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Research on the accurate control of initial and finishing cooling temperatures for X70 pipeline steels

机译:X70管线钢的初,终冷却温度的精确控制研究

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Different cooling parameters, including the initial cooling temperature, finishing cooling temperature and cooling rate, have a significant effect on the final microstructures and properties for pipeline steels. In present work, Gleeble-1500 thermal-mechanical simulator was used to investigate the microstructural evolution of X70 pipeline steels under different cooling conditions, and the microstructures obtained were analyzed using optical microscope and transmission electron microscope. The experimental results showed that when the initial and finishing cooling temperatures are controlled in the range of 740~760°C and 500~520°C respectively, the microstructure of X70 pipeline steels reveals a proper content (about 12%) of pre-eutectoid ferrite besides acicular ferrite and M/A (Martensite/Austenite) island, which can guarantee an optimum combination of strength and ductility. In contrast to the conventional way using CCT curve, this methodology shows a higher accuracy and operability, and used in industrial production to achieve good effect.
机译:不同的冷却参数,包括初始冷却温度,最终冷却温度和冷却速率,对管线钢的最终组织和性能有重大影响。在目前的工作中,使用Gleeble-1500热力学模拟器研究了X70管线钢在不同冷却条件下的组织演变,并使用光学显微镜和透射电子显微镜对获得的组织进行了分析。实验结果表明,当将初,终冷却温度分别控制在740〜760℃和500〜520℃的范围内时,X70管线钢的显微组织显示出适当的共析物含量(约12%)。除针状铁素体和M / A(马氏体/奥氏体)岛之外,还可以保证强度和延展性的最佳组合。与使用CCT曲线的常规方法相比,该方法显示出更高的准确性和可操作性,并在工业生产中使用以达到良好的效果。

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