JOURNAL ARTICLE

Three dimensional dynamic response of functionally graded nanoplates under a moving load

Shahrokh Hosseini-HashemiHossein Bakhshi Khaniki

Year: 2018 Journal:   STRUCTURAL ENGINEERING AND MECHANICS Vol: 66 (2)   Publisher: Technopress

Abstract

In this paper, reaction of functionally graded (FG) thick nanoplates resting on a viscoelastic foundation to a moving nanoparticle/load is investigated. Nanoplate is assumed to be thick by using second order shear deformation theory and small-scale effects are taken into account in the framework of Eringen\'s nonlocal theory. Material properties are varied through the thickness using FG models by having power-law, sigmoid and exponential functions for material changes. FG nanoplate is assumed to be on a viscoelastic medium which is modeled using Kelvin-Voight viscoelastic model. Galerkin, state space and fourth-order Runge-Kutta methods are employed to solve the governing equations. A comprehensive parametric study is presetned to show the influence of different parameters on mechanical behavior of the system. It is shown that material variation in conjunction with nonlocal term have a significant effect on the dynamic deformation of nanoplate which could be used in comprehending and designing more efficient nanostructures. Moreover, it is shown that having a viscoelastic medium could play an important role in decreasing these dynamic deformations. With respect to the fresh studies on moving atoms, molecules, cells, nanocars, nanotrims and point loads on different nanosctructures using scanning tunneling microscopes (STM) and atomic force microscopes (AFM), this study could be a step forward in understanding, predicting and controlling such kind of behaviors by showing the influence of the moving path, velocity etc. on dynamic reaction of the plate.

Keywords:
Viscoelasticity Materials science Galerkin method Parametric statistics Sigmoid function Deformation (meteorology) Moving load Mechanics Dynamic load testing Nanostructure Composite material Nanotechnology Physics Mathematics Finite element method Structural engineering Computer science Thermodynamics

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Citation History

Topics

Nonlocal and gradient elasticity in micro/nano structures
Physical Sciences →  Materials Science →  Materials Chemistry
Numerical methods in engineering
Physical Sciences →  Engineering →  Mechanics of Materials
Fractional Differential Equations Solutions
Physical Sciences →  Mathematics →  Modeling and Simulation

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