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Utilization of Barkhausen noise magnetizing sweeps for case-depth detection from hardened steel

机译:利用巴克豪森噪声磁化扫掠仪从硬化钢中进行案例深度检测

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摘要

One of the current topics of Barkhausen noise method development is its application to case-depth measurements of hardened components. Usually Barkhausen noise (BN) measurements for case-depth determination are based on the difference in the magnetic properties between the hardened case and the soft base material core. The measurement is done using low magnetizing frequencies. This enables deeper penetration of magnetic field to the ferromagnetic samples compared to the conventional high frequency BN measurements, typically used for grinding burn detection. However, due to the eddy current damping, the penetration depth is limited, depending on the material, to certain distance from the surface. To enable case-depth measurements, the Barkhausen noise measuring device was utilized to obtain data from magnetizing voltage sweeps (MVS). The sweeps were analysed and compared to the case-depths determined with conventional means. A series of hardened samples was investigated including induction and carburizing case-hardened samples. All samples were characterized with X-ray diffraction to study the residual stress state of the surface. Finally destructive characterization was used to verify the actual hardening depth of the studied samples. It was noticed that by studying the MVSs it was possible to evaluate the case-depth values more effectively than in earlier studies. The analysis used in this study utilized the slopes of the MVS sweeps. Furthermore, it was noticed that the ratio of the maximum MVS slopes at different frequencies indicating the case-depth values led to good results.
机译:Barkhausen噪声方法开发的当前主题之一是其在硬化组件的壳体深度测量中的应用。通常,用于确定外壳深度的Barkhausen噪声(BN)测量是基于硬化外壳和软基材核心之间磁特性的差异。使用低磁化频率进行测量。与通常用于磨削烧伤检测的常规高频BN测量相比,这可以使磁场更深地渗透到铁磁样品中。然而,由于涡流阻尼,根据材料的不同,穿透深度被限制为距表面一定距离。为了进行深度测量,使用了巴克豪森噪声测量设备从磁化电压扫描(MVS)获得数据。分析扫描结果并将其与使用常规方法确定的案例深度进行比较。研究了一系列淬火样品,包括感应淬火和渗碳渗碳淬火样品。用X射线衍射对所有样品进行表征,以研究表面的残余应力状态。最后,通过破坏性表征来验证研究样品的实际硬化深度。注意到通过研究MVS,可以比以前的研究更有效地评估案例深度值。本研究中使用的分析利用了MVS扫描的斜率。此外,还注意到在不同频率下的最大MVS斜率之比表明了案例深度值,从而产生了良好的结果。

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