Get 20M+ Full-Text Papers For Less Than $1.50/day. Start a 7-Day Trial for You or Your Team.

Learn More →

Gamma-ray shielding and mechanical characteristics of iron-doped lead phosphosilicate glasses

Gamma-ray shielding and mechanical characteristics of iron-doped lead phosphosilicate glasses Iron-doped lead phosphosilicate glasses were synthetic by the technique of melting quenching. The status of glasses were determined using XRD diffractometer methodology. The glass system’s molar volume decreases as density rises. The mechanical and radiation properties of the current glass sample are determined by its structure. The elastic modulus and ultrasonic velocities of these glasses are higher. The radiation shielding properties were investigated using Phy-X / PSD. MAC values are positively affected by increases in the Fe2O3 ratio. The HVL value for G 1 is the maximum, whereas G 5 is the lowest. As the Fe2O3 content increased, energy absorption and exposure buildup factor (EABF) & (EBF) values increased. As a result, G5 glasses have the best shielding capacity of all the glasses. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Silicon Springer Journals

Gamma-ray shielding and mechanical characteristics of iron-doped lead phosphosilicate glasses

Silicon , Volume 14 (14) – Sep 1, 2022

Loading next page...
 
/lp/springer-journals/gamma-ray-shielding-and-mechanical-characteristics-of-iron-doped-lead-8d0v477luW

References (54)

Publisher
Springer Journals
Copyright
Copyright © The Author(s), under exclusive licence to Springer Nature B.V. 2022
ISSN
1876-990X
eISSN
1876-9918
DOI
10.1007/s12633-022-01702-x
Publisher site
See Article on Publisher Site

Abstract

Iron-doped lead phosphosilicate glasses were synthetic by the technique of melting quenching. The status of glasses were determined using XRD diffractometer methodology. The glass system’s molar volume decreases as density rises. The mechanical and radiation properties of the current glass sample are determined by its structure. The elastic modulus and ultrasonic velocities of these glasses are higher. The radiation shielding properties were investigated using Phy-X / PSD. MAC values are positively affected by increases in the Fe2O3 ratio. The HVL value for G 1 is the maximum, whereas G 5 is the lowest. As the Fe2O3 content increased, energy absorption and exposure buildup factor (EABF) & (EBF) values increased. As a result, G5 glasses have the best shielding capacity of all the glasses.

Journal

SiliconSpringer Journals

Published: Sep 1, 2022

Keywords: Fe2O3; Elastic moduli; Shielding; EBF/EABF

There are no references for this article.