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Analysis of an Eddy Current Sensor for Liquid Pressure Measuring by FEM simulation

机译:基于有限元仿真的液体测涡流传感器分析

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The influence of the uniform pressure on the induced magnetic field and the eddy distribution is shown in this paper to provide foundation for the design of an eddy current sensor for measuring the liquid pressure. For reviewing the distribution characters of the magnetic field and the eddy current, the basic principle of the eddy current sensor for liquid pressure measuring is discussed firstly, and the mechanical analysis to the diaphragm of the sensor is carried out to describe its deformation under the pressure, which influences the magnetic flux density of the system. Then the finite element method (FEM) model is built using the electromagnetic theory and the functional analysis to get the magnetic flux density and the current density of the coil. At last, the simulation results is got, which shows the change of the magnetic flux density when the pressure being loaded.
机译:本文显示了均匀压力对感应磁场和涡流分布的影响,为设计用于测量液体压力的涡流传感器提供了基础。为了回顾磁场和涡流的分布特性,首先讨论了用于液体压力测量的涡流传感器的基本原理,并对传感器膜片进行了力学分析,以描述其在压力下的变形。 ,这会影响系统的磁通密度。然后利用电磁学原理和功能分析建立了有限元法(FEM)模型,得到了线圈的磁通密度和电流密度。最后得到了仿真结果,该仿真结果显示了压力加载时磁通密度的变化。

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