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Machine tool 3D volumetric positioning error measurement under various thermal conditions

机译:各种热工况下的机床3D体积定位误差测量

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摘要

To manufacture good quality or accurate parts, the measurement and compensation of three dimensional volumetric positioning errors of a machine tool are very important. Using a conventional laser interferometer to measure the straightness and squareness errors is very difficult and time consuming. Recently, Optodyne has developed a laser vector technique for the measurement of 3D volumetric positioning errors, including 3 linear displacement errors, 6 straightness errors and 3 squareness errors in a very short time. Using this laser vector technique combine with the data obtained from a set of thermocouples placed at key locations of the machine tool structure, the relations between the machine temperature distribution and the 3D positioning errors can be measured and modeled. The results can be used to compensate the 3D volumetric positioning errors under various thermal conditions.Reported here are the definition of the 3D volumetric positioning errors; the basic theory and description of the laser vector technique; the temperature sensors and the laser vector technique measurement results obtained on a vertical CNC machining center under different spindle load, machine temperature and environmental temperature.
机译:为了制造高质量或精确的零件,测量和补偿机床三维空间定位误差非常重要。使用常规的激光干涉仪测量直线度和矩形度误差非常困难且耗时。最近,Optodyne开发了一种激光矢量技术,用于在很短的时间内测量3D体积定位误差,包括3个线性位移误差,6个直线度误差和3个矩形误差。使用这种激光矢量技术,结合从放置在机床结构关键位置的一组热电偶获得的数据,可以测量和建模机床温度分布与3D定位误差之间的关系。结果可用于补偿各种热条件下的3D体积定位误差。激光矢量技术的基本理论和描述;在不同的主轴负载,机器温度和环境温度下,在立式CNC加工中心上获得的温度传感器和激光矢量技术测量结果。

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