Abstract

This study not only provides an innovative technique for producing rigid polyurethane foam (RPUF) composites, but it also offers a way to reuse metallurgical solid waste. Rigid polyurethane (RPUF) composite samples have been prepared with different proportions of iron slag as additives, with a range of 0–25% mass by weight. The process of grinding iron slag microparticles into iron slag nanoparticles powder was accomplished with the use of a high-energy ball mill. The synthesized samples have been characterized using Fourier Transform Infrared Spectroscopy, and Scanning Electron Microscope. Then, their radiation shielding properties were measured by using A hyper-pure germanium detector using point sources 241Am, 133 BA, 152 EU, 137Cs, and 60Co, with an energy range of 0.059–1.408 MeV. Then using Fluka simulation code to validate the results in the energy range of photon energies of 0.0001–100 MeV. The linear attenuation coefficient, mass attenuation coefficient, mean free path, half-value layer and tenth-value layer, were calculated to determine the radiation shielding characteristics of the composite samples. The calculated values are in good agreement with the calculated values. The results of this study showed that the gamma-ray and neutron attenuation parameters of the studied polyurethane composite samples have improved. Moreover, the effect of iron slag not only increases the gamma-ray attenuation shielding properties but also enhances compressive strength and the thermal stability. Which encourages us to use polyurethane iron-slag composite foam in sandwich panel manufacturing as walls to provide protection from radiation and also heat insulation.

Details

Title
Polyurethane reinforced with micro/nano waste slag as a shielding panel for photons (experimental and theoretical study)
Author
El-Khatib, Ahmed M. 1 ; Abbas, Mahmoud I. 1 ; Mahmoud, Mohamed E. 2 ; Fayez-Hassan, Mohammed 3 ; Khalil, Mamdouh H. 4 ; Abd El Aal, Ahmed 5 

 Alexandria University, Physics Department, Faculty of Science, Alexandria, Egypt (GRID:grid.7155.6) (ISNI:0000 0001 2260 6941) 
 Alexandria University, Chemistry Department, Faculty of Science, Ibrahimia, Alexandria, Egypt (GRID:grid.7155.6) (ISNI:0000 0001 2260 6941) 
 Egyptian Atomic Energy Authority, Experimental Nuclear Physics, Nuclear Research Center, Inshas, Cairo, Egypt (GRID:grid.429648.5) (ISNI:0000 0000 9052 0245) 
 Alex Steel, Alexandria, Egypt (GRID:grid.429648.5) 
 Alex Form, Alexandria, Egypt (GRID:grid.429648.5) 
Pages
10548
Publication year
2024
Publication date
2024
Publisher
Nature Publishing Group
e-ISSN
20452322
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
3052295842
Copyright
© The Author(s) 2024. This work is published under http://creativecommons.org/licenses/by/4.0/ (the “License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License.