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      KCI등재 SCIE SCOPUS

      Preparation of oxidation-protective SiC coatings for C/SiC composites by pulsed chemical vapor deposition

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      https://www.riss.kr/link?id=A104499266

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      다국어 초록 (Multilingual Abstract)

      Single-layer SiC coatings and multilayer (C/SiC)n coatings for oxidation protection of C/SiC composites were prepared by a pulsed chemical vapor deposition (pulsed CVD) method, a modification of pulsed chemical vapor infiltration (pulsed CVI). Pulse...

      Single-layer SiC coatings and multilayer (C/SiC)n coatings for oxidation protection of C/SiC composites were prepared by a
      pulsed chemical vapor deposition (pulsed CVD) method, a modification of pulsed chemical vapor infiltration (pulsed CVI).
      Pulsed CVD enabled the original pores in the substrates to be filled by the coatings, which contributed to improved adhesion
      between the coatings and the substrates. No deposition defects were observed in the dense SiC coatings. Multilayer (C/SiC)n
      coatings could dissipate thermal stresses in the coatings, which reduced the number and width of micro-cracks in the coatings
      and accordingly improved the oxidation-protection capability of the coatings. Oxidation tests in dry air showed that the
      oxidation resistance of the coated composites was significantly improved compared with that of the uncoated ones.

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      다국어 초록 (Multilingual Abstract)

      Single-layer SiC coatings and multilayer (C/SiC)n coatings for oxidation protection of C/SiC composites were prepared by a pulsed chemical vapor deposition (pulsed CVD) method, a modification of pulsed chemical vapor infiltration (pulsed CVI). Pulsed ...

      Single-layer SiC coatings and multilayer (C/SiC)n coatings for oxidation protection of C/SiC composites were prepared by a
      pulsed chemical vapor deposition (pulsed CVD) method, a modification of pulsed chemical vapor infiltration (pulsed CVI).
      Pulsed CVD enabled the original pores in the substrates to be filled by the coatings, which contributed to improved adhesion
      between the coatings and the substrates. No deposition defects were observed in the dense SiC coatings. Multilayer (C/SiC)n
      coatings could dissipate thermal stresses in the coatings, which reduced the number and width of micro-cracks in the coatings
      and accordingly improved the oxidation-protection capability of the coatings. Oxidation tests in dry air showed that the
      oxidation resistance of the coated composites was significantly improved compared with that of the uncoated ones.

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      참고문헌 (Reference)

      1 R. Naslain, 64 : 155-170, 2004

      2 L. Filipuzzi, 27 : 3330-3334, 1992

      3 W. Krenkel, 412 : 177-181, 2005

      4 J.R. Strife, 67 (67): 369-374, 1988

      5 Y.J. Lee, 35 : 4519-4526, 2000

      6 J.H. Oh, 36 : 1695-1700, 2001

      7 L.F. Cheng, 40 : 2229-2234, 2002

      8 L.F. Cheng, 38 : 1493-1498, 2000

      9 L.F. Cheng, 37 : 5339-5344, 2002

      10 S.J. Wu, 200 : 4489-4492, 2006

      1 R. Naslain, 64 : 155-170, 2004

      2 L. Filipuzzi, 27 : 3330-3334, 1992

      3 W. Krenkel, 412 : 177-181, 2005

      4 J.R. Strife, 67 (67): 369-374, 1988

      5 Y.J. Lee, 35 : 4519-4526, 2000

      6 J.H. Oh, 36 : 1695-1700, 2001

      7 L.F. Cheng, 40 : 2229-2234, 2002

      8 L.F. Cheng, 38 : 1493-1498, 2000

      9 L.F. Cheng, 37 : 5339-5344, 2002

      10 S.J. Wu, 200 : 4489-4492, 2006

      11 I. Golecki, 20 : 37-124, 1997

      12 P. Delhaes, 40 : 641-657, 2002

      13 R.R. Naslain, 141 : 541-548, 2001

      14 S. Kluska, 23 : 1509-1515, 2003

      15 Y.S. Ding, A Ph.D. Dissertation of Graduate School, Chinese Academy of Sciences 2007

      16 M. Kotania, 62 : 2179-2188, 2002

      17 M. Kotani, 289 : 37-41, 2001

      18 S. Schmidta, 55 : 409-420, 2004

      19 J.J. Caruso, 8 (8): 77-83, 1986

      20 R. Naslain, 58 : 23-39, 1995

      21 R. Naslain, 79 : 37-52, 1996

      22 N.S. Raj, 79 (79): 137-147, 1996

      23 D. Hull, "An introduction to composite materials" Cambridge University Press 1996

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2022-10-24 학회명변경 한글명 : 세라믹연구소 -> 청정에너지연구소
      영문명 : Ceramic Research Institute -> Clean-Energy Research Institute
      KCI등재
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2019-08-19 학회명변경 한글명 : 세라믹공정연구센터 -> 세라믹연구소
      영문명 : Ceramic Processing Research Center -> Ceramic Research Institute
      KCI등재
      2011-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2006-01-01 평가 SCI 등재 (등재후보1차) KCI등재
      2003-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      2016 0 0 0
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