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Precipitation Kinetics of M23C6 Carbides in the Super304H Austenitic Heat-Resistant Steel

机译:Super304H奥氏体耐热钢中M23C6碳化物的沉淀动力学

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摘要

The precipitation kinetics of M23C6 carbides in Super304H and TP304H steels were investigated using the selective-etching method, SEM backscattered electron images and Image-Pro-Plus 6.0 software. Precipitation-temperature-time (PTT) diagrams of M23C6 carbides in the as-received Super304H (fine grains), coarsened Super304H (coarse grains) and TP304H (coarse grains) steels all show the typical C-shaped character with nose temperature range from 800 to 850 A degrees C. Compared with the TP304H steel, the same trend is found of the PTT curve of M23C6 carbides for both kinds of Super304H steels, but their start lines move to the right and finish lines to the left. The preferential formation of Nb(C,N) phase at grain boundaries in the Super304H steels inhibited the nucleation of M23C6 carbides in the early stage of precipitation, causing the right shift of the start line of PTT curve. The main reason for the left shift of the finish line of the two Super304H steels was the quicker growing and coarsening rate of M23C6 in the later precipitation stage due to their higher C content than in TP304H. For the difference in PPT curves between the two grain sizes of the Super304H steel, the lower diffusion rate of atoms in the coarse-grained Super304H steel may explain its righter finish line than the fine-grained counterpart, while the reason for its lefter start line is due to the higher solute segregation along coarse-grained boundaries.
机译:使用选择性蚀刻方法,SEM背散射电子图像和Image-Pro-Plus 6.0软件研究了Super304H和TP304H钢中M23C6碳化物的沉淀动力学。在接收的Super304h(细粒)中的M23C6碳化物的沉淀 - 温度 - 时间(PTT)图,粗糙的Super304h(粗晶粒)和TP304H(粗晶粒)钢均显示出800的鼻温范围的典型的C形特性与TP304H钢相比,达到850℃,发现与两种Super304H钢的PTT曲线相同的趋势,但它们的起始线向左移动到左侧和终点线。在Super304H钢中晶界在晶界中的Nb(C,N)相的优先形成抑制了沉淀早期M23C6碳化物的成核,导致PTT曲线的起始线的右移。两个Super304H钢的终点左移的主要原因是由于其含量高于TP304H的C含量越高,沉淀阶段的M23C6在后续沉淀阶段更快地生长和粗化。对于Super304h钢的两个晶粒尺寸之间的PPT曲线的差异,粗粒过敏的超级304h钢中的原子的较低扩散速率可以解释其比细粒度的对应物更偏重,而其lefter起始线的原因是由于沿粗粒界较高的溶质隔离。

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