Manufacturing technologies of steel seamless tubes for production of hard-to-recover hydrocarbons

A. Shiryaev, S. Chetverikov, S. G. Chikalov, I. Pyshmintsev, P. V. Krylov
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Abstract

The review contains main directions in the development of modern steelmaking, hot rolling technologies and heat treatment aimed to follow increased requirements to seamless tubes for production of oil and gas under severe conditions. New targets of PJSC “Gazprom” in development of new resources have determined new technical requirements to pipes for low temperature application, resistant to hydrogen sulfide and carbon dioxide corrosion. Basic metal science approaches are given to develop new chemical compositions of high quality steels containing minimum of sulfur, phosphorous and solute gases. Corresponding heat treatment routes are determined for formation of martensitic microstructure in full wall section during quenching with subsequent high tempering for required combination of high strength and ductility. It was shown that optimal combination of high strength and toughness at 60 °C below zero can be achieved by alloying of chromium-molybdenum steel containing about 0.25 wt. % of carbon with strong carbon forming elements such as vanadium and niobium. Sustainability of these steels to stress sulfide cracking was achieved through grain refinement with microalloying by molybdenum in concentrations corresponding to strength grades that gives high hardenability and retards tempering of martensite. New compositions of corrosion resistant martensitic 13 % chromium steel were carried out that was resulted in required resistance to carbon dioxide environments with improved low temperature toughness and high strength. The authors present results of reconstruction of steel making and hot rolling production lines at JSC “Volzhskii Pipe Plant” providing the required quality of new products from continuously cast steel billets to finished tubes.
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难回收烃类生产用无缝钢管制造技术
该综述包含了现代炼钢、热轧技术和热处理发展的主要方向,旨在满足在恶劣条件下生产石油和天然气所需的无缝管的日益增长的要求。PJSC“Gazprom”在开发新资源方面的新目标确定了对低温应用管道的新技术要求,耐硫化氢和二氧化碳腐蚀。基础金属科学的方法,以开发新的化学成分的优质钢含有最少的硫,磷和溶质气体。确定了相应的热处理路线,以便在淬火过程中形成全壁截面的马氏体组织,然后进行高回火,以获得所需的高强度和高延展性的结合。结果表明,含碳量约为0.25 wt. %的铬钼钢与钒、铌等强成碳元素合金化可以在零下60℃时获得高强度和高韧性的最佳组合。这些钢对应力硫化物开裂的可持续性是通过与强度等级相对应的浓度的钼微合金化晶粒来实现的,从而获得高淬透性和延缓马氏体回火。研究了耐腐蚀马氏体13%铬钢的新成分,提高了低温韧性和高强度,达到了所需的耐二氧化碳环境性能。作者介绍了JSC“Volzhskii管材厂”的炼钢和热轧生产线的改造结果,提供了从连铸钢坯到成品管的新产品的要求质量。
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来源期刊
Izvestiya Vysshikh Uchebnykh Zavedenij. Chernaya Metallurgiya
Izvestiya Vysshikh Uchebnykh Zavedenij. Chernaya Metallurgiya Materials Science-Materials Science (miscellaneous)
CiteScore
0.90
自引率
0.00%
发文量
81
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