Page 185 - Dys
P. 185
185
54. Ефимов А. А., Гусев Б. А., Пыхтеев О. Ю. и др.Локальная коррозия
углеродистой стали нефтепромыслового оборудования. Защита металлов.
1995. 31(6). С. 604–608.
55. Iannuzzi M. Environmentally assisted cracking (EAC) in oil and gas
production. Stress Corrosion Cracking. Sawston, UK : Woodhead Publishing Ltd.,
2011. Р. 570–607.
56. Wang J., Meng L., Fan Z., Liu Q., Tong Z. Mechanism and modelling of
CO 2 corrosion on downhole tools. Royal Society Open Science. 2019. 6(4).
Paper 181899.
57. Bühler C. M., Pereyra M. G., Lopez E. O., Perez T. E. Development of
sucker rods for aggressive environments. CORROSION 2017 : Int. Conf. New
Orleans, USA, March 2017. Paper NACE-2017-8944.
58. Srinivasan S., Lagad V., Kane R. D. Automating evaluation аnd selection
of corrosion resistant alloys for oil and gas production and transmission.
CORROSION 2005 : Int. Conf. Houston : NACE, 2005. Paper № 05054. 19 р.
59. Li T., Yang Y., Gao K., Lu M. Mechanism of protective film formation
during CO 2 corrosion of X65 pipeline steel. Journal of University of Science and
Technology Beijing, Mineral, Metallurgy, Material. 2008. 15(6). P. 702–706.
60. López. D. A., Pérez T., Simison S. N. The influence of microstructure and
chemical composition of carbon and low alloy steels in CO 2 corrosion. A state-of-
the-art appraisal. Materials and Design. 2003. 24(8). P. 561–575.
61. Nešić S. Key issues related to modelling of internal corrosion of oil and
gas pipelines – A review. Corrosion Science. 2007. 49(12). P. 4308–4338.
62. Nyborg R. Overview of CO 2 сorrosion models for wells and pipelines.
CORROSION 2002 : Int. Conf. Houston : NACE, 2002. Paper № 233.
63. Nordsveen M., Nesic S., Nyborg R., Stangeland A. A mechanistic model
for carbon dioxide corrosion of mild steel in the presence of protective iron carbonate
films – Part 1: Theory and verification. Corrosion. 2003. 59(5). P. 443–456.