Page 310 - DISS_NYRKOVA
P. 310
310
Защита от коррозии оборудования газовой промышленности. М. : ИРЦ
Газпром. 2000. 79 с.
133. Wu T., Xu J., Sun C., Yan M., Yu C., Ke W. Microbiological
corrosion of pipeline steel under yield stress in soil environment. Corrosion
Science. 2014. Vol. 88. P. 291–305.
134. Microbiologically influenced corrosion of a pipeline in a
petrochemical plant / M. K. Khouzani et al. Metals 2019. Vol. 9. № 4. 459.
135. Liu H., Cheng Y.F. Mechanistic aspects of microbially influenced
corrosion of X52 pipeline steel in a thin layer of soil solution containing
sulphate-reducing bacteria under various gassing conditions. Corrosion Science.
2018. Vol. 133. P. 178–189.
136. Abedi S.Sh., Abdolmaleki A., Adibi N. Failure analysis of SCC and
SRB induced cracking of a transmission oil products pipeline. Engineering
Failure Analysis. 2007. Vol. 14. № 1. P. 250–261.
137. Effect of residual and external stress on corrosion behaviour of X80
pipeline steel in sulphate-reducing bacteria environment / X. Li et al.
Engineering Failure Analysis. 2018. Vol. 91. P. 275–290.
138. He D. X., Chen W., Luo J. L. Effect of cathodic potential on
hydrogen content in a pipeline steel exposed to NS4 near-neutral pH soil
solution. Corrosion. 2004. Vol. 60. № 8. Р. 778–786.
139. Li M. C., Cheng Y. F. Mechanistic investigation of hydrogen-
enhanced anodic dissolution of X-70 pipe steel and its implication on near-
neutral pH SCC of pipelines. Electrochimica Acta. 2007. Vol. 52. № 28.
P. 8111–8117.
140. Luo J., Luo S., Li L., Zhang L., Wu G., Zhu L. Stress corrosion
cracking behavior of X90 pipeline steel and its weld joint at different applied
potentials in near-neutral solutions. Natural Gas Industry B. 2019. Vol. 6. № 2.
P. 138–144.