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Czasopismo
2007 | Vol. 37, nr 3 | 313-322
Tytuł artykułu

Web camera-enabled material research: an acoustooptic example.

Wybrane pełne teksty z tego czasopisma
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The applicability of standard PC web cameras to material testing has been discussed. A simple method for measuring the acoustic velocity and attenuation of transparent solid materials has been described as an illustrative example. It is based on the acoustooptic diffraction in the Raman-Nath limit and a digital readout and processing of the information obtained. Acceptable accuracy of the results is achieved. The method is particularly suitable for very quick testing of high loss materials.
Wydawca

Czasopismo
Rocznik
Strony
313-322
Opis fizyczny
Bibliogr. 15 poz.
Twórcy
autor
autor
  • Sofia University, Faculty of Physics, department of solid State Physics and Microelectronics 5 J. Bourchier Blvd., 1164 Sofia, Bulgaria
Bibliografia
  • [1] LEGAULT T., www.astrophoto.fr/ccd_video.html.
  • [2] STACH J., BRUNDAGE T., HANNIGAN B., BRADLEY B., KIRK T., BRUNK H., Use of Web cameras for watermark detection, Proceedings of the SPIE 4675, 2002, pp. 611–20.
  • [3] KWON Y., RAUNIAR S., CHIOU R., SOSA H., Remote control of quality using Ethernet vision and Web-enabled robotic system, Concurrent Engineering Research and Applications 14(1), 2006, pp. 35–42.
  • [4] STEGEMAN G.I., Optical probing of surface waves and surface wave devices, IEEE Transactions on Sonics and Ultrasonics SU-23(1), 1976, pp. 33–63.
  • [5] TUCKER J., RAMPTON V., Microwave Ultrasonics in Solid State Physics, North Holland 1972, Chapter 9.
  • [6] GUSEV O., KLUDZIN V., Acoustooptical Measurements, Edition of the University of Leningrad 1987, Chapter 1 (in Russian).
  • [7] DIEULESAINT E., ROYER D., Ondes Elastiques dans les Solides: Application au Traitement du Signal, Masson, Paris 1974; (Elastic Waves in Solids: Application to Signal Processing, Wiley, New York 1980), Chapter 8.
  • [8] KALININA A.S., PIROZERSKI A.L., CHARNAYA E.V., VASILIEV M.I., LEBEDEVA E.L., Acoustooptic studies of ionic mobility in photochromic glasses, Proceedings of the XVIII Session of the Russian Acoustical Society, 2006, pp. 22–5.
  • [9] AKIYAMA H., SASAKI O., SUZUKI T., Sinusoidal wavelength-scanning interferometer using an acousto-optic tunable filter for measurement of thickness and surface profile of a thin film, Optics Express 13(25), 2005, pp. 10066–74.
  • [10] ZEMP R., KIM C., WANG L., Ultrasound-modulated optical tomography with intense acoustic bursts, Applied Optics 46(10), 2007, pp. 1615–23.
  • [11] ELBAUM R., CHICK B., Ultrasonic Methods in Solid State Physics, Academic 1969, Chapter 2.
  • [12] RAUM K, BRANDT J., Simultaneous determination of acoustic impedance, longitudinal and lateral wave velocities for the characterization of the elastic microstructure of cortical bone, Proceedings of the World Congress on Ultrasonics 2003, Paris 2003, pp. 321–4.
  • [13] AZZALI M., RUGGINI C., TIZZI R., Investigation on the ability of Tursiops truncatus to discriminate, recognise and classify geometric shapes using visual and/or acoustic perception, Proceedings of the 13th Annual Conference of the European Cetacean Society, 1999, pp. 51–9.
  • [14] CARLSON J., VAN DEVENTER J., SCOLAN A., CARLANDER C., Frequency and temperature dependence of acoustic properties of polymers used in pulse-echo systems, 2003 IEEE Ultrasonics Symposium, pp. 885–8 .
  • [15] MASON W., MCSKIMIN H., Attenuation and scattering of high frequency sound waves in metals and glasses, Journal of the Acoustical Society of America 19(3), 1947, pp. 464–73.
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
bwmeta1.element.baztech-article-BPW9-0004-0102
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