Theoretical models of threshold stress intensity factor and critical hydride length for delayed hydride cracking considering thermal stresses

논문상세정보

' Theoretical models of threshold stress intensity factor and critical hydride length for delayed hydride cracking considering thermal stresses' 의 참고문헌

  • The Effect of Hydrogen and Hydrides on the Integrity of Zirconium Alloy Components: Delayed Hydride Cracking
    M.P. Puls [2012]
  • Temperature dependence of misfit strains of d-hydrides of zirconium
    R.N. Singh [2007]
  • Specific Nuclear Reactors & Associated Plants
  • Singular behaviour at the end of a tensile crack in a hardening material
  • Plane strain deformation near a crack tip in a powerlaw hardening material
    J.R. Rice [1968]
  • On the singular character of thermal stresses near a crack tip
    G.C. Sih [1962]
  • Mechanical/thermal stress intensification for mode I crack tip:fracture initiation behavior of steel, aluminum and titanium alloys
    X.S. Tang [2008]
  • Measurements of delayed hydride cracking propagation rate in the radial direction of Zircaloy-2 cladding tubes
    T. Kubo [2012]
  • Fracture strength of hydride precipitates in Zre2.5Nb alloys
    S.Q. Shi [1999]
  • Effects of crack tip stress states and hydride-matrix interaction stresses on delayed hydride cracking
    M.P. Puls [1990]
  • Effect of specimen thickness on DHC velocity for Zr-2.5Nb alloy pressure tube material
    S. Sunil [2015]
  • Determination of fracture strength of dzirconium hydrides embedded in zirconium matrix at high temperatures
    T. Kubo [2013]
  • Delayed hydride cracking in zirconium alloys in a temperature gradient
    S. Sagat [2000]
  • Criteria for fracture initiation at hydrides in zirconium alloys I. Sharp crack tip
    S.Q. Shi [1994]
  • Anisotropic threshold stress intensity factor, KIH and crack growth rate in delayed hydride cracking of Zr-2.5Nb pressure tubes
    Y.S. Kim [2002]
  • An assessment of delayed hydride cracking in zirconium alloy cladding tubes under stress transients
    K.S. Chan [2013]
  • A review on hydride precipitation in zirconium alloys
    J. Bair [2015]
  • A model of the threshold stress intensity factor, KIH, for delayed hydride cracking of Zre2.5Nb alloy
    Y.S. Kim [2000]
  • A model for hydride-induced embrittlement in zirconium-based alloys
    D. Wappling [1997]
  • A metallographic and fractographic study of outside-in cracking caused by power ramp tests
    S. Shimada [2004]
  • A combined SIF and temperature model of delayed hydride cracking in zirconium materials