In this study, static analysis of the two-dimensional rectangular nanoplates are investigated by the Differential Quadrature Method (DQM). Numerical solution procedures are proposed for deflection of an embedded nanoplate under distributed nanoparticles based on the DQM within the framework of Kirchhoff and Mindlin plate theories. The governing equations and the related boundary conditions are derived by using nonlocal elasticity theory. The difference between the two models is discussed and bending properties of the nanoplate are illustrated. Consequently, the DQM has been successfully applied to analyze nanoplates with discontinuous loading and various boundary conditions for solving Kirchhoff and Mindlin plates with small-scale effect, w...
In this paper, a new numerical technique, the differential quadrature method (DQM) has been develope...
As a first endeavor, bending analysis of tapered nano wires with circular cross section is investiga...
A semi-continuum model is proposed for nanomaterials that possess a plate-like geometry, such as ult...
WE PRESENT A NEW NONLOCAL ELASTICITY-BASED ANALYSIS METHOD for free vibrations of functionally grade...
This article presents a finite element method (FEM) integrated with the nonlocal theory for analysis...
In the present study, the buckling analysis of the rectangular nanoplate under biaxial non-uniform c...
none4noThe static analysis of Kirchhoff nano plates subjected to uniformly (UDL) and sinusoidally (S...
The buckling and free vibrations of rectangular nanoplates are considered in the present paper. The ...
In this paper, bending analysis of rectangular functionally graded nanoplates under a uniform transv...
A continuum finite element model for the nanoscale plates considering the surface effect of the mate...
A unified plate model predicting the buckling behaviors is proposed by incorporating both surface an...
The paper analyzes the elastic–plastic buckling behavior of thick, rectangular nanoplates embedded i...
The present paper deals with the dynamic behavior of nano-column subjected to follower force using t...
The mechanical response investigation of nanoplates especially the stress distribution plays a very ...
Recently nanotechnology has become a challenging area of research. Accordingly, a new class of mater...
In this paper, a new numerical technique, the differential quadrature method (DQM) has been develope...
As a first endeavor, bending analysis of tapered nano wires with circular cross section is investiga...
A semi-continuum model is proposed for nanomaterials that possess a plate-like geometry, such as ult...
WE PRESENT A NEW NONLOCAL ELASTICITY-BASED ANALYSIS METHOD for free vibrations of functionally grade...
This article presents a finite element method (FEM) integrated with the nonlocal theory for analysis...
In the present study, the buckling analysis of the rectangular nanoplate under biaxial non-uniform c...
none4noThe static analysis of Kirchhoff nano plates subjected to uniformly (UDL) and sinusoidally (S...
The buckling and free vibrations of rectangular nanoplates are considered in the present paper. The ...
In this paper, bending analysis of rectangular functionally graded nanoplates under a uniform transv...
A continuum finite element model for the nanoscale plates considering the surface effect of the mate...
A unified plate model predicting the buckling behaviors is proposed by incorporating both surface an...
The paper analyzes the elastic–plastic buckling behavior of thick, rectangular nanoplates embedded i...
The present paper deals with the dynamic behavior of nano-column subjected to follower force using t...
The mechanical response investigation of nanoplates especially the stress distribution plays a very ...
Recently nanotechnology has become a challenging area of research. Accordingly, a new class of mater...
In this paper, a new numerical technique, the differential quadrature method (DQM) has been develope...
As a first endeavor, bending analysis of tapered nano wires with circular cross section is investiga...
A semi-continuum model is proposed for nanomaterials that possess a plate-like geometry, such as ult...