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  5. Lamb wave extraction of dispersion curves in micro/nano-plates using couple stress theories

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Article
en
2017

Lamb wave extraction of dispersion curves in micro/nano-plates using couple stress theories

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en
2017
Vol 28 (1)
Vol. 28
DOI: 10.1080/17455030.2017.1308582

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Hamid M Sedighi
Hamid M Sedighi

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Ghodrati Behnam
Amin Yaghootian
Afshin Ghanbar Zadeh
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Abstract

In this paper, Lamb wave propagation in a homogeneous and isotropic non-classical micro/nano-plates is investigated. To consider the effect of material microstructure on the wave propagation, three size-dependent models namely indeterminate-, modified- and consistent couple stress theories are used to extract the dispersion equations. In the mentioned theories, a parameter called ‘characteristic length’ is used to consider the size of material microstructure in the governing equations. To generalize the parametric studies and examine the effect of thickness, propagation wavelength, and characteristic length on the behavior of miniature plate structures, the governing equations are nondimensionalized by defining appropriate dimensionless parameters. Then the dispersion curves for phase and group velocities are plotted in terms of a wide frequency-thickness range to study the lamb waves propagation considering microstructure effects in very high frequencies. According to the illustrated results, it was observed that the couple stress theories in the Cosserat type material predict more rigidity than the classical theory; so that in a plate with constant thickness, by increasing the thickness to characteristic length ratio, the results approach to the classical theory, and by reducing this ratio, wave propagation speed in the plate is significantly increased. In addition, it is demonstrated that for high-frequency Lamb waves, it converges to dispersive Rayleigh wave velocity.

How to cite this publication

Ghodrati Behnam, Amin Yaghootian, Afshin Ghanbar Zadeh, Hamid M Sedighi (2017). Lamb wave extraction of dispersion curves in micro/nano-plates using couple stress theories. , 28(1), DOI: https://doi.org/10.1080/17455030.2017.1308582.

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Publication Details

Type

Article

Year

2017

Authors

4

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1080/17455030.2017.1308582

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