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Geometric Error Modeling and Compensation of the Dual-driving Feed Worktable

机译:双驱动进给工作台的几何误差建模与补偿

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The dual-driving feed worktable (DDFW) is increasingly used in feed systems with high precision and dynamic performance requirements, while its geometric error, caused by the factors such as manufacturing, assembly errors and the deformation, is the main factor affecting positioning accuracy. The research on geometric error compensation of DDFW is significant. In this paper, geometric error analysis and compensation of DDFW, equipped with the open CNC system of BECKHOFF, are conducted. Firstly, the geometric error model of DDFW is established, and the geometric errors are measured by using dual-frequency laser interferometer. Then the electronic cam combined with virtual axis compensation algorithm is designed. Finally, the compensation experiment is completed, and the results show that the positioning precision of DDFW improves a lot with the proposed compensation strategy.
机译:双驱动进给工作台(DDFW)越来越多地用于对精度和动态性能要求较高的进给系统中,而由制造,装配误差和变形等因素引起的几何误差是影响定位精度的主要因素。 DDFW几何误差补偿的研究具有重要意义。本文对装有BECKHOFF开放式数控系统的DDFW进行几何误差分析和补偿。首先,建立了DDFW的几何误差模型,并采用双频激光干涉仪测量了几何误差。然后设计了结合虚拟轴补偿算法的电子凸轮。最后,完成了补偿实验,结果表明,提出的补偿策略可以大大提高DDFW的定位精度。

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