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Wave processes in polycrystals with dissipative and reactive dislocation-caused nonlinearities

Wave processes in polycrystals with dissipative and reactive dislocation-caused nonlinearities Abstract Amplitude-phase effects observed in the interaction and self-action of acoustic waves in polycrystalline solids characterized by dissipative and reactive dislocation-caused nonlinearity are studied in the framework of the modified linear part of the Granato-Lucke dislocation theory of absorption. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Acoustical Physics Springer Journals

Wave processes in polycrystals with dissipative and reactive dislocation-caused nonlinearities

Acoustical Physics , Volume 54 (2): 8 – Mar 1, 2008

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References (19)

Publisher
Springer Journals
Copyright
2008 Pleiades Publishing, Ltd.
ISSN
1063-7710
eISSN
1562-6865
DOI
10.1134/s1063771008020127
Publisher site
See Article on Publisher Site

Abstract

Abstract Amplitude-phase effects observed in the interaction and self-action of acoustic waves in polycrystalline solids characterized by dissipative and reactive dislocation-caused nonlinearity are studied in the framework of the modified linear part of the Granato-Lucke dislocation theory of absorption.

Journal

Acoustical PhysicsSpringer Journals

Published: Mar 1, 2008

Keywords: Acoustics

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