Preview

Doklady BGUIR

Advanced search

Composite Materials of Epoxy Resin–W System for Radiation Shielding Against Gamma Radiation

https://doi.org/10.35596/1729-7648-2023-21-6-5-13

Abstract

Сomposite materials based on the epoxy resin–W system with varying W content (0–80 %) were obtained using the method of chemical curing. Microstructural investigations of the samples showed that with increasing W content there is a more uniform distribution of grains in the epoxy resin matrix could be observed. Agglomeration of W grains is noted for samples with filler content up to 40 %. Statistical analysis of the grain size of the initial W powder revealed that the probable diameter of W grains is 475 nm. The values of effective and relative densities of the experimental samples were obtained using the Archimedes method. The effective density varied from 1.16 to 4.36 g/cm3 with W powder content rising. The relative density values received ranged from 91 to 94 %, indica ting that there were no significant defects in the samples. X-ray diffraction analysis showed the presence of vcc-W and WO2 phases, indicating the oxidation of W in the thin surface layer of the powder. Calculation in Phy-X/PSD software allowed to evaluate the gamma radiation shielding efficiency for the epoxy resin–W system composite materials in 0.8–2.5 MeV energy range. It was observed that samples with filler content of 60 and 80 % were the most suitable for radiation shielding. It was found that the addition of W powder to the epoxy matrix contributed to the reduction of half attenuation layer values by 3.5 times from 9.448 to 2.672 cm for samples with 0 and 80 % W content, respectively, for 1.25 MeV radiation energy. The obtained results demonstrate the high efficiency of the proposed composite materials for shielding gamma radiation, which makes them a perspective candidate for manufacturing radiation shields.

About the Authors

A. A. Rotkovich
State Research and Production Association “Scientific and Practical Center of the National Academy of Sciences of Belarus for Materials Science”
Belarus

Rotkovich Anastasia Alexandrovna, Postgraduate, Junior Researcher at the Laboratory of Physics of Magnetic Films

220072, Minsk, P. Brovki St., 19

Tel.: +375 17 367-00-26



D. I. Tishkevich
State Research and Production Association “Scientific and Practical Center of the National Academy of Sciences of Belarus for Materials Science”
Belarus

Daria I. Tishkevich, Cand. of Sci., Associate Professor, Senior Researcher at the Laboratory of Physics of Magnetic Films

Minsk



S. A. German
State Research and Production Association “Scientific and Practical Center of the National Academy of Sciences of Belarus for Materials Science”; Belarusian National Technical University
Belarus

Stepan A. German, Laboratory Assistant at the Laboratory of Physics of Magnetic Films; Student

Minsk



A. A. Bondaruk
State Research and Production Association “Scientific and Practical Center of the National Academy of Sciences of Belarus for Materials Science”
Belarus

Anastasia A. Bondaruk, Postgraduate, Junior Researcher at the Laboratory of Physics of Magnetic Films

Minsk



S. V. Leonchik
State Research and Production Association “Scientific and Practical Center of the National Academy of Sciences of Belarus for Materials Science”
Belarus

Sergey V. Leonchik, Cand. of Sci., Head of the Laboratory of Refractory Ceramics and Nanomaterials

Minsk



E. S. Dashkevich
State Research and Production Association “Scientific and Practical Center of the National Academy of Sciences of Belarus for Materials Science”
Belarus

Elena S. Dashkevich, Researcher at the Laboratory of Physics of Magnetic Films

Minsk



V. M. Fedosyuk
State Research and Production Association “Scientific and Practical Center of the National Academy of Sciences of Belarus for Materials Science”
Belarus

Valery M. Fedosyuk, Corr. Member, Dr. of Sci. (Phys. and Math.), Professor, General Director

Minsk



A. V. Trukhanov
State Research and Production Association “Scientific and Practical Center of the National Academy of Sciences of Belarus for Materials Science”
Belarus

Alex V. Trukhanov, Dr. of Sci. (Phys. and Math.), Academician-Secretary of the Department of Chemistry and Geosciences of the NAS of Belarus, Senior Researcher at the Laboratory of Magnetic Film Physics

Minsk



References

1. Hou Y., Li M., Gu Y., Yang Z. (2017) Gamma Ray Shielding Property of Tungsten Powder Modified Continuous Basalt Fiber Reinforced Epoxy Matrix Composites. Polymer Composites. 39, 2106–2115.

2. Wani A. L., Ara A., Usmani J. A. (2015) Lead Toxicity: a Review. Interdiscip Toxicol. 8 (2), 55–64.

3. Trukhanov A. V., Tishkevich D. I., Podgornaya S. V., Kaniukov E., Darwish M. A., Zubar T. I., Timofeev A. V., Trukhanova E. L., Kostishin V. G., Trukhanov S. V. (2022) Impact of the Nanocarbon on Magnetic and Electrodynamic Properties of the Ferrite/Polymer Composites. Nanomaterials. 12, 868.

4. Lozitsky O. V., Vovchenko L. L., Matzui L. Y., Oliynyk V. V., Zagorodnii V. V. (2020) Microwave Properties of Epoxy Composites with Mixed Fller Carbon Nanotubes / BaTiO3. Applied Nanoscience. 10, 2759–2767.

5. Mohammed J. R., Salman M., Jubier N. J., Salim A. A. (2021) Improved Gamma Radiation Shielding Traits of Epoxy Composites: Evaluation of Mass Attenuation Coefficient, Effective Atomic and Electron Number. Radiation Physics and Chemistry. 179, 109183.

6. Tishkevich D. I., Zubar T. I., Zhaludkevich A. L., Razanau I. U., Vershinina T. N., Bondaruk A. A., Zheleznova E. K., Dong M., Hanfi M. Y., Sayyed M. I., Silibin M. V., Trukhanov S. V., Trukhanov A. V. (2022) Isostatic Hot Pressed W–Cu Composites with Nanosized Grain Boundaries: Microstructure, Structure and Radiation Shielding Efficiency against Gamma Rays. Nanomaterials. 12, 1642.

7. Verdipoor K., Alemi A., Mesbahi A. (2018) Photon Mass Attenuation Coefficients of a Silicon Resin Loaded with WO3, PbO, and Bi2O3 Micro and Nano-Particles for Radiation Shielding. Radiation Physics and Chemistry. 147, 85–90.

8. Crawley A. F. (1974) Densities of Liquid Metals and Alloys. International Metallurgical Reviews. 19 (1), 32–48.


Review

For citations:


Rotkovich A.A., Tishkevich D.I., German S.A., Bondaruk A.A., Leonchik S.V., Dashkevich E.S., Fedosyuk V.M., Trukhanov A.V. Composite Materials of Epoxy Resin–W System for Radiation Shielding Against Gamma Radiation. Doklady BGUIR. 2023;21(6):5-13. (In Russ.) https://doi.org/10.35596/1729-7648-2023-21-6-5-13

Views: 220


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 1729-7648 (Print)
ISSN 2708-0382 (Online)