Li Wei, Bai Chenzhao, Wang Chengjie, Zhang Hongpeng, Ilerioluwa Lebile, Wang Xiaotian, Yu Shuang, Li Guobin
School of Marine Engineering, Dalian Maritime University, Dalian 116026, China.
Micromachines (Basel). 2021 May 30;12(6):638. doi: 10.3390/mi12060638.
An inductive oil pollutant detection sensor based on a high-gradient magnetic field structure is designed in this paper, which is mainly used for online detection and fault analysis of pollutants in hydraulic and lubricating oil systems. The innovation of the sensor is based on the inductance detection method. Permalloy is embedded in the sensing region of the sensor, so that the detection area generates a high gradient magnetic field to enhance the detection accuracy of the sensor. Compared with traditional inductive sensors, the sensor has a significant improvement in detection accuracy, and the addition of permalloy greatly improves the stability of the sensor's detection unit structure. The article theoretically analyzes the working principle of the sensor, optimizes the design parameters and structure of the sensor through simulation, determines the best permalloy parameters, and establishes an experimental system for verification. Experimental results show that when a piece of permalloy is added to the sensing unit, the signal-to-noise ratio (SNR) of iron particles is increased by more than 20%, and the signal-to-noise ratio of copper particles is increased by more than 70%. When two pieces of permalloy are added, the signal-to-noise ratio for iron particles is increased by more than 70%, and the SNR for copper particles is increased several times. This method raises the lower limit of detection for ferromagnetic metal particles to 20 μm, and the lower limit for detection of non-ferromagnetic metal particles to 80 μm, which is the higher detection accuracy of the planar coil sensors. This paper provides a new and faster online method for pollutant detection in oil, which is of great significance for diagnosing and monitoring the health of oil in mechanical systems.
本文设计了一种基于高梯度磁场结构的感应式油污染物检测传感器,主要用于液压和润滑油系统中污染物的在线检测与故障分析。该传感器的创新之处基于电感检测方法。在传感器的传感区域嵌入坡莫合金,使检测区域产生高梯度磁场,以提高传感器的检测精度。与传统感应式传感器相比,该传感器在检测精度上有显著提高,坡莫合金的加入大大提高了传感器检测单元结构的稳定性。文章从理论上分析了传感器的工作原理,通过仿真优化了传感器的设计参数和结构,确定了最佳坡莫合金参数,并建立了实验系统进行验证。实验结果表明,在传感单元中添加一片坡莫合金时,铁颗粒的信噪比(SNR)提高了20%以上,铜颗粒的信噪比提高了70%以上。添加两片坡莫合金时,铁颗粒的信噪比提高了70%以上,铜颗粒的信噪比提高了数倍。该方法将铁磁性金属颗粒的检测下限提高到20μm,非铁磁性金属颗粒的检测下限提高到80μm,这是平面线圈传感器较高的检测精度。本文为油中污染物检测提供了一种新的、更快的在线方法,对机械系统中油的健康诊断和监测具有重要意义。