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涡流传感器在前沿工程技术领域的应用综述
Summary of the Application of Eddy Current Sensors in the Frontier Engineering Technology Fields

DOI: 10.12677/MET.2022.116068, PP. 585-593

Keywords: 涡流传感器,关键技术,应用领域,发展趋势;Eddy Current Sensor, Key Technology, Application Field, Development Trend

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Abstract:

涡流传感作为近年国内外传感器发展的热门领域之一,日益得到重视和应用。涡流传感器可以实现非接触测量金属导体表面多种物理量,具有结构简单,灵敏度高,频率响应宽,不受油污等介质影响,抗干扰能力强等特点。本文首先对涡流传感的原理和关键技术进行了详细介绍,然后论述了涡流传感器在前沿工程技术领域的应用,综述了国内外研究新进展,最后分析了当前涡流传感技术面临的瓶颈并对未来的发展趋势进行展望。
Eddy current sensing, as one of the hot fields of sensor development at home and abroad in recent years, has received increasing attention and applications. The eddy current sensor can realize the non-contact measurement of various physical quantities on the surface of the metal conductor. It has the characteristics of simple structure, high sensitivity, wide frequency response, not affected by oil and other media, and strong anti-interference ability. This article first introduces the princi-ples and key technologies of eddy current sensing in detail, then discusses the application of eddy current sensors in the field of cutting-edge engineering technology, reviews the new research pro-gress at home and abroad, finally analyzes the bottlenecks faced by the current eddy current sens-ing technology and prospects for future development trends.

