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Statistical Analysis of Industrial Grinding Brush Force Characteristics Based on Finite Element Approach

机译:基于有限元方法的工业磨削刷力特性统计分析

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摘要

This paper presents an in-depth study of the helical grinding brush force characteristics aiming at developing a mobile robot system to perform rust removal and other surface processing tasks. Based on an off-line Finite Element model that can calculate brush filament deformation and force behaviors, a mathematical regression model has been developed to summarize brush force changes subjected to varying conditions into a series of mathematical equations. The predictions of the mathematical model are well converged with the Finite Element modeled results and the R-squared value is up to 0.95. The paper presents the model form and calibrated coefficients, which may provide an advantageous tool to predict the grinding brush force changes in real time and contribute well to an automatic grinding control application.
机译:本文介绍了旨在开发移动机器人系统的螺旋磨削刷力特性的深入研究,以执行防锈和其他表面处理任务。基于可以计算刷丝变形和力行为的离线有限元模型,已经开发了一种数学回归模型,总结了刷子力变化,其变化变化为一系列数学方程。数学模型的预测良好地收敛,有限元建模结果,R线值高达0.95。本文呈现了模型形式和校准系数,其可以提供有利的工具,以预测研磨刷力实时变化,并对自动研磨控制应用贡献。

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