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首页> 外文期刊>Journal of magnetism and magnetic materials >On the mechanism of nondestructive evaluation of cementite content in steels using a combination of magnetic Barkhausen noise and magnetic force microscopy techniques
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On the mechanism of nondestructive evaluation of cementite content in steels using a combination of magnetic Barkhausen noise and magnetic force microscopy techniques

机译:结合Barkhausen噪声和磁力显微镜技术对钢中渗碳体含量进行无损评估的机理

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摘要

The influence of carbon content in the form of globular cementite precipitates in unalloyed steels was macroscopically characterized by means of magnetic hysteresis loop and Barkhausen noise techniques. The choice of the frequency of the applied field has a strong influence on the Barkhausen noise profiles. At sufficiently high frequency (0.5 Hz) there are two peaks, one at lower field, the amplitude of which corresponds to the amount of ferrite and one at higher field, the amplitude of which corresponds to the amount of the cementite phase, respectively. Magnetic force microscopy and electron backscattered diffraction techniques were used to determine the magnetic and crystallographic microstructures of the steels. Cementite has its own domain structure and stray fields which influence the magnetization process of the steel by its own magnetic contribution. When an external magnetic field is applied, the magnetization process in ferrite occurs mainly at lower fields through the 180° and 90° domain walls. A higher field is required for the observation of 180° domain wall movements in cementite.
机译:通过磁滞回线和巴克豪森噪声技术从宏观上表征了非合金钢中球状渗碳体沉淀形式的碳含量的影响。外加磁场频率的选择对巴克豪森噪声谱有很大影响。在足够高的频率(0.5 Hz)下,有两个峰值,一个在较低的磁场,其幅度对应于铁素体的数量,另一个在较高的磁场,其幅度对应于渗碳体相的数量。磁力显微镜和电子背散射衍射技术用于确定钢的磁性和晶体学显微组织。渗碳具有自己的畴结构和杂散场,它们通过自身的磁性作用影响钢的磁化过程。当施加外部磁场时,铁氧体中的磁化过程主要发生在穿过180°和90°畴壁的较低磁场处。观察渗碳体中180°畴壁运动需要更高的视野。

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