|
|
THE CHARACTERISTICS OF OPTIMAL TWO-DIMENSIONAL SOLID/SOLID PHONONIC CRYSTALS |
|
|
Abstract Phononic crystals (PnCs) is a kind of periodic composite with elastic band-gap characteristics, the distribution of elastic materials within a unit cell has significant effect on the band-gaps. In this paper, the topology optimization (TOP) techniques are utilized to obtain two-dimensional (2D) square lattice Cu/Epoxy PnCs with maximized relative band-gaps between multiple consecutive bands. The optimization follows two-stage design process which adopts genetic algorithms (GAs) and plane wave expansion method (PWE). The results show that the optimal PnCs with different band-gaps, which can easily be found by the developed method, have different material layout, and the PnCs with the lowest band-gap are simple lattice and have the highest value of application.
|
Received: 10 November 2014
Published: 28 August 2015
|
|
|
|
|
[1] |
. ENERGY HARVESTING BASED ON LOCALLY RESONANT PHONONIC CRYSTALS FOR LOW FREQUENCY VIBRATIONS[J]. , 2013, 34(4): 333-341. |
[2] |
. Total reflection tunnel and multi-channel filtering of square solid- liquid phononic crystal[J]. , 2012, 33(5): 508-514. |
[3] |
. Band gaps of one-dimensional magneto-electro-elastic quasi-periodic structures[J]. , 2012, 33(2): 153-161. |
[4] |
Yuanwen Gao. <B style=[J]. , 2012, 33(1): 0-80. |
[5] |
. SYMPLECTIC ANALYSIS FOR BAND GAPS IN ONE DIMENSIONAL PHONON CRYSTAL BASED ON NONLOCAL ELASTIC THEORY[J]. , 2012, 33(1): 0-97. |
[6] |
. Integrated Optimization Design of Structure and Material of Composite Guide Vane[J]. , 2011, 32(6): 595-602. |
|
|
|
|