4.4 Article

Optimization of profile and damping layer of plates embedded with acoustic black hole indentations for broadband energy dissipation

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SAGE PUBLICATIONS LTD
DOI: 10.1177/1045389X211072196

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Acoustic Black Hole; broadband energy dissipation; optimization strategy; optimization of geometrical profile; topology of damping layer

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This work reports a simultaneous optimization of Acoustic Black Hole (ABH) plates for broadband energy dissipation. The geometry of the plate and the topology of the damping layer are optimized using a novel objective function. The achieved optimal arrangement of the damping layer covers more than just the ABH area, contradicting the conventional belief. The mechanism of broadband energy dissipation by the optimal solution is demonstrated.
Acoustic Black Hole (ABH) plate structure has shown promising potentials of vibration suppression above a cut on frequency. For energy dissipation below the cut on frequency, however, the ABH is less effective due to the absence of wave focusing effect. This work reports a simultaneous optimization of ABH plates for broadband energy dissipation. Two sets of design variables of ABH plates, that is, geometry of the profile and topology of the damping layer, are optimized in an alternatively nested procedure. A novel objective function, namely the upper limit of kinetic energy, is proposed. Modeling of ABH structures is implemented and dynamic characteristic is solved using finite element method. A rectangular plate embedded with two ABH indentations is presented as a numerical example. Influence of frequency ranges in the calculation and mass ratios of the damping layer on results are discussed. The achieved optimal arrangement of the damping layer is found to cover equally, if not more, above the non-ABH (uniform) part of the plate than the ABH area. This is inconsistent with the conventional believe that damping layers should cover as much of the ABH area as possible. Mechanism of the broadband energy dissipation by the optimal solution is demonstrated.

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