期刊文献+

管线钢应力腐蚀开裂的影响因素 被引量:13

Factors Influencing Stress Corrosion Cracking of Pipeline Steels
下载PDF
导出
摘要 介绍了管线钢应力腐蚀开裂(SCC)的类型、条件及特点。就环境因素、力学因素和材料因素对管线钢应力腐蚀开裂的影响进行了详细分析。在环境因素方面,近中性和高pH值分别导致了不同类型的SCC,H2S和CO32--HCO3-浓度升高促进管线钢SCC的发生,低温和外加过电位增加SCC的敏感性;力学方面,载荷类型及应变速率比实际应力对管线钢SCC的影响更重要;材料因素方面,化学成分、热处理工艺决定了显微组织,进而影响管线钢发生SCC敏感性。 The types, conditions, and characteristics of stress corrosion cracking(SCC) of pipeline steels were introduced. The environmental, mechanical, and material factors influencing SCC of pipeline steels were discussed. Regarding environments, the effects of pH, H2S, and CO3^2- -HCO3^- content, temperature, and applied potential on SCC were analyzed. As to mechanical factors, the influence of the stress direction, stress strength, loading types, and strain rate on SCC were introduced. As for material factors, the influence of the chemical composition, heat treatment process, and metallographic structure on SCC were discussed.
出处 《装备环境工程》 CAS 2007年第3期21-26,共6页 Equipment Environmental Engineering
基金 国家科技基础条件平台建设项目(2005DKA10400)
关键词 管线钢 应力腐蚀开裂 环境 应力 应变速率 化学成分 显微组织 pipeline steel stress corrosion cracking environment stress strain rate chemical composition metallographic structure
  • 相关文献

参考文献37

二级参考文献122

  • 1李晓东,陈良■.力学因素对Welten 60管线钢应力腐蚀开裂行为的影响[J].金属学报,1993,29(2). 被引量:2
  • 2庄传晶 霍春勇 等.西气东输管线的风险预评价.石油管工程应用基础研究论文集[M].北京:石油工业出版社,2001.498-507.
  • 3[1]Delanty B, O Beirne J. Major field study compares pipeline SCC with coatings[J]. Oil Gas Journal, 1992, 90(24) :39.
  • 4[2]Parkins R N, Belhimer E, Blanchard W K. Stress corrosion cracking characteristics of a ranger of pipeline steels in carbonate-bicarbonate solution[ J ]. Corrosion, 1993,49( 12 ): 951.
  • 5[3]Ahmed T M, Lambert S B, Sutherby R, et al. Cyclic crack growth rates of X-60 pipeline steel in a neutral dilute solution[J]. Corrosion, 1997, 53(7) :581.
  • 6[4]Parkins R N, Blanchard W K, Delanty B S. Trangranular stress corrosion cracking of high-pressure pipelines in contact with solution of near neutral pH [ J ]. Corrosion, 1994; 50 ( 3 ):394.
  • 7[5]Zheng W, Macleod F A, Revie R W, et al. In:Jackman P S,Smith L M eds, Institute of Material Communications [ M ].European Federation of Corrosion Publications, 1996.28.
  • 8[6]Qiao L J, Luo J L, Mao X. Hydrogen evolution and enrichment around stress corrosion crack tips of pipeline steels in dilute bicarbonate solution[J]. Corrosion, 1998, 54(2): 115.
  • 9[7]Gu B, Yu W Z, Luo J L, et al. Transgular stress corrosion cracking of X-80 and X-52 pipeline steels in dilute aqueous solution with near-neutral pH [ J ]. Corrosion, 1999, 55 ( 3 ):312.
  • 10[8]Gu B, Luo J, Mao X. Hydrogen-facilitated anodic dissolution type stress corrosion cracking of pipleline steels in near-neutral pH solution[J ]. Corrosion, 1999, 55 ( 1 ): 96.

共引文献351

同被引文献151

引证文献13

二级引证文献67

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部