概述了主蒸汽管道和注蒸汽管道剩余寿命预测方法的发展状况,主要介绍了主蒸汽管道蠕变曲线逐步外推法和蠕变损伤及裂纹扩展寿命预测法.还对注蒸汽管道灰色预测方法、人工神经网络方法两种腐蚀剩余寿命预测方法进行了探讨.
参考文献
[1] | 蔡文河,杜双明,张增广,倪镜澄.12CrMoV钢主蒸汽管道剩余寿命的研究[J].华北电力技术,2004(11):5-10. |
[2] | 王文.减缓注汽管道和炉管腐蚀的好方法-选用15CrMo无缝钢管[J].石油工程建设,2001(05):39-40,43. |
[3] | 尚思贤,董莉,魏新春.克拉玛依稠油热采管线腐蚀原因及对策研究[J].腐蚀与防护,2003(04):168-171,174. |
[4] | 成建国;由立臣;宋建华 等.高温高压蒸汽分支管线的变幅值热疲劳裂纹扩展寿命研究[J].化工机械,1996,23(05):289-293. |
[5] | M. Zrilic;Z. Burzic;Z. Cvijovic .FRACTURE TOUGHNESS AND CRACK RESISTANCE OF STEAM PIPELINE STEEL IN INITIAL AND USED STATES[J].Strength of Materials,2004(1):47-58. |
[6] | 杨文鹄.固定式蒸汽和热水锅炉及蒸汽和热水管道弯头寿命评定方法[J].锅炉技术,1993(10):22-32. |
[7] | W Suna;T H Hydea;A A Beckera et al.Some key effects on the failure assessment of weld repairs in CrMoV pipelines using continuum damage modeling[J].Engineering Failure Analysis,2005,12(05):720-745. |
[8] | 束国刚,李益民,赵彦芬,梁昌乾,王荣山,陈国良,郭宏,孙继跃.基于蠕变曲线的12Cr1MoV钢寿命外推计算方法[J].热力发电,2000(06):32-35. |
[9] | M. Zheng;J.H. Luo;X.W. Zhao .Effect of pre-deformation on the fatigue crack initiation life of X60 pipeline steel[J].International Journal of Pressure Vessels and Piping,2005(7):546-552. |
[10] | 熊先仁.高温蒸汽管道在高温蠕变与低周疲劳交互作用下的损伤演化和寿命估算方法[J].江西科学,2005(01):9-13. |
[11] | Morris A a;Dear J b;Kourmpetis M c .Life assessment by monitoring biaxial strain-rates in high temperature steam pipelines[J].Acta Petrolei Sinica,2006,27(01):119-123. |
[12] | Dmitrik V V;Tsaryuk A K;Bugaets A A.Evaluation of remaining life of welded joints of pipelines for thermal power plants[J].Paton Welding Journal,2006(02):6-10. |
[13] | 艾万发,韩景瑞,马睿.15CrMo钢在稠油热采注蒸汽管道上的应用[J].腐蚀与防护,2003(02):83-84,63. |
[14] | 刘晓东,李著信.基于灰色组合模型的管道腐蚀速率预测[J].压力容器,2007(03):15-19. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%