박사

CFRP 가공용 CVD 보론도핑 다이아몬드 코팅 공구의 가공특성에 관한 연구 = A Study on the Machining Characteristics of CVD Boron Doped Diamond Coating Tool for CFRP Materials

김종석 2019년
논문상세정보
' CFRP 가공용 CVD 보론도핑 다이아몬드 코팅 공구의 가공특성에 관한 연구 = A Study on the Machining Characteristics of CVD Boron Doped Diamond Coating Tool for CFRP Materials' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • 기술과 연합작용
  • cfrp
  • cvd
  • 가공
  • 공구
  • 난삭재
  • 다이아몬드
  • 보론도핑
  • 코팅
  • 탄소섬유강화
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
493 0

0.0%

' CFRP 가공용 CVD 보론도핑 다이아몬드 코팅 공구의 가공특성에 관한 연구 = A Study on the Machining Characteristics of CVD Boron Doped Diamond Coating Tool for CFRP Materials' 의 참고문헌

  • 탄소섬유복합재(CFRP) 가공을 위한 드릴링/워터젯 복 합 가공기 개발
    윤한솔 이창조 조용주 한국정밀공학회 년도 추계학술대회논문집 [2016]
  • 탄소섬유복합재(CFRP) 가공시스템
    이석우 한국생산기술연구원 생산시스템그룹 [2018]
  • 탄소섬유강화 복합재(CFRP)산업의 동향과 기술개 발 방향
    김현석 ECO융합섬유연구원 [2017]
  • 초경합금 기판에 나노결정질 다이아몬드 박막 코팅 시 금속 중간층의 효과 학위논문(석사)
    나봉권 한국산업기술대학교 지식기반기술에너지대학원 [2013]
  • 첨단공구산업 육성을 위한 타당성 분석 및 사업계획 보고서
    산업통상자원부 [2013]
  • 제조업 경쟁력 향상을 위한 첨단공구산업 기술고도화 사업 보고서
    한국과학기술기획평가원 [2014]
  • 독일 프랑크푸르트무역관
    박소영 독일 밀링용 공구 시장동향 [2017]
  • 대구기계부품연구원 첨단공구지원 센터
    Tool& Tooling, Vol 02, No.4 [2017]
  • 다이아몬드 코팅 공구의 부착력 평가와 문제점
    권용민 권현규 김우석 안동길 이정화 한국생산제조학회 학술발표대회 논문집 [2016]
  • 다이아몬드 입자 전착드릴에 의한 탄소 섬유 에폭시 복합재료의 드릴링 특성에 관한 연구
  • 국내 복합소재 시장분석 및 전망
    화학경제연구원 [2016]
  • Z.L. Wang, C. Lu, J.J. Li, C.Z. Gu, Effect of gas composition on the growth and electrical properties of boron-doped diamond films, Diamond & Related Materials, 2009, 18, 132-135.
  • Xinchang Wang, Xiaotian Shen, Fanghong Sun, Bin Shen, Influence of boron doping level on the basic mechanical properties and erosion behavior of boron-doped micro-crystalline diamond(BDMCD) film, Diamond & Related Materials, 2017, 73, 218-231
  • WC-6%Co 초경공구 표면에 다이아몬드 박막 합성시 Ar/H₂/CH₄혼합 가스 조성 변화에 따른 증착 거동, 학위논문 (석사)
    이용한 정영수 경북대학교 대학원 [2005]
  • Vadym N. Mochalin, Olga Shenderova, Dean Ho, Yury Gogotsi, The properties and applications of nanodiamonds, nature nanotechnology, 2011, 209, 1-13.
  • S. Prawer, K.W. Nugent, D.N. Jamieson, J.O. Orwa, L.A. Bursill, J.L. Peng, The raman spectrum of nanocrystalline diamond, Chemical physics letters, 2000, 332, 93-97.
  • S. A. Grot, Gennady. SH. Gildenblat, C. W. Hatfield, C. R. Wronski, A. R. Badzian, T. Badzian, The effect of surface tratment on the electrical properties of metal contacts to boron-doped homoepitaxial diamond film, IEEE electron device letters, 1990, 11, 100-102
  • R. Haubner, S. Kubelka, B. Lux, M. Griesser and M. Grasserbauer, Murakami and H2SO4/H2O2 Pretreatment of WC-Co Hard Metal Substrates to Increase the Adhesion of CVD Diamond Coatings, J. Phys. IV France 05 (1995) C5-753-C5-760
  • R. C. Mendes de Baroos, E.J. Corat, N. G. Fereira, T.M. de Souza, V. J. Trava-Airoldi, N. F. Leite, K. Iha, Dispersion liquid properties for efficient seeding in CVD diamond nucleation enhancement, Volume 5, Issue 11, November 1996, Pages 1323-1332
  • Q. P. Wei, X. M. Yu, M. N. R. Ashfold, J. Ye, L. Ma, Synthesis of micro- or nano-crystalline diamond films on WC-Co substrates with various pretreatments by hot filament chemical vapor deposition, Volume 256, Issue 13, 15 April 2010, Pages 4357-4364
  • Paul N. Barnes and Richard L. C. Wu, Nucleation enhancement of diamond with amorphous films, Appl. Phys. Lett. 62, 37 (1993)
  • P.W. May, W.J. Ludlow, M. Hannaway, P.J. Heard, J.A. Smith, K.N. Rosser, Raman and conductivity studies of boron-doped microcrystalline diamond, facetted nanocrystalline diamond and cauliflower diamond films, Diamond & Related Materials, 2008, 17, 105-117.
  • P. Ashcheulov, J. Kovalenko, V. Petrak, F. Fendrych, M. Nesladek, A. Taylor, Z. Vlckova Zivcova, O. Frank, L. Kavan, M. Dracinsky, P. Hubik, J. Vacik, I. Kraus, I. Kratochvilova, Conductivity of boron-doped polycrystalline diamond films: influence of specific boron defects, The european physical journal B, 2013, 86, 443
  • P-A. MichaudM. PanizzaL. OuattaraT. DiacoG. Foti, Electrochemical oxidation of water on synthetic boron-doped diamond thin film anodes, Journal of Applied Electrochemistry, February 2003, Volume 33, Issue 2, pp 151–154
