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Nonlinear Dynamical analysis of an AFM tapping mode microcantilever beam

机译:AFM攻丝模式微悬臂梁的非线性动力学分析

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摘要

We focus in this paper on the modeling and dynamical analysis of a tapping mode atomic force microscopy (AFM) microcantilever beam. This latter is subjected to a harmonic excitation of its base displacement and to Van der Waals and DMT contact forces at its free end. For AFM design purposes, we derive a mathematical model for accurate description of the AFM microbeam dynamics. We solve the resulting equations of motions and associated boundary conditions using the Galerkin method. We find that using one-mode approximation in tapping mode operating in the neighborhood of the contact region one-mode approximation may lead to erroneous results.
机译:在本文中,我们将重点放在攻丝模式原子力显微镜(AFM)微悬臂梁的建模和动力学分析上。后者受到其基本位移的谐波激励,并在其自由端受到范德华力和DMT接触力的作用。为了进行AFM设计,我们导出了一个数学模型来准确描述AFM微束动力学。我们使用Galerkin方法求解运动方程和相关的边界条件。我们发现,在接触区域附近工作的分接模式下使用单模逼近可能会导致错误的结果。

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