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Development of Vibration Sensor Using Giant Magnetostrictive Material for Self-Powered Structural Health Monitoring System

机译:使用巨型磁致伸缩材料进行自动结构健康监测系统的振动传感器的开发

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A novel vibration-sensing device based on the giant magnetostrictive effect for a self-powered structural health monitoring system was developed. This device can produce a large voltage because the magnetostrictive rod, in principle, can generate a large variation in magnetic flux density, even when it is subjected to small and low-frequency vibrations of the bridge girder. Therefore, the device could function as a power generator to supply power to a storage battery, when it is not being used as a vibration sensor, to drive the electric circuit. A field test for the developed device was conducted. The experimental results confirmed that the device worked as a vibration sensor with considerable accuracy in detecting the natural frequency of the bridge, even when subjected to the intermittent load of passing cars.
机译:开发了一种基于巨型磁致伸缩效应的新型振动传感装置,其开发了一种自动结构健康监测系统。该装置可以产生大的电压,因为磁致伸缩杆原则上可以产生磁通密度的大变化,即使当它经受桥梁梁的小和低频振动时也是如此。因此,当它不被用作振动传感器时,该装置可以用作发电机以向存储电池供电以驱动电路。进行了开发装置的现场测试。实验结果证实,该装置作为振动传感器,在检测桥的自然频率时,即使在经受穿过汽车的间歇负载时也具有相当大的精度。

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