Correlation between some physical properties for tri-component tellurite glasses and low temperature ultrasonic relaxation

Theoretical analysis of ultrasonic wave absorption and elastic moduli for TeO2-V2O5-Sm2O3 glass system is presented. A correlation between low temperature ultrasonic relaxation parameters and other physical (elastic) properties for this glass system was achieved according to a model presented by Bri...

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Main Authors: M. A. SIDKEY, N.S. Abd El AAL, L. Abd El LATIF, A. Abd El MONEIM
Format: Article
Language:English
Published: Institute of Fundamental Technological Research Polish Academy of Sciences 2001-01-01
Series:Archives of Acoustics
Online Access:https://acoustics.ippt.pan.pl/index.php/aa/article/view/411
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author M. A. SIDKEY
N.S. Abd El AAL
L. Abd El LATIF
A. Abd El MONEIM
author_facet M. A. SIDKEY
N.S. Abd El AAL
L. Abd El LATIF
A. Abd El MONEIM
author_sort M. A. SIDKEY
collection DOAJ
description Theoretical analysis of ultrasonic wave absorption and elastic moduli for TeO2-V2O5-Sm2O3 glass system is presented. A correlation between low temperature ultrasonic relaxation parameters and other physical (elastic) properties for this glass system was achieved according to a model presented by Bridge and Patel. Correlation coefficients greater than 96% were obtained indicating that correlations between ultrasonic attenuation and activation energy at low temperatures and the bulk modulus of this glass system at room - temperature (through the two crucial structural parameters, number of anions and anion-cation force) exist.
format Article
id doaj-art-67d2158426d8456880820a486dfef698
institution DOAJ
issn 0137-5075
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language English
publishDate 2001-01-01
publisher Institute of Fundamental Technological Research Polish Academy of Sciences
record_format Article
series Archives of Acoustics
spelling doaj-art-67d2158426d8456880820a486dfef6982025-08-20T02:39:23ZengInstitute of Fundamental Technological Research Polish Academy of SciencesArchives of Acoustics0137-50752300-262X2001-01-01264Correlation between some physical properties for tri-component tellurite glasses and low temperature ultrasonic relaxationM. A. SIDKEY0N.S. Abd El AAL1L. Abd El LATIF2A. Abd El MONEIM3National Institute for StandardsNational Institute for StandardsNational Institute for StandardsPhysics Department Faculty of Science, Zagazig UniversityTheoretical analysis of ultrasonic wave absorption and elastic moduli for TeO2-V2O5-Sm2O3 glass system is presented. A correlation between low temperature ultrasonic relaxation parameters and other physical (elastic) properties for this glass system was achieved according to a model presented by Bridge and Patel. Correlation coefficients greater than 96% were obtained indicating that correlations between ultrasonic attenuation and activation energy at low temperatures and the bulk modulus of this glass system at room - temperature (through the two crucial structural parameters, number of anions and anion-cation force) exist.https://acoustics.ippt.pan.pl/index.php/aa/article/view/411
spellingShingle M. A. SIDKEY
N.S. Abd El AAL
L. Abd El LATIF
A. Abd El MONEIM
Correlation between some physical properties for tri-component tellurite glasses and low temperature ultrasonic relaxation
Archives of Acoustics
title Correlation between some physical properties for tri-component tellurite glasses and low temperature ultrasonic relaxation
title_full Correlation between some physical properties for tri-component tellurite glasses and low temperature ultrasonic relaxation
title_fullStr Correlation between some physical properties for tri-component tellurite glasses and low temperature ultrasonic relaxation
title_full_unstemmed Correlation between some physical properties for tri-component tellurite glasses and low temperature ultrasonic relaxation
title_short Correlation between some physical properties for tri-component tellurite glasses and low temperature ultrasonic relaxation
title_sort correlation between some physical properties for tri component tellurite glasses and low temperature ultrasonic relaxation
url https://acoustics.ippt.pan.pl/index.php/aa/article/view/411
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AT labdellatif correlationbetweensomephysicalpropertiesfortricomponenttelluriteglassesandlowtemperatureultrasonicrelaxation
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