Most media have viscosity and are therefore not ideal media when sound propagates in such media there is always thermal consumption of energy caused by viscosity.
Acoustic attenuation of porous ceramics.
Aluminium rigid frame porous material ceramics and polymers.
Us9068346b1 acoustic attenuators based on porous nanostructured materials google.
A new application of porous ceramics as the attenuative backing element in high temperature transducers is introduced.
Rigid frame porous material acoustic attenuation on compressor discharge.
Characteristic attenuation exhibited by granular materials over an extended frequency range.
After choose the appropriate type of passive noise control we have to characterize it find the best model and parameters and optimize it according to the application.
The elastic wave propagation in piezoelectric ceramics with pore volume fractions up to 0 6 has been investigated.
Moreover issues of cau sality and pulse propagation in porous materials which have to be handled in the time domain are not readily addressed within the pseudo harmonic framework of the biot stoll theory.
By introducing pores of different volume fractions and various sizes into the.
The invention is directed to a porous acoustic attenuating composition wherein the composition comprises a nanostructured material and wherein the composition exhibits acoustic transmission loss ranging from 20 to 60 db cm thickness of the composition.