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2020 | OriginalPaper | Buchkapitel

Vibration of the Plate with Integral Layer Damping: Experimental and Theoretical Studies

verfasst von : V. N. Paimushin, V. A. Firsov, V. M. Shishkin, R. K. Gazizullin

Erschienen in: Proceedings of the Third International Conference on Theoretical, Applied and Experimental Mechanics

Verlag: Springer International Publishing

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Abstract

The paper discusses the classical methods of surface damping of bending vibrations in thin-walled structures. Furthermore, the perspective integral version of a damping coating has been proposed. Such coating consists of two layers of material with pronounced viscoelastic properties with a thin reinforcing layer of high modulus material between them. Dynamic tests of cantilevered duralumin specimens under the damped bending vibrations were carried out using the created experimental setup. The purpose of these tests is to compare the effectiveness of the known and proposed methods of surface vibration damping. The influence of aerodynamic drag forces on the vibration damping of specimens is noted. A refined finite element model of an elongated plate with an integral layer damping is constructed on the basis of the four-layer finite element. This model allows taking into account the effect of transverse compression of damping layers under high-frequency deformation. The analysis of the stress-strain state of the damping layers of a simply supported elongated plate under resonance vibrations in several lower eigenmodes has been carried out. The analysis showed a significant increase in the transverse compression stresses of the damping layers with frequency increasing.

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Literatur
1.
Zurück zum Zitat Oberst, H., Becker, G.W., Frankenfeld, K.: Über die Dampfung der Biegeschwingunden dunner Bleche durch fest haftende Belage. Acustica 4(2), 181–184 (1952) Oberst, H., Becker, G.W., Frankenfeld, K.: Über die Dampfung der Biegeschwingunden dunner Bleche durch fest haftende Belage. Acustica 4(2), 181–184 (1952)
2.
Zurück zum Zitat Kerwin, E.M.: Damping of flexural waves by a constrained viscoelastic layer. J. Acoust. Soc. Am. 31(7), 952–964 (1959)CrossRef Kerwin, E.M.: Damping of flexural waves by a constrained viscoelastic layer. J. Acoust. Soc. Am. 31(7), 952–964 (1959)CrossRef
3.
Zurück zum Zitat Ross, D., Ungar, E.E., Kerwin, E.M.: Damping of plate flexural vibrations by means of viscoelastic laminate. In: Structural Damping. Section 3, pp. 49–88. ASME, New York (1959) Ross, D., Ungar, E.E., Kerwin, E.M.: Damping of plate flexural vibrations by means of viscoelastic laminate. In: Structural Damping. Section 3, pp. 49–88. ASME, New York (1959)
4.
Zurück zum Zitat Nashif, A.D., Johnes, D.I.G., Henderson, J.P.: Vibration Damping. Wiley, New York (1984) Nashif, A.D., Johnes, D.I.G., Henderson, J.P.: Vibration Damping. Wiley, New York (1984)
5.
Zurück zum Zitat ASTM E756-05: Standard test method for measuring vibration-damping properties of materials. S. I.: ASTM Intern. (2017) ASTM E756-05: Standard test method for measuring vibration-damping properties of materials. S. I.: ASTM Intern. (2017)
6.
Zurück zum Zitat Paimushin, V.N., Firsov, V.A., Gyunal, I., Egorov, A.G.: Theoretical-experimental method for determining the parameters of damping based on the study of damped flexural vibrations of test specimens. 1. Experimental basis. Mech. Compos. Mater. 50(2), 127–136 (2014)CrossRef Paimushin, V.N., Firsov, V.A., Gyunal, I., Egorov, A.G.: Theoretical-experimental method for determining the parameters of damping based on the study of damped flexural vibrations of test specimens. 1. Experimental basis. Mech. Compos. Mater. 50(2), 127–136 (2014)CrossRef
7.
Zurück zum Zitat Paimushin, V.N., Firsov, V.A., Gyunal, I., Shishkin, V.M.: Theoretical-experimental method for evaluating the elastic and damping characteristics of soft materials based on studying the resonance flexural vibrations of test specimens. Mech. Compos. Mater. 52(5), 571–582 (2016)CrossRef Paimushin, V.N., Firsov, V.A., Gyunal, I., Shishkin, V.M.: Theoretical-experimental method for evaluating the elastic and damping characteristics of soft materials based on studying the resonance flexural vibrations of test specimens. Mech. Compos. Mater. 52(5), 571–582 (2016)CrossRef
Metadaten
Titel
Vibration of the Plate with Integral Layer Damping: Experimental and Theoretical Studies
verfasst von
V. N. Paimushin
V. A. Firsov
V. M. Shishkin
R. K. Gazizullin
Copyright-Jahr
2020
DOI
https://doi.org/10.1007/978-3-030-47883-4_46

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