[[abstract]]Analyzing the dynamic response of electrostatic devices is problematic due to the complexity of the interactions between the electrostatic coupling effect, the fringing field effect and the nonlinear electrostatic force. To resolve this problem, this study presents an efficient computational scheme in which the nonlinear governing equation of the electrostatic device is obtained in accordance with Hamilton’s principle and is then solved using a hybrid differential transformation/finite difference method. The feasibility of the proposed approach is demonstrated by modeling the dynamic responses of two micro fixedfixed beams with lengths of 250 and 350 lm, respectively. The numerical results show that the pull-in voltage reduces a...
The aim of this paper is to deal with multi-physics simulation of micro-electro-mechanical systems (...
The aim of this paper is to deal with multi-physics simulation of micro-electro-mechanical systems (...
This paper presents a new analytical model for electrostatically actuated micro-actuators to explore...
In general, analysis of the electrostatic device is quite difficult and complicated due to the elect...
[[abstract]]Analyzing the dynamic behavior of microelectrostatic devices is problematic due to the c...
This paper investigates the features of different techniques to model the dynamic behaviour of mi- c...
Abstract: We use a discretization technique that combines the differential quadrature method (DQM) a...
This work describes the development of a hybrid finite element strategy for modeling the nonlinear, ...
This paper presents a nonlinear electro-dynamic analysis for a size dependent micro-beam made of mat...
Electrostatic actuated microbeams are frequently encountered in micro electro-mechanical systems (ME...
Electrostatic microactuator is a paradigm of MEMS. Cantilever and double clamped microbeams are ofte...
This paper presents a geometrically nonlinear micro-beam model for the electro-dynamic analysis of a...
In this article, we present an efficient numerical scheme based on the Rayleigh-Ritz method to deter...
In this paper, we present an investigation of the static behavior of a doubly-clamped microbeam actu...
This paper investigates the pull-in behavior of an electrostatically actuated geometrically nonlinea...
The aim of this paper is to deal with multi-physics simulation of micro-electro-mechanical systems (...
The aim of this paper is to deal with multi-physics simulation of micro-electro-mechanical systems (...
This paper presents a new analytical model for electrostatically actuated micro-actuators to explore...
In general, analysis of the electrostatic device is quite difficult and complicated due to the elect...
[[abstract]]Analyzing the dynamic behavior of microelectrostatic devices is problematic due to the c...
This paper investigates the features of different techniques to model the dynamic behaviour of mi- c...
Abstract: We use a discretization technique that combines the differential quadrature method (DQM) a...
This work describes the development of a hybrid finite element strategy for modeling the nonlinear, ...
This paper presents a nonlinear electro-dynamic analysis for a size dependent micro-beam made of mat...
Electrostatic actuated microbeams are frequently encountered in micro electro-mechanical systems (ME...
Electrostatic microactuator is a paradigm of MEMS. Cantilever and double clamped microbeams are ofte...
This paper presents a geometrically nonlinear micro-beam model for the electro-dynamic analysis of a...
In this article, we present an efficient numerical scheme based on the Rayleigh-Ritz method to deter...
In this paper, we present an investigation of the static behavior of a doubly-clamped microbeam actu...
This paper investigates the pull-in behavior of an electrostatically actuated geometrically nonlinea...
The aim of this paper is to deal with multi-physics simulation of micro-electro-mechanical systems (...
The aim of this paper is to deal with multi-physics simulation of micro-electro-mechanical systems (...
This paper presents a new analytical model for electrostatically actuated micro-actuators to explore...