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Study Of Microstructural Evolution During Metadynamic Recrystallization In A Low-alloy Steel

机译:低合金钢超动态再结晶过程中的组织演变研究

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Using Gleeble-1500 thermo-mechanical simulator, the microstructural evolutions during metadynamic recrystallization of 42CrMo steel were investigated by hot compressive deformation tests at forming temperatures of 850-1150℃, strain rates of 0.01-1 s~(-1), and initial austenite grain sizes of 54-155 μm. The effects of forming temperature, strain rate and the initial austenitic grain size on the microstructural evolution during metadynamic recrystallization in hot deformed 42CrMo steel were discussed in detail. Based on the experimental results, the grain size model for metadynamic recrystallization was established. It is found that the effects of forming parameters (temperature and strain rate) on the microstructural evolution during metadynamic recrystallization are significant, while those of the initial austenitic grain size are obvious only when the initial austenitic grain size is less than 104 μm. A good agreement between the experimental and predicted grain sizes was obtained, which verified the developed grain size model.
机译:使用Gleeble-1500热力学模拟器,通过在850-1150℃的成形温度,0.01-1 s〜(-1)的应变速率和初始奥氏体的热压缩变形试验,研究了42CrMo钢超动态再结晶过程中的组织演变。晶粒尺寸为54-155μm。详细讨论了成形温度,应变速率和初始奥氏体晶粒尺寸对热变形42CrMo钢超动态再结晶过程中组织演变的影响。根据实验结果,建立了亚动力学重结晶晶粒尺寸模型。研究发现,成形参数(温度和应变速率)对超动态再结晶过程中微观组织演变的影响是显着的,而仅当初始奥氏体晶粒尺寸小于104μm时,初始奥氏体晶粒尺寸的影响才明显。实验和预测的晶粒尺寸之间取得了良好的一致性,这验证了开发的晶粒尺寸模型。

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