Page 132 - dysertaciyahembara
P. 132
73. Yu H., Olsen J.S., Alvaro A., Olden V., He J., Zhang Z. A uniform
hydrogen degradation law for high strength steels// Engineering Fracture
Mechanics. 2016; 157 p. 56-71.
74. Olden V., Thaulow C., Johnsen R., Østby E., Berstad T. Application
of hydrogen influenced cohesive laws in the prediction of hydrogen induced stress
cracking in 25% Cr duplex stainless steel// Engineering Fracture Mechanics.
2008; 75(8) p. 2333-2351.
75. Jemblie L., Olden V., Akselsen O.M. A review of cohesive zone
modelling as an approach for numerically assessing hydrogen embrittlement of
steel structures// Philosophical Transactions of the Royal Society A:
Mathematical, Physical and Engineering Sciences. 2017; 375(2098) p. 20160411.
76. Liang Y., Sofronis P. Toward a phenomenological description of
hydrogen-induced decohesion at particle/matrix interfaces// Journal of the
Mechanics and Physics of Solids. 2003; 51(8) p. 1509-1531.
77. Matsumoto R., Seki S., Taketomi S., Miyazaki N. Hydrogen-related
phenomena due to decreases in lattice defect energies—molecular dynamics
simulations using the embedded atom method potential with pseudo-hydrogen
effects// Computational Materials Science. 2014; 92 p. 362-371.
78. Solanki K.N., Tschopp M.A., Bhatia M.A., Rhodes N.R. Atomistic
investigation of the role of grain boundary structure on hydrogen segregation and
embrittlement in α-Fe// Metallurgical and Materials Transactions A. 2013; 44(3)
p. 1365-1375.
79. Song J., Curtin W.A. A nanoscale mechanism of hydrogen
embrittlement in metals// Acta Materialia. 2011; 59(4) p. 1557-1569.
80. Ramasubramaniam A., Itakura M., Ortiz M., Carter E.A. Effect of
atomic scale plasticity on hydrogen diffusion in iron: Quantum mechanically
informed and on-the-fly kinetic Monte Carlo simulations// Journal of Materials
Research. 2008; 23(10) p. 2757-2773.
132