Three-Dimensional Measurement of TRISO Coated Particle Using Micro Computed Tomography
The fuel safety and performance of high-temperature gas-cooled reactor (HTGR) are dependent on the integrity and geometric parameter of Tri-structural Isotropic (TRISO) coated particle. Micro X-ray computed tomography (CT) was used for nondestructive testing and three-dimensional measurement of the...
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Series: | Science and Technology of Nuclear Installations |
Online Access: | http://dx.doi.org/10.1155/2019/2908538 |
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doaj-c561672856d7455882bc88f92af17e9f2020-11-25T00:13:52ZengHindawi LimitedScience and Technology of Nuclear Installations1687-60751687-60832019-01-01201910.1155/2019/29085382908538Three-Dimensional Measurement of TRISO Coated Particle Using Micro Computed TomographyLibing Zhu0Xincheng Xiang1Yahui Peng2Xiangang Wang3Institute of Nuclear and New Energy Technology, Tsinghua University, Beijing 100084, ChinaInstitute of Nuclear and New Energy Technology, Tsinghua University, Beijing 100084, ChinaSchool of Electronic and Information Engineering, Beijing Jiaotong University, Beijing 100044, ChinaInstitute of Nuclear and New Energy Technology, Tsinghua University, Beijing 100084, ChinaThe fuel safety and performance of high-temperature gas-cooled reactor (HTGR) are dependent on the integrity and geometric parameter of Tri-structural Isotropic (TRISO) coated particle. Micro X-ray computed tomography (CT) was used for nondestructive testing and three-dimensional measurement of the particle components which are composed of kernel, buffer layer, inner pyrolytic carbon layer (IPyC), silicon carbide (SiC) layer, and outer pyrolytic carbon (OPyC) layer. The thickness distribution and volume of kernel and coating layers are obtained by constructing 3D volume rendering of TRISO particle. Mean thickness of each layer is calculated for comparison with design value. A comparison between two-dimensional and three-dimensional measurement results is also made. It is found that the thickness distribution of all layers approximately obeys Gaussian distribution. Deviation of the thickness of kernel and coating layers between 3D measurement result and design value is 7.88%, -25.63%, -45.50%, 13.87%, and 14.73%, respectively. The deviation will affect the failure probability of TRISO particle. Obvious difference of the OPyC mean thickness between 3D measurement and 2D measurement is found, which proves that the proposed 3D measurement provides comprehensive information of the particle. However, 2D and 3D measured thickness of the kernel and IPyC layer tend to be similar.http://dx.doi.org/10.1155/2019/2908538 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Libing Zhu Xincheng Xiang Yahui Peng Xiangang Wang |
spellingShingle |
Libing Zhu Xincheng Xiang Yahui Peng Xiangang Wang Three-Dimensional Measurement of TRISO Coated Particle Using Micro Computed Tomography Science and Technology of Nuclear Installations |
author_facet |
Libing Zhu Xincheng Xiang Yahui Peng Xiangang Wang |
author_sort |
Libing Zhu |
title |
Three-Dimensional Measurement of TRISO Coated Particle Using Micro Computed Tomography |
title_short |
Three-Dimensional Measurement of TRISO Coated Particle Using Micro Computed Tomography |
title_full |
Three-Dimensional Measurement of TRISO Coated Particle Using Micro Computed Tomography |
title_fullStr |
Three-Dimensional Measurement of TRISO Coated Particle Using Micro Computed Tomography |
title_full_unstemmed |
Three-Dimensional Measurement of TRISO Coated Particle Using Micro Computed Tomography |
title_sort |
three-dimensional measurement of triso coated particle using micro computed tomography |
publisher |
Hindawi Limited |
series |
Science and Technology of Nuclear Installations |
issn |
1687-6075 1687-6083 |
publishDate |
2019-01-01 |
description |
The fuel safety and performance of high-temperature gas-cooled reactor (HTGR) are dependent on the integrity and geometric parameter of Tri-structural Isotropic (TRISO) coated particle. Micro X-ray computed tomography (CT) was used for nondestructive testing and three-dimensional measurement of the particle components which are composed of kernel, buffer layer, inner pyrolytic carbon layer (IPyC), silicon carbide (SiC) layer, and outer pyrolytic carbon (OPyC) layer. The thickness distribution and volume of kernel and coating layers are obtained by constructing 3D volume rendering of TRISO particle. Mean thickness of each layer is calculated for comparison with design value. A comparison between two-dimensional and three-dimensional measurement results is also made. It is found that the thickness distribution of all layers approximately obeys Gaussian distribution. Deviation of the thickness of kernel and coating layers between 3D measurement result and design value is 7.88%, -25.63%, -45.50%, 13.87%, and 14.73%, respectively. The deviation will affect the failure probability of TRISO particle. Obvious difference of the OPyC mean thickness between 3D measurement and 2D measurement is found, which proves that the proposed 3D measurement provides comprehensive information of the particle. However, 2D and 3D measured thickness of the kernel and IPyC layer tend to be similar. |
url |
http://dx.doi.org/10.1155/2019/2908538 |
work_keys_str_mv |
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