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Effects of the inductive hardening process on the martensitic structure of a 50CrMo4 steel

机译:感应硬化过程对50crmo4钢马氏体结构的影响

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This study focusses on the influence of a fast heat-treatment, as occurring with induction heating processes, on the microstructural features and their effect on the mechanical properties of a 50CrMo4 steel. To this end three different heating rates (1, 10 and 100 K/s) and three different austenitizing temperatures (950, 1000, 1050°C) were applied to a ferritic-pearlitic steel. After quenching the resulting martensitic microstructures were investigated and compared to a conventional furnace heat treating sequence using electron back scattered diffraction (EBSD). Thus, the effect of variable heating rates during austenitization on the resulting martensitic microstructure, including the evaluation of packet and block sizes and orientations, was analyzed. Through the investigations of this work, it could be shown, that the adaption of the Kurdjumov-Sachs (K-S) variants is changing with the prior heat treatment. The occurrence of all 24 K-S variants in the same intensity increases and the misorientation angle across a martensite block decrease with higher austenitizing temperatures, despite fast heating rates. Therefore, it is suggested, that the austenitizing temperature has more impact on the martensitic structure than the heating rate.
机译:本研究侧重于快速热处理的影响,如引物加热工艺发生在微观结构特征及其对50crmO4钢的力学性能的影响。向该结束时,将三种不同的加热速率(1,10和100k / s)和三个不同的奥氏体化温度(950,1000,1050℃)施加到铁素体 - 珠光钢上。在淬火后,研究了所得马氏体微观结构并使用电子背散射衍射(EBSD)与常规炉热处理序列进行比较。因此,分析了在所得马氏体微观结构上的可变加热速率在所得的马氏体微结构期间的影响,包括分组和块尺寸和方向的评估。通过对此作品的调查,可以显示,即Kurdjumov-Sachs(K-S)变体的适应随着先前的热处理而改变。尽管快速加热速率,但在相同强度的所有24k-S变体中的发生量增加,并且在马氏体块上的错误扩角随着更高的奥氏体化温度而减小。因此,建议,奥氏体化温度对马氏体结构的影响比加热速率更多。

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