Sun Chuanzhi, Wang Lei, Tan Jiubin, Zhao Bo, Tang Yangchao
Institute of Ultra-precision Optical and Electronic Instrument Engineering, Harbin Institute of Technology, Harbin 150001, China.
Rev Sci Instrum. 2016 Feb;87(2):025110. doi: 10.1063/1.4941679.
The paper designs a roundness measurement model with multi-systematic error, which takes eccentricity, probe offset, radius of tip head of probe, and tilt error into account for roundness measurement of cylindrical components. The effects of the systematic errors and radius of components are analysed in the roundness measurement. The proposed method is built on the instrument with a high precision rotating spindle. The effectiveness of the proposed method is verified by experiment with the standard cylindrical component, which is measured on a roundness measuring machine. Compared to the traditional limacon measurement model, the accuracy of roundness measurement can be increased by about 2.2 μm using the proposed roundness measurement model for the object with a large radius of around 37 mm. The proposed method can improve the accuracy of roundness measurement and can be used for error separation, calibration, and comparison, especially for cylindrical components with a large radius.
本文设计了一种具有多系统误差的圆度测量模型,该模型在圆柱部件的圆度测量中考虑了偏心、探头偏移、探头头部半径和倾斜误差。在圆度测量中分析了系统误差和部件半径的影响。所提出的方法基于具有高精度旋转主轴的仪器。通过在圆度测量仪上对标准圆柱部件进行实验,验证了所提方法的有效性。与传统的蜗线测量模型相比,对于半径约为37mm的大尺寸物体,使用所提出的圆度测量模型,圆度测量精度可提高约2.2μm。所提方法可提高圆度测量精度,可用于误差分离、校准和比较,特别是对于大半径的圆柱部件。