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首页> 外文期刊>Magnetics, IEEE Transactions on >Mapping Stress as a Function of Depth at the Surface of Steel Structures Using a Frequency Dependent Magnetic Barkhausen Noise Technique
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Mapping Stress as a Function of Depth at the Surface of Steel Structures Using a Frequency Dependent Magnetic Barkhausen Noise Technique

机译:使用频率相关的巴克豪森噪声技术,将应力映射为钢结构表面的深度的函数

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摘要

Profiling of stress as a function of depth is an important tool for nondestructive evaluation and can be used to prevent catastrophic failures in structures. In this work, the underlying theory of a new model for the depth profiling of stress in ferromagnetic structures based on the magnetic Barkhausen method is investigated and commented upon. In the model, a ferromagnetic structure is divided into layers of different stress states. By analysis of the constituent equations it was found that the measured Barkhausen voltage increases as the frequency span increases, for both the one- and the two layer cases. It was also found that two layers with the same amplitude of Barkhausen emission at the origin can be approximated as one layer, provided that the upper and lower depths, as well as the frequency range are identical.
机译:应力随深度变化的曲线图是进行非破坏性评估的重要工具,可用于防止结构发生灾难性破坏。在这项工作中,对基于磁性Barkhausen方法的铁磁结构中应力深度剖析的新模型的基础理论进行了研究和评论。在该模型中,铁磁结构分为不同应力状态的层。通过对组成方程式的分析,发现对于一层和两层情况,测得的巴克豪森电压都随着频率跨度的增加而增加。还发现,只要上下深度以及频率范围相同,在原点处具有相同巴克豪森发射幅度的两层就可以近似为一层。

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