AbstractThis paper describes the use of genetic algorithms (GAs) for the optimal design of phononic bandgaps in periodic elastic two-phase media. In particular, we link a GA with a computational finite element method for solving the acoustic wave equation, and find optimal designs for both metal–matrix composite systems consisting of Ti/SiC, and H2O-filled porous ceramic media, by maximizing the relative acoustic bandgap for these media. The term acoustic here implies that, for simplicity, only dilatational wave propagation is considered, although this is not an essential limitation of the method. The inclusion material is found to have a lower longitudinal modulus (and lower wave speed) than the surrounding matrix material, a result consis...
An important dispersion-related characteristic of wave propagation through periodic materials is the...
Topology optimization is used to design phononic bandgap materials that are tunable by mechanical de...
This paper deals with the modeling of band gaps in truss-like materials using a spring-mass model. I...
AbstractThis paper describes the use of genetic algorithms (GAs) for the optimal design of phononic ...
In this paper we employ genetic algorithms in order to theoretically design a range of phononic medi...
In phononic quasi one-dimensional structures, there is a phenomenon of a phononic bandgap (PhBG), wh...
[EN] It is well known that Genetic Algorithms (GA) is an optimization method which can be used in pr...
Phononic band gap crystals are made of periodic inclusions embedded in a base material, which can fo...
Phononic crystal plates (PhPs) have promising application in manipulation of guided waves for design...
Phononic band gap crystals, which could prohibit the propagations of elastic waves in c...
In the work, multi-criteria optimization of phononic structures was performed to minimize the transm...
ABSTRACT The spatial distribution of material phases within a periodic composite can be engineered t...
The spatial distribution of material phases within a periodic composite can be engineered to produce...
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...
An important dispersion-related characteristic of wave propagation through periodic materials is the...
Topology optimization is used to design phononic bandgap materials that are tunable by mechanical de...
This paper deals with the modeling of band gaps in truss-like materials using a spring-mass model. I...
AbstractThis paper describes the use of genetic algorithms (GAs) for the optimal design of phononic ...
In this paper we employ genetic algorithms in order to theoretically design a range of phononic medi...
In phononic quasi one-dimensional structures, there is a phenomenon of a phononic bandgap (PhBG), wh...
[EN] It is well known that Genetic Algorithms (GA) is an optimization method which can be used in pr...
Phononic band gap crystals are made of periodic inclusions embedded in a base material, which can fo...
Phononic crystal plates (PhPs) have promising application in manipulation of guided waves for design...
Phononic band gap crystals, which could prohibit the propagations of elastic waves in c...
In the work, multi-criteria optimization of phononic structures was performed to minimize the transm...
ABSTRACT The spatial distribution of material phases within a periodic composite can be engineered t...
The spatial distribution of material phases within a periodic composite can be engineered to produce...
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...
An important dispersion-related characteristic of wave propagation through periodic materials is the...
Topology optimization is used to design phononic bandgap materials that are tunable by mechanical de...
This paper deals with the modeling of band gaps in truss-like materials using a spring-mass model. I...