首页> 外文期刊>ISIJ international >In situ Observations of Transformation Behavior upon Heating for a 1.5Mn-1.5Si-0.2C Steel -Comparison between Neutron Diffraction, XRD, EBSD and Dilatometry-
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In situ Observations of Transformation Behavior upon Heating for a 1.5Mn-1.5Si-0.2C Steel -Comparison between Neutron Diffraction, XRD, EBSD and Dilatometry-

机译:对1.5Mn-1.5Si-0.2C钢进行加热时的相变行为的原位观察-中子衍射,XRD,EBSD和膨胀法的比较-

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The austenite reverse transformation behavior in a 1.5Mn-1.5Si-0.2C steel was in situ monitored using dilatometry, electron back scatter diffraction (EBSD), X-ray diffraction and neutron diffraction. The austenite reversion kinetics showed excellent agreements between dilatometry and neutron diffraction, whereas the austenite formation was observed to start at much higher temperature in cases of EBSD and X-ray diffraction measurements. Such discrepancy in transformation temperature is attributed to the change in chemical compositions near the surface of a specimen heated to elevated temperatures either in vacuum (EBSD) or in a helium gas atmosphere (X-ray); Mn and C concentrations were found to decrease with heating. In situ neutron diffraction enables us to investigate the changes in lattice constants of ferrite and austenite, showing not only thermal expansion but also suggesting carbon enrichment and phase stresses during the decomposition of the retained austenite and austenite reversion upon heating.
机译:使用膨胀法,电子背散射衍射(EBSD),X射线衍射和中子衍射原位监测1.5Mn-1.5Si-0.2C钢中的奥氏体逆相变行为。奥氏体回复动力学显示出膨胀学和中子衍射之间极好的一致性,而在EBSD和X射线衍射测量中,观察到奥氏体的形成始于更高的温度。转变温度的这种差异归因于在真空(EBSD)或氦气气氛(X射线)中加热到高温的样品表面附近化学成分的变化。发现锰和碳的浓度随加热而降低。原位中子衍射使我们能够研究铁素体和奥氏体的晶格常数的变化,不仅显示出热膨胀,而且还表明了残余奥氏体分解过程中的碳富集和相应力以及加热时奥氏体的回复。

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