Experimental investigation of radiation shielding competence of bi2 o3-cao-k2 o-na2 o-p2 o5 glass systems

42Citations
Citations of this article
25Readers
Mendeley users who have this article in their library.

Abstract

The gamma-ray shielding features of Bi2 O3-CaO-K2 O-Na2 O-P2 O5 glass systems were experimentally reported. The mass attenuation coefficient (MAC) for the fabricated glasses was experimentally measured at seven energy values (between 0.0595 and 1.33 MeV). The compatibility between the practical and theoretical results shows the accuracy of the results obtained in the laboratory for determining the MAC of the prepared samples. The mass and linear attenuation coefficients (MACs) increase with the addition of Bi2 O3 and A4 glass possesses the highest MAC and LAC. A downward trend in the linear attenuation coefficient (LAC) with increasing the energy from 0.0595 to 1.33 MeV is found. The highest LAC is found at 1.33 MeV (in the range of 0.092–0.143 cm−1 ). The effective atomic number (Zeff ) follows the order B1 > A1 > A2 > A3 > A4. This order emphasizes that increasing the content of Bi2 O3 has a positive effect on the photon shielding proficiencies owing to the higher density of Bi2 O3 compared with Na2 O. The half value layer (HVL) is also determined and the HVL for the tested glasses is computed between 0.106 and 0.958 cm at 0.0595 MeV. The glass with 10 mol% of Bi2 O3 has lower HVL than the glasses with 0, 2.5, 5, and 7.5 mol% of Bi2 O3 . So, the A4 glass needs a smaller thickness than the other glasses to shield the same radiation. As a result of the reported shielding parameters, inserting B2 O3 provides lower values of these three parameters, which in turn leads to the development of superior photons shields.

Cite

CITATION STYLE

APA

Aloraini, D. A., Almuqrin, A. H., Sayyed, M. I., Al-Ghamdi, H., Kumar, A., & Elsafi, M. (2021). Experimental investigation of radiation shielding competence of bi2 o3-cao-k2 o-na2 o-p2 o5 glass systems. Materials, 14(17). https://doi.org/10.3390/ma14175061

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free