Standard

Coupled Vibrations of Viscoelastic Three-Layer Composite Plates. 2. Numerical Experiments. / Ryabov, V. M.; Yartsev, B. A.; Parshina, L. V.

In: Vestnik St. Petersburg University: Mathematics, Vol. 54, No. 1, 01.2021, p. 69-77.

Research output: Contribution to journalArticlepeer-review

Harvard

APA

Vancouver

Author

Ryabov, V. M. ; Yartsev, B. A. ; Parshina, L. V. / Coupled Vibrations of Viscoelastic Three-Layer Composite Plates. 2. Numerical Experiments. In: Vestnik St. Petersburg University: Mathematics. 2021 ; Vol. 54, No. 1. pp. 69-77.

BibTeX

@article{daeb1af6250f49e2ac600f935d9c0c38,
title = "Coupled Vibrations of Viscoelastic Three-Layer Composite Plates. 2. Numerical Experiments",
abstract = "Abstract: The results of the numerical studies of the influence of the reinforcement orientation of rigid layers and relative thickness of a soft isotropic viscoelastic polymer layer on the values of natural frequencies and loss factors of the coupled vibrations of symmetric and asymmetric unsupported three-layer rectangular composite plates are discussed. It is shown that in a symmetric three-layer plate, a flexural and torsion interaction arises generating mutual transformations of the natural forms of the coupled vibration modes if at least one of its natural forms in the plate directions is characterized by an even number of quarter-wavelengths, and another natural form is characterized by an odd number of quarter-wavelengths. A flexural–flexural interaction arises in an asymmetric unsupported three-layer plate and generates mutual transformations of the natural forms of coupled vibration modes in two mutually orthogonal planes if both natural forms are characterized by either an even or an odd number of quarter-wavelengths in the main directions of the plate. It has been found that each mode of the natural vibrations of the three-layer plates corresponds to the effective relative thickness of the soft isotropic viscoelastic polymer layer.",
keywords = "asymmetric three-layer plate, loss factor, natural form, natural frequency, quasi-homogeneous plate, relative thickness, symmetric three-layer plate",
author = "Ryabov, {V. M.} and Yartsev, {B. A.} and Parshina, {L. V.}",
note = "Publisher Copyright: {\textcopyright} 2021, Pleiades Publishing, Ltd. Copyright: Copyright 2021 Elsevier B.V., All rights reserved.",
year = "2021",
month = jan,
doi = "10.1134/S106345412101009X",
language = "English",
volume = "54",
pages = "69--77",
journal = "Vestnik St. Petersburg University: Mathematics",
issn = "1063-4541",
publisher = "Pleiades Publishing",
number = "1",

}

RIS

TY - JOUR

T1 - Coupled Vibrations of Viscoelastic Three-Layer Composite Plates. 2. Numerical Experiments

AU - Ryabov, V. M.

AU - Yartsev, B. A.

AU - Parshina, L. V.

N1 - Publisher Copyright: © 2021, Pleiades Publishing, Ltd. Copyright: Copyright 2021 Elsevier B.V., All rights reserved.

PY - 2021/1

Y1 - 2021/1

N2 - Abstract: The results of the numerical studies of the influence of the reinforcement orientation of rigid layers and relative thickness of a soft isotropic viscoelastic polymer layer on the values of natural frequencies and loss factors of the coupled vibrations of symmetric and asymmetric unsupported three-layer rectangular composite plates are discussed. It is shown that in a symmetric three-layer plate, a flexural and torsion interaction arises generating mutual transformations of the natural forms of the coupled vibration modes if at least one of its natural forms in the plate directions is characterized by an even number of quarter-wavelengths, and another natural form is characterized by an odd number of quarter-wavelengths. A flexural–flexural interaction arises in an asymmetric unsupported three-layer plate and generates mutual transformations of the natural forms of coupled vibration modes in two mutually orthogonal planes if both natural forms are characterized by either an even or an odd number of quarter-wavelengths in the main directions of the plate. It has been found that each mode of the natural vibrations of the three-layer plates corresponds to the effective relative thickness of the soft isotropic viscoelastic polymer layer.

AB - Abstract: The results of the numerical studies of the influence of the reinforcement orientation of rigid layers and relative thickness of a soft isotropic viscoelastic polymer layer on the values of natural frequencies and loss factors of the coupled vibrations of symmetric and asymmetric unsupported three-layer rectangular composite plates are discussed. It is shown that in a symmetric three-layer plate, a flexural and torsion interaction arises generating mutual transformations of the natural forms of the coupled vibration modes if at least one of its natural forms in the plate directions is characterized by an even number of quarter-wavelengths, and another natural form is characterized by an odd number of quarter-wavelengths. A flexural–flexural interaction arises in an asymmetric unsupported three-layer plate and generates mutual transformations of the natural forms of coupled vibration modes in two mutually orthogonal planes if both natural forms are characterized by either an even or an odd number of quarter-wavelengths in the main directions of the plate. It has been found that each mode of the natural vibrations of the three-layer plates corresponds to the effective relative thickness of the soft isotropic viscoelastic polymer layer.

KW - asymmetric three-layer plate

KW - loss factor

KW - natural form

KW - natural frequency

KW - quasi-homogeneous plate

KW - relative thickness

KW - symmetric three-layer plate

UR - http://www.scopus.com/inward/record.url?scp=85102575466&partnerID=8YFLogxK

UR - https://www.mendeley.com/catalogue/990eb7a6-2512-3192-a099-17e5d4198164/

U2 - 10.1134/S106345412101009X

DO - 10.1134/S106345412101009X

M3 - Article

AN - SCOPUS:85102575466

VL - 54

SP - 69

EP - 77

JO - Vestnik St. Petersburg University: Mathematics

JF - Vestnik St. Petersburg University: Mathematics

SN - 1063-4541

IS - 1

ER -

ID: 74994544