Superiority of micro/nano tungsten carbide reinforced poly-methyl methacrylate composites in shielding gamma radiation

被引:8
作者
El-Khatib, Ahmed M. [1 ]
Alabsy, Mahmoud T. [1 ]
El-Khatib, Alaa Y. [1 ]
Dib, Mirvat F. [1 ]
Abbas, Mahmoud I. [1 ]
机构
[1] Alexandria Univ, Fac Sci, Phys Dept, Alexandria 21511, Egypt
关键词
Micro tungsten carbide; Nano tungsten carbide; Poly methyl methacrylate; Radiation shielding; Gamma attenuation; HIGH-DENSITY POLYETHYLENE; OXIDE;
D O I
10.1016/j.net.2024.05.013
中图分类号
TL [原子能技术]; O571 [原子核物理学];
学科分类号
0827 ; 082701 ;
摘要
This research aimed to develop lead-free polymer composites based on poly-methyl methacrylate (PMMA) and embedded with tungsten carbide (WC) micro and nanoparticles for use in radiation protection applications. PMMA was filled with 20 %, 40 %, and 60 % by weight of WC micro- and nanoparticles. The shielding features of the proposed polymer mixtures were evaluated at different radioactive sources of different energies using the HPGe detector. The results revealed that the investigated composites containing micro and nano-structured WC particles showed superior radiation shielding at 81 key due to the K-edge of the W element occurring at 69.5 key. The findings also demonstrated that composites loaded with WC nanoparticles were more effective in shielding gamma radiation than those loaded with WC microparticles, even at the same filler wt.%. Furthermore, the sample containing 60 % by weight of nano-WC, coded as P-60nWC, had superior shielding performance than other polymer-based composites reported in the literature. Thus, the proposed nano-WC/PMMA composites can be effectively employed in radiation facilities as alternative environmentally and lead-free radiation shielding materials to protect people and the environment from the harmful risks of gamma radiation.
引用
收藏
页码:4103 / 4114
页数:12
相关论文
共 58 条
[11]   Nuclear design of an integrated small modular reactor based on the APR-1400 for RO desalination purposes [J].
Alnuaimi, Reem Rashed ;
Khuwaileh, Bassam ;
Zubair, Muhammad ;
Hartanto, Donny .
NUCLEAR SCIENCE AND TECHNIQUES, 2022, 33 (08)
[12]   Preparation and characterisation of Isophthalic-Bi2O3 polymer composite gamma radiation shields [J].
Ambika, M. R. ;
Nagaiah, N. ;
Harish, V. ;
Lokanath, N. K. ;
Sridhar, M. A. ;
Renukappa, N. M. ;
Suman, S. K. .
RADIATION PHYSICS AND CHEMISTRY, 2017, 130 :351-358
[13]  
American Nuclear Society, 1991, Gamma-Ray Attenuation Coefficients and Buildup Factors for Engineering Materials, P138
[14]  
ASTM, 1997, D79291 ASTM
[15]   Feasibility of nanomaterial tungsten carbide as lead-free nanomaterial-based radiation shielding [J].
Azman, Mira Natasha ;
Abualroos, Nadin Jamal ;
Yaacob, Khatijah Aisha ;
Zainon, Rafidah .
RADIATION PHYSICS AND CHEMISTRY, 2023, 202
[16]   Radiation shielding properties of poly (methyl methacrylate)/colemanite composite for the use in mixed irradiation fields of neutrons and gamma rays [J].
Bel, Tayfun ;
Arslan, Cuneyt ;
Baydogan, Nilgun .
MATERIALS CHEMISTRY AND PHYSICS, 2019, 221 :58-67
[17]  
Berger M.J., 2010, XCOM: Photon Cross Sections Database, DOI DOI 10.18434/T48G6X
[18]   Radiation shielding performances of Na2SiO3 based low-cost micro and nano composites for diagnostic imaging [J].
Bozkurt, Merve ;
Sahin, Nazlican ;
Karabul, Yasar ;
Kilic, Mehmet ;
Ozdemir, Zeynep Guven .
PROGRESS IN NUCLEAR ENERGY, 2022, 143
[19]   The Effect of Zirconium Dioxide (ZrO2) Nanoparticles Addition on the Mechanical Parameters of Polymethyl Methacrylate (PMMA): A Systematic Review and Meta-Analysis of Experimental Studies [J].
Checinska, Kamila ;
Checinski, Maciej ;
Sikora, Maciej ;
Nowak, Zuzanna ;
Karwan, Slawomir ;
Chlubek, Dariusz .
POLYMERS, 2022, 14 (05)
[20]   Non-Toxic and Flexible Radiation-Shielding Composites Based on Natural Rubber Containing Elemental W Fillers for Efficient Shielding against X/γ-rays [J].
Chen, Zhai ;
Li, Xiaopeng ;
Lu, Lin ;
Yuan, Bo ;
Wang, Liying ;
Li, Zhen ;
Li, Heguo .
PROCESSES, 2023, 11 (03)