Numerical study and topology optimization of 1D periodic bimaterial phononic crystal plates for bandgaps of low order Lamb waves.

scientific article published on 22 November 2014

Numerical study and topology optimization of 1D periodic bimaterial phononic crystal plates for bandgaps of low order Lamb waves. is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1016/J.ULTRAS.2014.11.001
P698PubMed publication ID25468146

P50authorMohammad UddinQ57933651
Kazem AbharyQ59510855
Saeid HedayatrasaQ90640193
P2093author name stringMohammad Uddin
Kazem Abhary
Saeid Hedayatrasa
P2860cites workPhononic plate wavesQ37944518
Complete band gaps in a polyvinyl chloride (PVC) phononic plate with cross-like holes: numerical design and experimental verification.Q51054873
Ultrawide phononic band gap for combined in-plane and out-of-plane waves.Q51430787
Systematic design of phononic band-gap materials and structures by topology optimization.Q52014320
A fast and elitist multiobjective genetic algorithm: NSGA-IIQ56112663
Topological material layout in plates for vibration suppression and wave propagation controlQ57707072
Maximizing band gaps in plate structuresQ57707106
Complete band gaps in two-dimensional phononic crystal slabsQ79417131
Propagation of guided elastic waves in 2D phononic crystalsQ79782639
Plate-mode waves in phononic crystal thin slabs: mode conversionQ82277112
P921main subjectphononic crystalQ28972860
P304page(s)104-124
P577publication date2014-11-22
P1433published inUltrasonicsQ2456507
P1476titleNumerical study and topology optimization of 1D periodic bimaterial phononic crystal plates for bandgaps of low order Lamb waves.
P478volume57

Reverse relations

Q90640198Introducing Obliquely Perforated Phononic Plates for Enhanced Bandgap Efficiencycites workP2860

Search more.