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Digital signal processing-based volumetric error improvement of a CNC machine tool using Kriging interpolation

机译:基于克里格插值的基于数字信号处理的数控机床体积误差改善

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摘要

The machine tool performance is defined mainly by its volumetric accuracy, which is affected by cutting force, thermal deformation and geometric error sources. In this paper, error compensation technology is used for reducing the volumetric errors of a computer numeric control (CNC) machine tool, and the machining accuracy is improved. In order to collect volumetric error samples, a new measurement method based on Kriging interpolation is proposed in this paper, and volumetric errors of the CNC machine tool are measured. In order to fulfill volumetric error compensation, an ordinal decoupling compensation method is applied, compensation model of the machine tool motion is presented. Finally, a volumetric error compensator is designed for compensation experiment of the CNC machine tool, the compensation effect is verified in the end.
机译:机床性能主要由其体积精度决定,该精度受切削力,热变形和几何误差源的影响。本文采用误差补偿技术来减少计算机数控机床的体积误差,提高了加工精度。为了收集体积误差样本,提出了一种基于克里格插值的新的测量方法,并测量了数控机床的体积误差。为了实现体积误差补偿,采用有序解耦补偿方法,给出了机床运动补偿模型。最后设计了体积误差补偿器,用于数控机床的补偿实验,最后验证了补偿效果。

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