4.7 Article

Effect of Poisson's loss factor of rubbery material on underwater sound absorption of anechoic coatings

Journal

JOURNAL OF SOUND AND VIBRATION
Volume 424, Issue -, Pages 293-301

Publisher

ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1016/j.jsv.2018.02.022

Keywords

Complex Poisson's ratio; Rubbery materials; Anechoic coatings; Underwater sound absorption

Funding

  1. China Scholarship Council
  2. Research Innovation Project of Postgraduate in Hunan Province [CX2016B014]
  3. NSFC [51775549]

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Rubbery coatings embedded with air cavities are commonly used on underwater structures to reduce reflection of incoming sound waves. In this paper, the relationships between Poisson's and modulus loss factors of rubbery materials are theoretically derived, the different effects of the tiny Poisson's loss factor on characterizing the loss factors of shear and longitudinal moduli are revealed. Given complex Young's modulus and dynamic Poisson's ratio, it is found that the shear loss factor has almost invisible variation with the Poisson's loss factor and is very close to the loss factor of Young's modulus, while the longitudinal loss factor almost linearly decreases with the increase of Poisson's loss factor. Then, a finite element (FE) model is used to investigate the effect of the tiny Poisson's loss factor, which is generally neglected in some FE models, on the underwater sound absorption of rubbery coatings. Results show that the tiny Poisson's loss factor has a significant effect on the sound absorption of homogeneous coatings within the concerned frequency range, while it has both frequency-and structure-dependent influence on the sound absorption of inhomogeneous coatings with embedded air cavities. Given the material parameters and cavity dimensions, more obvious effect can be observed for the rubbery coating with a larger lattice constant and/or a thicker cover layer. (C) 2018 Elsevier Ltd. All rights reserved.

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