首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Accuracy enhancement of kinematic error model of three-axis computer numerical control machine tools
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Accuracy enhancement of kinematic error model of three-axis computer numerical control machine tools

机译:三轴计算机数控机床运动误差模型的精度增强

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摘要

Accurate estimation of volumetric errors is an important issue in machining operations. For this purpose, a kinematic error model is used to characterize machine tool's related errors on its workspace. In this research, it is shown that when measuring the linear and positioning errors using a laser interferometer, part of the angular errors are converted to linear and positioning errors and their magnitudes are overestimated. These values are calculated twice in the models which use homogeneous transformation matrix since Abbe's principle is not considered. In this article, a kinematic error model is proposed which eliminates this overestimation. This model's methodology is based on rigid body kinematic and errors measurement by laser interferometer and can be generalized for all three-axis machine tools. A software package is developed to integrate the kinematic errors with the NC-codes. A workpiece is machined in the virtual environment and compared with a workpiece machined in real environment. It is shown that the kinematic error model developed in this research predicts the kinematic errors more accurately.
机译:准确估计体积误差是加工操作中的一个重要问题。为此目的,运动误差模型用于在其工作区上表征机床的相关错误。在该研究中,示出了当使用激光干涉仪测量线性和定位误差时,部分角度误差被转换为线性和定位误差,并且它们的幅度高估。由于不考虑ABBE的原理,这些值在使用均匀变换矩阵的模型中计算两次。在本文中,提出了一种运动误差模型,其消除了这种高估。该模型的方法基于激光干涉仪的刚体运动和误差,并且可以为所有三轴机床推广。开发了一种软件包以将运动错误与NC代码集成。工件在虚拟环境中加工,并与实际环境中加工的工件相比。结果表明,本研究中开发的运动误差模型更准确地预测了运动误差。

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