On the basis of modified couple stress theory, the postbuckling behavior of the Euler-Bernoulli microscale FG beams is investigated by means of an exact solution method. The modified couple stress theory as a nonclassical continuum theory is capable of interpreting the size dependencies which become more significant at micro/nanoscales. The Von-Karman type nonlinear strain-displacement relationships are employed. The thermal effects are also incorporated into formulation. The governing equation of motion and the corresponding boundary conditions are derived using Hamilton’s principle. The material properties are assumed to be graded in the thickness direction according to the power-law distribution. A closed-form solution is obtained for th...
This paper presents a nonlinear vibration analysis of the tensioned nanobeams with simple simple and...
The present study aims to provide some new information for the design of micro systems. It deals wit...
In this paper, nonlinear free vibration analysis of micro-beams resting on the viscoelastic foundati...
The thermal stress due to the temperature rise in micro/nano-beams with immovable ends produces comp...
AbstractThe thermal stress due to the temperature rise in micro/nano-beams with immovable ends produ...
Abstract In this paper, analytical couple-stress solution for size-dependent large-amplitude vibrati...
In this paper, nonlinear vibration analysis of micro scale functionally graded material (FGM) beams ...
In the present paper, the vibration behavior of a buckled functionally graded (FG) microplate lying ...
In the present paper, the vibration behavior of a buckled functionally graded (FG) microplate lying ...
This article employs the classical Euler–Bernoulli beam theory in connection with Green–Naghdi’s gen...
The present work aims to study the free vibration, buckling and post-buckling behaviors of bidirecti...
In this paper, the free vibration behavior of post-buckled functionally graded (FG) Mindlin rectangu...
This article employs the classical Euler–Bernoulli beam theory in connection with Green–Naghdi’s gen...
In this paper, the vibration of nanobeams resting on the Winkler foundation is proposed using the mo...
AbstractThe thermal stress due to the temperature rise in micro/nano-beams with immovable ends produ...
This paper presents a nonlinear vibration analysis of the tensioned nanobeams with simple simple and...
The present study aims to provide some new information for the design of micro systems. It deals wit...
In this paper, nonlinear free vibration analysis of micro-beams resting on the viscoelastic foundati...
The thermal stress due to the temperature rise in micro/nano-beams with immovable ends produces comp...
AbstractThe thermal stress due to the temperature rise in micro/nano-beams with immovable ends produ...
Abstract In this paper, analytical couple-stress solution for size-dependent large-amplitude vibrati...
In this paper, nonlinear vibration analysis of micro scale functionally graded material (FGM) beams ...
In the present paper, the vibration behavior of a buckled functionally graded (FG) microplate lying ...
In the present paper, the vibration behavior of a buckled functionally graded (FG) microplate lying ...
This article employs the classical Euler–Bernoulli beam theory in connection with Green–Naghdi’s gen...
The present work aims to study the free vibration, buckling and post-buckling behaviors of bidirecti...
In this paper, the free vibration behavior of post-buckled functionally graded (FG) Mindlin rectangu...
This article employs the classical Euler–Bernoulli beam theory in connection with Green–Naghdi’s gen...
In this paper, the vibration of nanobeams resting on the Winkler foundation is proposed using the mo...
AbstractThe thermal stress due to the temperature rise in micro/nano-beams with immovable ends produ...
This paper presents a nonlinear vibration analysis of the tensioned nanobeams with simple simple and...
The present study aims to provide some new information for the design of micro systems. It deals wit...
In this paper, nonlinear free vibration analysis of micro-beams resting on the viscoelastic foundati...