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Design of a Measurement System for Six-Degree-of-Freedom Geometric Errors of a Linear Guide of a Machine Tool

机译:机床直线导轨六自由度几何误差测量系统的设计

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摘要

This paper proposes a system utilizing a Renishaw XL80 positioning error measuring interferometer and sensitivity analysis design to measure six-degree-of-freedom (6 DOF) geometric errors of a machine tool’s linear guide. Each error is characterized by high independence with significantly reduced crosstalk, and error calculations are extremely fast and accurate. Initially, the real light path was simulated using Zemax. Then, Matlab’s skew ray tracing method was used to perform mathematical modeling and ray matching. Each error’s sensitivity to the sensor was then analyzed, and curve fitting was used to simplify and speed up the mathematical model computations. Finally, Solidworks was used to design the set of system modules, bringing the proposed system closer to a product. This system measured actual 6 DOF geometric errors of a machine tool’s linear guide, and a comparison is made with the Renishaw XL-80 interferometer measurements. The resulting pitch, yaw, horizontal straightness, and vertical straightness error deviation ranges are ±0.5 arcsec, ±3.6 arcsec, ±2.1 μm, and ±2.3 μm, respectively. The maximum repeatability deviations for the measured guide’s pitch, yaw, roll, horizontal straightness, vertical straightness, and positioning errors are 0.4 arcsec, 0.2 arcsec, 4.2 arcsec, 1.5 μm, 0.3 μm, and 3 μm, respectively.
机译:本文提出一种系统,该系统利用Renishaw XL80定位误差测量干涉仪和灵敏度分析设计来测量机床直线导轨的六自由度(6 DOF)几何误差。每个错误的特点是高度独立,串扰大大减少,并且错误计算非常快速和准确。最初,使用Zemax模拟了真实的光路。然后,使用Matlab的偏斜射线追踪方法进行数学建模和射线匹配。然后分析每个错误对传感器的敏感性,并使用曲线拟合来简化和加快数学模型的计算。最后,Solidworks被用来设计系统模块集,使拟议的系统更接近产品。该系统测量了机床直线导轨的实际6自由度几何误差,并与Renishaw XL-80干涉仪的测量结果进行了比较。产生的俯仰,偏航,水平直线度和垂直直线度误差偏差范围分别为±0.5 arcsec,±3.6 arcsec,±2.1μm和±2.3μm。测得的导轨的俯仰,偏航,横滚,水平直线度,垂直直线度和定位误差的最大重复性偏差分别为0.4 arcsec,0.2 arcsec,4.2 arcsec,1.5μm,0.3μm和3μm。

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