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Microstructure Evolution and Mechanical Stability of Retained Austenite in Medium-Mn Steel Deformed at Different Temperatures

机译:在不同温度下变形的中Mn钢中保留奥氏体的微观结构演化与机械稳定性

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The temperature-dependent microstructure evolution and corresponding mechanical stability of retained austenite in medium-Mn transformation induced plasticity (TRIP) 0.17C-3.1Mn-1.6Al type steel obtained by thermomechanical processing was investigated using scanning electron microscopy (SEM), electron backscatter diffraction (EBSD), and X-ray diffraction (XRD) techniques. Specimens were deformed up to rupture in static tensile tests in the temperature range 20–200 °C. It was found that an increase in deformation temperature resulted in the reduced intensity of TRIP effect due to the higher stability of retained austenite. The kinetics of strain-induced martensitic transformation was affected by the carbon content of retained austenite (RA), its morphology, and localization in the microstructure.
机译:采用扫描电子显微镜(SEM),研究了通过热机械加工所获得的保留奥氏体的温度依赖性微观结构的速度和对应的奥氏体的相应机械稳定性。 (EBSD)和X射线衍射(XRD)技术。试样在20-200℃的温度范围内变形以在静态拉伸试验中破裂。发现由于保留奥氏体的稳定性稳定性,变形温度的增加导致跳闸效果的强度降低。应变诱导的马氏体转化的动力学受到保留奥氏体(RA)的碳含量,其形态和微观结构中的定位的影响。

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