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作者:对双相不锈钢断裂行为的老化
JMEPEG ASM International
DOI: 10.1007/s11665-010-9769-z 1059-9495/$19.00
Characterization of Corrosion Product Layers
from CO2 Corrosion of 13Cr Stainless Steel
in Simulated Oilfield Solution
Z.F. Yin, X.Z. Wang, L. Liu, J.Q. Wu, and Y.Q. Zhang
(Submitted July 8, 2009; in revised form September 14, 2010)
The influence of temperature and flow rate on the characterization and mechanisms of corrosion product
layers from CO2 corrosion of 13Cr stainless steel was carried out in simulated oilfield solution. Cyclic
potentiodynamic polarization method as well as weight loss tests in autoclave were utilized to investigate
pitting corrosion behavior at various temperatures. Weight loss tests were performed at 100 and 160 C
under dynamic and static flow conditions. At the same time, the significant pitting parameters such as Ecorr,
Epit, Epp, DE, and Ipass in cyclic polarization curves at various temperatures were analyzed and compared
for revealing the pitting behavior of 13Cr stainless steel. The surface measurement techniques such as SEM,
XRD, and XPS were used to detect the corrosion product layers. The results showed that both temperature
and flow rate had significant effects on characterization of corrosion product layers or passive films formed
on 13Cr stainless steel in CO2 corrosion system. At high temperature, lots of pits were formed at the
localized corrosion areas of metal surfaces. Corrosion r
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