The output voltage model and experiment of magnetostrictive displacement sensor based on Weidemann effect

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Abstract

Based on the Wiedemann effect and inverse magnetostritive effect, the output voltage model of a magnetostrictive displacement sensor has been established. The output voltage of the magnetostrictive displacement sensor is calculated in different magnetic fields. It is found that the calculating result is in an agreement with the experimental one. The theoretical and experimental results show that the output voltage of the displacement sensor is linearly related to the magnetostrictive differences, (λl-λt), of waveguide wires. The measured output voltages for Fe-Ga and Fe-Ni wire sensors are 51.5mV and 36.5mV, respectively, and the output voltage of Fe-Ga wire sensor is obviously higher than that of Fe-Ni wire sensor under the same magnetic field. The model can be used to predict the output voltage of the sensor and to provide guidance for the optimization design of the sensor.

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Wang, B., Li, Y., Xie, X., Huang, W., Weng, L., & Zhang, C. (2018). The output voltage model and experiment of magnetostrictive displacement sensor based on Weidemann effect. AIP Advances, 8(5). https://doi.org/10.1063/1.5006418

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