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Martensitic transformation in AISI D2 tool steel during continuous cooling to 173 K

机译:连续冷却至173 K期间AISI D2工具钢的马氏体相变

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摘要

Martensitic transformation of AISI D2 tool steel continuously cooled from 1303 K to the cryogenic temperature of 173 K is investigated by dilatometry using 10 or 50 K s−1 cooling rates. A ‘typical’ expansion takes place from the ( M_{text{s}} ) temperature and reaches a maximum at 325 K. However, an atypical behavior is observed below this temperature implying the activation of further martensitic transformation. A modification to existing equations is proposed, which allows for more accurate description of the kinetics of martensitic transformation. Scanning electron microscopic studies indicated the presence of plate and lath martensite for both cooling rates. Carbide precipitation takes place at the rate of 10 K s−1 before the start of martensitic transformation while it was not observed when the 50 K s−1 rate was used. Transmission electron microscopic studies revealed that the microstructure also contains a significant amount of nano-twinned martensite.
机译:通过使用10或50 Ks-1冷却速率的膨胀法研究了AISI D2工具钢从1303K连续冷却至173 K低温的马氏体转变。在(M_ {text {s}})温度下发生“典型”膨胀,并在325 K处达到最大值。但是,在该温度以下观察到非典型行为,这意味着进一步的马氏体转变被激活。提出了对现有方程的修改,其允许更精确地描述马氏体转变动力学。扫描电子显微镜研究表明,两种冷却速率均存在板状和板条马氏体。碳化物沉淀在马氏体转变开始之前以10 K s-1的速率发生,而使用50 K s-1的速率则未观察到。透射电子显微镜研究表明,微观结构还包含大量的纳米孪晶马氏体。

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  • 来源
    《Journal of Materials Science》 |2015年第17期|5758-5768|共11页
  • 作者单位

    Department of Mechanical Engineering École de Technologie Supérieure">(1);

    Department of Mechanical Engineering École de Technologie Supérieure">(1);

    Department of Materials Science and Engineering KTH Royal Institute of Technology">(2);

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