The Effect of Barium on the Nuclear Radiation Shielding Capabilities of Nickel-Reinforced Borosilicate Glasses

被引:0
|
作者
Lina Sayed El-Ahll
E. Salama
H. A. Saudi
Huda A. Alazab
H. A. Abdel Ghany
机构
[1] The British University in Egypt (BUE),Basic Science Department, Faculty of Engineering
[2] Ain Shams University,Physics Department, Faculty of Women for Arts, Science and Education
[3] Al-Azhar University (Girls’ Branch),Physics Department, Faculty of Science
[4] Egyptian Atomic Energy Authority,undefined
来源
Silicon | 2022年 / 14卷
关键词
Mass attenuation coefficient; Effective atomic number; Build-up factor; Borosilicate glass; Radiation shielding; Fast neutron removal cross section;
D O I
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中图分类号
学科分类号
摘要
This study is carried out to predestine barium directly affects the shielding properties of the array of nickel-strengthened borosilicate glass composite. Accordingly, 20 Na2CO3–15 SiO2 - 5NiO - (60-x) H3BO3 - x BaCO3 glass system where (x = 0, 5,10, 20, 30) has been prepared by using the melt cooling method. The physical and gamma attenuation properties are studied both in practice and theoretically using Phy-X online software. The recorded patterns of XRD for the prepared samples confirmed its amorphous nature. The molar volume and mass density of the prepared glass is linearly increased with BaCO3 concentration. The coefficient of mass attenuation (μm) is directly proportional to BaCO3 concentration at all photon energies. Shielding parameters such as half-value layer (HVL), exposure build-up factor (EBF) up to 40 mfp penetration depth, effective atomic number (Zeff), at the energy range of 0.015–15 MeV, and the corresponding equivalent atomic number (Zeq) were investigated. Fast neutron removal cross-section of the low concentration of BaCO3 have a higher fast neutron removal cross-section than those doped previously prepared with a higher PbO mol%. The obtained results nominate the prepared glass composite for several shielding applications preferring the lead-free composites.
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页码:8909 / 8917
页数:8
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