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Erschienen in: Journal of Engineering Mathematics 1/2019

13.02.2019

Impact of inhomogeneous fiber-reinforced layer with frictional interface on Rayleigh-type wave propagation

verfasst von: Akanksha Srivastava, Amares Chattopadhyay, Abhishek Kumar Singh

Erschienen in: Journal of Engineering Mathematics | Ausgabe 1/2019

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Abstract

The effect of frictional boundary on the propagation of Rayleigh-type wave in an initially stressed inhomogeneous fiber-reinforced layer overlying an initially stressed homogeneous semi-infinite medium has been analyzed by an approximate analytical method. A realistic model has been considered for sliding boundary friction at the interface. The frequency equation has been obtained in closed form. The substantial effects of various affecting parameters, viz. reinforcement, inhomogeneity, bonding parameter, spectral decay parameter, and horizontal initial stress on phase and damped velocity have been discussed graphically in detail. The remarkable observation has been obtained through the comparative study in the presence and the absence of reinforcement in the layer.

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Metadaten
Titel
Impact of inhomogeneous fiber-reinforced layer with frictional interface on Rayleigh-type wave propagation
verfasst von
Akanksha Srivastava
Amares Chattopadhyay
Abhishek Kumar Singh
Publikationsdatum
13.02.2019
Verlag
Springer Netherlands
Erschienen in
Journal of Engineering Mathematics / Ausgabe 1/2019
Print ISSN: 0022-0833
Elektronische ISSN: 1573-2703
DOI
https://doi.org/10.1007/s10665-019-09987-5

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