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Martensite reversion and texture formation in 17Mn-0.06C TRIP/TWIP steel after hot cold rolling and annealing

机译:17Mn-0.06C TRIP / TWIP钢在热冷轧和退火后的马氏体回复和组织形成

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High Mn steels with Si and Al present great plasticity when deformed due to the TRIP/TWIP effect. This work evaluated the microstructural evolution and texture formation of a 17Mn-0.06C steel after hot rolling, cold rolling to 45% of thickness reduction and annealing at 700°C for different times. The microstructural analysis was performed by means of dilatometry, X-ray diffraction (XRD), optical (OM) and scanning electron microscopy (SEM), electron backscattering diffraction EBSD and transmission electron microscopy (TEM). It was found that during the cooling process, after the steel is annealed, the athermal ? and α′ martensites are formed. Tensile test results showed that the steel exhibits yield and tensile strength around 650 and 950MPa with a total elongation around 45%. The austenite texture contains brass, copper and Goss components while the α′ and ? martensites textures contain rotated cube and prismatic and pyramidal fibers, respectively.
机译:由于TRIP / TWIP效应,含有Si和Al的高锰钢在变形时具有很好的可塑性。这项工作评估了17Mn-0.06C钢在热轧,冷轧至厚度减小的45%并在700°C退火不同时间后的组织演变和织构形成。通过膨胀计,X射线衍射(XRD),光学(OM)和扫描电子显微镜(SEM),电子背散射衍射EBSD和透射电子显微镜(TEM)进行显微结构分析。结果发现,在冷却过程中,对钢进行退火后,无热钢的温度升高。形成α'马氏体。拉伸试验结果表明,该钢表现出约650和950MPa的屈服和拉伸强度,总伸长率约为45%。奥氏体组织包含黄铜,铜和高斯成分,而α'和α马氏体织构分别包含旋转的立方纤维和棱形及棱锥纤维。

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