船舶与海洋工程

双线式螺线管型磨粒传感器设计及其实验研究

  • 刘恩辰 ,
  • 张洪朋 ,
  • 张鑫睿 ,
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  • (1.大连海事大学 轮机工程学院,辽宁 大连 116026;2.中海石油(中国)有限公司天津分公司  渤海石油研究院,天津 300452)
刘恩辰(1991-),男,硕士生.

收稿日期: 2015-08-21

  修回日期: 2015-09-29

  网络出版日期: 2015-09-30

基金资助

国家自然科学基金资助项目(51205034);交通运输部科技资助项目(2013329225260);中央高校基本科研业务费专项资金资助项目(3132014332).

Dual-coil solenoid sensor design and its experimental study for wear particles detection

  • LIU En-chen ,
  • ZHANG Hong-peng ,
  • ZHANG Xin-rui ,
  • et al
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  • (1.Marine engineering College,Dalian Maritime University,Dalian 116026,China;2.Bohai Oil Research Institute,Tianjin Branch of CNOOC Ltd,Tianjin 300452,China)

Received date: 2015-08-21

  Revised date: 2015-09-29

  Online published: 2015-09-30

摘要

为提高螺线管型磨粒传感器的信噪比和检测能力,实现更小金属颗粒的检测,根据并联电感原理设计并制作基于微流道的双线式螺线管型磨粒传感器.对双线式螺线管型磨粒传感器的检测原理进行理论分析,并对相互并联的双线圈等效电感值进行公式推导.使用本文设计制作的双线圈磨粒传感器与传统的单线圈传感器,分别对不同粒径梯度的铁颗粒进行检测与计数,并将检测数据进行对比.实验结果显示,双线圈磨粒传感器可实现5 μm铁颗粒的检测;双线式螺线管型磨粒传感器检测信号的信噪比高于单线圈磨粒传感器,最大可达3倍.本文研制的双线式螺线管型磨粒传感器可用于油液中微米级金属颗粒的检测,且具有较高的检测精度.

本文引用格式

刘恩辰 , 张洪朋 , 张鑫睿 , . 双线式螺线管型磨粒传感器设计及其实验研究[J]. 大连海事大学学报, 2016 , 42(2) : 102 -106 . DOI: 10.16411/j.cnki.issn1006-7736.2016.02.017

Abstract

In order to improve the signal to noise ratio (SNR) and sensitivity of solenoid sensor, the dual-coil solenoid sensor based on the principle of parallel inductance was designed and achieved. The detection principle of solenoid sensor with dual-coil was studied, and the formulas for equivalent inductance value of dual-coil solenoid sensor were conducted. Iron particles with different diameter were detected by using the solenoid sensor with dual-coil and single-coil, and comparison results illustrate that the iron particles with 5μm in diameter can be detected by the dual-coil solenoid sensor, and the SNR of the solenoid sensor with dual-coil is higher than that of the single-coil, which can reach 3 times as maximum, so that the solenoid sensor with dual-coil can accomplish the detection and counting of micro grade metal particles with higher detection accuracy.

