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Magnetic Barkhausen Noise in quenched carburized steels

机译:淬火渗碳钢中的磁性巴克豪森噪音

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Steels with different carbon content, 0.11%C and 0.48%C were submitted to a heat treatment for carburization in the surface. The samples were analyzed after several types of heat treatment, including quenching for producing martensite. The Magnetic Barkhausen Noise (MBN) is directly related to the microstructure. Samples with lower carbon content, have ferrite, a constituent where domain walls can move freely and present higher amplitude in the envelope of MBN. It is also found that the MBN peaks are quite distinct for the samples with martensite, which have lower permeability, and the results suggest that domain rotation contributes as mechanism for reversal of magnetization in martensite. The results also indicate that MBN is very suitable for monitoring the carburizing heat treatment.
机译:具有不同碳含量的钢,0.11%C和0.48%C提交到表面渗碳的热处理。在几种类型的热处理后分析样品,包括淬火生产马氏体。磁性Barkhausen噪声(MBN)与微观结构直接相关。碳含量较低的样品,具有铁氧体,其中畴壁可以自由移动并在MBN的包络中呈现更高振幅的组成部分。还发现MBN峰对马氏体的样品非常明显,该样品具有较低的渗透性,结果表明域旋转作为马氏体中磁化反转的机制有贡献。结果还表明MBN非常适合监测渗碳热处理。

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