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Acoustic emission monitoring of bainitic and martensitic transformation in medium carbon steel during continuous cooling

机译:中碳钢连续冷却过程中贝氏体和马氏体相变的声发射监测

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This paper concerns acoustic emission (AE) measurements during continuous cooling of steel C45 using a Gleeble 1500 thermomechanical simulator. After austenising at a certain temperature, the studied specimen was cooled down and the root mean square (RMS) value of the continuous AE signal was measured. During cooling two distinct peaks in the RMS data were observed at temperatures of 200 - 300℃ and 500 - 600℃, which have been attributed to martensite and bainite formation respectively. The observed bainite peak strongly indicated that the mechanism of bainite growth is displacive. The AE monitoring of bainite and martensite formation was supported by dilatation measurements, which were performed simultaneously. The effect of the austenite grain size on the evolution of the bainitic and martensitic transformation was studied by varying the austenising temperature Ta. It was found that upon lowering T{sub}a, i.e. with decreasing austenite grain size, the bainite peak increases while the martensite peak decreases.
机译:本文涉及使用Gleeble 1500热机械模拟器对C45钢进行连续冷却时的声发射(AE)测量。在一定温度下奥氏体化后,将研究样品冷却下来,并测量连续AE信号的均方根(RMS)值。在冷却过程中,在200-300℃和500-600℃的温度下观察到RMS数据有两个明显的峰,分别归因于马氏体和贝氏体的形成。观察到的贝氏体峰强烈表明,贝氏体的生长机制是不同的。贝氏体和马氏体形成的声发射监测通过同时进行的膨胀测量得到支持。通过改变奥氏体化温度Ta,研究了奥氏体晶粒尺寸对贝氏体和马氏体相变的影响。发现降低T {a}时,即随着奥氏体晶粒尺寸的减小,贝氏体峰增加而马氏体峰减少。

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