À propos de cet article

Citez

Gadaud, P., Pautrot, S. (2004). Application of the dynamical flexural resonance technique to industrial materials characterisation. Materials Science and Engineering A, 370, 422-426. https://doi.org/10.1016/j.msea.2003.08.111 Search in Google Scholar

Schreiber, E., Anderson, O. L., Soga, N. (1974). Elastic Constants and Their Measurement. McGraw-Hill, ISBN 978-0070556034. Search in Google Scholar

ASTM. (2013). Standard Test Method for Dynamic Youngs Modulus, Shear Modulus, and Poissons Ratio for Advanced Ceramics by Sonic Resonance. Standard C1198-09. https://doi.org/10.1520/C1198-09 Search in Google Scholar

ASTM. (2001). Standard Test Method for Dynamic Youngs Modulus, Shear Modulus, and Poissons Ratio for Advanced Ceramics by Impulse Excitation of Vibration. Standard C1259-01. https://doi.org/10.1520/C1259-01 Search in Google Scholar

Jung, S., Kim, Y. T., Lee, Y. B., Shin, S. H., Kim, D., Kim, H. C. (2006). Measurement of the resonance frequency, the loss factor, and the dynamic young’s modulus in structural steel and polycarbonate by using an acoustic velocity sensor. Journal of the Korean Physical Society, 49, 1961-1966. Search in Google Scholar

Húlan, T., Obert, F., Ondruška, J., Štubňa, I., Trník, A. (2021). The sonic resonance method and the impulse excitation technique: A comparison study. Applied Sciences, 11 (22) 10802. https://doi.org/10.3390/app112210802 Search in Google Scholar

Chu, W. T. (1996). A comparison of two test methods for measuring Young’s modulus of building materials. Canadian Acoustics, 24 (3) 11. https://jcaa.caaaca.ca/index.php/jcaa/article/view/986 Search in Google Scholar

Štubňa, I., Trník, A., Vozár, L. (2011). Determination of Young’s modulus of ceramics from flexural vibration at elevated temperatures. Acta Acustica United with Acustica, 97 (1) 1-7. https://doi.org/10.3813/AAA.918380 Search in Google Scholar

Roebben, G., Bollen, B., Brebels, A., van Humbeeck, J., van der Biest, O. (1997). Impulse excitation apparatus to measure resonant frequencies, elastic moduli, and internal friction at room and high temperature. Review of Scientific Instruments, 68 (12), 4511-4515. https://doi.org/10.1063/1.1148422 Search in Google Scholar

Sakata, I., Kimura, K., Mizunuma, A. (1995). Measurement of elastic moduli from the impact sound of engineering ceramics and composites at elevated temperatures. Journal of the American Ceramic Society, 78 (11) 3040-3044. https://doi.org/10.1111/j.1151-2916.1995.tb09080.x Search in Google Scholar

Raggio, I., Etcheverry, J., Sánchez, G., Bonadeo, N. (2010). Error analysis of the impulse excitation of vibration measurement of acoustic velocities in steel samples. Physics Procedia, 3 (1) 297-303. https://doi.org/10.1016/j.phpro.2010.01.040 Search in Google Scholar

Inman, D. J. (2008). Engineering Vibration, Third Edition. Pearson, ISBN 978-0132281737. Search in Google Scholar

Húlan, T., Trník, A., Štubňa, I. (2014). The apparatus for measurement of Young’s modulus of ceramics at elevated temperatures. Bulletin of the Moscow State Regional University: Physics and Mathematics, 2, 21-29. Search in Google Scholar

Štubňa, I., Húlan, T., Trník, A., Vozár, L. (2018). Uncertainty in the determination of young’s modulus of ceramics using the impulse excitation technique at elevated temperatures. Acta Acustica United with Acustica, 104, 269-276. https://doi.org/10.3813/AAA.919169 Search in Google Scholar

MathWorks. (2022). Prominence. https://www.mathworks.com/help/signal/ug/prominence.html Search in Google Scholar

Húlan, T., Štubňa, I., Kaljuvee, T., Knapek, M. (2022). Young’s modulus of illitic clay in the temperature region of quartz transition. Journal of Thermal Anaysis and Calorimetry, 147, 7701-7707. https://doi.org/10.1007/s10973-021-11083-9 Search in Google Scholar

Pabst, W., Gregorová, E. (2013). Elastic properties of silica polymorphs - A review. Ceramics-Silikáty, 57 (3) 167-184. https://www.ceramicssilikaty.cz/2013/2013_03_167.htm Search in Google Scholar

eISSN:
1335-8871
Langue:
Anglais
Périodicité:
6 fois par an
Sujets de la revue:
Engineering, Electrical Engineering, Control Engineering, Metrology and Testing