Gamma attenuation through nano lead - nano copper PVC composites

Polymer composites of polyvinyl chloride, PVC, were loaded up with micro and nano PbO/CuO particles. The added percentage of each by mass was 10 wt.%, 20 wt.%, 30 wt.%, and 40 wt.%, plus 40 wt.% of mixed composite (20 wt.% CuO + 20 wt.% PbO). The mass and linear attenuation coefficients of the inves...

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Main Authors: Abbas Yehia M., El-Khatib Ahmed M., Badawi Mohamed S., Alabsy Mahmoud T., Hagag Osama M.
Format: Article
Language:English
Published: VINCA Institute of Nuclear Sciences 2021-01-01
Series:Nuclear Technology and Radiation Protection
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/1451-3994/2021/1451-39942100001A.pdf
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spelling doaj-37fb07d4ea474a31a49e1b9409c98a752021-09-09T08:32:35ZengVINCA Institute of Nuclear SciencesNuclear Technology and Radiation Protection1451-39941452-81852021-01-01361505910.2298/NTRP210110001A1451-39942100001AGamma attenuation through nano lead - nano copper PVC compositesAbbas Yehia M.0El-Khatib Ahmed M.1Badawi Mohamed S.2Alabsy Mahmoud T.3Hagag Osama M.4Department of Physics, Faculty of Science, Suez Canal University, Ismailia, EgyptPhysics Department, Faculty of Science, Alexandria University, Alexandria, EgyptDepartment of Physics, Faculty of Science, Beirut Arab University, Beirut, LebanonPhysics Department, Faculty of Science, Alexandria University, Alexandria, EgyptPhysics Department, Faculty of Science, Port Said University, Port Said, EgyptPolymer composites of polyvinyl chloride, PVC, were loaded up with micro and nano PbO/CuO particles. The added percentage of each by mass was 10 wt.%, 20 wt.%, 30 wt.%, and 40 wt.%, plus 40 wt.% of mixed composite (20 wt.% CuO + 20 wt.% PbO). The mass and linear attenuation coefficients of the investigated composites were measured as a function of gamma-ray energies going from 59.53 keV to 1408.01 keV utilizing standard radioactive point sources. To confirm the validity of these results the attenuation coefficients for bulk composites (PVC + PbO and PVC + CuO) were calculated by using the XCOM software. The results were in good agreement with the values obtained from the experimental work. By comparing the attenuation coefficients of the different composites it was found that those loaded with either nano PbO or CuO have higher values than those loaded with bulk sizes with the same percentage. Also, samples loaded with nano PbO have the highest attenuation coefficients even by comparing them with (20 wt.% CuO + 20 wt.% PbO), especially in the energy region below 1 MeV, but for greater energies, the values become very closed. The investigation of the mechanical properties of such composites due to the injection of bulk and nano metals reveals that tensile strength and Young's modulus of PVC nanocomposite sheets were notably increased with the increasing concentration of CuO and PbO nanoparticles. The CuO nanocomposite showed the highest values of flexural strength, toughness, and tensile strength among all the fabricated nanocomposite sheets.http://www.doiserbia.nb.rs/img/doi/1451-3994/2021/1451-39942100001A.pdfpolyvinyl chloridenano lead oxidenano copper oxidecharacterizationnano lead-copper-pvc compositegamma-rayattenuation coefficientmechanical property
collection DOAJ
language English
format Article
sources DOAJ
author Abbas Yehia M.
El-Khatib Ahmed M.
Badawi Mohamed S.
Alabsy Mahmoud T.
Hagag Osama M.
spellingShingle Abbas Yehia M.
El-Khatib Ahmed M.
Badawi Mohamed S.
Alabsy Mahmoud T.
Hagag Osama M.
Gamma attenuation through nano lead - nano copper PVC composites
Nuclear Technology and Radiation Protection
polyvinyl chloride
nano lead oxide
nano copper oxide
characterization
nano lead-copper-pvc composite
gamma-ray
attenuation coefficient
mechanical property
author_facet Abbas Yehia M.
El-Khatib Ahmed M.
Badawi Mohamed S.
Alabsy Mahmoud T.
Hagag Osama M.
author_sort Abbas Yehia M.
title Gamma attenuation through nano lead - nano copper PVC composites
title_short Gamma attenuation through nano lead - nano copper PVC composites
title_full Gamma attenuation through nano lead - nano copper PVC composites
title_fullStr Gamma attenuation through nano lead - nano copper PVC composites
title_full_unstemmed Gamma attenuation through nano lead - nano copper PVC composites
title_sort gamma attenuation through nano lead - nano copper pvc composites
publisher VINCA Institute of Nuclear Sciences
series Nuclear Technology and Radiation Protection
issn 1451-3994
1452-8185
publishDate 2021-01-01
description Polymer composites of polyvinyl chloride, PVC, were loaded up with micro and nano PbO/CuO particles. The added percentage of each by mass was 10 wt.%, 20 wt.%, 30 wt.%, and 40 wt.%, plus 40 wt.% of mixed composite (20 wt.% CuO + 20 wt.% PbO). The mass and linear attenuation coefficients of the investigated composites were measured as a function of gamma-ray energies going from 59.53 keV to 1408.01 keV utilizing standard radioactive point sources. To confirm the validity of these results the attenuation coefficients for bulk composites (PVC + PbO and PVC + CuO) were calculated by using the XCOM software. The results were in good agreement with the values obtained from the experimental work. By comparing the attenuation coefficients of the different composites it was found that those loaded with either nano PbO or CuO have higher values than those loaded with bulk sizes with the same percentage. Also, samples loaded with nano PbO have the highest attenuation coefficients even by comparing them with (20 wt.% CuO + 20 wt.% PbO), especially in the energy region below 1 MeV, but for greater energies, the values become very closed. The investigation of the mechanical properties of such composites due to the injection of bulk and nano metals reveals that tensile strength and Young's modulus of PVC nanocomposite sheets were notably increased with the increasing concentration of CuO and PbO nanoparticles. The CuO nanocomposite showed the highest values of flexural strength, toughness, and tensile strength among all the fabricated nanocomposite sheets.
topic polyvinyl chloride
nano lead oxide
nano copper oxide
characterization
nano lead-copper-pvc composite
gamma-ray
attenuation coefficient
mechanical property
url http://www.doiserbia.nb.rs/img/doi/1451-3994/2021/1451-39942100001A.pdf
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