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Effects of creep damage, shot peening, and case hardening on magnetic Barkhausen noise analysis

机译:蠕变损伤,喷丸处理和表面硬化对Barkhausen电磁噪声分析的影响

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摘要

The micromagnetic emissions, commonly known as Barkhausen noise, are very sensitive to variations in the microstructure and sub-surface stress states of magnetic materials. Steel pipelines at power plants often have creep damage due to microstructural changes in their service life. Early detection of this damage will prevent costly failures. There is also an increasing demand to characterize the sub-surface stress states in structural materials such as high strength materials used in landing gear components in the aerospace industry. Shot peening is used to improve the fatigue strength of these components by the introduction of residual compressive stresses to the surface. Because the magnitude of Barkhausen noise varies with the magnitude of compressive stress, these noise measurements can be used for in-situ evaluation of the effectiveness of the shot peening process. Furthermore, surface modification such as case hardened magnetic samples can be easily observed using micromagnetic Barkhausen noise (MBE) to determine further modification needs.
机译:微磁发射(通常称为Barkhausen噪声)对磁性材料的微观结构和亚表面应力状态的变化非常敏感。发电厂的钢管道由于其使用寿命的微观结构变化而经常受到蠕变破坏。及早发现这种损坏将防止代价高昂的故障。越来越需要表征结构材料(例如,航空航天工业中的起落架组件中使用的高强度材料)的亚表面应力状态。喷丸处理通过向表面引入残余压缩应力来改善这些组件的疲劳强度。由于Barkhausen噪声的大小随压缩应力的大小而变化,因此这些噪声测量结果可用于喷丸处理过程的有效性的现场评估。此外,使用微磁性巴克豪森噪声(MBE)可以轻松观察到表面改性,例如表面硬化的磁性样品,以确定进一步的改性需求。

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