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一种用于检测液压油中颗粒污染物的新型片上阻抗传感器。

A Novel On-Chip Impedance Sensor for the Detection of Particle Contamination in Hydraulic Oil.

作者信息

Zhang Hongpeng, Zeng Lin, Teng Huaibo, Zhang Xingming

机构信息

Marine Engineering College, Dalian Maritime University, Dalian 116026, China.

School of Naval Architecture and Ocean Engineering, Harbin Institute of Technology, Weihai 264209, China.

出版信息

Micromachines (Basel). 2017 Aug 14;8(8):249. doi: 10.3390/mi8080249.

Abstract

A novel impedance sensor based on a microfluidic chip is presented. The sensor consists of two single-layer coils and a straight micro-channel, and can detect, not only ferromagnetic and non-ferromagnetic particles in oil as an inductive sensor, but also, water droplets and air bubbles in oil as a capacitive sensor. The experiments are carried out at different excitation frequencies, number of coil turns and particle sizes. For the inductance detection, the inductance signals are found to increase with the excitation frequency and the noise is constant; both the inductance signals and the noise increase with the number of coil turns, but because the noise increases at a faster rate than the signal, the signal-to-noise ratio decreases with the number of coil turns. We demonstrate the successful detection of 40 μm iron particles and 110 μm copper particles using the coil with 20 turns at the excitation frequency of 2 MHz. For the capacitance detection, capacitance signals decrease with the excitation frequency and the noise is constant; the capacitance signals decrease with the number of coil turns, while the noise increases, thus, the signal-to-noise ratio decreases with the number of coil turns. We can detect 100 μm water droplets and 180 μm bubbles successfully using the coil with 20 turns at the excitation frequency of 0.3 MHz.

摘要

介绍了一种基于微流控芯片的新型阻抗传感器。该传感器由两个单层线圈和一个直微通道组成,不仅可以作为电感式传感器检测油中的铁磁和非铁磁颗粒,还可以作为电容式传感器检测油中的水滴和气泡。实验在不同的激励频率、线圈匝数和颗粒尺寸下进行。对于电感检测,发现电感信号随激励频率增加而增加,噪声恒定;电感信号和噪声都随线圈匝数增加而增加,但由于噪声增加的速率比信号快,信噪比随线圈匝数降低。我们展示了使用20匝线圈在2 MHz激励频率下成功检测40μm铁颗粒和110μm铜颗粒。对于电容检测,电容信号随激励频率降低,噪声恒定;电容信号随线圈匝数降低,而噪声增加,因此,信噪比随线圈匝数降低。我们可以使用20匝线圈在0.3 MHz激励频率下成功检测100μm水滴和180μm气泡。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3aa6/6190123/9c7ac33123db/micromachines-08-00249-g001.jpg

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