Page 129 - dysertaciyahembara
P. 129

46.    Novak  P.,  Yuan  R.,  Somerday  B.P.,  Sofronis  P.,  Ritchie  R.O.  A

                  statistical,  physical-based,  micro-mechanical  model  of  hydrogen-induced

                  intergranular fracture in steel// Journal of the Mechanics and Physics of Solids.

                  2010; 58(2) p. 206-226.

                        47.    Koyama  M.,  Tasan  C.C.,  Akiyama  E.,  Tsuzaki  K.,  Raabe  D.

                  Hydrogen-assisted decohesion and localized plasticity in dual-phase steel// Acta

                  Materialia. 2014; 70 p.174-187.

                        48.    Djukic  M.B.,  Zeravcic  V.S.,  Bakic  G.,  Sedmak  A.,  Rajicic  B.

                  Hydrogen  embrittlement  of  low  carbon  structural  steel//  Procedia  Materials

                  Science. 2014; 3 p. 1167-1172.

                        49.    Djukic  M.B.,  Zeravcic  V.S.,  Bakic  G.M.,  Sedmak  A.,  Rajicic  B..

                  Hydrogen damage of steels: A case study and hydrogen embrittlement model//

                  Engineering Failure Analysis. 2015; 58 p. 485-498.

                        50.    Myers S.M., Baskes M.I., Birnbaum H.K., Corbett J.W., DeLeo G.G.,

                  Estreicher S.K., et al. Hydrogen interactions with defects in crystalline solids//

                  Reviews of Modern Physics. 1992; 64(2) p. 559.

                        51.    Nagao A., Smith C.D., Dadfarnia M., Sofronis P., Robertson I.M. The

                  role of hydrogen in hydrogen embrittlement fracture of lath martensitic steel//


                  Acta Materialia. 2012; 60(13-14) p. 5182-5189.
                        52.    Deng Y., Barnoush A. Hydrogen embrittlement revealed via novel in


                  situ  fracture  experiments  using  notched  micro-cantilever  specimens//  Acta
                  Materialia. 2018; 142 p. 236-247.


                        53.    Martin M.L., Fenske J.A., Liu G.S., Sofronis P., Robertson I.M. On
                  the  formation  and  nature  of  quasi-cleavage  fracture  surfaces  in  hydrogen


                  embrittled steels// Acta Materialia. 2011; 59(4) p. 1601-1606.

                        54.    Martin  M.L.,  Robertson  I.M.,  Sofronis  P.  Interpreting  hydrogen-

                  induced fracture surfaces in terms of deformation processes: A new approach//

                  Acta Materialia. 2011; 59(9) p. 3680-3687.









                                                                                                         129
   124   125   126   127   128   129   130   131   132   133   134