Development Of Lead-free Tungsten Carbide-based Polymeric Bricks As Gamma Radiation Shielding

Lead bricks are the most widely used form of gamma ray shields in diagnostic radiology, radiotherapy, and nuclear medicine departments. However, lead is heavy, toxic, and dangerous to human health. Polymer-based radiation shields can be utilised in radiation shielding field due to their excellent ph...

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Main Author: Abualroos, Nadin J D
Format: Thesis
Language:English
Published: 2022
Subjects:
Online Access:http://eprints.usm.my/59781/
http://eprints.usm.my/59781/1/NADIN%20J%20D%20ABUALROOS%20-%20TESIS24.pdf
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author Abualroos, Nadin J D
author_facet Abualroos, Nadin J D
author_sort Abualroos, Nadin J D
building USM Institutional Repository
collection Online Access
description Lead bricks are the most widely used form of gamma ray shields in diagnostic radiology, radiotherapy, and nuclear medicine departments. However, lead is heavy, toxic, and dangerous to human health. Polymer-based radiation shields can be utilised in radiation shielding field due to their excellent physical and chemical properties, ease of fabrication, low manufacturing costs, and toughness. Also, their radiation shielding properties can be improved by using high atomic number fillers. The purpose of this research was to develop a lead-free tungsten carbide-based polymeric bricks as gamma radiation shielding. The fabrication of tungsten carbide-based polymeric composites involved mixing tungsten carbide powder and tungsten carbide cobalt powder with epoxy resin at different weight percentages (60, 65, 70, 75, 80, 85, 90) of fillers. Also, addition of bismuth oxide and barium sulphate powder to tungsten carbide-based epoxy matrix were studied. The physical, morphological, chemical, mechanical, and photon shielding properties were investigated for all the fabricated composites. The most optimum powder epoxy combination among all samples were 85 and 90 weight percentage of fillers. The microstructural analysis indicated that the fillers distributed uniformly within the epoxy matrix. Some agglomerations were observed for composites having more than 75 wt% of filler. Fourier transform infrared spectroscopy was used to study the chemical properties of the fabricated composites. FTIR absorption spectrum of each sample analysed in the range of 600-4000 cm-1. The results obtained did not show any spectral change for all samples.
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language English
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spelling usm-597812024-01-31T02:29:50Z http://eprints.usm.my/59781/ Development Of Lead-free Tungsten Carbide-based Polymeric Bricks As Gamma Radiation Shielding Abualroos, Nadin J D R5-920 Medicine (General) Lead bricks are the most widely used form of gamma ray shields in diagnostic radiology, radiotherapy, and nuclear medicine departments. However, lead is heavy, toxic, and dangerous to human health. Polymer-based radiation shields can be utilised in radiation shielding field due to their excellent physical and chemical properties, ease of fabrication, low manufacturing costs, and toughness. Also, their radiation shielding properties can be improved by using high atomic number fillers. The purpose of this research was to develop a lead-free tungsten carbide-based polymeric bricks as gamma radiation shielding. The fabrication of tungsten carbide-based polymeric composites involved mixing tungsten carbide powder and tungsten carbide cobalt powder with epoxy resin at different weight percentages (60, 65, 70, 75, 80, 85, 90) of fillers. Also, addition of bismuth oxide and barium sulphate powder to tungsten carbide-based epoxy matrix were studied. The physical, morphological, chemical, mechanical, and photon shielding properties were investigated for all the fabricated composites. The most optimum powder epoxy combination among all samples were 85 and 90 weight percentage of fillers. The microstructural analysis indicated that the fillers distributed uniformly within the epoxy matrix. Some agglomerations were observed for composites having more than 75 wt% of filler. Fourier transform infrared spectroscopy was used to study the chemical properties of the fabricated composites. FTIR absorption spectrum of each sample analysed in the range of 600-4000 cm-1. The results obtained did not show any spectral change for all samples. 2022-06 Thesis NonPeerReviewed application/pdf en http://eprints.usm.my/59781/1/NADIN%20J%20D%20ABUALROOS%20-%20TESIS24.pdf Abualroos, Nadin J D (2022) Development Of Lead-free Tungsten Carbide-based Polymeric Bricks As Gamma Radiation Shielding. PhD thesis, Universiti Sains Malaysia.
spellingShingle R5-920 Medicine (General)
Abualroos, Nadin J D
Development Of Lead-free Tungsten Carbide-based Polymeric Bricks As Gamma Radiation Shielding
title Development Of Lead-free Tungsten Carbide-based Polymeric Bricks As Gamma Radiation Shielding
title_full Development Of Lead-free Tungsten Carbide-based Polymeric Bricks As Gamma Radiation Shielding
title_fullStr Development Of Lead-free Tungsten Carbide-based Polymeric Bricks As Gamma Radiation Shielding
title_full_unstemmed Development Of Lead-free Tungsten Carbide-based Polymeric Bricks As Gamma Radiation Shielding
title_short Development Of Lead-free Tungsten Carbide-based Polymeric Bricks As Gamma Radiation Shielding
title_sort development of lead-free tungsten carbide-based polymeric bricks as gamma radiation shielding
topic R5-920 Medicine (General)
url http://eprints.usm.my/59781/
http://eprints.usm.my/59781/1/NADIN%20J%20D%20ABUALROOS%20-%20TESIS24.pdf