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An Improvement Proposal to the Static Friction Model

机译:静态摩擦模型的改进提案

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摘要

Friction is a force acting against the relative motion between two surfaces in contact. This phenomenon is present in all mechanical systems and has a great impact on the control area. The design of mechatronic systems and the compensation techniques require a broad knowledge of the effects that friction produces. The phenomenon has two well-defined phases: static friction presents before the motion between the surfaces in contact is clearly visible, while kinetic friction appears when that motion at large scale has already started. There are different friction models for each of those phases. In this work we propose an improvement to the static friction models, which consist in assuming that the maximum static friction coefficient is no more a constant but a function of the rate of change of the external force that produces the motion. After explaining and justifying the proposal, the procedure for obtaining the parameters of the new model is mentioned. At the end, an experimental study on a direct-drive motor allows us to validate the proposed model.
机译:摩擦是作用在接触的两个表面之间的相对运动的力。这种现象存在于所有机械系统中,并且对控制区域产生了很大的影响。机电系统和补偿技术的设计需要广泛了解摩擦产生的效果。该现象具有两个明确的阶段:在接触表面之间的运动之前静摩擦呈现出来,而在大规模的运动已经开始时出现动力学摩擦。每个阶段都有不同的摩擦模型。在这项工作中,我们提出了对静摩擦模型的改进,该模型假设最大静态摩擦系数不再是恒定而是产生运动的外力变化率的函数。在解释和证明提案后,提到了获得新模型参数的过程。最后,对直接驱动电动机的实验研究允许我们验证所提出的模型。

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