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Development of 780MPa grade Steel Plate by Microstructural Control Containing M-A through the On-Line Heating Process

机译:在线加热工艺通过含M-A的微结构控制开发780MPa级钢板

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High strength steel plates with 780MPa in tensile strength, suitable for building construction use, have been developed. The steel plates provide excellent combination of high strength, toughness, deformability and weldability. The key technology to obtain the excellent combination in mechanical properties of the steel is the microstructural control of M-A (martensite-austenite constituent) and the bainitic ferrite dual-phase structure, through the on-line heat treatment immediately after the accelerated cooling in Thermo-mechanical control process (TMCP). The developed steel plates have microstructure of fine M-A dispersed in the bainitic ferrite matrix. Basic metallurgical research revealed that the transformation behavior and microstructural morphologies were varied with the cooling stop temperature before the on-line heating, and the on-line heating temperature itself.Trial production of the developed 780MPa grade steel plates was also carried out with the plate mill. The obtained plates showed the satisfactory combination of high strength, low yield ratio, toughness.
机译:已经开发出抗拉强度为780MPa的高强度钢板,适用于建筑施工。钢板提供了高强度,韧性,可变形性和可焊接性的出色组合。获得钢的机械性能优异组合的关键技术是通过在马氏体热加速冷却后立即进行在线热处理,对马氏体(马氏体-奥氏体成分)和贝氏体铁素体双相结构的组织进行控制。机械控制过程(TMCP)。所开发的钢板具有分散在贝氏体铁素体基体中的细M-A的微观结构。基础冶金研究表明,随着在线加热之前的冷却停止温度和在线加热温度本身的变化,相变行为和组织形态也发生了变化。 开发的780MPa级钢板的试制也通过板轧机进行。所得板显示出高强度,低屈服比,韧性的令人满意的组合。

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