搜索热:失效分析 陶瓷
扫一扫 加微信
首页 > 期刊论文 > 论文摘要
脉冲涡流无损检测技术的研究进展
          
The Recent Developments of Pulsed Eddy Current Nondestructive Testing Technology

摘    要
脉冲涡流检测技术是涡流检测技术的一个新兴分支,其宽频谱的激励方式使得脉冲涡流检测技术在航空航天、压力容器、铁路和管道等领域广泛应用。综述了脉冲涡流检测技术在金属缺陷、应力和热成像等方面的国内外研究进展,分析了脉冲涡流检测技术的发展方向。
标    签 脉冲涡流   缺陷   应力   热成像   Pulsed eddy current   Defect   Stress   Thermal imaging  
 
Abstract
Pulsed eddy current testing(PECT) is a new eddy current testing technology. As the wide spectrum of the excited current or voltage, it is widely used in aerospace, pressure vessels, railways, pipe and so on. The recently research progress including the defect of metal, stress of components, and thermal imaging of pulsed eddy current were discussed. The future trend of development was analyzed.

中图分类号 TG115.28

 
  中国光学期刊网论文下载说明


所属栏目 2011年远东无损检测论坛论文精选

基金项目

收稿日期 2011/5/31

修改稿日期

网络出版日期

作者单位点击查看

备注周德强(1979-),男,博士,讲师,主要研究方向为传感器技术、电磁无损检测与评估。

引用该论文: ZHOU De-Qiang,TIAN Gui-Yun,WANG Hai-Tao,YOU Li-Hua. The Recent Developments of Pulsed Eddy Current Nondestructive Testing Technology[J]. Nondestructive Testing, 2011, 33(10): 25~29
周德强,田贵云,王海涛,尤丽华. 脉冲涡流无损检测技术的研究进展[J]. 无损检测, 2011, 33(10): 25~29


论文评价
共有人对该论文发表了看法,其中:
人认为该论文很差
人认为该论文较差
人认为该论文一般
人认为该论文较好
人认为该论文很好
分享论文
分享到新浪微博 分享到腾讯微博 分享到人人网 分享到 Google Reader 分享到百度搜藏分享到Twitter

参考文献
【1】Moulder J C, Bieber J A, Ward W W, et al. Scanned pulsed eddy current instrument for non-destructive inspection of aging aircraft[J]. SPIE,1996,2945(2):2-13.
 
【2】Lebrun B, Jayet Y, Baboux J C. Pulsed eddy current application to the detection of deep cracks[J]. Materials Evaluation,1995,53(11):1296-1300.
 
【3】Lebrun B, Jayet Y, Baboux J C. Pulsed eddy current signal analysis: application to the experimental detection and characterization of deep flaws in highly conductive materials[J]. NDT&E International,1997,30(3):163-170.
 
【4】杨宾峰,罗飞路,张玉华,等.飞机多层结构中裂纹的定量检测及分类识别[J].机械工程学报,2006,42(2):63-67.
 
【5】Anton I Lavrentyev, Paul A Stucky, William A Veronesi. Feasibility of ultrasonic and eddy current methods for measurement of residual stress in shot peened metals[J]. Review of Progress in Quantitative Nondestructive Evaluation, American Institute of Physics,2000:1621-1628.
 
【6】Mark P Blodgett, Peter B Nagy. Eddy current assessment of near-surface residual stress in shot-peened nickel-base superalloys[J]. Journal of Nondestructive Evaluation,2004,23(3):107-123.
 
【7】Feng Yu, Peter B Nagy. Simple analytical approximations for eddy current profiling the near-surface residual stress in shot-peened metals[J]. Journal of Applied Physics,2004,96(2):1257-1266.
 
【8】Feng Yu, Peter B Nagy. Dynamic piezoresistivity calibration for eddy current nondestructive residual stress measurement[J]. Journal of Nondestructive Evaluation,2005,24(4):143-151.
 
【9】Feng Yum, Peter B Nagy. On the influence of cold work on eddy current characterization of near-surface residual stress shot-peened nickel-base superalloys[J]. Journal of Nondestructive Evaluation,2006,25(3):107-122.
 
【10】Bassam A Abu-Nabah, Peter B Nagy. Iterative inversion method for eddy current profiling of near-surface residual stress in surface-treated metals[J]. NDT&E International,2006(39):641-651.
 
【11】Bassam A Abu-Nabah, Peter B Nagy. High-frequency eddy current conductivity spectroscopy for residual stress profiling in surface-treated nickel-base superalloys[J]. NDT&E International,2007(40):405-418.
 
【12】Bassam A Abu-Nabah, Feng Yu, Waled T Hassan, et al. Eddy current residual stress profiling in surface-treated engine alloys[J]. Nondestructive Testing and Evaluation,2009,24(1):209-232.
 
