Author:
Lin Ming-Xian,Chen Chao Kuang
Abstract
Purpose
This paper aims to present a nonclassical circular plate model subjected to hydrostatic pressure and electrostatic actuations by considering the modified couple stress theory and the surface elasticity theory. The pull-in phenomenon and nonlinear behavior of circular nanoplate are investigated.
Design/methodology/approach
The hybrid differential transformation method (DTM) and finite difference method (FDM) are used to approach the model. The DTM was first applied to the equation with respect to the time, and then the FDM was applied with respect to the radius.
Findings
The numerical results were in agreement with the numerical data in the previous literature. The effects of the length scale parameters, surface parameters, thermal stress, residual stress, hydrostatic pressure and electrostatic actuations of the nonclassical circular plate on the pull-in instability are investigated. The parametric study demonstrated that the pull-in behavior of the circular nanoplate was size dependent.
Originality/value
In this study, the results provide a suitable method in a nonclassical circular plate model. The length scale parameter had an obvious effect on the nonlinear behavior of the circular nanoplate.
Subject
Computational Theory and Mathematics,Computer Science Applications,General Engineering,Software
Reference50 articles.
1. A geometrically non-linear plate model including surface stress effect for the pull-in instability analysis of rectangular nanoplates under hydrostatic and electrostatic actuations;International Journal of Non-Linear Mechanics,2014
2. Size-dependent dynamic pull-in analysis of geometric non-linear micro-plates based on the modified couple stress theory;Physica E: Low-Dimensional Systems and Nanostructures,2017
3. Size-dependent pull-in instability of torsional nano-actuator;Physica Scripta,2013
4. Free vibrations of axial-loaded beams resting on viscoelastic foundation using adomian decomposition method and differential transformation. Engineering science and technology;An International Journal,2018
5. Application of differential transformation to eigenvalue problems;Applied Mathematics and Computation,1996
Cited by
5 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献