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Promising bending properties of a new as-rolled medium-carbon steel achieved with furnace-cooled bainitic microstructures

机译:采用炉冷却的贝氏体微结构实现的新的轧制中碳钢的承诺弯曲性能

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摘要

The bending properties of a new thermomechanically processed medium-carbon (0.40 wt% C) low-alloy steel, intended for the slurry transportation pipeline application, have been investigated. The studied material was hot-rolled to 10 mm thick strips followed by direct quenching to two different quench-stop temperatures (QST) of 560 °C and 420 °C. The samples were subsequently cooled slowly to room temperature in a furnace, producing two different bainitic microstructures. In general, the final microstructures on the centerline consisted of different bainitic features with yield strengths of a ~700 MPa and ~1200 MPa for QST 560 °C and 420 °C, respectively. To determine the factors affecting bendability, as determined by three-point brake press bending tests, local microstructural features and texture were characterized with transmission and scanning electron-microscoy and macrohardness tests. Detailed quantitative microstructural evaluation of both subsurface and mid-thickness regions revealed that the bainitic sample produced at the higher temperature (QST 560) consisted of almost equal amounts of bainite types B1 and B2, where B1 has bainitic sheaves with a low dislocation density and intralath cementite, and B2 a very dislocation-dense morphology with mainly interlath cementite. In the QST 420 sample, the high dislocation density components B2 bainite and martensite were dominant, although martensite was only present near the strip surfaces. Different post-rolling cooling conditions did not change the general crystallographic theme but resulted in a slight increase in the texture intensity of the QST 420 sample. Neither the concave nor convex subsurface regions showed significant changes in texture after bending. The more favorable distributions of microstructural components and textural component intensities in the QST 560 sample resulted in higher elongation to fracture and work-hardening capacity, resulting a smaller minimum usable punch radius than for the stronger QST 420 sample. Fractographic examination of the cracked surfaces revealed that cracks developed by shear band formation followed by surface roughening, which promoted subsequent void and micro crack nucleation and growth.
机译:研究了用于浆料运输管道应用的新型热机械加工的中碳(0.40wt%c)低合金钢的弯曲性能。将研究的材料热轧制到10mm厚的条带,然后直接淬火至560℃和420℃的两个不同的猝灭温度(QST)。随后将样品缓慢冷却至炉中的室温,产生两种不同的壳体微结构。通常,中心线上的最终微观结构包括不同的贝氏体特征,QST 560°C和420°C的屈服强度分别为〜700MPa和〜1200MPa。为了确定影响弯曲性的因素,如通过三点制动压力机弯曲试验所确定的,局部微观结构特征和纹理的特征在于传输和扫描电子微观和宏观度测试。地下和中厚区域的详细定量微观结构评估显示,在较高温度(QST 560)中产生的贝氏体样品由几乎相等的贝氏体类型B1和B2组成,其中B1具有低位脱位密度和intraLath的贝氏体滑轮渗透石,B2具有极其脱位 - 致密的形态,主要是白垩间渗碳石。在QST 420样品中,高位脱位密度组分B2贝氏体和马氏体是显性的,尽管马氏体仅在条带表面附近存在。不同的滚动后冷却条件没有改变一般的晶体主题,但导致QST 420样品的纹理强度略微增加。弯曲后凹凸和凸性地下区域都没有显示出弯曲后质地的显着变化。 QST 560样品中的微观结构部件和纹理元件强度的更有利分布导致骨折和工作 - 硬化容量较高,导致更小的最小可用冲头半径而不是更强的QST 420样品。裂纹表面的形式检查显示,通过剪切带形成开发的裂缝,然后进行表面粗糙化,其促进随后的空隙和微裂纹成核和生长。

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  • 来源
    《Materials Science and Engineering》 |2020年第7期|140011.1-140011.18|共18页
  • 作者单位

    Centre for Advanced Steels Research Materials and Mechanical Engineering University of Oulu P.O. Box 4200 90014 Oulu Finland;

    Centre for Advanced Steels Research Materials and Mechanical Engineering University of Oulu P.O. Box 4200 90014 Oulu Finland;

    Centre for Advanced Steels Research Materials and Mechanical Engineering University of Oulu P.O. Box 4200 90014 Oulu Finland;

    Centre for Advanced Steels Research Materials and Mechanical Engineering University of Oulu P.O. Box 4200 90014 Oulu Finland;

    Centre for Advanced Steels Research Materials and Mechanical Engineering University of Oulu P.O. Box 4200 90014 Oulu Finland;

    Centre for Advanced Steels Research Materials and Mechanical Engineering University of Oulu P.O. Box 4200 90014 Oulu Finland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Bendability; Furnace-cooled bainite; Medium-carbon steel; Fractography; Image quality analysis; Texture;

    机译:弯曲性;炉冷贝氏体;中碳钢;Fractography;图像质量分析;质地;

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