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书名 石油工业中应力腐蚀研究(英文版)(精)
分类 科学技术-工业科技-能源
作者 李晓刚
出版社 化学工业出版社
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简介
目录
Preface
Fore word
Chapter 1 Stress Corrosion Cracking Case Study of 40CrNiMo Drill Pipe Bit in Gas Field
1.1 Experimental results and analysis
1.2 Observation and Analysis of Microscopic Morphology
1.3 Conclusion
Chapter 2 Stress corrosion cracking mechanism of 40CrNiMo steel in simulated drilling fluid environment
2.1 Test Method
2.2 Test results and discussion
2.3 Conclusion
Chapter 3 Stress corrosion failure cases of P110 pipeline for CO2-driven Oil Recovery
3.1 Test results and analysis
3.2 Stress Analysis of Pipeline
3.3 Cause Analysis of Oil Pipe Cracking
3.4 Conclusion
Chapter 4 Stress Corrosion Cracking Mechanism of P110 Tubing in Simulated Fluid of Oil Well Annulus
4.1 Test Method
4.2 Test results and analysis
4.3 Analysis of the failure mechanism for tubing stress corrosion
4.4 Conclusion
Chapter 5 Stress Corrosion Cracking Case Studies of N80 Oil Casing under High CO2 Pressure
5.1 Test results and analysis
5.2 Stress Analysis of Pipeline
5.3 Cause Analysis of Oil Pipe Cracking
5.4 Conclusion
Chapter 6 Stress Corrosion Cracking mechanism of N80 Pipe Steel under high CO2 pressure
6.1 Experimental methods
6.2 Test results and analysis
6.3 Conclusion
Chapter 7 Stress Corrosion Failure Analysis of Stainless Steel and 35CrMo Steel for Oil Tree
7.1 Experimental results and analysis
7.2 Analysis of Cracking Reasons of Oil Production Tree Material
7.3 Conclusion
Chapter 8 Stress Corrosion Cracking Mechanism of 00Cr13Ni5Mo Oil Bundle Unit
8.1 Experimental Method
8.2 Test results and analysis
8.3 Discussion
8.4 Conclusion
Chapter 9 Stress Corrosion Cracking Process of 2205 Duplex Stainless Steel in the Simulated Environment of Oil and Gas Field
9.1 Experimental Method
9.2 Test results and analysis
9.3 Discussion
9.4 Conclusion
Chapter 10 Stress Corrosion Cracking Case Study of Pipeline Steel in Typical Soil Environment
10.1 Experimental methods
10.2 Test results and analysis
10.3 Discussion
10.4 Conclusion
Chapter 11 Stress Corrosion Cracking Mechanism of X70 in Acid Soil Environment
11.1 Test method
11.2 Test results and analysis
11.3 Discussion
11.4 Conclusion
Chapter 12 Stress Corrosion Cracking Case Study of Pipeline Steel in Typical Soil Environment
12.1 Experimental methods
12.2 Test results and analysis
12.3 Discussion
12.4 Conclusion
Chapter 13 Stress Corrosion Cracking Case Study of Distillation Intake Pipe Welding Seam in Atmospheric-Vacuum Distillation Unit
13.1 Test results and analysis
13.2 Analysis of corrosion mechanism
13.3 Conclusion
Chapter 14 Stress Corrosion Cracking Process of Distillation Intake Pipe Welding Seam in Atmospheric-Vacuum Distillation Unit
14.1 Experimental method
14.2 Experimental results and analysis
14.3 Analysis and discussion
14.4 Conclusion
Chapter 15 Stress Corrosion Cracking Case Study of Catalytic Cracking Units
15.1 Experimental analysis of corrosion cracking failure of catalytic cracking unit
15.2 Analysis of the Causes of Stress Corrosion Cracking
15.3 Conclusion
Chapter 16 Stress Corrosion Cracking Mechanism of Fluid Catalytic Cracking Unit
16.1 Experimental method
16.2 Experimental results and analysis
16.3 Analysis and discussion
16.4 Conclusion
Chapter 17 Stress Corrosion Cracking Case Study of Cold High-Pressure Separator in Hydrocracking Unit
17.1 D405 cold and high-pressure separator equipment
17.2 Operating Environment of D405 Equipment
17.3 Conclusion
Chapter 18 Stress Corrosion Cracking Mechanism of 16Mn Steel in Wet H2S Environment
18.1 Experimental methods
18.2 Experimental results and analysis
18.3 Analysis of stress corrosion cracking mechanism
18.4 Conclusion
Chapter 19 Hydrogen Diffusion and Influencing Factors in Stress Corrosion Cracking of 16Mn Steel in Wet H2S Environment
19.1 Experimental methods
19.2 Experimental results
19.3 Analysis and
内容推荐
本书透过大量石油工业中的典型失效案例,通过实验室条件下的模拟和加速试验,对典型石油工业腐蚀体系下的应力腐蚀案例的开裂过程与机理进行深入剖析,最终找到能够很好重现实际应力腐蚀过程的实验室加速试验条件与载荷谱,以期对石油工业腐蚀体系下应力腐蚀寿命的准确评估和安全评定提供有力的佐证,进而为国内外石油生产的安全运行、节约能源等提供重要的理论与技术支撑。
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