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NON-CONTACT R-TEST FOR ERROR CALIBRATION OF FIVE-AXIS MACHINE TOOLS

机译:用于五轴机床的误差校准的非接触式R检验

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The R-test is a new instrument to measure three-dimensional displacement of a precision sphere attached to a spindle relative to a work table by using three displacement sensors. Its application to error calibration for five-axis machine tools has been studied in both academia and industry. For the simplicity in calculating the sphere center displacement, all conventional R-test devices use contact-type displacement sensors with a flat-ended probe. Conventional contact-type litest may be potentially subject to the influence of the friction or the dynamics of supporting spring in displacement sensors particularly in dynamic measurement. This paper proposes a non-contact R-test with laser displacement sensors. A new algorithm was proposed to estimate the three-dimensional displacement of sphere center by using laser displacement sensors, It compensates the measurement uncertainty caused by the inclination of the target surface. Experimental case studies are presented to evaluate its measurement performance by comparing with the conventional contact-type R-test device.
机译:R-Test是一种新的仪器,用于测量相对于工作表附着到主轴的精密球体的三维位移,通过使用三个位移传感器。在学术界和工业中,研究了五轴机床的误差校准的应用。为了简单地计算球体中心位移,所有传统的R-TEST设备都使用具有扁平探针的接触式位移传感器。常规接触型最优可以潜在地受到摩擦或支撑弹簧的动力学在位移传感器中的影响的影响,特别是在动态测量中。本文提出了具有激光位移传感器的非接触式R-TEST。提出了一种新的算法来估计通过使用激光位移传感器来估计球体的三维位移,它补偿了目标表面倾斜引起的测量不确定性。提出了实验性案例,以通过与传统接触式R检验装置进行比较来评估其测量性能。

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