AbstractPresent investigation is focused on studying the effect of mass diffusion on the quality factor of the micro-beam resonators. Equation of motion is obtained using Hamilton’s principle and also the equations of thermo-diffusive elastic damping are established using two dimensional non-Fourier heat conduction and non-Fickian mass diffusion models. Free vibration of a clamped–clamped micro-beam with isothermal boundary conditions at both ends, and also a cantilever micro-beam with adiabatic boundary condition assumption at the free end, is studied using Galerkin reduced order model formulation for the first mode of vibration. Mass diffusion effects on the damping ratio are studied for the various micro-beam thicknesses and temperatures...
The effect of coatings and superficial oxide on the behavior of micro resonators deserves attention ...
We present a model and analytical expressions for the quality factors of microplates due to thermoel...
The operation of micro-=nanobeams vibrating at very high frequencies, such as encountered in micro-=...
AbstractPresent investigation is focused on studying the effect of mass diffusion on the quality fac...
Thermoelastic damping is recognized as a significant loss mechanism at room temperature in micro-sca...
AbstractThermoelastic damping is recognized as a significant loss mechanism at room temperature in m...
The dynamic properties and behaviors of microplate resonators have been experimentally shown to be s...
In the design of micro-electromechanical systems, which require a high quality factor, the dissipati...
In a recent research the thermal dependency of material characteristics in dynamic response of micro...
The thermal dependency of material characteristics is an important phenomenon affecting the motion o...
: In this paper, a nonlinear model of clamped-clamped microbeam actuated by electrostatic load with ...
This article employs the classical Euler–Bernoulli beam theory in connection with Green–Naghdi’s gen...
Under the condition that microresonators work at room temperature or vaccum, thermoelastic damping i...
Recent interest in thermoelasticity of vibrating structures is motivated by the unavoidable fact tha...
In this article, the recent and original results on the effect of thermoelastic damping (TED) on the...
The effect of coatings and superficial oxide on the behavior of micro resonators deserves attention ...
We present a model and analytical expressions for the quality factors of microplates due to thermoel...
The operation of micro-=nanobeams vibrating at very high frequencies, such as encountered in micro-=...
AbstractPresent investigation is focused on studying the effect of mass diffusion on the quality fac...
Thermoelastic damping is recognized as a significant loss mechanism at room temperature in micro-sca...
AbstractThermoelastic damping is recognized as a significant loss mechanism at room temperature in m...
The dynamic properties and behaviors of microplate resonators have been experimentally shown to be s...
In the design of micro-electromechanical systems, which require a high quality factor, the dissipati...
In a recent research the thermal dependency of material characteristics in dynamic response of micro...
The thermal dependency of material characteristics is an important phenomenon affecting the motion o...
: In this paper, a nonlinear model of clamped-clamped microbeam actuated by electrostatic load with ...
This article employs the classical Euler–Bernoulli beam theory in connection with Green–Naghdi’s gen...
Under the condition that microresonators work at room temperature or vaccum, thermoelastic damping i...
Recent interest in thermoelasticity of vibrating structures is motivated by the unavoidable fact tha...
In this article, the recent and original results on the effect of thermoelastic damping (TED) on the...
The effect of coatings and superficial oxide on the behavior of micro resonators deserves attention ...
We present a model and analytical expressions for the quality factors of microplates due to thermoel...
The operation of micro-=nanobeams vibrating at very high frequencies, such as encountered in micro-=...