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Monitoring of Non-Ferrous Wear Debris in Hydraulic Oil by Detecting the Equivalent Resistance of Inductive Sensors

机译:通过检测感应传感器的等效电阻来监控液压油中的无色磨损碎片

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摘要

Wear debris in hydraulic oil contains important information on the operation of equipment, which is important for condition monitoring and fault diagnosis in mechanical equipment. A micro inductive sensor based on the inductive coulter principle is presented in this work. It consists of a straight micro-channel and a 3-D solenoid coil wound on the micro-channel. Instead of detecting the inductance change of the inductive sensor, the equivalent resistance change of the inductive sensor is detected for non-ferrous particle (copper particle) monitoring. The simulation results show that the resistance change rate caused by the presence of copper particles is greater than the inductance change rate. Copper particles with sizes ranging from 48 μm to 150 μm were used in the experiment, and the experimental results are in good agreement with the simulation results. By detecting the inductive change of the micro inductive sensor, the detection limit of the copper particles only reaches 70 μm. However, the detection limit can be improved to 48 μm by detecting the equivalent resistance of the inductive sensor. The equivalent resistance method was demonstrated to have a higher detection accuracy than conventional inductive detection methods for non-ferrous particle detection in hydraulic oil.
机译:液压油中的磨损碎片包含有关设备运行的重要信息,这对于机械设备的状态监视和故障诊断非常重要。在这项工作中提出了一种基于感应库尔特原理的微感应传感器。它由一个直的微通道和一个缠绕在微通道上的3-D电磁线圈组成。代替检测电感式传感器的电感变化,而是检测电感式传感器的等效电阻变化,以进行有色金属颗粒(铜颗粒)监控。仿真结果表明,铜粒子的存在引起的电阻变化率大于电感变化率。实验中使用的铜颗粒尺寸为48μm至150μm,实验结果与模拟结果吻合良好。通过检测微感应传感器的感应变化,铜颗粒的检测极限仅为70μm。但是,通过检测感应传感器的等效电阻,可以将检测极限提高到48μm。结果表明,等效电阻法比常规的感应法检测液压油中的有色金属颗粒具有更高的检测精度。

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