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Optimal control method for the sphericity error using CMMs

机译:使用CMMS的球形误差的最佳控制方法

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Spherical surfaces are utilized widely in precision bearing, MEMS and parts of precision engineering. Constantly growing needs in the high motion performance of spherical parts, sphericity error is becoming an indispensable component in the control of form error. However, currently the quality control of a spherical surface is restricted by the lack of science-based mathematical models. This paper presents a unified approach to evaluate sphericity error using three methods: Least Square Sphere, Minimum Zone Sphere, Maximum Inscribed Sphere. The research originated from the need compare the effectiveness of these methods for different requirements for measurement accuracy. Three experiments are used to verify the effectiveness of the methods with 28, 36 and 50 datasets measured on Coordinate Measuring Machines. Presents a mathematical models of sphericity measurement and comparative results of the verification of these models.
机译:球形表面广泛用于精密轴承,MEMS和精密工程部分。在球形部件的高运动性能下不断增长的需求,球形误差是在形式误差控制中成为不可或缺的组成部分。然而,目前球形表面的质量控制受到缺乏基于科学的数学模型的限制。本文介绍了使用三种方法评估球形误差的统一方法:最小方形,最小区域球,最大铭刻球。该研究源于需求比较这些方法对测量精度的不同要求的有效性。使用三个实验来验证在坐标测量机上测量的28,36和50个数据集的方法。介绍了球形测量的数学模型和这些模型验证的比较结果。

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