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Microstructure Evolution of Undercooled Austenite during Deformation for Medium-Carbon Si-Mn Steel

机译:中碳硅锰钢变形时过冷奥氏体的组织演变

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The microstructure evolution of a medium-carbon Si-Mn steel during deformation of undercooled austenite at different degree of deformation, temperatures and strain rates has been investigated by means of a hot compression simulation test, metallographic microscope, scanning electron microscope and transmission electron microscopy. Also, the mechanism of carbide spheroidized during deformed process has been discussed. The experiment results demonstrate that the process of evolution experienced three stages: that is, strain-induced transformation, austenite eutectoid decomposed to carbides and ferrite matrix, and spheroidization of pearlite at the range of A_3-Ar_3. The austenitic grains would be refined for the extra-product of ferrite above the Ar_3. The eutectoid reaction was induced on the grain boundaries of ferrite and non-transformed austenite and deformation bands with the increasing volume of deformation. An optimum combination of deformation temperature and strain rate is important to obtian the dulplex microstructure consisting of ultrafine ferrites and dispersed carbide particles. The fine spheroidized microstructures are obtained while the deformed temperature reaches 650°C with ε ≥1.0, meanwhile, The carbides precipate in globular and shot-rod shapes.
机译:通过热压缩模拟试验,金相显微镜,扫描电子显微镜和透射电子显微镜研究了中碳Si-Mn钢在过冷奥氏体在不同变形程度,温度和应变率下的变形过程中的组织演变。此外,还讨论了变形过程中碳化物球化的机理。实验结果表明,合金的演化过程经历了三个阶段:应变诱导相变,奥氏体共析物分解为碳化物和铁素体基体,以及珠光体在A_3-Ar_3范围内的球化。奥氏体晶粒将被精炼成Ar_3以上的铁素体的额外产物。随着变形量的增加,在铁素体和未转变的奥氏体的晶界以及变形带上引起共析反应。变形温度和应变率的最佳组合对于使由超细铁素体和分散的碳化物颗粒组成的双相显微结构至关重要。当变形温度达到650°C且ε≥1.0时,获得了精细的球状微结构,同时,碳化物以球形和射出杆状析出。

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