  • O.A. Williams, M. Daenen, J. D’Haen, K. Haenen, J. Maes, V.V. Moshchalkov, M. Nesladek, D.M. Gruen, Comparison of the growth and properties of ultrananocrystalline diamond and nanocrystalline diamond, Diamond & Related Materials, 2006, 15, 654-658.
  • O. A. Williams, O. Doucheret, M. Daenen, K. Haenen, E. Osawa, M. Takahashi, Enhanced diamond nucleation on monodispersed nanocrystalline diamond, Volume 445, Issues 4–6, 13 September 2007, Pages 255-258
  • Microwave PECVD 방식으로 합성시킨 다이아몬드 박막에 대한 연구, 학위논문
    전아람 한밭대학교 산업대학원 [2012]
  • MPCVD법으로 증착된 다이아몬드 박막 특성에 미치는 메탄가스 의 영향, J
    남태운 송진우 KIEEME, Vol. 24, No. 3, , pp. 229-233 [2011]
  • Krishna Seshan, Handbook of thin-film deposition processes and techniques: principles, methods, equipment and applications, 2002.
  • Kevin E. Bennet, Kendall H. Lee, James N. Kruchowski, Su-Youne Chang, Michael P. Marsh, Alexander A. Van Orsow, Aurelio Paez, Felicia S. Manciu, Development of conductive boron-doped diamond electrode: a microscopic, spectroscopic, and voltammetric study, Materials, 2013, 6, 5726-5741.
  • K. V. Ravi and C. A. Koch, Nucleation enhancement of diamond synthesized by combustion flame techniques, Appl. Phys. Lett. 57, 348 (1990)
  • K. Tsugawa, S. Kawaki, M. Ishihara, J. Kim, Y. Koga, H. Sakakita, M. Hasegawa, Nanocrystalline diamond growth in a surface-wave plasma, Nanocrystalline diamond growth in a surface-wave plasma, Volume 20, Issues 5–6, May–June 2011, Pages 833-838
  • K. Nishimura, K. Das, J. T. Glass, Material and electrical characterization of polycrystalline boron-doped diamond films grown by microwave plasma chemical vapor deposition, Journal of applied physics, 1991, 69, 3142-3148.
  • Julie V. Macpherson, A practical guide to using boron doped diamond in electrochemical research, Phys. Chem. Chem. Phys., 2015, 17, 2935.
  • Jong Seok Kim, Yeong Min Park, Mun Ki Bae, Chi Whan Kim, Dae Weon Kim, Dong Chul Shin and Tae Gyu Kim, Cutting performance of tungsten carbide tools coated with diamond thin lms after etching for various times, Modern Physics Letters B, Vol. 32, No. 20, 2018.
  • Jong Seok Kim, Jeong Wan Kim, Kelimu Tulugan and Tae Gyu Kim, Characteristics of deposited boron doping diamond on tungsten carbide insert by MPECVD, International Journal of Modern Physics Letter B, Vol, 29, No. 6, 2015
  • John H. T. Luong, Keith B. Male, Jeremy D. Glennon, Boron-doped diamond electrode: synthesis, characterization, functionalization and analytical applications, The royal society of chemistry, 2009, 134, 1965-1979.
  • James R. Petherbridge, Paul W. May, Sean R. J. Pearce, Keith N. Rosser, Michael N. R. Ashfold, Low temperature diamond growth using CO2/CH4 plasmas: Molecular beam mass spectrometry and computer simulation investigations, Journal of applied physics, 2001, 89, 1484-1492
  • J. Zhang, X. Wang, B. Shen, G. Sun, Effect of boron and silicon doping on improving the cutting performance of CVD diamond coated cutting tools in machining CFRP, International Journal of Refractory Metals and Hard Materials, 41, November 2013, Pages 285-292
  • Chunyuan Lu, Qi Dong, Kelimu Tulugan, Yeong Min Park, Mahendra A. More, Jaeho Kim and Tae Gyu Kim, Characteristic Study of Boron Doped Carbon Nanowalls Films Deposited by Microwave Plasma Enhanced Chemical Vapor Deposition, Journal of Nanoscience and Nanotechnology, Vol. 16, pp. 1852–1854, 2016
  • CFRP용 다이아몬드 코팅 초경공구의 코팅특성 분석 및 공구성능 평가
    강익수 김동규 성길동 정윤철 한국정밀공학회지, , 230-230 [2017]
  • CFRP 시장동향과 연구개발 방향, 한국섬유공학회
    김익수 박영빈 섬유기술과 산업 10권1호 [2015]
  • B. Massarani, J. C. Bourgoin, Hopping conduction in semiconducting diamond, Physical review B, 1978, 17, 1758-1769.
  • Alexander Kraft, Doped diamond: a compact review on a new, versatile electrode material, International journal of electrochemical science, 2007, 2, 355-385.
  • A. S. Barnard, M. Sternberg, Substitutional boron in nanodiamond, bucky-diamond, and nanocrystalline diamond grain boundaries, the journal of physical chemistry B, 2006, 110, 19307-19314.
  • A. C. Ferrari, J. Robertson, Raman spectroscopy of amorphous, nanostructured, diamond-like carbon, and nanodiamond, the royal society, 2004, Phil. Trans. R. Soc. Lond. A, 2004, 362, 2477-2512.