【13】Milne J M, Reynolds W N. The nondestructive evaluation of composites and other materials by thermal pulse video thermography[J]. SPIE,1984(520):119-122.
 
【14】Morbidini M, Cawley P, Lowe M J S, et al. A quantitative investigation of thermosonics[C]. WCNDT, Montreal, Canada:2004.
 
【15】Riegert G, Pfleiderer K, Gerhard H, et al. Modern methods of NDT for inspection of aerospace structure[C]. Berlin, Germany: ECNDT,2006.
 
【16】Dodd C V, Deeds W E. Analytical solutions to eddy-current probe-coil problems[J]. Journal of Applied Physics,1968,39(6):2829-2837.
 
【17】Luquire J W, Deeds W E, Dodd C V. Alternating current distribution between planar conductors[J]. Journal of Applied Physics,1970,41(10):3983-3991.
 
【18】Cheng C C, Dodd C V, Deeds W E. General analysis of probe coils near stratified conductors[J]. Int J Nondestr Test,1971(3):109-130.
 
【19】Kolyshikin A A, Smolyakov A P, Remi Vaillancourt. Analytical solution in eddy-current testing of double-layer media with depth-varying magnetic properties[J]. Magnetics, IEEE Transactions on,1991,28(2):4360-4365.
 
【20】Uzal E, Rose J H. The impedance of eddy current probes above layered metals whose conductivity and permeability vary continuously[J]. Magnetics, IEEE Transactions on,1993,29(2):1869-1873.
 
【21】Erol Uzal, John C Moulder, Screeparma Mitra, et al. Impedance of coils over layered metals with continuously variable conductivity and permeability: theory and experiment[J]. Journal of Applied Physics,1993,74(3):2076-2089.
 
【22】Kolyshkin A A, Vaillancourt R. Analytical solutions to eddy-current testing problems for a layered medium with varying properties[J]. Magnetics, IEEE Transactions on,1997,33(4):2473-2477.
 
【23】Theodoulidis T P, Tsiboukis T D, Kriezis E E. Analytical solutions in eddy current testing of layered metals with continuous conductivity profiles[J]. Magnetics, IEEE Transactions on,1995,31(3):2254-2260.
 
【24】Bowler J, Johnson M. Pulsed eddy current response to a conducting half space[J]. IEEE Transactions on Magnetics,1997,33(3):2258-2264.
 
【25】Fangwei Fu, John Bowler. Transient eddy-current driver pickup probe response due to a conductive plate[J]. IEEE Transactions on magnetics,2006,42(8):2029-2037.
 
【26】Theodoros Theodoulidis. Developments in calculating the transient eddy-current response from a conductive plate[J]. IEEE Transations on magnetics,2008,44(7):1894-1896.
 
【27】Yong Li, Theodoros Theodoulidis, Gui Yun Tian. Magnetic field-based eddy-current modeling for multilayered specimens[J]. IEEE Transactions on magnetics,2007,43(11):4010-4015.
 
【28】Yong Li, Gui Yun Tian, Anthony Simm. Fast analytical modeling for pulsed eddy current evaluation[J]. NDT&E International,2008(41):477-483.
 
【29】Bieber J A, Shaligram S K, Rose J H, et al. Time-gating of pulsed eddy current signals for defect characterization and discrimination in aircraft lap-joints[J]. Review of progress in QNDE,1997(16B):1915-1921.
 
【30】Moulder J C, Bieber J A. Pulsed eddy current measurements of corrosion and cracking in aging aircraft[J]. Materials Research Society Symposium Proceedings of Nondestructive Characterization of Materials in Aging Systems,1998(503):263-268.
 
【31】Rummel W D, Bowler J R. Integrated quantitative nondestructive evaluation(NDE) and reliability assessment of aging aircraft structures[J]. Final Report for The United States Air Force Office of Scientific Research,2001(27).
 
【32】Smith R A, Hugo G R. Deep corrosion and crack detection in aging aircraft using transient eddy current NDE[J]. Review of Progress in Quantitative NDE,1999:1401-1408.
 
【33】Smith R A, Hugo G R. Transient eddy current NDE for ageing aircraft-capabilities and limitations[J]. Insight: Non-Destructive Testing and Condition Monitoring,2001,43(1):14-25.
 
【34】LepineB A, Giguere J S R, Forsyth D S, et al. Applying pulsed eddy current NDI to the aircraft hidden corrosion problem[J]. Review of Progress in QNDE,2000(11):449-456.
 
【35】Giguere S, Lepine B A, Dubois J M S. Pulsed eddy current technology: characterizing material loss with gap and lift off variations[J]. Res Nondestr Eval,2001(13):119-129.
 
