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Experimental Determination of Continuous Cooling Transformation Diagrams of Hot-Rolled Heat Treatable Steel Plates Using Quenching Dilatometry

机译:使用淬火抗扩张法的热轧热处理钢板连续冷却变换图的实验测定

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This article outlines the use of quenching dilatometry in phase transformation kinetics research in steels under continuous cooling conditions. For this purpose, the phase transformation behavior of a hot-rolled heat treatable steel was investigated over the cooling rate range of 0.1 to 200 °C/s. The start and finish points of the austenite transformation were identified from the dilatometric curves and then the continuous cooling transformation (CCT) diagrams were constructed. The experimental CCT diagrams were verified by microstructural characterization using scanning electron microscopy (SEM) and Vickers micro-hardness. In general, results revealed that the quenching dilatometry technique is a powerful tool for the characterization and study of solid-solid phase transformations in steels. For cooling rates between 200 and 25 °C/s the final microstructure consists on plate-like martensite with the highest hardness values. By contrast, a mixture of phases of ferrite, bainite and pearlite predominated for slower cooling rates (10-0.1 °C/s).
机译:本文概述了在连续冷却条件下淬火抗膨胀测量在钢中的相变动力学研究中的使用。为此目的,在0.1至200℃/ s的冷却速率范围内研究了热轧热处理钢的相变特性。奥氏体转化的开始和终点从膨胀曲线识别,然后构建连续冷却变换(CCT)图。通过使用扫描电子显微镜(SEM)和VICKERS微硬度通过微观结构表征验证实验性CCT图。通常,结果表明,淬火扩张技术是一种强大的钢中固体固相变换的表征和研究。对于200至25°C / s至25°C / S之间的冷却速率最终的微观结构在具有最高硬度值的板状马氏体上。相反,铁素体,贝氏体和珠光体相阶段的混合物,优势用于冷却速率较慢(10-0.1°C / s)。

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