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306
98. Role of microstructures on stress corrosion cracking of pipeline steels
in carbonate-bicarbonate solution// Asahi H. et al. Corrosion. 1999. Vol. 55.
№ 7. P. 644–652.
99. Pawłowski B., Mazur A., Gorczyca S. The effect of the tempering
processes on the susceptibility to stress corrosion cracking of high strength steel.
Corrosion Science. Vol. 32. № 7. 1991. P. 685–691.
100. Torres-Islas A., Gonzalez-Rodriguez J.G., Uruchurtu J., Serna S.
Stress corrosion cracking study of microalloyed pipeline steels in dilute
NaHCO 3 solutions. Corrosion Science. 2008. Vol. 50. № 10. P. 2831–2839.
101. Effect of inclusions on initiation of stress corrosion cracks in X70
pipeline steel in an acidic soil environment / Liu Z.Y. et al. Corrosion Science.
2009. Vol. 51. № 4. P. 895–900.
102. Yunovich M., Xia Z., Szklarska-Smialowska Z. Factors influencing
stress corrosion cracking of carbon steel in diluted bicarbonate environments.
Corrosion. 1998. Vol. 54. № 2. P. 155–161.
103. Kentish P. Stress corrosion cracking of gas pipelines – Effect of
surface roughness, orientations and flattening. Corrosion Science. 2007. Vol. 49.
№ 6. P. 2521–2533.
104. Microstructure dependence of stress corrosion cracking initiation in
X-65 pipeline steel exposed to a near-neutral pH soil environment / Chu R. et al.
// Corrosion. 2004. Vol. 60. № 3. P. 275–283.
105. Mustapha A., Charles E. A., Hardie D. Evaluation of environment-
assisted cracking susceptibility of a grade X100 pipeline steel. Corrosion
Science. 2011. Vol. 54. № 1. 2012. P. 5–9.
106. Zhang G. A., ChengY. F. Micro-electrochemical characterization and
Mott–Schottky analysis of corrosion of welded X70 pipeline steel in
carbonate/bicarbonate solution. Electrochimica Acta. 2009. Vol. 55. № 1.
P. 316–324.