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Influence of Rolling Temperature and Cooling Rate on Microstructure and Properties of Pipeline Steel Grades

机译:轧制温度和冷却速率对管线钢牌号组织和性能的影响

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摘要

Thermo-mechanical control processing (TMCP) is a powerful tool for development of high strength low alloy (HSLA) steels. The understanding of the effect of process parameters on the microstructure of these steels is a key aspect for the optimization of their mechanical properties. The influence of the rolling temperatures and the cooling conditions on the texture, strength and toughness of HSLA steel was investigated. Two stage controlled rolling (roughing and finishing) was carried out on a laboratory rolling mill. Four different compositions were rolled by maintaining same roughing conditions but varying the process parameters of the finish rolling, namely, start finish rolling temperature (SFRT), finish rolling and cooling temperatures. Subsequent to rolling, two different cooling routes were used, namely, air-cooling (AC) and accelerated water cooling (ACC). For the ACC route, the plates were subsequently heat treated to simulate coiling. The microstructure and texture obtained before and after each TMCP schedule were characterized quantifying the phases, grain size and texture by means of EBSD and XRD and associated with the mechanical properties. It was found that SFRT has a strong impact on both strength and toughness if the material was air-cooled. Plates rolled at lower temperature showed better strength and toughness than ones rolled at high temperature in both air-cooling and ACC due to grain refinement. However, for the material that was processed through ACC and coiling simulation, the strength increased without any substantial effect on the toughness. These results provide an interesting insight on the industrial processing of HSLA steels.
机译:热机械控制处理(TMCP)是开发高强度低合金(HSLA)钢的强大工具。了解工艺参数对这些钢的微观结构的影响是优化其机械性能的关键方面。研究了轧制温度和冷却条件对HSLA钢组织,强度和韧性的影响。在实验室轧机上进行两阶段控制的轧制(粗加工和精加工)。通过保持相同的粗加工条件但改变精轧的工艺参数,即开始精轧温度(SFRT),精轧和冷却温度,来轧制四种不同的成分。轧制之后,使用了两种不同的冷却途径,即空气冷却(AC)和加速水冷却(ACC)。对于ACC路线,随后对板进行热处理以模拟卷取。在每个TMCP计划之前和之后获得的微结构和织构,通过EBSD和XRD定量表征相,晶粒尺寸和织构,并与机械性能相关。已经发现,如果材料是空气冷却的,SFRT对强度和韧性都有很大的影响。由于晶粒细化,在空冷和ACC中,在较低温度下轧制的钢板比在高温下轧制的钢板具有更好的强度和韧性。但是,对于通过ACC和卷取模拟处理的材料,强度增加了,而对韧性没有实质性影响。这些结果为HSLA钢的工业加工提供了有趣的见解。

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  • 来源
    《THERMEC 2011》|2011年|p.2710-2715|共6页
  • 会议地点 Quebec City(CA);Quebec City(CA)
  • 作者单位

    Ghent University, Department of Materials Science and Engineering, Technologiepark 903,Zwijnaarde, B-9052, Gent, Belgium;

    Ghent University, Department of Materials Science and Engineering, Technologiepark 903,Zwijnaarde, B-9052, Gent, Belgium,Delft University of Technology, Department of Materials Science and Engineering, Mekelweg 2,2628 CD, Delft, The Netherlands;

    Energy Pipes, Plates and Tubular Products PS Group, ArcelorMittal Global RD Gent, OCAS NV Pres.J.F. Kennedylaan 3, BE-9060 Zelzate, Belgium;

    Energy Pipes, Plates and Tubular Products PS Group, ArcelorMittal Global RD Gent, OCAS NV Pres.J.F. Kennedylaan 3, BE-9060 Zelzate, Belgium;

    Energy Pipes, Plates and Tubular Products PS Group, ArcelorMittal Global RD Gent, OCAS NV Pres.J.F. Kennedylaan 3, BE-9060 Zelzate, Belgium;

    Energy Pipes, Plates and Tubular Products PS Group, ArcelorMittal Global RD Gent, OCAS NV Pres.J.F. Kennedylaan 3, BE-9060 Zelzate, Belgium;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料一般性问题;
  • 关键词

    high strength low carbon steel; thermo-mechanical control processing; microstructure;

    机译:高强度低碳钢;热机械控制处理;微观结构;

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