The use of Phononic Crystals (PnC) in suspended structures and microstructures, such as plates and slabs, has gained a lot of attention in the past years for the wide range of feasible applications (acoustic waveguides, acoustic insulation, acoustic cloaking) and for the easy fabrication technique. Since the performance of the device is related to the band of frequencies reflected by the PnC and since this band (called bandgap) depends on the geometric and material properties of the fundamental unit cell of the PnC, a useful tool for the design of those structures is topology optimization. This paper is focused on a novel and fast engineering use of Bidirectional Evolutionary Structural Optimization for the definition of the optimal hole co...
In this paper we employ genetic algorithms in order to theoretically design a range of phononic medi...
This paper proposes a new topology optimization algorithm based on the bi-directional evolutionary s...
Designing phononic crystals by creating frequency bandgaps is of particular interest in the engineer...
The use of Phononic Crystals (PnC) in suspended structures and microstructures, such as plates and s...
The use of Phononic Crystals (PnCs) as smart materials in structures and microstructures is growing ...
Phononic band gap crystals, which could prohibit the propagations of elastic waves in c...
Phononic band gap crystals are made of periodic inclusions embedded in a base material, which can fo...
Phononic crystal (PnC) is a kind of periodic distribution structure with elastic constants and densi...
This paper systematically investigated the topological design of cellular phononic crystals with a m...
This paper systematically investigated the topological design of cellular phononic crystals with a m...
Topology optimization is used to design phononic bandgap materials that are tunable by mechanical de...
The propagation of evanescent waves inside phononic band gaps is important for the design of phononi...
AbstractThis paper describes the use of genetic algorithms (GAs) for the optimal design of phononic ...
We present a simple and computationally inexpensive method to design 1-D MEMS flexural phononic crys...
Phononic crystals can be designed to have bandgaps---ranges of frequencies whose propagation through...
In this paper we employ genetic algorithms in order to theoretically design a range of phononic medi...
This paper proposes a new topology optimization algorithm based on the bi-directional evolutionary s...
Designing phononic crystals by creating frequency bandgaps is of particular interest in the engineer...
The use of Phononic Crystals (PnC) in suspended structures and microstructures, such as plates and s...
The use of Phononic Crystals (PnCs) as smart materials in structures and microstructures is growing ...
Phononic band gap crystals, which could prohibit the propagations of elastic waves in c...
Phononic band gap crystals are made of periodic inclusions embedded in a base material, which can fo...
Phononic crystal (PnC) is a kind of periodic distribution structure with elastic constants and densi...
This paper systematically investigated the topological design of cellular phononic crystals with a m...
This paper systematically investigated the topological design of cellular phononic crystals with a m...
Topology optimization is used to design phononic bandgap materials that are tunable by mechanical de...
The propagation of evanescent waves inside phononic band gaps is important for the design of phononi...
AbstractThis paper describes the use of genetic algorithms (GAs) for the optimal design of phononic ...
We present a simple and computationally inexpensive method to design 1-D MEMS flexural phononic crys...
Phononic crystals can be designed to have bandgaps---ranges of frequencies whose propagation through...
In this paper we employ genetic algorithms in order to theoretically design a range of phononic medi...
This paper proposes a new topology optimization algorithm based on the bi-directional evolutionary s...
Designing phononic crystals by creating frequency bandgaps is of particular interest in the engineer...