【36】Mandache C, Lefebvre J H V. Transient and harmonic eddy currents: Lift-off point of intersection[J]. NDT&E international,2006(39):57-60.
 
【37】Ali Sophian, Gui Yun Tian, David Taylor, et al. A feature extraction technique based on principal component analysis for pulsed eddy current NDT[J]. NDT&E International,2003(36):37-41.
 
【38】Gui Yun Tian, Ali Sophian. Defect classification using a new feature for pulsed eddy current sensors[J]. NDT&E International,2005(38):77-82.
 
【39】Tianlu Chen, Gui Yun Tian, Ali Sophian, et al. Feature extraction and selection for defect classification of pulsed eddy current NDT[J]. NDT&E International,2008,41(6):1-10.
 
【40】Giguère S, Lepine B A, Dubois J M S. Pulsed eddy current technology: characterizing material loss with gap and lift-off variations[J]. Research in Nondestructive Evaluation,2001,13(3):119-129.
 
【41】Gui Yun Tian, Sophian A. Reduction of lift-off effects for pulsed eddy current NDT&E International,2005,38(4):319-324.
 
【42】Gui Yun Tian, Yong Li, and Catalin Mandache.Study of Lift-Off Invariance for Pulsed Eddy-Current Signals[J]. IEEE Transactions on Magnetics,2009,45(1):184-191.
 
【43】周德强,田贵云,王海涛,等.脉冲涡流技术在应力检测中的应用[J].仪器仪表学报,2010,31(7):1588.
 
【44】Maxim Morozov, Gui Yun Tian, Philip J.Withers. The pulsed eddy current response to applied loading of various aluminium alloys[J]. NDT&E International,2010(43):493-500.
 
【45】IIham Zainal Abidin, Gui Yun Tian, John Wilson, et al. Quantitative evaluation of angular defects by pulsed eddy current thermography[J]. NDT&E International,2010(43):537-546.
 
【46】Wilson J, Tian G Y, Abidin I Z, et al. Pulsed eddy current thermography: system development and evaluation[J]. Insight,2010,52(2):87-90.
 
【47】Suixian Yang, Gui Yun Tian, Ilham Zainal Abidin, et al. Simulation of edge cracks using pulsed eddy current stimulated thermography[J]. Journal of Dynamic Systems, Measurement, and Control, Vol133(1), doi:10.1115/1.4002710.
 
【48】Edwards R S, Sophian A, Dixon S, et al. Data fusion for defect characterization using a dual probe system[J]. Sensors and Actuators, A: Physical,2008,144(1):222-228.
 
【49】Gui Yun Tian, John Wilson, Maxim Morozov. Complementary electromagnetic nondestructive evaluation[J]. Review of Progress in Quantative Nondestructive Evaluation,2011(30A,B):1256-1263.
 
相关信息
   标题 相关频次
 高速铁路钢轨电磁检测试验
 8
 激励参数对脉冲涡流缺陷检测的仿真分析
 6
 金属磁记忆累积机理
 6
 脉冲涡流检测技术的研究
 6
 脉冲涡流矩形传感器的方向特性仿真分析
 6
 脉冲涡流圆柱型探头参数的优化设计
 6
 巴克豪森应力检测中激励方式的影响
 4
 超声相控阵声束控制特性分析
 4
 钢轨表面缺陷漏磁检测的三维磁场分析
 4
 钢轨裂纹高速漏磁巡检中的动态磁化及速度效应分析
 4
 钢轨漏磁检测的速度效应
 4
 钢轨疲劳斜裂纹垂向磁化检测仿真
 4
 钢轨疲劳斜裂纹垂向磁化检测仿真
 4
 高速漏磁检测中钢轨磁化强度的研究
 4
 基于BP神经网络的巴克豪森铁轨温度应力检测
 4
 基于DSP的巴克豪森便携式应力检测系统的开发
 4
 基于巴克豪森效应的钢轨表面应力研究
 4
 基于波速分析的激光超声检测技术
 4
 基于磁屏蔽的脉冲涡流缺陷检测仿真
 4
 基于磁屏蔽的脉冲涡流缺陷检测仿真
 4
 基于漏磁信号的钢轨斜裂纹识别
 4
 基于碳纳米管压阻效应的复合材料结构健康监测技术
 4
 激光超声技术及其应用
 4
 脉冲漏磁缺陷定位及腐蚀检测
 4
 脉冲涡流阵列缺陷成像检测技术
 4
 面向钢轨的无线结构健康监测的挑战与应用
 4
 室外温度变化对巴克豪森检测的影响
 4
 铁磁性材料脉冲涡流检测信号的消噪方法
 4
 基于脉冲涡流的多层异种金属材料内部缺陷检测
 3
 脉冲涡流和电磁声换能器双探头无损检测
 3