|
|
溶液环境对模拟剥离涂层下X70钢腐蚀行为的影响 |
陈旭1;2;李晓刚1;杜翠薇1; 梁平1 |
1. 北京科技大学材料科学与工程学院 北京 100083
2. 辽宁石油化工大学石油与天然气工程学院 抚顺 113001 |
|
EFFECTS OF SOLUTION ENVIRONMENTS ON CORROSION BEHAVIORS OF X70 STEELS UNDER SIMULATED DISBONDED COATING |
CHEN Xu1;2; LI Xiaogang1; DU Cuiwei1; LIANG Ping1 |
1. School of Materials Science and Engineering; University of Science and Technology Beijing; Beijing 100083
2. College of Petroleum Engineering; Liaoning Shihua University; Fushun 113001 |
引用本文:
陈旭;李晓刚;杜翠薇; 梁平. 溶液环境对模拟剥离涂层下X70钢腐蚀行为的影响[J]. 中国腐蚀与防护学报, 2010, 30(1): 35-40.
CHEN Xu,
LI Xiao-Gang,
DU Cui-Wei,
LIANG Beng.
EFFECTS OF SOLUTION ENVIRONMENTS ON CORROSION BEHAVIORS OF X70 STEELS UNDER SIMULATED DISBONDED COATING. J Chin Soc Corr Pro, 2010, 30(1): 35-40.
链接本文:
https://www.jcscp.org/CN/
或
https://www.jcscp.org/CN/Y2010/V30/I1/35
|
[1] Chin D T, Sabde G M. Modeling transport process and current distribute in a cathodically protected crevice [J].Corrosion, 2000, 56(8): 783-793
[2] Song Y Q, Du C W, Li X G. Electrochemical corrosion behavior of carbon steel with bulk coating holidays [J]. J. Univ. Sci. Technol.Beijing (Miner. Metall. Mater.), 2006, 13(2): 37-43
[3] Puiggali M, Rousserie S, Touzet M.Fatigue crack initiation on low-carbon steel pipes in a near-neurtral-pH environment under potential control conditions [J]. Corrosion, 2002,58(11): 961-970
[4] Sridhar N, Dunn D S, Seth M. Application of a general reactive transport model to predict environment under disbonded coating [J]. Corrosion, 2001, 57(7): 598-613
[5] Yan M C, Wang J Q, Ke W, et al. Effectiveness of cathodic protection under simulated disbonded coating on pipelines [J]. J. Chin.Soc. Corros. Prot., 2007, 27(5): 257-262
(闫茂成,王俭秋,柯伟等. 埋地管线剥离涂层覆盖下阴极保护的有效性 [J]. 中国腐蚀与防护学报, 2007, 27(5): 257-262)
[6] Li H L,Gao K W,Qiao L J,et al. Strength effect in stress corrosion cracking of high-strength steel in aqueous solution [J]. Corrosion, 2001, 57(4): 295-299
[7] Yan M C, Wang J Q, Han E H. Local environment under simulated disbonded coating on steel pipelines in soil solution [J]. Corros. Sci., 2008,50(5): 1331-1339
[8] Li Z F, Gan F X, Mao X H. A study on cathodic protection against crevice corrosion in dilute NaCl solutions [J].Corros. Sci., 2002, 44(4): 689-701
[9] Jack T R, Erno B, Krist K.Generation on near neutral pH and high pH SCC environments on buried pipelines [R]. Corrosion/2000, NACE International, Houston, TX, 2000: 211
[10] Song F M, Kirk D W, Graydon J W, et al. Steel corrosion under a disbonded coating with a holiday-Part 1: The model and validation [J]. Corrosion, 2002, 58(12): 1015-1024
[11] Chen W,King F,Vokes E.Characteristics of near-neutral-pH stress corrosion cracks in an X65 pipeline [J]. Corrosion, 2002, 58(3): 267-275
[12] Parkins R N,Blanchard W K,Delanty B S.Transgranular stress corrosion cracking of high-pressure pipelines in contact with solution of near neutral [J]. Corrosion, 1994, 50(5): 394-408
[13] Gu B, Luo J, Mao X.Hydrogen-facilitated anodic dissolution-type stress corrosion cracking of pipeline steels in near-neutral pH solution [J]. Corrosion, 1999, 55(1): 96-106
[14] Liu X, Yang W. The susceptible environmental conditions of stress corrosion cracking of gas pipelines [J].Mater. Mech. Eng., 2002, 26(1): 5-11
(刘杏,杨武.天然气长输管线应力腐蚀破裂的敏感性条件 [J].机械工程材料,2002, 26(1): 5-11)
[15] Cao C N. The Environment Corrosion of Materials in China [M]. Beijing: Chemical Industry Press, 2005
(曹楚南.中国材料的自然环境腐蚀 [M].北京:化学工业出版社,2005)
[16] Song F M, Jones D A, Kirk D W. Modeling pipeline corrosion within a disc-shaped crevice for various cathodic protection at the holiday and the effect of crevice geometry [R]. Corrosion /2005, Paper no.05137
[17] Song F M, Jones D A, Kirk D W. Predicting corrosion and current flow within a disc crevice on coated steels [J]. Corrosion, 2005, 61(2): 145-152
[18] Gan F,Sun Z W,Sabde G,et al. Cathodic protection to mitigate external corrosion of underground steel pipe beneath disbonded coating [J]. Corrosion,1994,50(10): 804-816
[19] Yan M C, Weng Y J. High pH environment under coating on cathodic protection pipelines [J]. J. Chin. Soc. Corros. Prot.,2004, 24(2): 95-99
(闫茂成,翁永基. 阴极保护管线破损涂层下高pH环境形成规律 [J]. 中国腐蚀与防护学报,2004, 24(2): 95-99)
[20] Yan M C, Weng Y J. Effect of environmental solution on electrochemical behaviors related to SCC of pipe line steels [J]. J. Chin. Soc. Corros. Prot., 2005, 25(1): 34-38
(闫茂成,翁永基. 环境溶液对管道钢应力腐蚀过程电化学行为的影响 [J]. 中国腐蚀与防护学报,2005, 25(1): 34-38)
[21] Song F M, Sridhar N. Modeling pipeline crevice corrosion under a disbonded coating with or without cathodic protection under transient and steady state conditions [J]. Corros. Sci., 2008, 50(1): 70-83
[22] Cherry B W, Gould A N. Pitting corrosion of nominally protected land-based pipelines [J]. Mater. Perform., 1990, 29(8): 22-31
[23] Brousseau R, Qian S. Distribution of steady-state current underneath a disbanded coatings [J]. Corrosion, 1994, 50(12): 907-911
[24] Perdomo J J, Chabica M E, Song I. Chemical and electrochemical conditions on steel under disbonded coatings: the effect of previously corrosion surface and wet and dry cycles [J]. Corros. Sci., 2001, 43(3): 515-532 |
|
Viewed |
|
|
|
Full text
|
|
|
|
|
Abstract
|
|
|
|
|
Cited |
|
|
|
|
|
Shared |
|
|
|
|
|
Discussed |
|
|
|
|