two-probe error separation technology uses less one or two probes than the flatness error separation technology with the three or four probes does, so it need not consider installing several sensors on a plane and eliminates the problem made by the non-linear accumulation error of the initial position of the sensors. Therefore, the two-probe flatness error separation measurement this paper gives can make the flatness error separation technology more applied.
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