Title of article :
Large Amplitude Vibration Analysis of Graphene Sheets as Resonant Mass Sensors Using Mixed PseudoSpectral and Integral Quadrature Methods
Author/Authors :
Jalali ، S. Kamal - University of Tehran , Naei ، M. Hassan - University of Tehran
Pages :
15
From page :
61
To page :
75
Abstract :
The present paper investigates the potential application of graphene sheets with attached nanoparticles as resonant sensors by introducing a nonlocal shear deformation plate model. To take into account an elastic connection between the nanoplate and the attached nanoparticle, the nanoparticle is considered as a massspring system. Then, a combination of pseudospectral and integral quadrature methods is implemented to numerically determine the frequency shift caused by the attached massspring system for both clamped and simply supported boundary conditions. The obtained results are in a good agreement with those available in the literature, which reveals that the proposed combined method provides accurate results for structural problems related to concentrated objects. The results show that for soft connections with small spring constant values, the predicted frequency shift is greater than for rigid connections. This means that considering a rigid connection instead of elastic one will underestimate the frequency shift of nano resonant sensors. Additionally, it is shown that neglecting nonlocal small scale parameter results in overestimating the frequency shift of nano resonant sensors. The presented results can be useful as a guideline for designing plane shape nano resonant sensors like graphenebased mass sensors.
Keywords :
graphene , resonant mass sensors , nonlocal elasticity , pseudospectral method , IQ method
Journal title :
Journal of Computational Applied Mechanics
Serial Year :
2014
Journal title :
Journal of Computational Applied Mechanics
Record number :
2451032
Link To Document :
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