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Development of Steel Microalloying System for Cold-Resistant Coiled Product Designated for Pipes Under CRC Conditions

机译:CRC条件下管道指定用于管道的耐冷轧产品钢微合金系统的开发

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are provided for a study of the effect of microalloying steel with niobium, titanium,, and vanadium on the level of mechanical properties and cold resistance of coiled rolled product for pipe purposes produced under conditions of the OMK-Stal casting and rolling complex (CRC). It is shown that with a standard nitrogen content in steel (less than 0.008%) under CRC conditions introduction into pipe steel of microadditions of vanadium does not provide strengthening for coiled rolled product by a precipitation hardening mechanism. Precipitation of vanadium carbide phase is difficult as a result accelerated strip cooling on the run-out table before winding strip on a coil and use of relatively low coiling temperatures under CRC conditions. Separation of VC particles after tempering at 650A degrees C confirms retention of vanadium in solid solution. The presence of fine VN particles in steel with an increased nitrogen content may be explained by the fact the vanadium nitride phase may precipitate at higher temperatures compared with carbide. Research work has made it possible to assimilate production of cold-resistant coiled rolled product more than 10 mm thick of strength class up to K60 under CRC conditions without microalloying steel with vanadium.
机译:用于研究微合金化钢与铌,钛,和钒对线圈的机械性能水平和卷绕式轧制产品(CRC)条件下生产的管道的机械性能和耐寒电阻的研究。结果表明,在CRC条件下钢(小于0.008%)的标准氮含量引入钒的微档管钢,不能通过沉淀硬化机制提供卷绕轧制产品的强化。碳化物相的沉淀是难以在绕组条带上的在线条带上的延伸表上的加速条带冷却,以及在CRC条件下使用相对低的卷取温度。在650A℃的回火后,将VC颗粒分离确认在固溶下的钒保持钒。通过碳化物在较高温度下促使氮化钒相沉淀出来的钢中,钢中的细胞颗粒的存在可以解释。研究工作使得可以在没有微合金化钢与钒的CRC条件下使耐寒卷材的产生超过10mm的强度等级的厚度厚度为K60的强度等级。

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