해수환경하에서 스테인리스강의 전기화학적 특성 개선을 위한 합금원소의 영향

' 해수환경하에서 스테인리스강의 전기화학적 특성 개선을 위한 합금원소의 영향' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • 기타 공학
  • electrochemicalcharacteristics
  • inclusion
  • seawaterenvironment
  • stabilizingelement
  • stainless steel
  • 개재물
  • 스테인리스강
  • 안정화원소
  • 전기화학적특성
  • 해수환경
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
903 0

0.0%

' 해수환경하에서 스테인리스강의 전기화학적 특성 개선을 위한 합금원소의 영향' 의 참고문헌

  • 고분자전해질 연료전지 분리판용 316 스테인리스강의전기전도도에 미치는 Nb, Ti 첨가 및 표면처리 효과
    이석현 대한금속·재료학회지 45 (1) : 44 ~ 50 [2007]
  • Type 347 스테인리스강의 피로균열성장거동에 미치는 온도 및 미세조직의 영향
    이종만 대한금속·재료학회지 45 (11) : 593 ~ 601 [2007]
  • The role of titanium in the pitting corrosion of com-mercial stainless steels
    S. C. Srivastava Corrosion 45 (6) : 488 ~ 493 [1989]
  • The role of niobium in austenitic and duplex stainless steels
    D. Dulieu International Symposium on Niobium [2001]
  • The ini-tiation of pitting corrosion on austenitic stainless steel: on the role and importance of sulphide inclusions
    J. Stewart Corrosion Science 33 (3) : 457 ~ 463 [1992]
  • The for-mation of ferrite and sigma-phase in some austenitic stainless steels
    L. K. Singhal Acta Metallurgica 16 (12) : 1441 ~ 1451 [1968]
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    West Conshocken Standard ASTM A240/A240M [2010]
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    J. R. Davis ASM interna-tional [1994]
  • Pitting corrosion of very clean type 304stainless steel
    J. H. Jun Corrosion 70 (2) : 146 ~ 155 [2013]
  • Pitting corrosion behaviour of austenitic stainless steels – combining effects of Mn and Mo additions
    A. Pardo Corrosion Science 50 (6) : 1796 ~ 1806 [2008]
  • Phase instabilities during high temperature exposure of 316 aus-tenitic stainless steel
    B. Weiss Metallurgical and Materials Transactions 3 (4) : 851 ~ 866 [1972]
  • Nb함유 304 스테인리스강 용접부의 기계적 성질과 입계부식특성
    김덕용 전남대학교 산업대학원 [2000]
  • Microstructural stability of ther-mal-mechanically pretreated type 316 auste-nitic stainless steel
    J. E. Spruiell Metallurgical and Materials Transactions 4 (6) : 1533 ~ 1544 [1973]
  • Microelectrochemical investigations of MnS inclusions
    T. Suter Materials Science Forum 192-194 : 25 ~ 40 [1995]
  • Microelectrochemical investigation on pit in-itiation at sulfide and oxide inclusions in type 304 stainless steel
    I. Muto Journal of the Electrochemical Society 156 (2) : C55 ~ C61 [2009]
  • Improved pitting corrosion resistance of AISI 316L stainless steel treated by high current pulsed electron beam
    K. M. Zhang Surface and Coatings Technology 201 (3-4) : 1393 ~ 1400 [2006]
  • Handbook of Stainless Steel
    D. Pecker McGraw Hill [1977]
  • Effect of complex inclusions on pit ini-tiation in 18% chromium-8% nickel stainless steel types 303, 304, and 321
    N. J. E. Dowling Corrosion 51 (5) : 343 ~ 355 [1995]
  • Effect of Ti ad-dition to STS 304 austenitic stainless steel on high temperature oxidation
    Y. H. Lee Korean Journal of Metals and Materials 30 (12) : 1514 ~ 1520 [1992]
  • Deoxidation and de-nitrogenization of 18%Cr-8%Ni stainless steel by Ti addition
    D. S. Kim Korean Journal of Metals and Materials 32 (10) : 1210 ~ 1218 [2002]
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    A. John Sedriks Wiley [1996]
  • Corrosion mechanisms in theory and practice
    Marcus CRC Press [2011]
  • Cathodic proper-ties of different stainless steels in natural seawater
    R. Johnsen Corrosion 41 (5) : 296 ~ 302 [1985]
  • Carbon content and grain size effects on the sensitization of AISI type 304 stainless steels
    R. Pascali Corrosion 40 (1) : 21 ~ 32 [1984]
  • Biofilm effect on the cathodic and anodic processes on stainless steel in seawater near the corrosion potential-part 2: Oxygen reduction on passive metal
    G. Salvago Corrosion 57 (9) : 759 ~ 767 [2001]
  • ASM Handbook: Stainless Steels
  • AISI 321 스테인리스강의 크리프-피로 상호작용에 미치는 TiC 및 Cr23C6 입계탄화물의 영향
    閔敬善 대한금속·재료학회지 40 (10) : 1048 ~ 1054 [2002]
  • A stochastic analysis of potential fluctuation during passive film breakdown and repair on iron
    M. Hashimoto Corrosion Science 33 (6) : 885 ~ 904 [1992]