空军工程大学航空工程学院,西安,710038
网络首发:2021-09-10,
纸质出版:2021
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樊祥洪, 陈涛, 何宇廷, 等. 柔性涡流传感器裂纹原位定量监测技术[J]. 西安交通大学学报, 2021,55(9):97-104.
In-Situ Quantitative Monitoring of Crack Propagation with Flexible Eddy Current Sensor[J]. 2021, 55(9): 97-104.
樊祥洪, 陈涛, 何宇廷, 等. 柔性涡流传感器裂纹原位定量监测技术[J]. 西安交通大学学报, 2021,55(9):97-104. DOI: 10.7652/xjtuxb202109011.
In-Situ Quantitative Monitoring of Crack Propagation with Flexible Eddy Current Sensor[J]. 2021, 55(9): 97-104. DOI: 10.7652/xjtuxb202109011.
针对传统柔性涡流阵列传感器感应通道数多、裂纹监测深度低等不足
提出了一种基于隧道磁阻(TMR)传感器的柔性涡流传感器
实现了结构表面和亚表面裂纹的定量监测
且有效减少了感应通道数。通过模拟不同深度裂纹扩展的方法
验证了采用TMR传感器测量y轴磁场分量进行裂纹定量监测具有较好的效果; 通过建立二维有限元模型
分析了不同激励频率对涡流分布和裂纹识别灵敏度的影响。实验结果显示:对于表面裂纹的监测
基于隧道磁阻传感器的柔性涡流传感器具有良好的定量监测效果
且裂纹监测灵敏度随着激励频率增加而增大
激励频率从1 kHz增加到5 kHz时
裂纹识别灵敏度从108.41%增加至741.64%; 对于2 mm以下的亚表面裂纹
在激励频率为1 kHz时
对裂纹定量监测效果不明显
通过增加激励频率可以改善裂纹监测效果并提高裂纹监测灵敏度; 传感器的裂纹监测精度为5 mm
与激励线条之间的间距一致。该研究成果有效地减少了感应单元数
并解决了深层裂纹定量监测问题。
Aiming at the disadvantages of traditional flexible eddy current array sensors such as large number of sensing channels and low crack monitoring depth
a tunnel magnetoresistance(TMR)flexible eddy current array sensor(TMR-FECA)with less induction channels is proposed to quantitatively monitor structural surface and subsurface cracks. Simulation experiments on the propagation of cracks in different depths verify that the method of using TMR sensor to measure the y-axis magnetic field component has a better quantitative crack monitoring effect. Through 2-D finite element model established by Comsol software
the effects of different excitation frequencies on the eddy current distribution and the sensitivity of crack identification are analyzed. The experimental results show that the TMR-FECA has good quantitative monitoring effect for surface crack monitoring
and the sensitivity of crack monitoring increases with the excitation frequency. As the excitation frequency increases from 1 kHz to 5 kHz
the crack identification sensitivity increases from 108.41% to 741.64%. For the subsurface cracks 2 mm beneath the surface
when the excitation frequency is 1 kHz
the quantitative crack monitoring effect is not obvious
but the quantitative crack monitoring effect and the sensitivity of crack monitoring can be improved by increasing the excitation frequency. The crack monitoring accuracy of the sensor is 5 mm
which is consistent with the spacing between the excitation lines. This technique can effectively reduce the number of induction units and solve the quantitative monitoring problem of deep cracks.
VERSTRYNGE E, WILDER K D, DROUGKAS A, et al. Crack monitoring in historical masonry with distributed strain and acoustic emission sensing techniques [J]. Construction and Building Materials, 2018, 162: 898-907.
MCADAM G, NEWMAN P J, MCKENZIE I, et al. Fiber optic sensors for detection of corrosion within aircraft [J]. Structural Health Monitoring, 2005, 4(1): 4756.
GUO Honglei, XIAO Gaozhi, MRAD N, et al. Fiber optic sensors for structural health monitoring of air platforms [J]. Sensors, 2011, 11(4): 3687-3705.
RAFFAELLA D S. Fibre optic sensors for structural health monitoring of aircraft composite structures: recent advances and applications [J]. Sensors, 2015, 15(8): 18666-18713.
CHIMENTI D E MARTIN R W. Nondestructive evaluation of composite laminates by leaky Lamb waves [J]. Ultrasonics, 1991, 29(1): 1321.
LIU Mabao, LI Binbin, LI Jiangtao, et al. Smart coating sensor applied in crack detection for aircraft [J]. Applied Mechanics and Materials, 2013, 330: 383-388.
XIE Ruifang, CHEN Dixiang, PAN Mengchun, et al. Fatigue crack length sizing using a novel flexible eddy current sensor array [J]. Sensors, 2015, 15(12): 32138-32151.
PAPAZIAN J, NARDIELLO J, SILBERSTEIN R, et al. Sensors for monitoring early stage fatigue cracking [J]. International Journal of Fatigue, 2007, 29(9/10/11): 1668-1680.
