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Theory and simulation for the identification of the link geometric errors for a five-axis machine tool using a telescoping magnetic ball-bar

机译:伸缩式电磁球杆识别五轴机床连杆几何误差的理论与仿真

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摘要

The position invariant geometric inaccuracies of a machine tool are the first to influence the quality of machined parts. A systematic approach is presented to identify some of these errors on a five-axis machine tool. The methodology is applied to the link error parameters such as joint misalignments, angular offset and rotary axis separation distance. A method based on the mathematical analysis of singularities of linear systems is used to assist in selecting a minimal but sufficient set of link error parameters for the calibration of a machine tool. A number of criteria are proposed in order to verify that the identified parameters accurately predict the positioning errors of the true machine. Finally, the numerical effectiveness of this method is shown through simulations.
机译:机床的位置不变几何精度最先影响到加工零件的质量。提出了一种系统的方法来识别五轴机床上的某些错误。该方法适用于链接错误参数,例如关节未对准,角度偏移和旋转轴分离距离。使用基于线性系统奇异性的数学分析的方法来帮助选择最小但足够的一组链接误差参数,以用于机床校准。为了验证所识别的参数准确地预测了真实机器的定位误差,提出了许多标准。最后,通过仿真证明了该方法的数值有效性。

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