This paper presents a nonlinear vibration analysis of functionally graded simply supported fluid-conveying microtubes subjected to transverse excitation loads. The development of the nonlinear equation of motion is based on the Euler–Bernoulli theory, Hamilton principle and Strain gradient theory. The nonlinear equation of motion is reduced to a second-order nonlinear ordinary differential equation by the Galerkin method. The Runge–Kutta method is adapted to solve the equation, and the effects of the dimensionless microscale parameters, the amplitude and frequency of excitation loads on the stability of the microtubes system are analyzed. It is found that when the microtube diameter is equal to the material length scale parameter, the micro...
The size-dependent bifurcation behaviour of a fluid-conveying microtube taking into account the effe...
Numerical modelling and simulations are conducted on the large-amplitude dynamics of a functionally ...
The objective of this paper is to develop a size-dependent nonlinear model of beams for fluid-convey...
This paper investigates the dynamic behavior of a cantilevered microtube conveying fluid, undergoing...
The microfluid-induced nonlinear free vibration of microtubes is studied in this paper. A derivation...
This paper analyzes nonlinear free vibration of the circular nano-tubes made of functionally graded ...
The stability of functionally graded simply supported fluid-conveying microtubes under multiple phys...
This paper is the first to analyse the coupled fluid-structure viscoelastic dynamical characteristic...
The development of mathematical models for describing the dynamic behaviours of fluid conveying pipe...
Authors in this work investigate nonlinear vibration of different types of functionally graded tube ...
Abstract. Nonlinear free vibration of single-walled carbon nanotubes (CNTs) conveying fluid are mode...
Nonlinear free vibration of single-walled carbon nanotubes (CNTs) conveying fluid are modeled and nu...
A nonlocal strain gradient elasticity approach is proposed for the mechanical behaviour of fluid-con...
In the current analysis, an attempt is made to develop a nonlinear size-dependent fluid-structure in...
The nonlinear size-dependent dynamics of a functionally graded micro-cantilever is investigated when...
The size-dependent bifurcation behaviour of a fluid-conveying microtube taking into account the effe...
Numerical modelling and simulations are conducted on the large-amplitude dynamics of a functionally ...
The objective of this paper is to develop a size-dependent nonlinear model of beams for fluid-convey...
This paper investigates the dynamic behavior of a cantilevered microtube conveying fluid, undergoing...
The microfluid-induced nonlinear free vibration of microtubes is studied in this paper. A derivation...
This paper analyzes nonlinear free vibration of the circular nano-tubes made of functionally graded ...
The stability of functionally graded simply supported fluid-conveying microtubes under multiple phys...
This paper is the first to analyse the coupled fluid-structure viscoelastic dynamical characteristic...
The development of mathematical models for describing the dynamic behaviours of fluid conveying pipe...
Authors in this work investigate nonlinear vibration of different types of functionally graded tube ...
Abstract. Nonlinear free vibration of single-walled carbon nanotubes (CNTs) conveying fluid are mode...
Nonlinear free vibration of single-walled carbon nanotubes (CNTs) conveying fluid are modeled and nu...
A nonlocal strain gradient elasticity approach is proposed for the mechanical behaviour of fluid-con...
In the current analysis, an attempt is made to develop a nonlinear size-dependent fluid-structure in...
The nonlinear size-dependent dynamics of a functionally graded micro-cantilever is investigated when...
The size-dependent bifurcation behaviour of a fluid-conveying microtube taking into account the effe...
Numerical modelling and simulations are conducted on the large-amplitude dynamics of a functionally ...
The objective of this paper is to develop a size-dependent nonlinear model of beams for fluid-convey...