Linear and non-linear vibrations of a U-shaped hollow microcantilever beam filled with fluid and interacting with a small particle are investigated. The microfluidic device is assumed to be subjected to internal flowing fluid carrying a buoyant mass. The equations of motion are derived via extended Hamilton's principle and by using Euler-Bernoulli beam theory retaining geometric and inertial non-linearities. A reduced-order model is obtained applying Galerkin's method and solved by using a pseudo arc-length continuation and collocation scheme to perform bifurcation analysis and obtain frequency response curves. Direct time integration of the equations of motion has also been performed by using Adams-Moulton method to obtain time histories a...
Micro and nanoscale systems are rapidly evolving to improve the resolution of experimental measureme...
In this Thesis, nonlinear dynamics and nonlinear interactions are studied from a micromechanical poi...
In this Thesis, nonlinear dynamics and nonlinear interactions are studied from a micromechanical poi...
Linear and non-linear vibrations of a U-shaped hollow microcantilever beam filled with fluid and int...
The dynamics of micromechanical beams and cantilevers in viscous fluids are studied by analytical, c...
The hydrodynamic loading of elastic microcantilevers vibrating in viscous fluids is analyzed computa...
Fluid-structural coupling occurs when microcantilever sensors vibrate in a fluid. Due to the complex...
In order to obtain the effects of time-varying fluid on dynamical characteristics of cantilever beam...
A microcantilever is a suspended micro-scale beam structure supported at one end which can bend and/...
The size-dependent oscillations of a microcantilever with a tip (end) mass and a spring support unde...
This paper investigates the dynamic behavior of a cantilevered microtube conveying fluid, undergoing...
A novel approach is presented for the modelling and analysis of the dynamic response of a microcanti...
Microbeams are widely used in micro-electro-mechanical systems (MEMS). These systems are alternative...
Fluid-structural coupling occurs when microcantilever sensors vibrate in a fluid. Due to the complex...
The size-dependent internal energy transfer in the nonlinear dynamical behaviour of a microcantileve...
Micro and nanoscale systems are rapidly evolving to improve the resolution of experimental measureme...
In this Thesis, nonlinear dynamics and nonlinear interactions are studied from a micromechanical poi...
In this Thesis, nonlinear dynamics and nonlinear interactions are studied from a micromechanical poi...
Linear and non-linear vibrations of a U-shaped hollow microcantilever beam filled with fluid and int...
The dynamics of micromechanical beams and cantilevers in viscous fluids are studied by analytical, c...
The hydrodynamic loading of elastic microcantilevers vibrating in viscous fluids is analyzed computa...
Fluid-structural coupling occurs when microcantilever sensors vibrate in a fluid. Due to the complex...
In order to obtain the effects of time-varying fluid on dynamical characteristics of cantilever beam...
A microcantilever is a suspended micro-scale beam structure supported at one end which can bend and/...
The size-dependent oscillations of a microcantilever with a tip (end) mass and a spring support unde...
This paper investigates the dynamic behavior of a cantilevered microtube conveying fluid, undergoing...
A novel approach is presented for the modelling and analysis of the dynamic response of a microcanti...
Microbeams are widely used in micro-electro-mechanical systems (MEMS). These systems are alternative...
Fluid-structural coupling occurs when microcantilever sensors vibrate in a fluid. Due to the complex...
The size-dependent internal energy transfer in the nonlinear dynamical behaviour of a microcantileve...
Micro and nanoscale systems are rapidly evolving to improve the resolution of experimental measureme...
In this Thesis, nonlinear dynamics and nonlinear interactions are studied from a micromechanical poi...
In this Thesis, nonlinear dynamics and nonlinear interactions are studied from a micromechanical poi...