Research Article

Performance of PMMA/Ta2O5 Composites as Medical Radiation Shielding: WinXCom and MCNP6 Studies

Volume: 10 Number: 4 December 31, 2024
EN

Performance of PMMA/Ta2O5 Composites as Medical Radiation Shielding: WinXCom and MCNP6 Studies

Abstract

The growing reliance on radiation in contemporary applications underscores the imperative to safeguard individuals and the environment from harmful consequences. To mitigate the adverse effects of radiation, polymer composites have begun to garner interest from researchers as potential lead-free shielding materials, largely due to their distinctive attributes, including flexibility, lightness, and environmental benignity. In this study, the gamma radiation shielding capacity of polymethyl methacrylate (PMMA) composites reinforced with varying proportions of Ta₂O₅ (5%, 10%, and 20% wt) was investigated through the utilization of Windows version of photon cross sections on a personal computer (WinXCom) software and the Monte Carlo N-Particle 6 (MCNP6) code. The alignment of the WinXCom and MCNP6 results, despite their different methodologies, provides a robust and reliable understanding of the radiation shielding performance of these composites. The present study investigated the radiation attenuation properties of PMMA/Ta₂O₅ composites about shielding coefficients, including mass attenuation coefficients (MAC), half-value layer (HVL), and effective atomic number (Zeff). The findings indicated that all composites demonstrated enhanced shielding performance compared to pure PMMA. The PMMA/20% Ta₂O₅ composite exhibited MAC values of 1.22-, 1.29-, and 1.28-fold greater than those observed in the silicon-based composites. The MAC increase was observed in the PMMA/20% Ta₂O₅ composite at an energy of 81 keV. The PMMA/20% Ta₂O₅ composite demonstrated the most effective radiation shielding properties. In light of these findings, the PMMA/20% Ta₂O₅ composite can be regarded as a flexible, lightweight, and environmentally friendly shielding material, reassuring these composites' reliability in practical applications.

Keywords

References

  1. M. Çağlar, H. Kayacık, Y. Karabul, M. Kılıç, Z. G. Özdemir, O. İçelli, Na2Si3O7/BaO composites for the gamma-ray shielding in medical applications: Experimental, MCNP5, and WinXCom studies, Progress in Nuclear Energy 117 (2019) 103119 11 pages.
  2. T. Özdemir, A. Güngör, I. K. Akbay, H. Uzun, Y. Babucçuoglu, Nano lead oxide and EPDM composite for development of polymer-based radiation shielding material: Gamma irradiation and attenuation tests, Radiation Physics and Chemistry 144 (2018) 248–255.
  3. M. A. Hosseini, S. Malekie, F. Kazemi, Experimental evaluation of gamma radiation shielding characteristics of polyvinyl alcohol/tungsten oxide composite: A comparison study of micro and nano sizes of the fillers, Nuclear Instruments and Methods in Physics Research Section A 1026 (2022) 166214 6 pages.
  4. M. E. Mahmoud, A. M. El-Khatib, M. S. Badawi, A. R. Rashad, R. M. El-Sharkawy, A. A. Thabet, Fabrication, characterization and gamma rays shielding properties of nano and micro lead oxide-dispersed-high density polyethylene composites, Radiation Physics and Chemistry 145 (2018) 160–173.
  5. H. Wang, H. Zhang, Y. Su, T. Liu, H. Yu, Y. Yang, X. Li, B. Guo, Preparation and radiation shielding properties of Gd2O3/PEEK composites, Polymer Composites 36 (2015) 651–659.
  6. S. Chen, S. Nambiar, Z. Li, E. Osei, J. Darko, W. Zheng, Z. Sun, P. Liu, J. T. W. Yeow, Bismuth oxide-based nanocomposite for high-energy electron radiation shielding, Journal of Material Science 54 (2019) 3023– 3034.
  7. T. Bel, C. Arslan, N. Baydogan, Radiation shielding properties of poly (methyl methacrylate)/colemanite composite for the use in mixed irradiation fields of neutrons and gamma rays, Materials Chemistry and Physics 221 (2019) 58–67.
  8. D. Cao, Y. Ge, M. Bourham, D. Moneghan, Gamma radiation shielding properties of poly (methyl methacrylate)/Bi2O3 composites, Nuclear Engineering and Technology 52 (11) (2020) 2613–2619.

Details

Primary Language

English

Subjects

Medical Physics, Radiation Technology

Journal Section

Research Article

Publication Date

December 31, 2024

Submission Date

October 2, 2024

Acceptance Date

December 10, 2024

Published in Issue

Year 2024 Volume: 10 Number: 4

APA
Çağlar, M. (2024). Performance of PMMA/Ta2O5 Composites as Medical Radiation Shielding: WinXCom and MCNP6 Studies. Journal of Advanced Research in Natural and Applied Sciences, 10(4), 913-921. https://doi.org/10.28979/jarnas.1559903
AMA
1.Çağlar M. Performance of PMMA/Ta2O5 Composites as Medical Radiation Shielding: WinXCom and MCNP6 Studies. JARNAS. 2024;10(4):913-921. doi:10.28979/jarnas.1559903
Chicago
Çağlar, Mustafa. 2024. “Performance of PMMA Ta2O5 Composites As Medical Radiation Shielding: WinXCom and MCNP6 Studies”. Journal of Advanced Research in Natural and Applied Sciences 10 (4): 913-21. https://doi.org/10.28979/jarnas.1559903.
EndNote
Çağlar M (December 1, 2024) Performance of PMMA/Ta2O5 Composites as Medical Radiation Shielding: WinXCom and MCNP6 Studies. Journal of Advanced Research in Natural and Applied Sciences 10 4 913–921.
IEEE
[1]M. Çağlar, “Performance of PMMA/Ta2O5 Composites as Medical Radiation Shielding: WinXCom and MCNP6 Studies”, JARNAS, vol. 10, no. 4, pp. 913–921, Dec. 2024, doi: 10.28979/jarnas.1559903.
ISNAD
Çağlar, Mustafa. “Performance of PMMA Ta2O5 Composites As Medical Radiation Shielding: WinXCom and MCNP6 Studies”. Journal of Advanced Research in Natural and Applied Sciences 10/4 (December 1, 2024): 913-921. https://doi.org/10.28979/jarnas.1559903.
JAMA
1.Çağlar M. Performance of PMMA/Ta2O5 Composites as Medical Radiation Shielding: WinXCom and MCNP6 Studies. JARNAS. 2024;10:913–921.
MLA
Çağlar, Mustafa. “Performance of PMMA Ta2O5 Composites As Medical Radiation Shielding: WinXCom and MCNP6 Studies”. Journal of Advanced Research in Natural and Applied Sciences, vol. 10, no. 4, Dec. 2024, pp. 913-21, doi:10.28979/jarnas.1559903.
Vancouver
1.Mustafa Çağlar. Performance of PMMA/Ta2O5 Composites as Medical Radiation Shielding: WinXCom and MCNP6 Studies. JARNAS. 2024 Dec. 1;10(4):913-21. doi:10.28979/jarnas.1559903

Cited By

 

 

 

TR Dizin 20466
 

 

SAO/NASA Astrophysics Data System (ADS)    34270

                                                   American Chemical Society-Chemical Abstracts Service CAS    34922 

 

DOAJ 32869

EBSCO 32870

Scilit 30371                        

SOBİAD 20460

 

29804 JARNAS is licensed under a Creative Commons Attribution-NonCommercial 4.0 International Licence (CC BY-NC).