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Smart Elasto-Magneto-Electric (EME) Sensors for Stress Monitoring of Steel Cables: Design Theory and Experimental Validation

机译:用于电缆应力监测的智能弹磁电机(EME)传感器:设计理论和实验验证

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摘要

An elasto-magnetic (EM) and magneto-electric (ME) effect based elasto-magneto-electric (EME) sensor has been proposed recently by the authors for stress monitoring of steel cables with obvious superiorities over traditional elasto-magnetic sensors. For design optimization and engineering application of the EME sensor, the design theory is interpreted with a developed model taking into account the EM coupling effect and ME coupling effect. This model is able to approximate the magnetization changes that a steel structural component undergoes when subjected to excitation magnetic field and external stress, and to simulate the induced ME voltages of the ME sensing unit located in the magnetization area. A full-scale experiment is then carried out to verify the model and to calibrate the EME sensor as a non-destructive evaluation (NDE) tool to monitor the cable stress. The experimental results agree well with the simulation results using the developed model. The proposed EME sensor proves to be feasible for stress monitoring of steel cables with high sensitivity, fast response, and ease of installation.
机译:作者最近提出了一种基于弹磁(EM)和磁电(ME)效应的弹磁电(EME)传感器,用于钢缆的应力监测,具有优于传统弹磁传感器的明显优势。对于EME传感器的设计优化和工程应用,通过考虑电磁耦合效应和ME耦合效应的已开发模型来解释设计理论。该模型能够近似估计钢结构部件在受到励磁磁场和外部应力的作用下所经历的磁化强度变化,并能够模拟位于磁化强度区域中的ME感应单元的感应ME电压。然后进行全面实验,以验证模型并校准EME传感器,以作为无损评估(NDE)工具来监视电缆应力。实验结果与所开发模型的仿真结果吻合良好。事实证明,所提出的EME传感器对于钢缆的应力监测具有高灵敏度,快速响应和易于安装的可行性。

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