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DEVELOPMENT AND PRODUCTION OF ULTRA-HIGH STRENGTH LINEPIPES WITH DUAL-PHASE MICROSTRUCTURE FOR HIGH STRAIN APPLICATION

机译:具有双相微观结构的超高强度线桩的开发与生产,用于高应变应用

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Extensive studies to develop high strength linepipes with higher deformability have been conducted. One of the key technologies for improving deformability is dual-phase microstructural control. Steel plate with ferrite-bainite microstructure can be obtained by applying Thermo-mechanical controlled processing, TMCP, made up with controlled rolling and accelerated cooling process. Low carbon-boron free steels were used to enable the ferrite formation during cooling after controlled rolling, and the accelerated cooling process with ultimate cooling rate enabled to achieve high strength of up to X120 grade. On-line heating process by induction device was also applied subsequently after accelerated cooling in order to improve Charpy energy of the base material and homogeneity of material properties in the plate. Trial production of X120 high deformability linepipe was also conducted by applying dual-phase microstructural control. Microstructural and mechanical properties of X120 linepipe are introduced in this paper.
机译:已经进行了广泛的研究,以开发具有更高可变形性的高强度线纤维。用于改善变形性的关键技术之一是双相微结构控制。具有铁氧体 - 贝氏体微观结构的钢板可以通过施加热机械控制处理TMCP,由受控轧制和加速冷却过程进行。使用低碳 - 硼自由钢在控制轧制后冷却期间使铁素体形成,并且具有最终冷却速率的加速冷却过程,实现高达X120级的高强度。通过感应装置在加速冷却之后也通过感应装置在线加热过程,以便改善板材基材的基材和材料性质的均匀性的夏比能量。还通过施加双相微观结构对照进行X120高可变形性引线管的试验。本文介绍了X120线管的微观结构和力学性能。

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