AIP Advances (Nov 2015)

Reducing symmetry in topology optimization of two-dimensional porous phononic crystals

  • Hao-Wen Dong,
  • Yue-Sheng Wang,
  • Yan-Feng Wang,
  • Chuanzeng Zhang

DOI
https://doi.org/10.1063/1.4936640
Journal volume & issue
Vol. 5, no. 11
pp. 117149 – 117149-16

Abstract

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In this paper we present a comprehensive study on the multi-objective optimization of two-dimensional porous phononic crystals (PnCs) in both square and triangular lattices with the reduced topology symmetry of the unit-cell. The fast non-dominated sorting-based genetic algorithm II is used to perform the optimization, and the Pareto-optimal solutions are obtained. The results demonstrate that the symmetry reduction significantly influences the optimized structures. The physical mechanism of the optimized structures is analyzed. Topology optimization combined with the symmetry reduction can discover new structures and offer new degrees of freedom to design PnC-based devices. Especially, the rotationally symmetrical structures presented here can be utilized to explore and design new chiral metamaterials.