ZILBERSTEIN V, SCHLICKER D, WALRATH K, et al. MWM eddy current sensors for monitoring of crack initiation and growth during fatigue tests and in service [J]. International Journal of Fatigue, 2001, 23: 477-485.
GOLDFINE N, SCHLICKER D, SHEIRETOV Y, et al. Conformable eddy-current sensors and arrays for fleetwide gas turbine component quality assessment [J]. Journal of Engineering for Gas Turbines and Power, 2002, 124(4): 904-909.
ZILBERSTEIN V, FISHER M, GRUNDY D, et al. Residual and applied stress estimation from directional magnetic permeability measurements with MWM sensors [J]. Journal of Pressure Vessel Technology, 2002, 124(3): 375-381.
丁华, 何宇廷, 焦胜博, 等. 面向飞机结构健康监测的花萼状涡流传感器优化设计 [J]. 北京工业大学学报, 2013, 39(12): 1769-1776.
DING Hua, HE Yuting, JIAO Shengbo, et al. Optimization design of rosette eddy current sensor for aircraft structural health monitoring [J]. Journal of Beijing University or Technology, 2013, 39(12): 1769-1776.
丁华, 何宇廷, 焦胜博, 等. ω-λ型涡流阵列传感器跨阻抗响应特性分析 [J]. 测试技术学报, 2013, 27(2): 178-184.
DING Hua, HE Yuting, JIAO Shengbo, et al. Tran-simpedance response characteristics analysis of ω-λ eddy current senor array [J]. Journal of Test and Measurement Technology, 2013, 27(2): 178-184.
丁华, 焦胜博, 何宇廷, 等. 花萼状涡流阵列传感器裂纹扰动半解析模型构建 [J]. 中国电机工程学报, 2014, 34(3): 495-502.
DING Hua, JIAO Shengbo, HE Yuting, et al. Semi-analytical crack perturbation model construction of rosette eddy current sensors [J]. Proceedings of the CSEE, 2014, 34(3): 495-502.
丁华, 何宇廷, 杜金强, 等. 涡流阵列传感器半解析模型的直接FFT构建方法 [J]. 传感技术学报, 2012, 25(7): 968-972.
DING Hua, HE Yuting, DU Jinqiang, et al. Direct FFT construction method of eddy current array sensor semi-analytic model [J]. Chinese Journal of Sensors and Actuators, 2012, 25(7): 968-972.
CHEN Tao, DU Jinqiang, HE Yuting. A structural crack monitoring gasket for aircraft bolt-jointed structures with temperature compensation [J]. Smart Mater Struct, 2018, 27: 115004.
CHEN Tao, HE Yuting, DU Jinqiang. A high-sensitivity flexible eddy current array sensor for crack monitoring of welded structures under varying environment [J]. Sensors, 2018, 18(6): 1780.
FAN Xianghong, CHEN Tao, HE Yuting, et al. An excitation coil layout method for improving the sensitivity of a rosette flexible eddy current array sensor [J]. Smart Materials and Structures, 2020, 29: 015020.
FAN Xianghong, CHEN Tao, DU Jinqiang, et al. Methods for improving sensitivity of crack quantitative monitoring of flexible eddy current array sensor [J]. Smart Materials and Structures, 2020, 29: 085033.
SHEIRETOV Y, GRUNDY D, ZILBERSTEIN V, et al. MWM-array sensors for in situ monitoring of high-temperature components in power plants [J]. IEEE Sensors Journal, 2009, 9(11): 1527-1536.
HENRY T C, COLE D P, KUBE C M, et al. Evaluation of early fatigue signatures in lightweight aluminum alloy 7075 [J]. Experimental Mechanics, 2020, 60: 205-216.
李致铭,兰哲冲,金楷越,等.寄生电容自适应抑制的飞法级电容传感器读出电路.2021,55(5):154-161.[doi:10.7652/xjtuxb202105017]
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魏全瑞,刘俊,韩九强.改进的无线传感器网络无偏距离估计与节点定位算法.2014,48(6):1-6.[doi:10.7652/xjtuxb 201406001]
安跃军,张强,李文瑞,等.新型移相式屏蔽电动机屏蔽套涡流与温升分析.2014,48(6):50-54.[doi:10.7652/xjtuxb 201406009]
宋渤,徐龙起,张桂铭,等.采用微传感器的黏/密度实验系统及其性能测试.2014,48(3):44-48.[doi:10.7652/xjtuxb 201403009]
曹建安,张乐平,吴昊,等.采用倾角传感器实现空间旋转角度测量的解析方法研究.2013,47(10):109-114.[doi:10.7652/xjtuxb201310019]
续丹,包鑫,霍小宁,等.永磁同步电机宽速域无位置传感器控制.2013,47(9):60-64.[doi:10.7652/xjtuxb201309010]
刘岩,赵玉龙,孙禄,等.多梁结构压阻式测振加速度传感器.2013,47(8):33-37.[doi:10.7652/xjtuxb201308006]
汪志伟,曹建福,郑辑光.一种面向分簇无线传感器网络的多信道跨层协议.2013,47(6):61-67.[doi:10.7652/xjtuxb 201306011]
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