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Distribution Analysis of TRISO-Coated Particles in Fully Ceramic Microencapsulated Fuel Composites
Hyeon-Geun Lee, Daejong Kim, Seung Jae Lee, Ji Yeon Park, Weon-Ju Kim
J. Korean Ceram. Soc.. 2018;55(4):400-405.   Published online 2018 July 24    DOI: https://doi.org/10.4191/kcers.2018.55.4.08

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Distribution Analysis of TRISO-Coated Particles in Fully Ceramic Microencapsulated Fuel Composites
Journal of the Korean Ceramic Society. 2018;55(4):400-405   Crossref logo
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Evaluation of Fracture Stress for the SiC Layer of TRISO-Coated Fuel Particles Using a Modified Crush Test Method
International Journal of Applied Ceramic Technology. 2009;7(3):327-337   Crossref logo
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Pressure buildup analysis of TRISO-coated fuel particles
Nuclear Engineering and Design. 2021;380:111279   Crossref logo
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Crushing strengths of SiC-Triso and ZrC-Triso coated fuel particles
Journal of Nuclear Materials. 1981;98(1-2):18-26   Crossref logo
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Preliminary numerical investigation of TRISO-matrix interface debonding characteristics in fully ceramic microencapsulated fuel
Annals of Nuclear Energy. 2021;159:108338   Crossref logo
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Palladium Migration Through a Zirconium Carbide Coating in TRISO-Coated Fuel Particles
Journal of the American Ceramic Society. 2016;99(4):1455-1463   Crossref logo
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Performance analysis of TRISO coated fuel particles with kernel migration
Journal of Nuclear Materials. 2008;374(1-2):168-177   Crossref logo
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Understanding the 1600°C Fuel Temperature Limit of TRISO Coated Fuel Particles
MRS Proceedings. 2015;1769:   Crossref logo
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Two-Dimensional Full Core Analysis of IFBA-Coated TRISO Fuel Particles in Very High Temperature Reactors
Volume 1: Beyond Design Basis; Codes and Standards; Computational Fluid Dynamics (CFD); Decontamination and Decommissioning; Nuclear Fuel and Engineering; Nuclear Plant Engineering. 2020;   Crossref logo
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Effect of PyC Thermal Behavior on the Stress of TRISO-Coated Fuel Particles
Key Engineering Materials. 2016;697:852-857   Crossref logo
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