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Early prediction of fracturing failure for bolted joints based on enhanced metal magnetic memory

机译:基于增强金属磁记忆的螺栓连接断裂破坏的早期预测

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This paper aims to promote the engineering application of the metal magnetic memory (MMM) method, which is prone to interference from disturbing external magnetic fields. For this purpose, an enhanced MMM approach is proposed that highlights and enhances the useful magnetic signals through deliberate enhancement of the external field excitation, with the aim of improving the sensitivity and reliability of the detection system. Bearing in mind the non-linearity of the magnetic permeability curves for ferromagnetic materials, the feasibility of the enhanced MMM method is qualitatively analysed from a theoretical perspective and a real-time monitoring system is established to monitor the damage state of bolted joints based on the enhanced MMM method. The established system is then applied to the early prediction of the fracturing positions at the bolt holes. The results show that the enhanced MMM method can effectively and accurately predict the fracturing positions. The research findings lay a solid basis for the engineering application of the MMM method.
机译:本文旨在促进容易受到外界磁场干扰的金属磁记忆(MMM)方法的工程应用。为此目的,提出了一种增强的MMM方法,其通过有意增强外部场激励来突出并增强有用的磁信号,以提高检测系统的灵敏度和可靠性。考虑到铁磁材料的磁导率曲线是非线性的,从理论的角度对增强型MMM方法的可行性进行了定性分析,并建立了一个实时监测系统来监测螺栓连接的损伤状态。增强的MMM方法。然后将已建立的系统应用于螺栓孔处裂缝位置的早期预测。结果表明,改进的MMM方法可以有效,准确地预测压裂位置。研究成果为MMM方法的工程应用奠定了坚实的基础。

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