Study of one-step and two-step quench and partition heat treatments on a medium carbon high silicon alloy using dilatometry

V. Kurup, CW Siyayisa, R. Mostert, J. Moema
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Abstract

This study evaluated the microstructural evolution in a medium carbon high silicon steel during one-step, and two-step quench and partition (Q&P) processes using dilatometry experiments. The two-step Q&P process was carried out using different quench temperatures ranging from 180 to 260 °C. In the one-step process, Q&P heat treatment samples were held isothermally for ten minutes after quenching at specified temperatures ranging between 200 and 4°50 C. The two-step Q&P process yielded a higher fraction of retained austenite than a one-step Q&P process. During the isothermal hold step, the volume expansion due to carbon partitioning and austenite decomposition behavior was interpreted by experimentally determined strain values. For the one-step Q&P process, the austenite decomposition kinetics above and below the Ms temperature differed, as evidenced by the JMAK parameters. The TTT diagram generated for the one-step Q & P process showed a “swing back” at a temperature of around 355 °C.
用膨胀法研究中碳高硅合金的一步和两步淬火和分区热处理
本研究利用膨胀法实验评价了中碳高硅钢在一步淬火和两步淬火配分(Q&P)过程中的组织演变。采用180 ~ 260℃不同的淬火温度进行两步Q&P工艺。在一步法中,Q&P热处理样品在200至4°50℃的指定温度下淬火后等温保温10分钟。两步Q&P工艺比一步法产生更高比例的残余奥氏体。在等温保温阶段,由碳分配和奥氏体分解行为引起的体积膨胀可以通过实验确定的应变值来解释。对于一步Q&P工艺,在Ms温度上下的奥氏体分解动力学存在差异,JMAK参数证明了这一点。为一步Q & P工艺生成的TTT图显示在大约355°C的温度下“回摆”。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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