Li Wei, Liu Yu, Wang Xin, Zheng Yiwen, Zhang Hongpeng, Zhang Cunyou, Zheng Wenbo
Marine Engineering Collage, Dalian Marinetime University, Dalian 116026, China.
Sunrui Marine Environment Engineering Co., Ltd., Qingdao 266101, China.
Rev Sci Instrum. 2023 Dec 1;94(12). doi: 10.1063/5.0173867.
The presence of moisture and air in hydraulic oil will seriously affect the reliability of machines. This paper proposes a new cross-capacitive oil pollution detection sensor, which is based on the Thompson and Lampard theorem. The sensing unit consists of four identical copper electrodes with infinitesimally small gaps. The sensor can effectively distinguish water droplets and air bubble pollutants mixed in the oil through the pulse direction of the signal. Compared with traditional capacitive sensors, the sensor has a significant improvement in detection accuracy and detection throughput. In this paper, the relationship between the cross-capacitance value with the dielectric constant and the frequency in an alternating electric field was deduced, and the best excitation frequency was chosen as 1.9 MHz. Experiments show that the sensor can effectively detect water droplets of 140-160 µm and bubbles of 170-190 µm and has good linearity for detecting water droplets and air bubbles of different sizes. The sensor provides a new method for machine condition monitoring of hydraulic systems.
液压油中水分和空气的存在会严重影响机器的可靠性。本文提出了一种基于汤普森和兰帕德定理的新型交叉电容式油污染检测传感器。传感单元由四个间隙极小的相同铜电极组成。该传感器可通过信号的脉冲方向有效区分油中混合的水滴和气泡污染物。与传统电容式传感器相比,该传感器在检测精度和检测通量方面有显著提高。本文推导了交叉电容值与交变电场中介电常数和频率之间的关系,并选择最佳激励频率为1.9 MHz。实验表明,该传感器能有效检测140 - 160 µm的水滴和170 - 190 µm的气泡,对不同尺寸的水滴和气泡检测具有良好的线性度。该传感器为液压系统的机器状态监测提供了一种新方法。