References

[1]  訚耀保, 郭文康, 胡云堂, 李锐华. 考虑电涡流效应的射流管伺服阀建模及频率特性[J]. 航空动力学报, 2020, 35(8): 1777-1785.
[2]  吕程, 杨宾峰, 冯建民, 赵洪伟. 矩形阵列涡流传感器的设计与实现[J]. 科学技术与工程, 2018, 18(25): 148-153.
[3]  佟宇, 张东利, 姜禄, 王闯龙. 基于涡流检测信号的金属曲面距离测量方法研究[J]. 中国测试, 2021, 47(1): 133-138.
[4]  张新雨, 王露, 宋念龙, 常帅, 张东坤. 基于电涡流传感器的温度位移智能检测方法[J]. 传感技术学报, 2020, 33(8): 1176-1182.
[5]  降帅, 孟立凡, 李菠, 王红宇. 3D刻录电涡流传感器特性研究[J]. 仪表技术与传感器, 2019(9): 1-4+9.
[6]  韩宁, 张志杰, 尹武良, 赵晨阳. 基于涡流传感的金属表面缺陷检测方法研究[J]. 传感技术学报, 2019, 32(5): 704-710.
[7]  吕阳, 罗茹丹, 刘莉娜, 郑良广. 高速磁浮导向间隙传感器抑制双线圈互感影响的研究[J]. 传感器与微系统, 2020, 39(7): 18-20.
[8]  黄云龙, 谢振宇, 张浩, 张晓阳. 电涡流传感器探头线圈的参数化设计与制造[J]. 机械与电子, 2017, 35(3): 37-41+46.
[9]  陈国龙, 张卫民, 庞炜涵, 秦峰, 果艳. 基于分形理论的平面线圈激励涡流传感器[J]. 北京理工大学学报, 2017, 37(1): 10-14.
[10]  吴斌, 杨挺, 刘秀成, 何存富. 线圈弯曲角度对柔性涡流传感器缺陷检测能力的影响[J]. 仪器仪表学报, 2020, 41(4): 41-48.
[11]  荣锋, 王一, 郭翠娟, 闫淑霞. 电感变化率对涡流传感器性能影响的仿真研究[J]. 传感技术学报, 2019, 32(10): 1467-1472.
[12]  程玉龙. 一种矿山窄轨车辆用接近传感器[J]. 煤矿安全, 2020, 51(5): 142-145.
[13]  Romero-Arismendi, N.O., Pérez-Benítez, J.A., Ramí-rez-Pacheco, E. and Espina-Hernández, J.H. (2020) Design Method for a GMR-Based Eddy Current Sensor with Optimal Sen-sitivity. Sensors and Actuators A: Physical, 314, Article ID: 112348.
https://doi.org/10.1016/j.sna.2020.112348
[14]  Arndt, M., Dencker, F. and Wurz, M.C. (2019) Novel Eddy-Current Sen-sor for Industrial Deep-Drawing Applications. 2019 IEEE Sensors, 27-30 October 2019, 1-4.
https://doi.org/10.1109/SENSORS43011.2019.8956948
[15]  辛佳兴, 李晓龙, 朱宏武, 陈金忠, 孟涛. 油气管道涡流变形检测探头研制[J]. 科学技术与工程, 2020, 20(33): 13654-13659.
[16]  Sun, M., Zhou, J., Dong, B. and Zheng, S. (2020) Driver Circuit Improvement of Eddy Current Sensor in Displacement Measurement of High-Speed Rotor. IEEE Sensors Journal, 21, 7776-7783.
https://doi.org/10.1109/JSEN.2020.3044592
[17]  李满宏, 王经天, 吴玉, 陈嘉杰, 张明路. 电涡流传感器性能优化关键技术[J]. 仪器仪表学报, 2019, 40(7): 233-243.
https://doi.org/10.19650/j.cnki.cjsi.J1905166
[18]  Kumar, A.S.A. and George, B. (2019) A Noncontact Angle Sensor Based on Eddy Current Technique. IEEE Transactions on Instrumentation and Measurement, 69, 1275-1283.
https://doi.org/10.1109/TIM.2019.2908508
[19]  Kumar, A.S.A., George, B. and Mukhopadhyay, S.C. (2020) An Eddy Current Based Non-contact Displacement Sensor. 2020 IEEE International Instrumentation and Measurement Technology Conference, Dubrovnik, 25-28 May 2020, 1-6.
[20]  吕春峰, 朱建平, 匡兴红, 叶海雄. 栅式变面积电涡流位移传感器阻抗桥测量系统[J]. 仪表技术与传感器, 2018(11): 14-17.
[21]  罗亮, 肖程波, 陈晶阳, 李青, 戴圣龙. 工业燃气轮机涡轮叶片用铸造高温合金研究及应用进展[J]. 材料工程, 2019, 47(6): 34-41.
[22]  武立明. 航空发动机转子扭振激励下叶片振动分析[D]: [硕士学位论文]. 天津: 天津大学, 2018.
[23]  刘美茹, 滕光蓉, 肖潇, 张震相, 乔百杰, 陈雪峰. 基于叶尖定时的航空发动机涡轮叶片振动测量[J]. 航空动力学报, 2020, 35(9): 1954-1963.
[24]  熊伟, 王建磊, 嵇佳佳, 李神龙. 航空发动机流体动压密封优化设计与验证[J]. 机械工程与技术, 2022, 11(3): 249-256
[25]  余星奇. 高速旋转叶片叶尖定时测振技术研究[D]: [硕士学位论文]. 南京: 南京航空航天大学, 2019.
[26]  Fan, Z., Li, H., Dong, J., Zhao, X. and Cao, H. (2021) Shifting Straight-Line Fitting Method to Calculate Blade Vibration Based on Blade Tip Timing. IEEE Transactions on Instrumentation and Measurement, 70, 1-13.
https://doi.org/10.1109/TIM.2021.3057325
[27]  邢琛, 段发阶, 叶德超, 周琦, 李杨宗. 变面积电涡流传感器带冠叶片振动测量[J]. 中国测试, 2021, 47(2): 119-124.
[28]  Sridhar, V., Chana, K.S. and Pekris, M.J. (2107) High Temperature Eddy Current Sensor System for Turbine Blade Tip Clearance Measurements. 12th European Conference on Turbomachinery Fluid dynamics & Thermodynamics, Stockholm, 3-7 April 2017, Article ID: ETC2017-217.
https://doi.org/10.29008/ETC2017-217
