AbstractThe Bleustein–Gulyaev (B–G) wave in piezoelectric materials of orthorhombic mm2 crystal class is reported to be a promising candidate for application to liquid sensing. In this work we present a rigorous quantitative investigation of the propagation of B–G wave in mm2 crystals in contact with a viscous liquid. An inversion algorithm is formulated to determine the liquid viscosity from the wave speed and attenuation data. Numerical results and discussions are given for potassium niobate (KNbO3). The inversion results demonstrate that the liquid viscosity can be successfully determined from wave propagation characteristics
AbstractResonant piezoelectric sensors based on bulk acoustic wave (BAW) thickness shear resonators ...
In the previous year, results were presented in which the viscosity of calibration liquids were dete...
It is demonstrated that an AT-cut quartz crystal driven in the thickness-shear-wave mode and typical...
AbstractThe Bleustein–Gulyaev (B–G) wave in piezoelectric materials of orthorhombic mm2 crystal clas...
AbstractThe influence of a viscous liquid on acoustic waves propagating in elastic or piezoelectric ...
AbstractIn this paper, we analyze the propagation of Bleustein–Gulyaev waves in an unbounded piezoel...
A concept of accurate liquid viscosity sensing, using bulk acoustic wave (BAW) resonators, is propos...
A general theory of the interaction of acoustic waves at the interface between a piezoelectric cryst...
A general theory of the interaction of acoustic waves at the interface between a piezoelectric cryst...
A general theory of the interaction of acoustic waves at the interface between a piezoelectric cryst...
Recently, attention has been focused on investigating rapid, sensitive acoustic wave sensors which a...
AbstractResonant piezoelectric sensors based on bulk acoustic wave (BAW) thickness shear resonators ...
A concept of accurate liquid viscosity sensing, using bulk acoustic wave (BAW) resonators, is propos...
AbstractPhysical fluid parameters like viscosity, mass density and sound velocity can be determined ...
In recent years, surface acoustic wave devices used in bio-sensing applications have demonstrated hi...
AbstractResonant piezoelectric sensors based on bulk acoustic wave (BAW) thickness shear resonators ...
In the previous year, results were presented in which the viscosity of calibration liquids were dete...
It is demonstrated that an AT-cut quartz crystal driven in the thickness-shear-wave mode and typical...
AbstractThe Bleustein–Gulyaev (B–G) wave in piezoelectric materials of orthorhombic mm2 crystal clas...
AbstractThe influence of a viscous liquid on acoustic waves propagating in elastic or piezoelectric ...
AbstractIn this paper, we analyze the propagation of Bleustein–Gulyaev waves in an unbounded piezoel...
A concept of accurate liquid viscosity sensing, using bulk acoustic wave (BAW) resonators, is propos...
A general theory of the interaction of acoustic waves at the interface between a piezoelectric cryst...
A general theory of the interaction of acoustic waves at the interface between a piezoelectric cryst...
A general theory of the interaction of acoustic waves at the interface between a piezoelectric cryst...
Recently, attention has been focused on investigating rapid, sensitive acoustic wave sensors which a...
AbstractResonant piezoelectric sensors based on bulk acoustic wave (BAW) thickness shear resonators ...
A concept of accurate liquid viscosity sensing, using bulk acoustic wave (BAW) resonators, is propos...
AbstractPhysical fluid parameters like viscosity, mass density and sound velocity can be determined ...
In recent years, surface acoustic wave devices used in bio-sensing applications have demonstrated hi...
AbstractResonant piezoelectric sensors based on bulk acoustic wave (BAW) thickness shear resonators ...
In the previous year, results were presented in which the viscosity of calibration liquids were dete...
It is demonstrated that an AT-cut quartz crystal driven in the thickness-shear-wave mode and typical...