DocumentCode :
1251768
Title :
Determination of the orthotropic elastic constants of thin PET film by an ultrasonic micro-spectrometer
Author :
Okabe, Yoji ; Takeda, Nobuo ; Yanaka, Masa-aki ; Tsukahara, Yusuke
Author_Institution :
Centre for Collaborative Res., Tokyo Univ., Japan
Volume :
46
Issue :
5
fYear :
1999
Firstpage :
1269
Lastpage :
1275
Abstract :
The elastic constants of a thin polyethylene terephthalate (PET) film, whose thickness was 12 /spl mu/m, were determined from the acoustic reflection coefficients. The reflection coefficients were measured by an ultrasonic micro-spectrometer (UMSM), and all of the elastic constants were obtained through the fitting of a theory to the dip points of the magnitude of the reflection constants where leaky Lamb waves were excited. As a result, the film was found to be an orthotropic material, and the observed elastic constants were consistent with those measured by tensile tests. Besides, the in-plane shear modulus was found to be much larger than the out-of-plane shear moduli. Then, the reflection coefficients were calculated using the obtained stiffness matrix. The calculated values reproduced not only the dip points but also the change in magnitude of measured reflection coefficients depending on the frequency and the incident angle. These agreements suggest that the stiffness matrix components were determined accurately.
Keywords :
acoustic microscopy; elastic constants; elastic moduli measurement; polymer films; shear modulus; surface acoustic waves; ultrasonic materials testing; ultrasonic measurement; ultrasonic reflection; 12 micron; acoustic reflection coefficients; dip points; in-plane shear modulus; leaky Lamb waves; nonlinear optimization; orthotropic elastic constants; out-of-plane shear moduli; stiffness matrix; thin polyethylene terephthalate film; ultrasonic micro-spectrometer; Acoustic measurements; Acoustic reflection; Anisotropic magnetoresistance; Frequency measurement; Optical films; Plastic films; Positron emission tomography; Surface acoustic waves; Thickness measurement; Ultrasonic variables measurement;
fLanguage :
English
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-3010
Type :
jour
DOI :
10.1109/58.796131
Filename :
796131
Link To Document :
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