Page 137 - dysertaciyahembara
P. 137
115. Ramamurthy S., Atrens A. The influence of applied stress rate on the
stress corrosion cracking of 4340 and 3.5NiCrMoV steels in distilled water at 30
degrees C// Corrosion Science. 2010; 52(3) p.1042-51
116. Villalba E., Atrens A. Hydrogen embrittlement and rock bolt stress
corrosion cracking// Engineering Failure Analysis. 2009; 16(1) p.164-75.
117. Depover T., Escobar D.P., Wallaert E., Zermout Z., Verbeken K.
Effect of hydrogen charging on the mechanical properties of advanced high
strength steels// International Journal of Hydrogen Energy. 2014; 39(9) p.4647-
4656.
118. Gamboa E., Atrens A. Environmental influence on the stress corrosion
cracking of rock bolts// Engineering Failure Analysis. 2003; 10(5) p.521-58.
119. Depover T., Wallaert E., Verbeken K. Fractographic analysis of the
role of hydrogen diffusion on the hydrogen embrittlement susceptibility of DP
steel// Materials Science and Engineering a-Structural Materials Properties
Microstructure and Processing. 2016; 649 p.201-208.
120. Rehrl J., Mraczek K., Pichler A., Werner E. Mechanical properties and
fracture behavior of hydrogen charged AHSS/UHSS grades at high- and low
strain rate tests// Materials Science and Engineering a-Structural Materials
Properties Microstructure and Processing. 2014; 590 p.360-367.
121. Maier H.J., Popp W., Kaesche H. Effects of hydrogen on ductile
fracture of a spheroidized low-alloy steel// Materials Science and Engineering a-
Structural Materials Properties Microstructure and Processing. 1995;191(1-2)
p.17-26.
122. Djukic M.B., Bakic G.M., Zeravcic V.S., Rajicic B., Sedmak A.,
Mitrovic R, et al., editors. Towards a unified and practical industrial model for
prediction of hydrogen embrittlement and damage in steels// 21st European
Conference on Fracture (ECF); 2016 Jun 20-24; Catania, ITALY2016.
123. Barnoush A., Asgari M., Johnsen R., Hoel R. Hydrogen Effect on
Nanomechanical Properties of the Nitrided Steel// Metallurgical and Materials
137