Materials Performance

SEP 2018

Materials Performance is the world's most widely circulated magazine dedicated to corrosion prevention and control. MP provides information about the latest corrosion control technologies and practical applications for every industry and environment.

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44 SEPTEMBER 2018 W W W.MATERIALSPERFORMANCE.COM MAO-XIAN XIONG is engaged in the fail- ure analysis of OCTG and equipment at Tarim Oil Field. He graduated from the China University of Petroleum (Beijing) in 2012 with a master's degree. SHUAN-LU LV is a professor with the Mate- rial Science and Engineering Department, China University of Petroleum, Beijing, China, and a specialist on failure analysis with Tarim Oil Field. He has 35 years of experience on aspects of failure analysis, inspection, and research of OCTG. Lv grad- uated from Metal Material Specialty of Xi'an Jiaotong University in 1983. YONG HAN is a professor and specialist on failure analysis at Xi'an Mauer Petroleum Engineering Laboratory, China. He gradu- ated from Metal Material Specialty of Xi'an Jiaotong University in 1984. JI-JUN XUE is with Xi'an Mauer Petroleum Engineering Laboratory, China. He is engaged in the failure analysis of OCTG and oil equipment at the Xi'an Petroleum University. Xue graduated from Xi'an Jiao- tong University with a doctor's degree. Continued f rom page 43 Editor's note: Learn more about corrosion of chromium steel in this Materials Performance quarterly special feature, "The Science Behind It." Now that you've read the MP article on the failure analysis of a S13Cr-110 premium joint tubing string fracture in a high-pressure, high-temperature well, explore the science behind the corrosion problem, which is presented in these related CORROSION articles: T. Hara, H. Asahi, "Conditions Under Which Cracks Occur in Modified 13% Chromium Steel in Wet Hydrogen Sulfide Environments," Corrosion 56, 5 (2000): pp. 533-542. http://corrosionjournal.org/doi/abs/10.5006/1.3280558 S. Huizinga, W.E. Like, "Corrosion Behavior of 13% Chromium Steel in Acid Stimulations," Corrosion 50, 7 (1994): pp. 555-566. http://corrosionjournal.org/ doi/abs/10.5006/1.3294357 G. Hinds, J. Zhao, A.J. Griffiths, A. Turnbull, "Hydrogen Diffusion in Super 13% Chromium Martensitic Stainless Steel," Corrosion 61, 4 (2005): pp. 348-354. http://corrosionjournal.org/doi/abs/10.5006/1.3279887 B. Sunil Kumar, V. Kain, B. Vishwanadh, "Effect of Tempering Treatments on Microstructure and Intergranular Corrosion of 13 wt% Cr Martensitic Stainless Steel," Corrosion 73, 4 (2017): pp. 362-378. http://www. corrosionjournal.com/doi/abs/10.5006/2141 A.J. Griffiths, G. Hinds, A. Turnbull, "Monotonic and Cyclic Slow Strain Rate Testing of Super 13% Chromium Steel Welds Under Cathodic Protection," Corrosion 61, 2 (2005): pp. 111-118. http://www.corrosionjournal.com/doi/abs/10.5006/1.3278165 MATERIALS SELECTION & DESIGN For a searchable index of MP article titles and authors going back to the magazine's inception in 1962, go to www.materialsperformance.com and click on "MP Index."

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