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Direct current force sensing device based on compressive spring, permanent magnet, and coil-wound magnetostrictive/piezoelectric laminate

机译:基于压缩弹簧,永磁体和线圈绕磁致伸缩/压电层压板的直流力传感装置

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摘要

A force sensing device capable of sensing dc (or static) compressive forces is developed based on a NAS106N stainless steel compressive spring, a sintered NdFeB permanent magnet, and a coil-wound Tb0.3Dy0.7Fe 1.92/Pb(Zr, Ti)O3 magnetostrictive/piezoelectric laminate. The dc compressive force sensing in the device is evaluated theoretically and experimentally and is found to originate from a unique force-induced, position-dependent, current-driven dc magnetoelectric effect. The sensitivity of the device can be increased by increasing the spring constant of the compressive spring, the size of the permanent magnet, and/or the driving current for the coil-wound laminate. Devices of low-force (20 N) and high-force (200 N) types, showing high output voltages of 262 and 128 mV peak, respectively, are demonstrated at a low driving current of 100 mA peak by using different combinations of compressive spring and permanent magnet.
机译:基于NAS106N不锈钢压缩弹簧,烧结钕铁硼永磁体和绕线式Tb0.3Dy0.7Fe 1.92 / Pb(Zr,Ti)O3开发了一种能够感应直流(或静态)压缩力的力传感装置磁致伸缩/压电层压板。从理论上和实验上评估了设备中的直流压缩力感应,发现其源自独特的力感,位置相关的电流驱动直流磁电效应。可以通过增加压缩弹簧的弹簧常数,永磁体的尺寸和/或卷绕层压板的驱动电流来提高设备的灵敏度。通过使用压缩弹簧的不同组合,在100 mA峰值的低驱动电流下演示了分别显示262和128 mV峰值的高输出电压的低力(20 N)和高力(200 N)类型的设备和永磁体。

著录项

  • 作者

    Leung, CM; Or, SW; Ho, SL;

  • 作者单位
  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 en
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