超级贝氏体钢回火过程中马氏体/奥氏体分解动力学

    Kinetics of Martensite/Austenite Decomposition during Tempering of Ultrafine Nano-Bainitic Steels

    • 摘要: 利用差示扫描量热仪(DSC)数据并配合Kissnger公式和JMAK公式计算试样析出物的动力学方程,分析了贝氏体钢中M/A组织在回火前后的分解情况。结果表明:贝氏体钢在等温热处理后组织中存在着大量对力学性能有不良影响的M/A,根据计算出的动力学方程可以看到其样品在600℃进行4000 s回火后各生成相的生成量达到最大,根据计算出的条件对样品进行回火,通过回火前后SEM图可以发现M/A组织大量分解,M/A相的比例从回火前的10%左右分解到小于1%,同时残余奥氏体的含量也降至接近0,这一系列现象都符合方程推算结果,同时因M/A的分解,样品硬度也随之下降。

       

      Abstract: The decomposition of martensite/austenite (M/A) microconstituent in bainitic steels was analyzed using differential scanning calorimetry (DSC) data in conjunction with Kissinger’s and Johnson-Mehl-Avrami-Kolmogorov (JMAK)'s formulas. The results show that: in bainitic steel subjected to austempering heat treatment, the presence of M/A microstructure adversely affects the mechanical properties. According to the kinetic equations derived, it is observed that after tempering at 600 ℃ for 4000 s, the generation of each phase in the sample reaches its maximum. The SEM images taken before and after tempering reveal extensive decomposition of the M/A constituent in the microstructure. The proportion of the M/A microstructure decreases significantly from about 10% before tempering to less than 1% after tempering. Additionally, the content of residual austenite also reduces nearly to zero. These observations are consistent with the predictions of the kinetic equations.

       

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