Cargando…

Study on the Influence of Reinforced Particles Spatial Arrangement on the Neutron Shielding Performance of the Composites

Particle-reinforced composites are widely applied as nuclear radiation shielding materials for their excellent comprehensive properties. The work aimed to calculate the influence of the functional reinforced particles spatial arrangement on the neutron shielding performance of composites and attempt...

Descripción completa

Detalles Bibliográficos
Autores principales: Sun, Weiqiang, Hu, Guang, Xu, Hu, Li, Yanfei, Wang, Chao, Men, Tingxuan, Ji, Fu, Lao, Wanji, Yu, Bo, Sheng, Liang, Li, Jinhong, Jia, Qinggang, Xiong, Songqi, Hu, Huasi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9227434/
https://www.ncbi.nlm.nih.gov/pubmed/35744325
http://dx.doi.org/10.3390/ma15124266
_version_ 1784734175887097856
author Sun, Weiqiang
Hu, Guang
Xu, Hu
Li, Yanfei
Wang, Chao
Men, Tingxuan
Ji, Fu
Lao, Wanji
Yu, Bo
Sheng, Liang
Li, Jinhong
Jia, Qinggang
Xiong, Songqi
Hu, Huasi
author_facet Sun, Weiqiang
Hu, Guang
Xu, Hu
Li, Yanfei
Wang, Chao
Men, Tingxuan
Ji, Fu
Lao, Wanji
Yu, Bo
Sheng, Liang
Li, Jinhong
Jia, Qinggang
Xiong, Songqi
Hu, Huasi
author_sort Sun, Weiqiang
collection PubMed
description Particle-reinforced composites are widely applied as nuclear radiation shielding materials for their excellent comprehensive properties. The work aimed to calculate the influence of the functional reinforced particles spatial arrangement on the neutron shielding performance of composites and attempted to explain the influence mechanism by investigating the neutron flux distribution in the materials. Firstly, four suitable physical models were established based on the Monte Carlo Particle Transport Program (MCNP) and mathematical software MATLAB, namely the RSA (Random Sequential Adsorption) Model with particles random arrangement and FCC Model, BCC Model and Staggered Arrangement Model (SA Model) with particle periodic arrangements. Later, based on these four physical models, the neutron transmittance of two kinds of typical B(4)C reinforced composites, 316 stainless steel matrix composite and polyethylene matrix composite, were calculated under different energy neutrons sources (0.0253 eV, 50 eV, 50 keV, fission spectrum, (241)Am-Be spectrum and 14.1 MeV) and the neutron flux distribution in the 316 stainless steel composite was also analyzed under 0.0253 eV neutron and fission neutron sources. The results indicated that the spatial arrangement of B(4)C has an impact on the neutrons shielding performance of the composite and the influence changes with neutron energy and B(4)C content. It can be concluded that the RSA model and the periodic arrangement models can be used in different calculation cases in the future.
format Online
Article
Text
id pubmed-9227434
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-92274342022-06-25 Study on the Influence of Reinforced Particles Spatial Arrangement on the Neutron Shielding Performance of the Composites Sun, Weiqiang Hu, Guang Xu, Hu Li, Yanfei Wang, Chao Men, Tingxuan Ji, Fu Lao, Wanji Yu, Bo Sheng, Liang Li, Jinhong Jia, Qinggang Xiong, Songqi Hu, Huasi Materials (Basel) Article Particle-reinforced composites are widely applied as nuclear radiation shielding materials for their excellent comprehensive properties. The work aimed to calculate the influence of the functional reinforced particles spatial arrangement on the neutron shielding performance of composites and attempted to explain the influence mechanism by investigating the neutron flux distribution in the materials. Firstly, four suitable physical models were established based on the Monte Carlo Particle Transport Program (MCNP) and mathematical software MATLAB, namely the RSA (Random Sequential Adsorption) Model with particles random arrangement and FCC Model, BCC Model and Staggered Arrangement Model (SA Model) with particle periodic arrangements. Later, based on these four physical models, the neutron transmittance of two kinds of typical B(4)C reinforced composites, 316 stainless steel matrix composite and polyethylene matrix composite, were calculated under different energy neutrons sources (0.0253 eV, 50 eV, 50 keV, fission spectrum, (241)Am-Be spectrum and 14.1 MeV) and the neutron flux distribution in the 316 stainless steel composite was also analyzed under 0.0253 eV neutron and fission neutron sources. The results indicated that the spatial arrangement of B(4)C has an impact on the neutrons shielding performance of the composite and the influence changes with neutron energy and B(4)C content. It can be concluded that the RSA model and the periodic arrangement models can be used in different calculation cases in the future. MDPI 2022-06-16 /pmc/articles/PMC9227434/ /pubmed/35744325 http://dx.doi.org/10.3390/ma15124266 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Sun, Weiqiang
Hu, Guang
Xu, Hu
Li, Yanfei
Wang, Chao
Men, Tingxuan
Ji, Fu
Lao, Wanji
Yu, Bo
Sheng, Liang
Li, Jinhong
Jia, Qinggang
Xiong, Songqi
Hu, Huasi
Study on the Influence of Reinforced Particles Spatial Arrangement on the Neutron Shielding Performance of the Composites
title Study on the Influence of Reinforced Particles Spatial Arrangement on the Neutron Shielding Performance of the Composites
title_full Study on the Influence of Reinforced Particles Spatial Arrangement on the Neutron Shielding Performance of the Composites
title_fullStr Study on the Influence of Reinforced Particles Spatial Arrangement on the Neutron Shielding Performance of the Composites
title_full_unstemmed Study on the Influence of Reinforced Particles Spatial Arrangement on the Neutron Shielding Performance of the Composites
title_short Study on the Influence of Reinforced Particles Spatial Arrangement on the Neutron Shielding Performance of the Composites
title_sort study on the influence of reinforced particles spatial arrangement on the neutron shielding performance of the composites
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9227434/
https://www.ncbi.nlm.nih.gov/pubmed/35744325
http://dx.doi.org/10.3390/ma15124266
work_keys_str_mv AT sunweiqiang studyontheinfluenceofreinforcedparticlesspatialarrangementontheneutronshieldingperformanceofthecomposites
AT huguang studyontheinfluenceofreinforcedparticlesspatialarrangementontheneutronshieldingperformanceofthecomposites
AT xuhu studyontheinfluenceofreinforcedparticlesspatialarrangementontheneutronshieldingperformanceofthecomposites
AT liyanfei studyontheinfluenceofreinforcedparticlesspatialarrangementontheneutronshieldingperformanceofthecomposites
AT wangchao studyontheinfluenceofreinforcedparticlesspatialarrangementontheneutronshieldingperformanceofthecomposites
AT mentingxuan studyontheinfluenceofreinforcedparticlesspatialarrangementontheneutronshieldingperformanceofthecomposites
AT jifu studyontheinfluenceofreinforcedparticlesspatialarrangementontheneutronshieldingperformanceofthecomposites
AT laowanji studyontheinfluenceofreinforcedparticlesspatialarrangementontheneutronshieldingperformanceofthecomposites
AT yubo studyontheinfluenceofreinforcedparticlesspatialarrangementontheneutronshieldingperformanceofthecomposites
AT shengliang studyontheinfluenceofreinforcedparticlesspatialarrangementontheneutronshieldingperformanceofthecomposites
AT lijinhong studyontheinfluenceofreinforcedparticlesspatialarrangementontheneutronshieldingperformanceofthecomposites
AT jiaqinggang studyontheinfluenceofreinforcedparticlesspatialarrangementontheneutronshieldingperformanceofthecomposites
AT xiongsongqi studyontheinfluenceofreinforcedparticlesspatialarrangementontheneutronshieldingperformanceofthecomposites
AT huhuasi studyontheinfluenceofreinforcedparticlesspatialarrangementontheneutronshieldingperformanceofthecomposites