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Design of Tunnel Magnetoresistive-Based Circular MFL Sensor Array for the Detection of Flaws in Steel Wire Rope

机译:基于隧道磁阻的圆形MFL传感器阵列设计,用于检测钢丝绳缺陷

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摘要

Tunnel magnetoresistive (TMR) devices have superior performances in weak magnetic field detection. In this study, TMR devices were first employed to form a circular magnetic flux leakage (MFL) sensor for slight wire rope flaw detection. Two versions of this tailor-made circular TMR-based sensor array were presented for the inspection of wire ropes with the diameters of 14 mm and 40 mm, respectively. Helmholtz-like coils or a ferrite magnet-based magnetizer was selected to provide the proper magnetic field, in order to meet the technical requirements of the TMR devices. The coefficient of variance in the flaw detection performance of the sensor array elements was experimentally estimated at 4.05%. Both versions of the MFL sensor array were able to detect multiple single-broken wire flaws in the wire ropes. The accurate axial and circumferential positions of these broken wire flaws were estimated from the MFL scanning image results. In addition, the proposed TMR-based sensor array was applied to detect the MFL signal induced by slight surface wear defects. A mutual correlation analysis method was used to distinguish the signals caused by the lift-off fluctuation from the MFL scanning image results. The MFL sensor arrays presented in this study provide inspiration for the designing of tailor-made TMR-based circular sensor arrays for cylindrical ferromagnetic structural inspections.
机译:隧道磁阻(TMR)器件在弱磁场检测中具有优异的性能。在该研究中,首先采用TMR器件以形成圆形磁通量泄漏(MFL)传感器,用于轻微的钢丝绳探伤。提出了两个定制的圆形TMR的传感器阵列的两个版本,用于检查线索,分别直径为14mm和40mm。选择亥姆霍兹的线圈或铁氧体磁铁基磁化器以提供适当的磁场,以满足TMR器件的技术要求。传感器阵列元件的探伤性能的方差系数在实验估计为4.05%。两个版本的MFL传感器阵列都能够检测电线绳中的多个单碎片漏洞。从MFL扫描图像结果估计这些断线缺陷的精确轴向和周向位置。此外,应用了所提出的基于TMR的传感器阵列以检测由轻微的表面磨损缺陷引起的MFL信号。使用相互关联分析方法来区分由MFL扫描图像结果的提升波动引起的信号。本研究提供的MFL传感器阵列提供了用于设计定制的TMR基圆形传感器阵列的灵感,用于圆柱形铁磁结构检查。

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