首页> 外文期刊>Iranian Journal of Science and Technology, Transactions of Mechanical Engineering >Effects of Size, Surface Energy and Casimir Force on the Superharmonic Resonance Characteristics of a Double-Layered Viscoelastic NEMS Device Under Piezoelectric Actuations
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Effects of Size, Surface Energy and Casimir Force on the Superharmonic Resonance Characteristics of a Double-Layered Viscoelastic NEMS Device Under Piezoelectric Actuations

机译:压电致动下,尺寸,表面能和Casimir力对双层粘弹性NEMS装置的超谐振谐振特性

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This paper investigates the nonlinear characteristics of a double-layered viscoelastic nanoelectromechanical system (NEMS) in the vicinity of superharmonic resonance. Two nanobeams are made of piezoelectric material and coupled through a visco-Pasternak medium in between. Modified couple-stress theory together with Gurtin-Murdoch surface elasticity theory is utilized to take into account the effects of size-dependency and surface energy for the nanosized structure. Kelvin-Voigt model is also implemented to consider the impact of viscoelasticity. The differential equations of motion are established based on Hamilton's principle and decomposed to a set of nonlinear ordinary differential equations via Galerkin discretization method. Arclength continuation technique is schemed to capture the frequency-response curves near superharmonic resonance of the system. The influence of the couple-stress parameter, surface strain energy and dispersion force on the nonlinear behavior of the system near superharmonic resonance has been studied. It is observed, that the hardening and softening behaviors of the system are remarkably affected by the size and surface parameters, and interatomic Casimir force. Finally, considering all the mentioned effects, the influence of the DC and AC voltage loads on the dynamic pull-in behavior of the NEMS device is investigated. For these cases, some frequency ranges are addressed as the pull-in band in which the lower nanobeam collapses.
机译:本文研究了超高臂共振附近的双层粘弹性纳米机电系统(NEMS)的非线性特性。两个纳米束由压电材料制成,并通过介于粘合剂中耦合。利用Gurtin-Murdoch表面弹性理论的改进的耦合 - 应力理论用于考虑纳米化结构的尺寸依赖性和表面能的影响。也实施了Kelvin-Voigt模型以考虑粘弹性的影响。基于汉密尔顿的原理建立了运动的微分方程,并通过Galerkin离散化方法分解到一组非线性常微分方程。架构延续技术被示范以捕获系统的超高臂谐振附近的频率响应曲线。研究了对超高音共振附近系统的非线性行为的耦合应力参数,表面应变能量和色散力的影响。观察到,系统的硬化和软化行为受到尺寸和表面参数的显着影响,以及内部卡西米力力。最后,考虑到所有提到的效果,研究了DC和AC电压负载对NEMS装置的动态拉动行为的影响。对于这些情况,一些频率范围被寻址为下拉纳米坍塌的拉入带。

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