永磁体对磁致伸缩位移传感器波导丝扭转 应变的影响分析
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TP212 TH711

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国家自然科学基金(52077052)、河北省自然科学基金重点项目(E2017202035)资助


Analysis of the influence of permanent magnet on the torsional strain of waveguide wire of the magnetostrictive displacement sensor
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    摘要:

    为提高磁致伸缩位移传感器输出电压幅值,对波导丝的扭转应变进行研究。 基于电磁学与理论力学相关理论建立了波 导丝扭转应变的数学模型及三维有限元仿真模型,对波导丝扭转应变的影响因素进行分析。 并进行实验,得出相对应的传感器 输出电压变化情况。 结果表明,传感器输出电压与波导丝发生的扭转应变量最大值变化趋势一致,两者均随着永磁体充磁、几 何参数、放置角度的增大而增大;随着永磁体与波导丝间距离的增大,呈现出先增大后减小的变化趋势。 最终确定永磁体长度 15 mm,宽度 10 mm,高度 5 mm,长度方向充磁 1T 且充磁方向垂直于波导丝放置,且永磁体与波导丝间距离调整为 25. 5 mm,此 时波导丝扭转应变量达到最大 3. 84×10 -4 mm,传感器输出电压也达到最大 0. 109 V。 该研究结果对永磁体充磁方向、充磁大 小、几何参数、放置方式以及永磁体与波导丝之间距离合理的选择提供了指导。

    Abstract:

    To enhance the output voltage amplitude of the magnetostrictive displacement sensor, the torsional strain of the waveguide wire is studied. Based on the related theories of electromagnetics and theoretical mechanics, a mathematical model of the torsional strain of the waveguide wire and a three-dimensional finite element simulation model are formulated. The factors that affect the torsional strain of the waveguide wire are analyzed. The corresponding output voltage of the sensor is obtained by experiments. Results show that the output voltage of the sensor is consistent with the change trend of the maximum torsional strain of the waveguide wire. The output voltage of the sensor and the maximum value of the torsional strain of the waveguide wire increase with the increasing of permanent magnet magnetization, permanent magnet geometric parameters, and permanent magnet placement angle. As the distance between the permanent magnet and the waveguide wire increases, it shows a trend of first increasing and then decreasing. Finally, it is determined that the permanent magnet has a length of 15 mm, a width of 10 mm, and a height of 5 mm. The length direction is magnetized 1T and the magnetization direction is perpendicular to the waveguide wire. The distance between the permanent magnet and the waveguide wire is adjusted to 25. 5 mm. And the torsional strain of the waveguide wire reaches a maximum of 3. 84×10 -4 mm, and the output voltage of the sensor also reaches a maximum of 0. 109 V. Research results provide guidance for reasonable selection of magnetization direction, magnetization size, geometric parameters, placement manner and distance between permanent magnet and waveguide wire.

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孙 英,武泽航,张耀松,翁 玲.永磁体对磁致伸缩位移传感器波导丝扭转 应变的影响分析[J].仪器仪表学报,2021,(4):10-23

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  • 在线发布日期: 2023-06-28
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