[1] 张辉,宋雅男,王耀南,等. 钢轨缺陷无损检测与评估技术综述[J]. 仪器仪表学报,2019,40(2):11-25. ZHANG Hui,SONG Yanan,WANG Yaonan,et al. Review of rail defect non-destructive testing and evaluation[J]. Journal of Instrumentation,2019,40(2):11-25. [2] 梁喜仁,陶功权,陆文教,等. 地铁钢轨滚动接触疲劳损伤研究[J]. 机械工程学报,2019,55(2):147-155. LIANG Xiren,TAO Gongquan,LU Wenjiao,et al. Study on the rail rolling contact fatigue of subway[J]. Journal of Mechanical Engineering,2019,55(2):147-155. [3] HECKEL T,THOMAS H M,KREUTZBRUCK M,et al. High speed non-destructive rail testing with advanced ultrasound and eddy-current testing techniques[C]//NDE Proceedings,2009:261-265. [4] 王好贞,杨媛,魏小源,等. Barker编码激励超声导波在断轨检测中的应用[J]. 电子测量与仪器学报,2020,34(8):101-108. WANG Haozhen,YANG Yuan,WEI Xiaoyuan,et al. Application of Barker code excited ultrasonic guided waves in broken rail detection[J]. Journal of Electronic Measurement and Instrument,2020,34(8):101-108. [5] 吴福培,魏亚辉,李庆华,等. 高速轨道超声成像伤损检测及其参数学习方法[J]. 计算机集成制造系统,2021,27(3):747-756. WU Fupei,WEI Yahui,LI Qinghua,et al. Damage detection and parameter learning method for high speed rail ultrasonic imaging[J]. Computer Integrated Manufacturing System,2021,27(3):747-756. [6] NAFIAH F,SOPHIAN A,KHAN MR,et al. Quantitative evaluation of crack depths and angles for pulsed eddy current non-destructive testing[J]. NDT E Int,2019,102:180-188. [7] LI Y,TIAN G Y,WARD S. Numerical simulation on magnetic flux leakage evaluation at high speed[J]. NDT E Int,2006,39(5):367-373. [8] DRURY J C,PEARSON N. Corrosion detection in ferrite steels using magnetic flux leakage[C]//One day Seminar Proceedings of Magnetics in Non-Destructive Testing. 2005:14-19. [9] ANTIPOV A G,MARKOV A A. 3D simulation and experiment on high speed rail MFL inspection[J]. NDT E Int,2018,98:177-185. [10] GAO Y,TIAN G Y,LI K,et al. Multiple cracks detection and visualization using magnetic flux leakage and eddy current pulsed thermography[J]. Sensors and Actuators A:Physical,2015,234:269-281. [11] SZYMANIK B,FRANKOWSKI P,CHADY T,et al. Detection and inspection of steel bars in reinforced concrete structures using active infrared thermography with microwave excitation and eddy current sensors[J]. Sensors,2016,16:234. [12] 唐华溢. 涡流与电磁超声复合无损检测技术的研究[D]. 杭州:浙江大学,2014. TANG Huayi. Research on composite non-destructive detection technology of ECT and EMAT[D]. Hangzhou:Zhejiang University,2014 [13] 董雷. 基于BP神经网络的电磁融合无损检测方法研究[D]. 重庆:重庆大学,2018. DONG Lei. Research on nondestructive detection of electromagnetic fusion based on BP neural network[D]. Chongqing:Chongqing University,2018. [14] 陈杰. 储罐底板漏磁与电磁超声复合检测系统[D]. 武汉:华中科技大学,2017. CHEN Jie. Magnetic flux leakage and electromagnetic acoustic combined testing system for tank floor plate[D]. Wuhan:Huazhong University of Science and Technology,2017. [15] 孙鹏飞,尚艳伟,武新军. 水冷壁管的漏磁超声复合检测方法[J]. 无损探伤,2013,37(5):16-19. SUN Pengfei,SHANG Yanwei,WU Xinjun. A device and method for distinguishing magnetic flux leakage detection signals of inner and outer walls of steel pipes[J]. Nondestructive Testing Technology,2013,37(5):16-19. [16] PIAO G,GUO J,HU T,et al. High-speed inspection method fusing pulsed eddy current and magnetic flux leakage[C]//2019 IEEE International Instrumentation and Measurement Technology Conference (I2MTC). IEEE,2019:1-6. [17] 王少平,王增国,刘金海,等. 基于三轴漏磁与电涡流检测的管道内外壁缺陷识别方法[J]. 控制工程,2014,21(4):572-578. WANG Shaoping,WANG Zengguo,LIU Jinhai,et al. Identification method between internal defect and external defect for pipeline based on tri-axial magnetic flux leakage and electric eddy current inspection[J]. Control Engineering,2014,21(4):572-578. [18] 林俊明. 一种区分在用钢管内外壁漏磁检测信号的装置及方法. 中国:CN105866240A[P]. 2016-08-17. LIN Junming. A device and method for distinguishing magnetic flux leakage detection signals of inner and outer walls of steel pipes in use. China:CN105866240A[P]. 2016-08-17. [19] 王闯龙,武美先,张东利,等. 涡流渗透深度影响因素分析[J]. 河南科技大学学报,2020,41(3):45-51,7. WANG Chuanglong,WU Meixian,ZHANG Dongli,et al. Analysis of influencing factors of eddy current penetration depth[J],Journal of Henan University of Science and Technology,2020,41(3):45-51,7. [20] WANG P,GAO Y,TIAN G Y,et al. Velocity effect analysis of dynamic magnetization in high speed magnetic flux leakage inspection[J]. Ndt E Int,2014,64(1):7-12. [21] XU P,ZHU C L,ZENG H M,et al. Rail crack detection and evaluation at high speed based on differential ECT system[J]. Measurement,2020,166:108152. |