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Effects of vanadium on the microstructure and mechanical properties of a high strength low alloy martensite steel

机译:钒对高强度低合金马氏体钢组织和力学性能的影响

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摘要

The precipitation behavior of vanadium-rich carbides formed during the reheating processes and its influence on the microstructure and mechanical properties have been systematically investigated in a high strength low alloy martensite steel. It was found that the nano-sized (Ti, V)C particles mainly precipitated during reheating rather than soaking at the austenitization process. For their pinning effect on grain growth, ultra-fine austenite grain with the average size of 3.5 μm formed during holding at 880 ℃ for 1 h. As the austenitization temperature increased, the prior nano-sized (Ti, V)C coarsened and its volume fraction decreased, which led to increment of austenite grain size. Excellent combined mechanical properties such as tensile strength 1670 MPa, yield strength 1460 MPa, elongation 10% at room temperature and impact energy (Akv) 57 J at -40 ℃ were obtained in the ultra-fine grained steels. In particular, the low-temperature toughness was improved by grain refinement. The strengthening mechanisms were also investigated by comparing the experimental results with theoretical calculation. The variation of yield strength with the condition of heat treatment was discussed in detail.
机译:在高强度低合金马氏体钢中,已经系统地研究了在再加热过程中形成的富钒碳化物的析出行为及其对组织和力学性能的影响。已经发现,纳米级(Ti,V)C颗粒主要在再加热期间沉淀,而不是在奥氏体化过程中浸泡。在880℃保温1 h时,形成了平均粒径为3.5μm的超细奥氏体晶粒,对晶粒长大有固定作用。随着奥氏体化温度的升高,先前的纳米级(Ti,V)C粗化并且其体积分数降低,这导致奥氏体晶粒尺寸增加。在超细晶粒钢中,获得了优异的综合机械性能,例如抗张强度1670 MPa,屈服强度1460 MPa,室温下的伸长率10%和-40℃下的冲击能(Akv)57J。特别地,通过晶粒细化提高了低温韧性。通过将实验结果与理论计算进行比较,还研究了增强机理。详细讨论了屈服强度随热处理条件的变化。

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  • 来源
    《Materials & design》 |2013年第9期|102-107|共6页
  • 作者单位

    Department of Materials Science and Engineering, Kunming University of Science and Technology, Wuhua District, Kunming 650093, China,Department of Structural Steels, Central Iron and Steel Research Institute, No. 76, Xueyuan Nanlu, Beijing 100081, China;

    Department of Structural Steels, Central Iron and Steel Research Institute, No. 76, Xueyuan Nanlu, Beijing 100081, China;

    Department of Structural Steels, Central Iron and Steel Research Institute, No. 76, Xueyuan Nanlu, Beijing 100081, China,Hunan Valin Lianyuan Iron and Steel Company Limited, Loudi 417009, China;

    Department of Materials Science and Engineering, Kunming University of Science and Technology, Wuhua District, Kunming 650093, China,Department of Structural Steels, Central Iron and Steel Research Institute, No. 76, Xueyuan Nanlu, Beijing 100081, China;

    Department of Structural Steels, Central Iron and Steel Research Institute, No. 76, Xueyuan Nanlu, Beijing 100081, China;

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

    Carbide; Grain refinement; Strengthening mechanism; Toughness;

    机译:碳化物;晶粒细化;加强机制;韧性;

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