Gu Changzhi, Liu Chao, Liu Bo, Zhang Wenbo, Bai Chenzhao, Wang Chenyong, Sun Yuqing, Zhang Hongpeng
Marine Engineering College, Dalian Maritime University, Dalian 116026, China.
State Key Laboratory of Maritime Technology and Safety, Dalian 116026, China.
Micromachines (Basel). 2024 Dec 20;15(12):1520. doi: 10.3390/mi15121520.
The cleanliness of lubricating oil plays a key role in determining the operational health of mechanical systems, serving as a critical metric that delineates the extent of equipment wear. In this study, we present a magnetic-core-type planar coil particle detection sensor. The detection accuracy and detection limit are improved by optimizing the magnetic field inside the sensor. The optimization of the magnetic field is achieved through the finite element simulation analysis of the coil and the magnetic core. First, the finite element simulation software COMSOL 6.0 is used to model the sensor in three dimensions (3D). Then, we study the distribution of the magnetic field under different coil radii, core conductivity levels, and other parameters. We obtain the sensor structure after optimizing the magnetic field. The sensor is made using experimental methods, and the iron particles and copper particles are detected. The results show that the lower limit of detection of iron particles can reach 46 μm, and the lower limit of detection of copper particles can reach 110 μm.
润滑油的清洁度在决定机械系统的运行健康状况方面起着关键作用,是描绘设备磨损程度的关键指标。在本研究中,我们提出了一种磁芯型平面线圈颗粒检测传感器。通过优化传感器内部的磁场,提高了检测精度和检测极限。磁场的优化是通过对线圈和磁芯进行有限元模拟分析来实现的。首先,使用有限元模拟软件COMSOL 6.0对传感器进行三维(3D)建模。然后,我们研究了不同线圈半径、磁芯电导率水平等参数下磁场的分布情况。在优化磁场后得到了传感器结构。采用实验方法制作该传感器,并对铁颗粒和铜颗粒进行检测。结果表明,铁颗粒的检测下限可达46μm,铜颗粒的检测下限可达110μm。