Title :
Polymer film characterization using quartz resonators
Author :
Martin, Stephen J. ; Frye, Gregory C.
Author_Institution :
Sandia Nat. Lab., Albuquerque, NM, USA
Abstract :
The dynamic behavior and the electrical response of a thickness-shear mode resonator with a polymer film of a few microns thickness coating one face are considered. With glassy polymers, this film moves synchronously with the oscillating resonator surface; with rubbery polymers, the upper portions of the film lag behind the driven resonator-film interface, causing shear deformation of the film. Interesting dynamic film behavior results, notably a film resonance when the acoustic phase shift across the film is an odd multiple of π/2. This dynamic behavior influences the electrical response of the resonator due to the coupling between shear displacement and the electric field in the piezoelectric quartz. An equivalent circuit model is derived that relates the near-resonant electrical characteristics of a polymer-coated resonator to the film properties. Measurements made on a polyisobutylene-coated resonator were interpreted with the model to obtain the film´s sheer storage and loss moduli, giving good agreement with previously reported values. In addition, changes in resonant frequency and damping observed at film resonance agree with model predictions
Keywords :
crystal resonators; dielectric losses; equivalent circuits; polymer films; quartz; SiO2; acoustic phase shift; equivalent circuit model; glassy; loss moduli; oscillating resonator surface; piezoelectric quartz; polyisobutylene-coated resonator; polymer film; rubbery; shear deformation; sheer storage; thickness-shear mode resonator; Coatings; Coupling circuits; Damping; Electric variables; Equivalent circuits; Loss measurement; Piezoelectric films; Polymer films; Resonance; Resonant frequency;
Conference_Titel :
Ultrasonics Symposium, 1991. Proceedings., IEEE 1991
Conference_Location :
Orlando, FL
DOI :
10.1109/ULTSYM.1991.234193