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Comprehensive Control on Microstructures and Properties of Medium Carbon V-N Microalloyed Steel Seamless Oil-Well Tubes of Hot-Rolling Non-Quenched/Tempered

机译:中碳V-N微合金钢无缝油管的微观结构和性能综合控制,热轧非淬火/钢材

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The relationship between microstructures and mechanical properties of a medium carbon V-N microalloyed steel used for N80 seamless oil-well tubes of hot rolling non-quenched/tempered (non-Q&T) was investigated. The results have shown that volume percentages of upper bainite, modified bainite and ferrite have a decisive influence on impact energies of steel tubes. When the total volume percentage of bainite is larger than 5%, the impact energy of tubes can not satisfy with the industrial criteria. Moreover, if the total volume percentage of bainite is smaller than 5%, then the impact energy of steel tubes enhances with volume percentage of ferrite increasing. The final microstructures have closely relation with tube billet quality, controlled cooling temperature after tube rolling and cooling method after stretch-reduction-diameter. High quality of medium carbon V-N microalloyed steel for non-Q&T oil-well tubes can be produced through comprehensive control of microstructures and mechanical properties in sub-procedures, especially for tube billet quality and controlled cooling parameters.
机译:研究了用于N80的热轧非淬火/回火(非Q&T)的N80无缝油井管的介质碳V-N微合金钢的微观结构和力学性能的关系。结果表明,上贝氏体,改良贝氏体和铁素体的体积百分比对钢管的冲击能量具有决定性的影响。当贝氏体的总体积百分比大于5%时,管的冲击能量不能满足工业标准。此外,如果贝氏体的总体积百分比小于5%,则钢管的冲击能量随着铁氧体的体积增加而增强。最终的微观结构与管坯质量,控制轧制和冷却方法后的管坯质量,控制冷却温度紧密相关。用于非Q&T油井管的高质量中等碳V-N微合金钢,可以通过综合控制微观结构和子程序中的机械性能,特别是管坯质量和控制的冷却参数。

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