[29]  Sridhar, V. and Chana, K.S. (2017) Tip-Clearance Measurements on an En-gine High Pressure Turbine Using an Eddy Current Sensor. Proceedings of the ASME Turbo Expo 2017: Turbomachinery Technical Conference and Exposition, Charlotte, 26-30 June 2017, Article ID: GT2017-63803.
https://doi.org/10.1115/GT2017-63803
[30]  Jamia, N., Friswell, M.I., El-Borgi, S. and Rajendran, P. (2019) Modelling and Experimental Validation of Active and Passive Eddy Current Sensors for Blade Tip Timing. Sensors and Actuators A: Physical, 285, 98-110.
https://doi.org/10.1016/j.sna.2018.10.034
[31]  Kubín, Z., Mísek, T., Hlous, J., et al. (2018) Calibration of Blade Tip-Timing Sensor for Shrouded 40” Last Stage Blade. Mechanical Systems and Signal Processing, 108, 88-98.
https://doi.org/10.1016/j.ymssp.2018.02.001
[32]  叶德超, 段发阶, 周琦, 程仲海, 李旭, 牛广越. 基于高频响涡流传感器的汽轮机带冠叶片振动测量技术(英文) [J]. 测试科学与仪器, 2019, 10(4): 315-321.
[33]  宁海洋. 盾构滚刀磨损状态在线检测系统研究[D]: [硕士学位论文]. 沈阳: 沈阳工业大学, 2018.
[34]  刘新军, 田俊峰, 叶万军, 张磊霄, 王岩, 马宝芬. 南京地铁软流塑地层盾构下穿既有隧道处理加固技术[J]. 科学技术与工程, 2021, 21(1): 366-373.
[35]  张宁川. TBM、盾构盘形滚刀硬岩掘进的刃口磨损形状分析及优化对策[J]. 隧道建设(中英文), 2021, 41(4): 657-665.
[36]  秦银平, 张竹清, 孙振川, 陈馈, 杨延栋. 基于现场试验的TBM滚刀磨损分析及预测[J]. 隧道建设(中英文), 2019, 39(11): 1914-1921.
[37]  Wang, F., Men, C., Kong, X. and Meng, L. (2019) Optimum Design and Application Research of Eddy Cur-rent Sensor for Measurement of TBM Disc Cutter Wear. Sensors, 19, Article No. 4230.
https://doi.org/10.3390/s19194230
[38]  Lan, H., Xia, Y., Ji, Z. and Miao, B. (2019) Online Monitoring Device of Disc Cutter Wear—Design and Field Test. Tunnelling and Underground Space Technology, 89, 284-294.
https://doi.org/10.1016/j.tust.2019.04.010
[39]  Silva, D.G., Ribeiro, J.A.J. and Pimenta, T.C. (2013) Design of Eddy Current Sensor IC for Large Displacement. 2013 IEEE International Symposium on Industrial Electronics, Taipei, 28-31 May 2013, 1-6.
https://doi.org/10.1109/ISIE.2013.6563635
[40]  曹清香. 柴油机主轴承磨损监测装置的设计[J]. 仪表技术与传感器, 2018(5): 28-30+34.
[41]  邓绍海. 一种基于电涡流传感器的主机轴承工况监控系统研究[J]. 中外企业家, 2018(19): 116.
[42]  Wang, K., Zhang, L., Zheng, S., Zhou, J. and Liu, X. (2017) Analysis and Experimental Study of a Novel Self-Differen- tial Eddy Current Sensor for High-Speed Magnetic Electrical Machine. 2017 20th International Conference on Electrical Machines and Systems (ICEMS). Sydney, 11-14 August 2017, 1-6.
https://doi.org/10.1109/ICEMS.2017.8056069
[43]  程强强, 夏桂锁, 于润桥, 程东方, 周兆明. 基于微磁的连续油管在线检测技术[J]. 天然气工业, 2014, 34(7): 109-114.
[44]  刘峰, 李秋实, 姜杰, 侯如雪, 颜浩, 任浩洁. 连续油管半挂车双后桥液压转向系统的设计研究[J]. 机械工程与技术, 2021, 10(5): 537-546.
[45]  Sun, H., Shi, Y., Zhang, W. and Li, Y. (2021) RFEC Based Oil Downhole Metal Pipe Thickness Measurement. Journal of Nondestructive Evaluation, 40, Article No. 35.
https://doi.org/10.1007/s10921-021-00766-w
[46]  Chu, Z., Jiang, Z., Mao, Z., Shen, Y., Gao, J. and Dong, S. (2021) Low-Power Eddy Current Detection with 1-1 Type Magnetoelectric Sensor for Pipeline Cracks Monitoring. Sensors and Actu-ators A: Physical, 318, Article ID: 112496.
https://doi.org/10.1016/j.sna.2020.112496
[47]  Westermann, H., Gorelik, I., Rudat, J., Moritz, C., Neubauer, M., Wal-laschek, J. and Hohn, O. (2015) A New Test Rig for Experimental Studies of Drillstring Vibrations. SPE Drilling & Completion, 30, 119-128.
https://doi.org/10.2118/176019-PA
[48]  张红, 向正新, 钱利勤, 冯定, 涂忆柳. 井眼轨迹控制工具主轴载荷与造斜能力关系研究[J]. 力学与实践, 2017, 39(2): 152-157+134.
[49]  施雷. 井眼轨迹控制工具组合轴承力学与疲劳寿命研究[D]: [博士学位论文]. 武汉: 长江大学, 2017.

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