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Comprehensive nonlinear electromechanical analysis of nanobeams under DC/AC voltages based on consistent couple-stress theory

机译:基于一致耦合应力理论的直流/交流电压下纳米束的非线性机电综合分析

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摘要

The paper analyzes the nonlinear electromechanical behavior of nanobeams under electrostatic actuation based on the recently developed consistent couple stress theory. The effects of interatomic forces including the Casimir force and van der Waals interaction are analyzed. The static and dynamic pull-in instabilities are investigated for the nanobeams with cantilever and doubly clamped boundary conditions. According to the results, the applied theory leads to models with higher stiffness and consequently, higher frequencies and pull-in voltages. The results prove that, for large gaps, the cantilever nanobeams show softening behavior and the doubly clamped ones presents hardening characteristics. In the nonlinear dynamic part of the research, bifurcation and chaos appear in the latter. Moreover, the formulation and physical concepts applied in some literature are scrutinized and the sources of errors are studied. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文基于最近发展的一致耦合应力理论,分析了纳米束在静电作用下的非线性机电行为。分析了包括卡西米尔力和范德华相互作用在内的原子间力的影响。研究了具有悬臂和双重约束边界条件的纳米束的静态和动态引入不稳定性。根据结果​​,应用理论得出的模型具有更高的刚度,因此具有更高的频率和引入电压。结果证明,对于较大的间隙,悬臂纳米束表现出软化行为,而双重夹持的纳米束表现出硬化特性。在研究的非线性动力部分中,分叉和混沌出现在后者中。此外,仔细研究了一些文献中所采用的配方和物理概念,并研究了误差的来源。 (C)2015 Elsevier Ltd.保留所有权利。

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