Evaluation of Plastic Deformation in Steels with Magnetic and Acoustic Techniques

M. R. N. Astudillo, Nicolás Núñez, Isabel López Pumarega, J. Ruzzante, Martín Gómez
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Abstract

Barkhausen Magnetic Noise (MBN) and Magnetic Acoustic Emission (MAE) are phenomena that occur in ferromagnetic materials which undergo changes in their magnetization. These phenomena are very sensitive to changes on microstructure and residual stresses. The MBN and MAE can be applied as monitoring techniques to detect plastic deformation in materials subjected to thermomechanical processes, such as machining and manufacturing processes. In this work, the plastic deformation in samples subjected to uniaxial tensile tests is investigated through MBN and MAE. Twelve stainless steel test pieces of two different materials (AISI 430 and AISI 441A), were tested. As a first step, in order to obtain their mechanical properties, two test pieces of each material cut in different directions with respect to the rolling direction, were tested up to rupture. The others were deformed in four stages on plastic deformation. After each stage, MBN and MAE measurements were made, in order to obtain a correlation with the strain and the magnetic situation of the materials. We present here the microstructural analyses, the study of MBN and MAE signals, correlating them with the state of deformation of the specimens.
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用磁声技术评价钢的塑性变形
巴克豪森磁噪声(MBN)和磁声发射(MAE)是发生在铁磁性材料中磁化强度发生变化的现象。这些现象对微观结构和残余应力的变化非常敏感。MBN和MAE可以作为监测技术应用于检测材料的塑性变形受到热机械过程,如机械加工和制造过程。本文采用MBN和MAE对单轴拉伸试样的塑性变形进行了研究。测试了两种不同材料(AISI 430和AISI 441A)的12个不锈钢试件。作为第一步,为了获得它们的力学性能,对每种材料的两个试样进行了相对于轧制方向的不同方向的切割,直到断裂。其余试件在塑性变形上分四个阶段变形。在每个阶段结束后,进行MBN和MAE测量,以获得与应变和材料磁性状况的相关性。本文介绍了显微组织分析,MBN和MAE信号的研究,并将它们与试样的变形状态联系起来。
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