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Erschienen in: Experimental Mechanics 8/2011

01.10.2011

Transverse Vibrations of Viscoelastic Bars Subjected to an Asymmetric Temperature Distribution Induced by a Microwave Source

verfasst von: A. Mohamed Elarif, C. Bacon, B. Hosten

Erschienen in: Experimental Mechanics | Ausgabe 8/2011

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Abstract

This paper studies the effects of a microwave excitation on the transverse vibrations of viscoelastic bars placed inside unconventional electromagnetic waveguides. Its purpose is to present a general approach that can be applied to analyze and to interpret the physical phenomena risen during the heating process. These phenomena were not predicted either by conventional experiments or by existing theoretical models. To measure the bar transverse deformations, an opening line and a hole have been made respectively on one of the small transverse sides of the waveguides. The comparison between the spectra of the experimental transverse velocities measured with these two waveguides has pointed out some differences. Theoretical and finite element (FE) simulations of the experiments have been firstly applied to figure out the nature of these variations. The analysis is conducted by a parameterized approach that takes into account the effects of the opening line made along the waveguide on both the propagation of the electromagnetic power density and the temperature rise distribution inside the sample. Good agreements between the models and the experimental data are demonstrated. Furthermore, the method has also shown a sudden asymmetric temperature distribution that leads to the generation of new flexural modes. These last modes are specific to the experiment used to apply the microwave induce acoustic technique.

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Literatur
1.
Zurück zum Zitat Frey H (1962) Human auditory system response to modulated electromagnetic energy. J Appl Physiol 17:689–692 Frey H (1962) Human auditory system response to modulated electromagnetic energy. J Appl Physiol 17:689–692
2.
3.
Zurück zum Zitat Chou CK, Guy AW (1982) Auditory perception of radio-frequency electromagnetic fields. JASA 71:1321–1334 Chou CK, Guy AW (1982) Auditory perception of radio-frequency electromagnetic fields. JASA 71:1321–1334
4.
Zurück zum Zitat White RM (1963) Generation of elastic waves by transient surface heating. J Appl Phys 34:3559–3567CrossRef White RM (1963) Generation of elastic waves by transient surface heating. J Appl Phys 34:3559–3567CrossRef
5.
Zurück zum Zitat White RM (1963) Elastic wave generation by electron bombarding or electromagnetic wave absorption. J Appl Phys 34:2123–2124CrossRef White RM (1963) Elastic wave generation by electron bombarding or electromagnetic wave absorption. J Appl Phys 34:2123–2124CrossRef
6.
Zurück zum Zitat Zemel A, Goldstein Y (1973) Conversion of electromagnetic into acoustic energy via indium films. Phys Rev B 7:191–200CrossRef Zemel A, Goldstein Y (1973) Conversion of electromagnetic into acoustic energy via indium films. Phys Rev B 7:191–200CrossRef
7.
Zurück zum Zitat Zemel A, Goldstein Y (1974) Conversion of electromagnetic into acoustic energy using Sn, Au and Cu films at a low temperatures. Phys Rev B 9:1499–1505CrossRef Zemel A, Goldstein Y (1974) Conversion of electromagnetic into acoustic energy using Sn, Au and Cu films at a low temperatures. Phys Rev B 9:1499–1505CrossRef
8.
Zurück zum Zitat Goldstein Y, Barzilai S, Zemel A (1974) Electron mean-free-path dependence of electro-magnetic phonon generation. Phys Rev Lett 32:463–466CrossRef Goldstein Y, Barzilai S, Zemel A (1974) Electron mean-free-path dependence of electro-magnetic phonon generation. Phys Rev Lett 32:463–466CrossRef
9.
Zurück zum Zitat Bacon C, Hosten B, Guilliorit E (2000) One-dimensional prediction of the acoustic waves generated in a multilayer viscoelastic body by microwave irradiation. JSV 238:853–867CrossRef Bacon C, Hosten B, Guilliorit E (2000) One-dimensional prediction of the acoustic waves generated in a multilayer viscoelastic body by microwave irradiation. JSV 238:853–867CrossRef
10.
Zurück zum Zitat Bacon C, Guilliorit E, Hosten B, Chimenti DE (2001) Acoustic waves generated by pulsed microwaves in viscoelastic bars: modeling and experimental verification. JASA 110:1398–1407 Bacon C, Guilliorit E, Hosten B, Chimenti DE (2001) Acoustic waves generated by pulsed microwaves in viscoelastic bars: modeling and experimental verification. JASA 110:1398–1407
11.
Zurück zum Zitat Hosten B, Bacon C (2000) Measurement of complex Young moduli of composite materials by time gated microwaves. Rev Prog Quant NDE 19:1113–1120 Hosten B, Bacon C (2000) Measurement of complex Young moduli of composite materials by time gated microwaves. Rev Prog Quant NDE 19:1113–1120
12.
Zurück zum Zitat Hadj Henni AR, Bacon C, Hosten B (2005) Acoustic generation in piezoelectric materials by microwave excitation. JASA 118:2281–2288 Hadj Henni AR, Bacon C, Hosten B (2005) Acoustic generation in piezoelectric materials by microwave excitation. JASA 118:2281–2288
13.
Zurück zum Zitat Hadj Henni AR, Bacon C, Hosten B (2006) In-plane vibration of thin circular structures submitted to pulsed microwave. JASA 119:3782–3792 Hadj Henni AR, Bacon C, Hosten B (2006) In-plane vibration of thin circular structures submitted to pulsed microwave. JASA 119:3782–3792
14.
Zurück zum Zitat Hadj Henni AR, Bacon C (2006) In-plane vibrations of thin elliptic plates submitted to uniform pulsed microwave irradiations. JSV 299:298–313CrossRef Hadj Henni AR, Bacon C (2006) In-plane vibrations of thin elliptic plates submitted to uniform pulsed microwave irradiations. JSV 299:298–313CrossRef
15.
Zurück zum Zitat Castarings M, Bacon C, Hosten B, Predoi MV (2004) Finite element predictions for the dynamic response of thermo-viscoelastic material structures. JASA 115:1125–1133 Castarings M, Bacon C, Hosten B, Predoi MV (2004) Finite element predictions for the dynamic response of thermo-viscoelastic material structures. JASA 115:1125–1133
16.
Zurück zum Zitat Comsol (2005) User’s guide and introduction, version 3.2, Comsol AB Comsol (2005) User’s guide and introduction, version 3.2, Comsol AB
17.
Zurück zum Zitat Blevins RD (1995) Formulas for natural frequency and mode shape. Krieger Publishing Company, Malabar Blevins RD (1995) Formulas for natural frequency and mode shape. Krieger Publishing Company, Malabar
Metadaten
Titel
Transverse Vibrations of Viscoelastic Bars Subjected to an Asymmetric Temperature Distribution Induced by a Microwave Source
verfasst von
A. Mohamed Elarif
C. Bacon
B. Hosten
Publikationsdatum
01.10.2011
Verlag
Springer US
Erschienen in
Experimental Mechanics / Ausgabe 8/2011
Print ISSN: 0014-4851
Elektronische ISSN: 1741-2765
DOI
https://doi.org/10.1007/s11340-010-9451-2

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