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Nondestructive Evaluation of Contact Damage of Ferromagnetic Materials Based on Metal Magnetic Memory Method

机译:基于金属磁记忆法的铁磁材料接触损伤无损评价

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摘要

A technique based on the metal magnetic memory (MMM) is developed to evaluate the contact damage of ferromagnetic materials under nonferromagnetic and ferromagnetic indenters by measuring the magnetic flux leakage (MFL) signals. Great difference between the MFL signals for the ferromagnetic indenter and non-ferromagnetic indenter is experimentally observed. The normal signal shows a dip in the contact region for the ferromagnetic indenter but an increase for the non-ferromagnetic indenter; the tangential signal experiences a peak-peak change through zero in the contact region for the ferromagnetic indenter but a peak for the non-ferromagnetic indenter. Furthermore, the amplitude of MFL signals for the ferromagnetic indenter is considerably larger than that for the non-ferromagnetic indenter. The mechanism of the signal variation is analyzed by considering the magnetic-stress coupling effect. Criteria of the early contact damage are developed based on the variations of the MFL signals and their gradients; and the evaluation parameters are extracted.
机译:通过测量磁通泄漏(MFL)信号,开发了一种基于金属磁存储器(MMM)的技术来评估非磁性和铁磁压力下的铁磁材料的接触损伤。通过实验观察到铁磁压模和非铁磁压模的MFL信号之间的巨大差异。正常信号显示了铁磁性压痕的接触区域中的倾角,但是对于非铁磁压紧的增加;切向信号在铁磁压紧的接触区域中经历峰值峰值变化,而是用于非铁磁压痕的峰。此外,铁磁压痕的MFL信号的幅度远大于非铁磁压痕的信号。通过考虑磁力应力耦合效应来分析信号变化的机制。早期接触损坏的标准是基于MFL信号及其梯度的变化开发的;提取评估参数。

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