Effect of serrated grain boundary on stress corrosion cracking of Alloy 600

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' Effect of serrated grain boundary on stress corrosion cracking of Alloy 600' 의 참고문헌

  • model for the normal stress dependence of intergranular cracking of irradiated 316 L stainless steel in supercritical water
    E. West [2011]
  • U.S. Plant Experience with Alloy 600 Cracking and Boric Acid Corrosion of Light-water Reactor Pressure Vessel Materials
    B. Grimmel [2005]
  • Transgranular SCC mechanism of thermally treated alloy 600 in alkaline water containing lead
    S.S. Hwang [2007]
  • The mode of stress corrosion cracking in Ni-base alloys in high temperature water containing lead
    S.S. Hwang [1999]
  • The effect of grain boundary serration on creep resistance in a wrought nickel-based superalloy
    H.U. Hong [2009]
  • The effect of carbon content and thermal treatment on the SCC behavior of Inconel Alloy 600 steam generator tubing
    G.P. Airey [1979]
  • Tests with Inconel 600 to Obtain Quantitative Stress Corrosion Cracking Data for Evaluating Service Performance
    R. Bandy [1983]
  • Superalloys
  • Study of grain boundary character along intergranular stress corrosion crack paths in austenitic alloys
    V. Gertsman [2001]
  • Steam Generator Tube Failures
  • SCC analysis of alloy 600 tubes from a retired steam generator
    S.S. Hwang [2013]
  • Role of localized deformation in irradiation-assisted stress corrosion cracking initiation
    E.A. West [2012]
  • Role of grain boundary characteristics in caustic IGA/SCC resistance of thermally-treated Alloy 690 and shot-peened Alloy 800
    H. Kawamura [1999]
  • Relationship between localized strain and irradiation assisted stress corrosion cracking in an austenitic alloy
  • Primary water stress corrosion cracking behavior of an alloy 600/182 weld
    Y.S. Lim [2015]
  • Pressurized Water Reactor Generic Tube Degradation predictions-U.S. Recirculating Steam Generators with Alloy 600TT and Alloy 690TT
    J. Harris [2003]
  • PWR Steam Generator Replacement Survey Results
    P. Tran [2005]
  • On the relationship between grain boundary connectivity, coincident site lattice boundaries, and intergranular stress corrosion cracking
  • On the mechanism of serrated grain boundary formation xn ni-based superalloys
    A.K. Koul [1983]
  • Observations of roughening/de-faceting phase transitions in grain boundaries
    T.E. Hsieh [1989]
  • Nickel boride (NiB) as an inhibitor for an IGSCC of alloy 600 and its applicability
    Y.S. Yi [2005]
  • Microstructural characterization on intergranular stress corrosion cracking of alloy 600 in PWR primary water environment
    Y.S. Lim [2013]
  • Metallurgical factors affecting the crack growth resistance of a superalloy
    J.M. Larson [1977]
  • Lead-Induced stress corrosion cracking of Alloy 600 and 690 in high-temperature water
    T. Sakai [1991]
  • Grain-boundary structure and segregation behavior in a nickel-base stainless alloy
    S.I. Baik [2012]
  • Grain boundary structure and intergranular stress corrosion crackinitiation in high temperature water of a thermally sensitized austenitic stainless steel
  • Grain boundary faceting of (1010)tilt boundaries in zinc
    G.H. Bishop [1971]
  • Grain boundary design and control for intergranular stress-corrosion resistance
    G. Palumbo [1991]
  • Grain Boundary Deformation-induced Intergranular Stress Corrosion Cracking of Nie16Cre9Fe in 360oC Water
  • Electrochemical noise analysis of PbSCC of Alloy 600 SG tube in caustic environments at high temperature
    S.W. Kim [2009]
  • Effect of composition and heat treatment on stress corrosion cracking of Alloy 600 steam generator tubes in sodium hydroxide
    J.R. Crum [1982]
  • Corrosion behavior of Nibased alloys in lead-contaminated water
    S.S. Hwang [1998]
  • Analysis of the intergranular cavitation of Nb-a 286 alloy in high temperature low cycle fatigue using EBSD technique
    B.S. Rho [2000]
  • An approach to grain boundary design for strong and ductile polycrystals
    T. Watanabe [1984]
  • An EBSD examination of SUS316 stainless steel irradiated to 73 dpa and deformed at 593 K
    K. Fukuya [2011]
  • A study on the mechanism of serrated grain boundary formation in an austenitic stainless steel
    K.J. Kim [2011]
  • A model for the normal stress dependence of intergranular cracking of irradiated 316 L stainless steel in supercritical water
    E. West [2011]