Title :
Elastic properties of dentin bonding agents using bulk acoustic waves
Author :
Zaitsev, B.D. ; Joshi, S.G. ; Dhuru, V.B.
Author_Institution :
EECE Dept., Marquette Univ., Milwaukee, WI, USA
Abstract :
Describes the use of bulk acoustic waves to measure elastic and viscous properties of thin dental resin films. Our initial experiments have utilized a 7.3 MHz bulk longitudinal wave resonator fabricated on a Z-cut lithium niobate plate. At first, the frequency dependence of resonator impedance (without resin coating) was measured. This was used to determine effective material constants of the resonator by performing a least-squares fit of measured data with theoretically calculated values. One surface of the resonator was then coated with a thin film of the resin under study. The effect of the coating is to lower the resonant frequency and the quality factor of the resonator. The change in these parameters can be used to calculate the elastic constant C11 and viscosity constant η11 of the resin film. The elastic constant C44 and η44 were similarly determined using a shear wave resonator fabricated on an X-cut lithium niobate plate. Our measurements indicate that mechanical properties of the resin film are a function of the film thickness. Possible reasons for this behavior are discussed. The techniques described here allow one to determine the mechanical properties of dentin resin films. This information is essential in order to understand the clinical behavior of these materials
Keywords :
biomechanics; elastic constants; elastic moduli measurement; polymer films; prosthetics; ultrasonic materials testing; viscoelasticity; viscosity; viscosity measurement; 7.3 MHz; LiNbO3; X-cut LiNbO3 plate; Z-cut LiNbO3 plate; bulk acoustic waves; bulk longitudinal wave resonator; clinical behavior; effective material constants; elastic constant; elastic properties; film thickness; frequency dependence; least-squares fit; mechanical properties; quality factor; resin coating; resonant frequency; resonator impedance; shear wave resonator; thin dental resin films; viscosity constant; viscous properties; Acoustic measurements; Acoustic waves; Bonding; Coatings; Dentistry; Film bulk acoustic resonators; Lithium niobate; Mechanical factors; Resins; Time of arrival estimation;
Conference_Titel :
Ultrasonics Symposium, 1997. Proceedings., 1997 IEEE
Conference_Location :
Toronto, Ont.
Print_ISBN :
0-7803-4153-8
DOI :
10.1109/ULTSYM.1997.663098