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A Novel Method of Establishing 'Datum Reference' for the Coaxiality Measurements Using the Multi-section and Multi-probe Gauges

机译:一种使用多段和多探针仪建立同轴度测量的“基准参考”的新方法

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The electronic or pneumatic multi-section and multi-probe gauges are widely used for diameter and coaxiality measurements due to their high measurement efficiency in workshops. However, their measurement accuracy is determined mainly by the manufacturing errors of the assembly coaxiality master, therefore, how to establish coaxiality measurement datum reference is the key technology. The physical coaxiality masters are expected to be the impossible "zero error datum reference". The higher manufacturing accuracy of the masters, the more expensive for their manufacturing costs. A novel mathematical method on the basis of error separation principle was proposed in order to separate the manufacturing errors of the master. The basic principle is that the eccentric error of the coaxiality master can be expressed as the first harmonic function and the ideal zero-error datum reference could be established by the mathematical method of two sampling operations in phase difference of 180° in coaxiality master for gauge initialization. This method can be called as "mathematical datum reference" for coaxiality measurement. Experimental results indicate that the coaxiality measurement results of the multi-section and multi-probe gauge by the novel mathematical method coincide with those of the three-coordinate measuring machine and the maximum difference of both is about 0.0014 mm. The new coaxiality measurement principle can separate the datum error of the coaxiality master theoretically and can improve the coaxiality measurement accuracy greatly with the common accuracy coaxiality master.
机译:由于其在车间的高测量效率,电子或气动多部分和多探针仪广泛用于直径和同轴度测量。然而,它们的测量精度主要由组装同轴母部的制造误差来确定,因此如何建立同轴测量基准参考是关键技术。物理同轴主体预计将成为不可能的“零错误数据参考”。大师的制造准确性越高,其制造成本越昂贵。提出了一种基于误差分离原理的新颖的数学方法,以分离母部的制造误差。基本原理是同轴位置主体的偏心误差可以表示为第一谐波函数,并且可以通过两个采样操作中的两个采样操作中的数学方法建立理想的零误差数据参考,用于规格的同轴级主机中的180°初始化。该方法可以称为同轴度测量的“数学基准参考”。实验结果表明,通过新颖的数学方法与三坐标测量机的多段和多探针计的同轴测量结果与三个坐标测量机的相同,并且两者的最大差异约为0.0014mm。新的同轴度测量原理理论上可以分离同轴度大师的基准误差,并可以通过共同的精度同轴级大师提高同轴度测量精度。

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