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      KCI등재 SCOPUS SCIE

      화학증착법에 의하여 제조된 탄화지르코늄 코팅층의 물성 = Properties of Chemical Vapor Deposited ZrC coating layer for TRISO Coated Fuel Particle

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      https://www.riss.kr/link?id=A105146839

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      다국어 초록 (Multilingual Abstract)

      The ZrC layer instead of SiC layer is a critical and essential layer in TRISO coated fuel particles since it is a protective layer against diffusion of fission products and provides mechanical strength for the fuel particle. In this study, we carried ...

      The ZrC layer instead of SiC layer is a critical and essential layer in TRISO coated fuel particles since it is a protective layer against diffusion of fission products and provides mechanical strength for the fuel particle. In this study, we carried out computational simulation before actual experiment. With these simulation results, Zirconium carbide (ZrC) films were chemically vapor deposited on $ZrO_2$ substrate using zirconium tetrachloride $(ZrCl_4),\;CH_4$ as a source and $H_2$ dilution gas, respectively. The change of input gas ratio was correlated with growth rate and morphology of deposited ZrC films. The growth rate of ZrC films increased as the input gas ratio decreased. The microstructure of ZrC films was changed with input gas ratio; small granular type grain structure was exhibited at the low input gas ratio. Angular type structure of increased grain size was observed at the high input gas ratio.

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      참고문헌 (Reference)

      1 "“Synthesis and Temperature Profile Analysis of ZrC by SHS Method" 32 (32): 659-668, 1995

      2 "Statistical Approach and Benchmarkingfor Modeling of Multi-dimensional Behavior in Triso-coatedFuel Particles" 317 : 69-82, 2003

      3 "Silicon Chemical Vapor Deposition (CVD) on Micro-porous Powders in a Fluidized Bed," 120 : 82-87, 2001

      4 "LongTime Experience with the Development of HTR Fuel Ele-ments in Germany" 217 : 141-151, 2002

      5 "Handbook of X-ray Photoelectron Spectroscopy" 6-, 1992.

      6 "Handbook of Chemistry and Physics" CRC Press LLC 4-98, 1997-198.

      7 "Deterioration of ZrC-coated Fuel Particle Caused by Fail-ure of Pyrolytic Carbonlayer," 253 : 13-21, 1998

      8 "Chemical VaporDeposition of Silicon Carbide for Coated Fuel Particles" -46, 1987

      9 "Chemical Vapor Deposition of ZrC onPyrocarbon-coated Fuel Particles," 1974

      10 "A Study on the CVD Deposition forSiC-TRISO Coated Fuel Material Fabrication" 167-74,

      1 "“Synthesis and Temperature Profile Analysis of ZrC by SHS Method" 32 (32): 659-668, 1995

      2 "Statistical Approach and Benchmarkingfor Modeling of Multi-dimensional Behavior in Triso-coatedFuel Particles" 317 : 69-82, 2003

      3 "Silicon Chemical Vapor Deposition (CVD) on Micro-porous Powders in a Fluidized Bed," 120 : 82-87, 2001

      4 "LongTime Experience with the Development of HTR Fuel Ele-ments in Germany" 217 : 141-151, 2002

      5 "Handbook of X-ray Photoelectron Spectroscopy" 6-, 1992.

      6 "Handbook of Chemistry and Physics" CRC Press LLC 4-98, 1997-198.

      7 "Deterioration of ZrC-coated Fuel Particle Caused by Fail-ure of Pyrolytic Carbonlayer," 253 : 13-21, 1998

      8 "Chemical VaporDeposition of Silicon Carbide for Coated Fuel Particles" -46, 1987

      9 "Chemical Vapor Deposition of ZrC onPyrocarbon-coated Fuel Particles," 1974

      10 "A Study on the CVD Deposition forSiC-TRISO Coated Fuel Material Fabrication" 167-74,

      11 "A New Method for Coating Microsphereswith Zirconium Carbide and Zirconium Carbide-carbonGraded Coats" -32, 1975

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      1998-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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