Increase of resistance of piercing mill mandrels at seamless pipes production of 13Cr grade martensite class stainless steel at line ТПА 159‒426 of JSC VTZ

I. I. Lube, N. V. Trutnev, S. V. Tumashev, A. Krasikov, A. G. Ul’yanov, A. Korsakov, Ya. I. Kosmatskii
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引用次数: 2

Abstract

At production of pipes of type 13Cr grade steel used at development of oil and gas deposits in areas with aggressive environment, intensive wear of instrument takes place, first of all, piercing mill mandrels. Factors, influencing the resistivity of the piercing mandrels considered, including chemical composition of the material, the mandrel is made of and its design. Based on industrial experience it was shown, that chrome content in the mandrel material practically does not affect on the increase of its resistivity, since the formed thin protective oxides having high melting temperature, are quickly failed and practically are not restored in the process of piercing. To increase the resistivity of piercing mandrels at production of casing tubes of type 13Cr grade steel, a work was accomplished to select a new material for their manufacturing. The chemical composition of steel presented, which was traditionally used for piercing mandrels manufacturing, as well as a steel grade proposed to increase their resistivity. First, molybdenum content was increased, which increases the characteristics of steel strength and ductility at high temperatures and results in grain refining. Second, tungsten content was also increased, which forms carbides in the steel resulting in an increase of its hardness and “red resistivity”, as well as in preventing grains growth during heating. Third, cobalt content was also increased, which increases heat resistivity and shock loads resistivity. The three elements increase enabled to increase the mandrels resistivity by two times. Results of mandrel test of steel 20ХН2МВ3КБ presented, the mandrel having corrugation on the working cone surface, which enabled to reach the resistivity growth to 12 passes without significant change of instrument cost. Microstructure of mandrels made of steels 20Х2Н4МФА and 20ХН2МВ3КБ shown. Application of the centering pin of special design was tested, which provided forming of a rounding edge on the front billet ends, eliminated undercut of mandrel external surface in the process of secondary billet grip and increase the service life of the piercing mill mandrels. At production of seamless pipes of martensite class type 13Cr stainless steels having L80 group of strength, an increase of piercing mandrel resistivity was reached by more than four times, which together with other technical solutions enabled to increase the hourly productivity of the hot rolling section of Volzhsky pipe plant ТПА 159-426 line by more than two times.
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JSC VTZ ТПА 159 ~ 426线13Cr级马氏体级不锈钢无缝管生产中穿孔机芯棒阻力的增加
环境恶劣地区油气田开发用13Cr型钢管材在生产过程中,仪表磨损严重,首当其冲的是穿孔机芯轴。影响穿孔筒电阻率的因素包括穿孔筒材料的化学成分及其设计。根据工业经验表明,芯材中铬含量对其电阻率的提高几乎没有影响,因为在穿孔过程中形成的具有较高熔化温度的薄保护氧化物很快失效,几乎不能恢复。为提高13Cr钢套管生产中穿心的电阻率,进行了新材料的选择工作。介绍了传统上用于穿孔芯棒制造的钢的化学成分,以及提高其电阻率的钢等级。首先,钼含量增加,提高了钢的高温强度和延展性,导致晶粒细化。其次,钨的含量也增加了,在钢中形成碳化物,使其硬度和“红电阻率”增加,并且在加热过程中防止晶粒长大。第三,钴含量也增加了,这增加了耐热性和冲击负荷的电阻性。这三种元素的增加使芯材的电阻率提高了两倍。介绍了20ХН2МВ3КБ钢芯棒试验的结果,芯棒在工作锥面上有波纹,使电阻率增长到12道,仪器成本没有明显变化。图为20Х2Н4МФА和20ХН2МВ3КБ钢芯芯的显微组织。采用特殊设计的对中销进行了试验,使坯料前端面形成圆角边,消除了二次夹持过程中芯筒外表面的凹边,提高了穿孔机芯筒的使用寿命。在生产L80组强度的马氏体级13Cr不锈钢无缝管时,穿孔芯棒电阻率提高了4倍以上,加上其他技术解决方案,使Volzhsky管材厂ТПА 159-426线热轧段的小时生产率提高了2倍以上。
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