The vibration analysis of rotating, functionally graded Timoshenko nano-beams under an in-plane nonlinear thermal loading is studied for the first time. The formulation is based on Eringen's nonlocal elasticity theory. Hamilton's principle is used for the derivation of the equations. The governing equations are solved by the differential quadrature method. The nano-beam is under axial load due to the rotation and thermal effects, and the boundary conditions are considered as cantilever and propped cantilever. The thermal distribution is considered to be nonlinear and material properties are temperature-dependent and are changing continuously through the thickness according to the power-law form. - 2018 Taylor & Francis Group, LLC.Scopu
Size-dependent vibrational behavior of functionally graded (FG) Timoshenko nano-beams is investigate...
Rotating micromachined beams are one of the most practical devices with several applications from po...
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AbstractThe thermal stress due to the temperature rise in micro/nano-beams with immovable ends produ...
The thermal stress due to the temperature rise in micro/nano-beams with immovable ends produces comp...
Abstract This paper is concerned with the nonlinear free vibration of a heated micro/nano beam model...
The thermo-mechanical vibration behavior of two dimensional functionally graded (2D-FG) porous nanob...
In this paper, we present the non-local nonlinear finite element formulations for the case of nonuni...
This article presents the solution for free vibration of nanobeams based on Eringen nonlocal elastic...
This study explores heat-induced nonlinear vibration of a functionally graded (FG) capacitive nanobe...
This paper presents the coupled axial-transverse-rotational nonlinear forced vibrations of Timoshenk...
Size-dependent vibrational behavior of functionally graded (FG) Timoshenko nano-beams is investigate...
Size-dependent vibrational behavior of functionally graded (FG) Timoshenko nano-beams is investigate...
We in this paper analyze the problem of the nonlinear bending, thermal buckling and post-buckling of...
Size-dependent vibrational behavior of functionally graded (FG) Timoshenko nano-beams is investigate...
Size-dependent vibrational behavior of functionally graded (FG) Timoshenko nano-beams is investigate...
Rotating micromachined beams are one of the most practical devices with several applications from po...
This paper analyzes nonlinear free vibration of the circular nano-tubes made of functionally graded ...
AbstractThe thermal stress due to the temperature rise in micro/nano-beams with immovable ends produ...
The thermal stress due to the temperature rise in micro/nano-beams with immovable ends produces comp...
Abstract This paper is concerned with the nonlinear free vibration of a heated micro/nano beam model...
The thermo-mechanical vibration behavior of two dimensional functionally graded (2D-FG) porous nanob...
In this paper, we present the non-local nonlinear finite element formulations for the case of nonuni...
This article presents the solution for free vibration of nanobeams based on Eringen nonlocal elastic...
This study explores heat-induced nonlinear vibration of a functionally graded (FG) capacitive nanobe...
This paper presents the coupled axial-transverse-rotational nonlinear forced vibrations of Timoshenk...
Size-dependent vibrational behavior of functionally graded (FG) Timoshenko nano-beams is investigate...
Size-dependent vibrational behavior of functionally graded (FG) Timoshenko nano-beams is investigate...
We in this paper analyze the problem of the nonlinear bending, thermal buckling and post-buckling of...
Size-dependent vibrational behavior of functionally graded (FG) Timoshenko nano-beams is investigate...
Size-dependent vibrational behavior of functionally graded (FG) Timoshenko nano-beams is investigate...
Rotating micromachined beams are one of the most practical devices with several applications from po...
This paper analyzes nonlinear free vibration of the circular nano-tubes made of functionally graded ...