Structure and Properties of Steel for Producing Hydrogen Sulfide Resistant Oil and Gas High Strength Pipes

被引:0
作者
Pumpyanskii, D. A. [1 ]
Pyshmintsev, I. Yu. [2 ,3 ]
Maltseva, A. N. [2 ,3 ]
Uskov, D. P. [4 ]
Smirnov, M. A. [3 ]
Arsenkin, A. M. [2 ]
机构
[1] BN Yeltsin Ural Fed Univ, Ekaterinburg, Russia
[2] TMK Sci & Tech Ctr, Moscow, Russia
[3] Russian Res Inst Pipe Ind, Chelyabinsk, Russia
[4] Volzhskii Pipe Plant, Volzhskii, Russia
关键词
oil and gas pipes; chromium-molybdenum steels; microstructure; mechanical properties; cold resistance; sulfide stress corrosion cracking; quenching; tempering; STRESS CRACKING RESISTANCE;
D O I
10.1007/s11015-023-01430-6
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
Oil and gas production casing and compression pipes used for structures in oil and gas deposit structures contaminated with a high concentration of hydrogen sulfide should have alongside high strength and cold resistance good sulfide stress corrosion cracking resistance. Medium carbon steels alloyed with chromium and molybdenum are used extensively for such products. After quenching and tempering in the temperature range 680-720oC these steels possess increased yield and tensile strengths along with good ductility. Alloying with molybdenum and vanadium provides a marked increase in sulfide stress corrosion cracking resistance with an increase in tempering temperature in the range indicated.
引用
收藏
页码:1173 / 1180
页数:8
相关论文
共 50 条
[31]   Formation of structure and properties in welded joints of oil line pipes [J].
L. M. Vyboishchik ;
A. V. Ioffe .
Metal Science and Heat Treatment, 2013, 54 :535-539
[32]   Effect of heat treatment on structure and properties of B alloyed high speed steel for rolling mill rolls [J].
Fu, H. G. ;
Du, Z. Z. ;
Jiang, Y. ;
Li, P. ;
Zhou, R. ;
Cen, Q. H. ;
Lei, Y. P. ;
Xing, J. D. .
KOVOVE MATERIALY-METALLIC MATERIALS, 2013, 51 (03) :189-196
[33]   Effects of Mo on high-temperature strength of fire-resistant steel [J].
Wan, Rongchun ;
Sun, Feng ;
Zhang, Lanting ;
Shan, Aidang .
MATERIALS & DESIGN, 2012, 35 :335-341
[34]   Influence of banded structure on the mechanical properties of a high-strength maraging steel [J].
M. Ahmed ;
I. Salam ;
F. H. Hashmi ;
A. Q. Khan .
Journal of Materials Engineering and Performance, 1997, 6 :165-171
[35]   High strength welding of NiTi and stainless steel by impact: Process, structure and properties [J].
Li, Jianxiong ;
Panton, Boyd ;
Liang, Shunxing ;
Vivek, Anupam ;
Daehn, Glenn .
MATERIALS TODAY COMMUNICATIONS, 2020, 25
[36]   Analytical methods of predicting the structure and mechanical properties of high tensile strength steel [J].
Piekarska, Wieslawa ;
Goszczynska-Kroliszewska, Dorota .
XXI POLISH-SLOVAK SCIENTIFIC CONFERENCE MACHINE MODELING AND SIMULATIONS MMS 2016, 2017, 177 :92-98
[37]   Influence of banded structure on the mechanical properties of a high-strength maraging steel [J].
Ahmed, M ;
Salam, I ;
Hashmi, FH ;
Khan, AQ .
JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, 1997, 6 (02) :165-171
[38]   Scientific and Technological Bases for Developing Cold-Resistant Steel with a Guaranteed Yield Strength of 315–750 MPa for Arctic Conditions: Part 2. Manufacturing Technology, Structure, Properties, and Serviceability of Sheet Products [J].
Sych O.V. .
Inorganic Materials: Applied Research, 2019, 10 (06) :1282-1300
[39]   A review: The impact of hydrogen embrittlement on the fatigue strength of high strength steel [J].
Pradhan, Anwesha ;
Vishwakarma, Manish ;
Dwivedi, Seep Kumar .
MATERIALS TODAY-PROCEEDINGS, 2020, 26 :3015-3019
[40]   Dissimilar welding of high nitrogen stainless steel and low alloy high strength steel under different shielding gas composition: Process, microstructure and mechanical properties [J].
Liu, Zeng ;
Fan, Cheng-lei ;
Yang, Chun-li ;
Ming, Zhu ;
Lin, San-bao ;
Wang, Lang-ping .
DEFENCE TECHNOLOGY, 2023, 27 :138-153