Mechanical and Gamma Ray Absorption Behavior of PbO‐WO3‐Na2O‐MgO‐B2O3 Glasses in the Low Energy Range
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2021
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Abstract
The Makishima and Mackenzie model has been used to determine the mechanical prop
erties of the PbO‐WO3‐Na2O‐MgO‐B2O3 glass system. The number of bonds per unit volume of the
glasses (nb) increases from 9.40 × 1022 to 10.09 × 1022 cm−3 as the PbO content increases from 30 to 50
mol%. The Poisson’s ratio (σ) for the examined glasses falls between 0.174 and 0.210. The value of
the fractal bond connectivity (d) for the present glasses ranges from 3.08 to 3.59. Gamma photon
and fast neutron shielding parameters were evaluated via Phy‐X/PSD, while that of electrons were
calculated via the ESTAR platform. Analysis of the parameters showed that both photon and elec
tron attenuation ability improve with the PbO content. The fast neutron removal cross section of the
glasses varies from 0.094–0.102 cm−1 as PbO molar content reduced from 50–30 mol%. Further anal
ysis of shielding parameters of the investigated glass system showed that they possess good poten
tial to function in radiation protection applications.
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Almuqrin, A. H., Albarzan, B., Olarinoye, I. O., Kumar, A., Alwadai, N., & Sayyed, M. I. (2021). Mechanical and Gamma Ray Absorption Behavior of PbO - WO3 - Na2O – MgO - B2O3 Glasses in the Low Energy Range. Materials, 14(13), 3466.