参考文献

[1]殷勇辉,严新平,萧汉梁.电感式磨粒监测传感器的磁场均匀性研究[J].摩擦学学报,2001,21(3):228-231.
YIN Yong-hui,YAN Xin-ping,XIAO Han-liang. Study on the magnetic field homogeneity of wear debris detector[J]. Tribology,2001,21(3):228-231(in Chinese)
[2]吴超,郑长松,马彪.电感式磨粒传感器中铁磁质磨粒特性仿真研究[J].仪器仪表学报,2011,32(12):2774-2780.
WU Chao,ZHENG Chang-song,MA Biao.Simulation study on the characteristic of ferromagnetic wear debris in inductive wear debris sensor[J].Chinese Journal of Scientific Instrument,2011,32(12):2774-2780.(in Chinese)
[3]范红波,张英堂,任国全,等.新型磨粒在线监测传感器及其试验研究[J].摩擦学学报,2010,30(4):338-343.
FAN Hong-bo,ZHANG Ying-tang,REN Guo-quan,et al. Experimental study of an on-line monitoring sensor for wear particles in oil[J].Tribology,2010,30(4):338-343.(in Chinese)
[4]严宏志,张亦军.一种磨粒在线监测传感器的设计及其特性分析[J].传感技术学报,2002(4):333-338.
YAN Hong-zhi,ZHANG Yi-jun.The design of an on-line monitoring sensor of wear mental particles and the analysis of its characteristic[J].Journal of Transcluction Technology,2002(4):333-338.(in Chinese)
[5]李扬,郑莹娜,汪仁煌.光电式固体微粒流量计的理论模型与试验研究[J].机械工程学报,2004,40(8):160-165.
LI Yang,ZHENG Ying-na,WANG Ren-huang.Theoretic model and experiment research of optoelectronic granular solid flowmeter[J].Chinese Journal of Mechanical Engineering,2004,40(8):160-165.(in Chinese)
[6]李梦琪,赵凯,宋永欣,等.微流控芯片上油液磨粒电容检测[J].大连海事大学学报,2013,39(3):42-46.
LI Meng-qi,ZHAO Kai,SONG Yong-xin,et al.Microfluidic capacitance sensor for detecting metal wear debris in lubrication oil[J].Journal of Dalian Maritime University,2013,39(3):42-46.(in Chinese)
[7]DU Li,ZHE Jiang.A high throughput inductive pulse sensor for online oil debris monitoring[J].Tribology International,2011,44(2):175-179.
[8]ZHANG Hong-peng,CHON Chan-hee,PAN Xin-xiang,et al.Methods for counting particles in microfluidic applications[J].Microfluidics and Nanofluidics,2009,7(6): 739-749.
[9]DU Li,ZHE Jiang,CARLETTA J,et al.Real-time monitoring of wear debris in lubrication oil using a microfluidic inductive coulter counting device[J].Microfluidics and Nanofluidics,2010,9(6):1241-1245.
[10]郭力.微流体油液检测芯片的优化及信号分析[D].大连:大连海事大学,2013.
GUO Li.Optimization and signal analysis of microfluidic oil detection chip[D].Dalian:Dalian Maritime University, 2013.(in Chinese)
[11]金俊伟.液压油金属颗粒污染物区分检测研究[D].大连:大连海事大学,2011.
JIN Jun-wei.Research on detection of metal particle in hydraulic oil[D].Dalian:Dalian Maritime University,2011.(in Chinese)
[12]张兴明,张洪朋,陈海泉,等.微流体油液检测芯片分辨率-频率特性研究[J].仪器仪表学报,2014,35(2):427-433.
ZHANG Xing-ming,ZHANG Hong-peng,CHEN Hai-quan, et al.Study on the resolution-frequency characteristic of microfluidic oil detection chip[J].Chinese Journal of Scientific Instrument,2014,35(2):427-433.(in Chinese)
[13]傅舰艇,詹惠琴,古军.三线圈电感式磨粒传感器的检测电路[J].仪表技术与传感器,2012(2):5-7.
FU Jian-ting,ZHAN Hui-qin,GU Jun.Detection circuit design of three-coil inductive particle sensor[J].Instrument Technique and Sensor,2012(2):5-7.(in Chinese)
[14]ZHANG Xing-ming,ZHANG Hong-peng,SUN Yu-qing, et al.Effects of eddy current within particles on the 3D solenoid microfluidic detection chip[J].Applied Mechanics and Materials,2013,385-386:546-549.
[15]张洪朋,张兴明,郭力,等.微流体油液检测芯片设计[J].仪器仪表学报,2013,34(4):762-767.
ZHANG Hong-peng,ZHANG Xing-ming,GUO Li,et al. Design of the oil detection microfluidic chip[J].Chinese Journal of Scientific Instrument,2013,34(4):762-767.(in Chinese)
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