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Laser-ultrasonic austenite grain size measurements in low-carbon steels

机译:低碳钢中的激光超声奥氏体晶粒度测量

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Austenite grain size is an important microstructure parameter when processing steels as it provides the initial condition for the austenite decomposition that determines the final microstructure and thus properties of the steel. In low-carbon steels it is frequently difficult if not impossible to quantify the austenite grain size using conventional metallographic techniques. Laser-ultrasonics provides an attractive alternative to quantify the grain size in-situ during thermo-mechanical processing of a steel sample. The attenuation of the laser generated ultrasound wave is a function of the grain size. The present paper gives an overview on the state-of-the-art of this novel measurement technique. Using isothermal and non-isothermal grain growth tests in low-carbon steels the advantages and limitations of laser-ultrasonic measurements will be demonstrated. Further, their application for deformed samples will be presented to quantify austenite grain sizes during and after recrystallization. The in-situ measurements provide significantly new insights into the austenite microstructure evolution during thermo-mechanical processing of low-carbon steels. The implications on expediting the development of improved process models will be discussed.
机译:奥氏体晶粒尺寸是加工钢时的重要显微组织参数,因为它为奥氏体分解提供了初始条件,奥氏体分解决定了最终的显微组织,从而决定了钢的性能。在低碳钢中,使用传统金相技术对奥氏体晶粒尺寸进行量化通常很困难,即使不是没有可能。激光超声技术提供了一种有吸引力的替代方法,可在钢样品的热机械处理过程中现场量化晶粒尺寸。激光产生的超声波的衰减是晶粒尺寸的函数。本文概述了这种新型测量技术的最新发展。在低碳钢中使用等温和非等温晶粒生长测试,将证明激光超声测量的优点和局限性。此外,将介绍它们在变形样品中的应用,以量化重结晶期间和之后的奥氏体晶粒尺寸。原位测量为低碳钢热机械加工过程中的奥氏体组织演变提供了重要的新见解。将讨论加速改进流程模型开发的意义。

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