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首页> 外文期刊>IEEE Transactions on Magnetics >The Output Characteristics of Galfenol Magnetostrictive Displacement Sensor Under the Helical Magnetic Field and Stress
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The Output Characteristics of Galfenol Magnetostrictive Displacement Sensor Under the Helical Magnetic Field and Stress

机译:螺旋磁场和应力作用下Galfenol磁致伸缩位移传感器的输出特性

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摘要

This paper analyzes the output characteristics of a Galfenol magnetostrictive displacement sensor based on the Wiedemann effect, the Jiles-Atherton model, and the piezomagnetic effect. The sensor which is subjected to simultaneously circumferential excitation magnetic field, bias magnetic field, and stress will induce an output voltage. Experiments were performed to describe the induced output voltage versus the applied magnetic fields and stress with an Fe83Ga17 alloy wire as a function of the circumferential excitation magnetic field from 0.5 to 6 kA/m, the bias magnetic field of 3.5 kA/m, and the stress from 5 to 110 MPa. The induced output voltage increases with an increasing magnetic field and decreases with increasing stress. The experimental results agree well with the model calculations. The sensor with a Galfenol alloy wire can be used in displacement control and interface measurement.
机译:本文基于Wiedemann效应,Jiles-Atherton模型和压电效应,分析了Galfenol磁致伸缩位移传感器的输出特性。同时受到圆周激励磁场,偏置磁场和应力影响的传感器将感应输出电压。进行实验以描述Fe83Ga17合金丝的感应输出电压与施加的磁场和应力的关系,该曲线是0.5至6 kA / m的圆周激励磁场,3.5 kA / m的偏置磁场以及应力从5到110 MPa。感应的输出电压随磁场的增加而增加,随应力的增加而减小。实验结果与模型计算吻合良好。带Galfenol合金线的传感器可用于位移控制和界面测量。

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