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Tin-induced hot ductility degradation and its suppression by phosphorus for a Cr-Mo low-alloy steel

机译:Cr-Mo低合金钢中锡诱导的热延性退化及其对磷的抑制作用

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摘要

Using a Gleeble 1500D thermomechanical simulator, the samples of 1Cr-0.5Mo low-alloy steel, undoped, doped with Sn and doped with P+Sn, were heated at 1300 ℃ for 3 min and then cooled at a rate of 5 ℃ s~(-1) down to different temperatures between 700 and 1050 ℃, followed by tensile deformation until fracture. The results show that the hot ductility of the steel, evaluated by the reduction in area, can be substantially deteriorated by Sn, but it is considerably enhanced by P+Sn, especially in the range 850-1000 ℃ Therefore, the detrimental effect of Sn on the steel hot ductility is completely suppressed by the beneficial effect of P. Grain boundary chemistry measurements indicate that the hot ductility deterioration by Sn may mainly arise from its grain boundary segregation. Nanohardness measurements and microscopy demonstrate that, in the austenite-ferrite region, the hot ductility enhancement by P+Sn is mainly caused by the P-induced solid solution hardening of ferrite layers formed along austenite grain boundaries, and in the austenite region, by the P-promoted dynamic recrystallization of austenite.
机译:使用Gleeble 1500D热机械模拟器,将未掺杂,掺杂Sn和掺杂P + Sn的1Cr-0.5Mo低合金钢样品在1300℃加热3分钟,然后以5℃s的速率冷却。 (-1)降至700至1050℃之间的不同温度,然后拉伸变形直至断裂。结果表明,通过面积减小评估的钢的热延展性可以通过Sn显着降低,但通过P + Sn可以显着提高,特别是在850-1000℃范围内。因此,Sn的有害作用P的有益作用完全抑制了钢的热延展性。晶界化学测量表明,锡引起的热延展性下降可能主要是由于其晶界偏析引起的。纳米硬度测量和显微镜显示,在奥氏体-铁素体区域,P + Sn的热延展性增强主要是由沿奥氏体晶界形成的铁素体层的P诱导的固溶硬化引起的,而在奥氏体区域,则是由P + Sn引起的。 P促进奥氏体动态再结晶。

著录项

  • 来源
    《Materials Science and Engineering》 |2014年第10期|188-195|共8页
  • 作者

    S.-H. Song; X. Jiang; X.-M. Chen;

  • 作者单位

    Shenzhen Key Laboratory of Advanced Materials, Department of Materials Science and Engineering, Shenzhen Graduate School, Harbin Institute of Technology, Shenzhen 518055, China;

    Shenzhen Key Laboratory of Advanced Materials, Department of Materials Science and Engineering, Shenzhen Graduate School, Harbin Institute of Technology, Shenzhen 518055, China;

    Shenzhen Key Laboratory of Advanced Materials, Department of Materials Science and Engineering, Shenzhen Graduate School, Harbin Institute of Technology, Shenzhen 518055, China,R&D Center, Lifetech Scientific (Shenzhen) Co Ltd, Shenzhen 518057, China;

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

    Low-alloy steels; Hot ductility; Recrystallization; Grain boundaries; Segregation;

    机译:低合金钢;热延展性;重结晶;晶界隔离;

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