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Effects of Mn on Isothermal Transformation Microstructure and Tensile Properties in Medium- and High-carbon Steels

机译:Mn对中高碳钢等温转变组织和拉伸性能的影响

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摘要

The effects of Mn addition on the microstructure formed through an isothermal transformation at 873 K and its tensile properties were investigated over a wide range of concentrations in medium- and high-carbon steels with 0.4-1.0 mass% C. The Mn addition changed the pearlite transformation mode from relatively slow non-partitioning pearlite with a small amount of proeutectoid ferrite to an extremely slow partitioning pearlite without any proeutectoid ferrite in the hypoeutectoid steel. The transformation rate of the partitioning pearlite associated with the Mn partitioning between ferrite and cementite in Fe-C-M alloy was more than three orders of magnitude lower than the pearlite transformation in Fe-C binary alloy at a given interlamellar spacing. The decrease in the transformation rate in the non-partitioning and partitioning pearlite transformation was caused by the decrease in the carbon flux controlling the pearlite transformation, which can be explained by the theory of local equilibrium at the austenite/ferrite and austenite/ cementite interphases. The Mn addition increased the thermal stability of the lamellar cementite. Corresponding to the change in the transformation microstructure, the Mn addition improved the tensile properties in the pearlite steel, particularly the strength and local deformability balance, regardless of the difference in the transformation mode between the non-partitioning and the partitioning transformation, unless the proeutectoid cementite precipitated at prior austenite grain boundaries. The strength increase of the pearlite after the Mn addition was caused by the refinement of the interlamellar spacing and/or the increase of the lattice strain in the pearlitic ferrite.
机译:在浓度范围为0.4-1.0%的中碳和高碳钢中,研究了锰的添加对在873 K下等温转变形成的显微​​组织及其拉伸性能的影响。锰的添加改变了珠光体转变模式,从相对缓慢的,非共析珠光体和少量的共析铁素体转变为极慢的分裂珠光体,在次共析钢中没有任何共析铁素体。在给定的层间间距下,与Fe-C-M合金中的铁素体和渗碳体之间的Mn分配相关的分配珠光体的转变速率比Fe-C二元合金中的珠光体转变低三个数量级。非分区和分区珠光体相变中相变速率的降低是由于控制珠光体相变的碳通量减少所致,这可以用奥氏体/铁素体和奥氏体/渗碳体中间相的局部平衡理论来解释。 Mn的添加提高了层状渗碳体的热稳定性。对应于相变组织的变化,Mn的加入改善了珠光体钢的拉伸性能,特别是强度和局部变形能力的平衡,而不论非分配相和分配相之间的相变方式是否不同,除非前共析体渗碳体在先前的奥氏体晶界处析出。加入Mn后珠光体的强度增加是由于珠光体铁素体中层间距的细化和/或晶格应变的增加所致。

著录项

  • 来源
    《ISIJ international》 |2019年第9期|1667-1675|共9页
  • 作者单位

    Graduate Student of Materials Science and Engineering Tokyo Institute of Technology. Now at NSK Ltd. 1-5-50 Kugenuma Shinmei Fujisawa Kanagawa 251-8501 Japan;

    Department of Materials Science and Engineering Tokyo Institute of Technology 4259 Nagatsuta-cho Midori-ku Yokohama 226-8503 Japan;

    Material Research Laboratory Kobe Steel Ltd. 1-5-5 Takatsukadai Nishi-ku Kobe Hyogo 651-2271 Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    pearlite; Mn addition; local equilibrium; partitioning; tensile property;

    机译:珠光体锰的添加;局部均衡分区拉伸性能;
  • 入库时间 2022-08-18 04:39:40

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