用巴尔豪森噪声法估算铁合金带材的应力状态

Crystals Pub Date : 2024-05-24 DOI:10.3390/cryst14060495
J. Krawczyk, Bartosz Sułek, Adam Kokosza, Marcin Lijewski, Nikolaos Kuźniar, Marcin Majewski, M. Goły
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摘要

本文介绍了 TRB 产品在非对称轧制过程中产生的复杂应变状态对材料应力状态变化和分布的影响。对材料应力状态的评估是基于使用巴克豪森磁噪声法测量磁弹性参数(MP)。所研究材料的主要特点是铁磁性和无纹理,这使得利用 MP 参数的变化来评估应力状态成为可能。当对材料施加磁场时,磁场会导致磁畴排列和磁化率的突然变化,从而产生磁信号。另一方面,由于材料中没有纹理,因此不会出现磁晶各向异性,这可能会干扰材料中磁弹性参数的测量结果。为了确定所研究材料的这些特征,对其化学成分进行了测定,并使用 X 射线衍射法进行了相分析。这些测试结果表明,可以通过 MP 参数值的变化来确定材料的应力状态。在此基础上,研究表明,在所研究的 TRB 带材中,存在着复杂的应力状态,其数值和变化性质取决于所进行测量的方向,以及带材研究区域的轧制减薄量。
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The Estimation of the Stress State of the Iron Alloy Strip Material by the Barkhausen Noise Method
This paper presents the effect of the complex strain state resulting from the asymmetric rolling of TRB products on the changes and distribution of the stress state in the material. The evaluation of the stress state in the material was based on measurements of the magnetoelastic parameter (MP) using the Barkhausen magnetic noise method. The key characteristics of the material under study that enabled the use of changes in the MP parameter to assess the stress state were ferromagnetism and a lack of texture. The first of these enabled the detection of the magnetic signals produced when a magnetic field is applied to the material, causing magnetic domains to align and sudden changes in magnetization. On the other hand, the absence of texture in the material precluded the occurrence of magnetocrystalline anisotropy, which could disturb the results of measurements of the magnetoelastic parameter in the material. In order to determine these features in the material under study, its chemical composition was determined, and a phase analysis was carried out using the X-ray diffraction method. The results of these tests showed the possibility of determining the stress state of the material by means of changes in the values of the MP parameter. On this basis, it was shown that in the TRB strips studied, there is a complex state of stress, the values of which and the nature of the changes depending on the direction of the measurements carried out, as well as on the amount of rolling reduction in the studied area of the strip.
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