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CHARACTERISATION OF MICROSTRUCTURE IN STEELS BY MAGNETIC TECHNIQUES - AN OVERVIEW

机译:磁性技术表征钢中的微观结构-综述

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Magnetic techniques are highly sensitive for microstructural characterisations in ferromagnetic materials like steels and can be used in the areas of quality control and remaining life assessments. The basis of these techniques are related to the domain nucleations and domain dynamics with respect to the various types of microstructural features such as grain boundaries, second phase precipitates, residual stresses, dislocations etc. The microstructural features act as sites for magnetic domain nucleation and pinning centres against magnetic domain wall motions both the phenomena being responsible for the magnetic behaviour of a ferromagnetic material like steelDifferent types of domain walls (180 deg and 90 deg walls) interact differently with the microstructural features. There are two broad classes of magnetic techniques, namely analysis of magnetic hysteresis loop parameters and the analysis of magnetic and acoustic Barkhausen noise signal. The hysteresis loop parameters are coercivity, retentivity permeability, differential permeability etc. The reasons for a generally observed lack of straightforward relationships is due to complex domain patterns and their complex interactions with the microstructural features. The paper discusses the principles based on which various types of magnetic parameters can be used in specific application cases. Examples are given to show the relevance of the various techniques.
机译:磁性技术对铁磁性材料(如钢)的微观结构表征高度敏感,可用于质量控制和剩余寿命评估领域。这些技术的基础与关于各种类型的微结构特征(例如晶界,第二相沉淀,残余应力,位错等)的畴核化和畴动力学有关。微结构特征充当磁畴成核和钉扎的位点这两种现象都与铁磁材料(如钢)的磁行为有关。两种不同类型的畴壁(180度和90度壁)与微观结构的相互作用不同。磁性技术分为两大类,即磁滞回线参数分析和巴克豪森噪声和声学噪声信号分析。磁滞回线参数是矫顽力,保持性磁导率,微分磁导率等。通常观察到的缺乏直接关系的原因是由于复杂的畴模式及其与微结构特征的复杂相互作用。本文讨论了可在特定应用案例中使用各种类型的磁参数的原理。举例说明了各种技术的相关性。

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