Broadband cloaking of bending waves via homogenization of multiply perforated radially symmetric and isotropic thin elastic plates

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Abstract

A cylindrical cloak is designed to control the bending waves propagating in isotropic thin plates. This is achieved through homogenization of a multiply perforated coating of isotropic homogeneous elastic material, which greatly simplifies the design of the multilayered cloak we proposed. We first derive the homogenized biharmonic equation, which involves an anisotropic Young's modulus and an isotropic mass density. We then numerically show that a clamped obstacle is cloaked over a finite range of frequencies for an acoustic source located a couple of wavelengths away from its surrounding cloak. The reduced backward and forward scattering is confirmed by both the profile of the total field computed along a line passing through the source and the center of the cloak (near field confirmation), and the computation of the scattered far field. © 2012 American Physical Society.

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Farhat, M., Guenneau, S., & Enoch, S. (2012). Broadband cloaking of bending waves via homogenization of multiply perforated radially symmetric and isotropic thin elastic plates. Physical Review B - Condensed Matter and Materials Physics, 85(2). https://doi.org/10.1103/PhysRevB.85.020301

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