[1] 边春华, 文杰, 刘洪群. 某核电厂安全厂用水系统管道腐蚀评估 [J]. 全面腐蚀控制, 2023, 37(3): 139-141. DOI:  10.13726/j.cnki.11-2706/tq.2023.03.139.03.

BIAN C H, WEN J, LIU H Q. Pipeline corrosion assessment of a nuclear power plant safety plant water system [J]. Total corrosion control, 2023, 37(3): 139-141. DOI:  10.13726/j.cnki.11-2706/tq.2023.03.139.03.
[2] 孙珂, 肖艳, 宋利君. 核电站消防水管道的腐蚀及控制方法研究 [J]. 全面腐蚀控制, 2023, 37(8): 118-122. DOI:  10.13726/j.cnki.11-2706/tq.2023.08.118.05.

SUN K, XIAO Y, SONG L J. Study on corrosion and control methods of fire water pipeline in nuclear power plant [J]. Total corrosion control, 2023, 37(8): 118-122. DOI:  10.13726/j.cnki.11-2706/tq.2023.08.118.05.
[3] 叶鸣钧, 边春华, 刘洪群, 等. 滨海核电厂不锈钢管道腐蚀原因分析 [J]. 全面腐蚀控制, 2021, 35(5): 56-59. DOI:  10.13726/j.cnki.11-2706/tq.2021.05.056.04.

YE M J, BIAN C H, LIU H Q, et al. Corrosion analysis of stainless steel pipeline in coastal nuclear power plant [J]. Total corrosion control, 2021, 35(5): 56-59. DOI:  10.13726/j.cnki.11-2706/tq.2021.05.056.04.
[4] 张雪辉. 电磁导波检测在核电厂JPP管道腐蚀减薄测量中的应用 [J]. 科学技术创新, 2021(33): 46-48. DOI:  10.3969/j.issn.1673-1328.2021.33.019.

ZHANG X H. Application of electromagnetic guided wave detection in corrosion thinning measurement of JPP pipelines in nuclear power plants [J]. Scientific and technological innovation, 2021(33): 46-48. DOI:  10.3969/j.issn.1673-1328.2021.33.019.
[5] 徐立军, 刘福禄, 丁一清, 等. 基于电磁超声横波的管道剩余厚度检测 [J]. 北京航空航天大学学报, 2022, 48(9): 1767-1773 DOI:  10.13700/j.bh.1001-5965.2022.0301.

XU L J, LIU F L, DING Y Q, et al. Residual thickness detection of pipeline based on electromagnetic ultrasonic shear wave [J]. Journal of Beijing University of Aeronautics and Astronautics, 2022, 48(9): 1767-1773. DOI:  10.13700/j.bh.1001-5965.2022.0301.
[6] 陈涛, 何倩, 吕程, 等. 压力管道缺陷电磁超声/脉冲涡流复合检测方法研究 [J]. 传感技术学报, 2023, 36(6): 860-867. DOI:  10.3969/j.issn.1004-1699.2023.06.003.

CHEN T, HE Q, LÜ C, et al. Study on the hybrid detection method of pressure pipeline defects with EMAT/PECT [J]. Chinese journal of sensors and actuators, 2023, 36(6): 860-867. DOI:  10.3969/j.issn.1004-1699.2023.06.003.
[7] 叶至灵, 韩赞东. 燃气管道腐蚀缺陷电磁超声检测方法 [J]. 仪表技术与传感器, 2020(8): 100-103.

YE Z L, HAN Z D. Electromagnetic acoustic transducer on corrosion detection of gas pipeline [J]. Instrument technique and sensor, 2020(8): 100-103.
[8] 李庆顺, 龙笛, 何艺, 等. 核电厂反应堆水池覆面焊缝的阵列涡流检测 [J]. 无损检测, 2023, 45(3): 18-21,44. DOI:  10.11973/wsjc202303004.

LI Q S, LONG D, HE Y, et al. Array eddy current inspection for reactor pool cladding weld in nuclear power plants [J]. Nondestructive testing, 2023, 45(3): 18-21,44. DOI:  10.11973/wsjc202303004.
[9] 唐亮, 张进, 邓小云. 核电厂BOSS焊缝的相控阵超声检测 [J]. 无损检测, 2019, 41(6): 46-50. DOI:  10.11973/wsjc201906010.

TANG L, ZHANG J, DENG X Y. Phased array ultrasonic testing of BOSS weld in nuclear power plant [J]. Nondestructive testing, 2019, 41(6): 46-50. DOI:  10.11973/wsjc201906010.
[10] 张爽. 电磁超声横波的管道剩余厚度检测研究 [J]. 设备管理与维修, 2023(20): 170-171. DOI:  10.16621/j.cnki.issn1001-0599.2023.10D.75.

ZHANG S. Research on the detection of residual thickness of pipelines based on electromagnetic ultrasonic transverse waves [J]. Plant maintenance engineering, 2023(20): 170-171. DOI:  10.16621/j.cnki.issn1001-0599.2023.10D.75.
[11] 李继承. 电磁超声横波测厚探头设计 [J]. 西部特种设备, 2021, 4(1): 9-13.

LI J C. Design of transverse wave probe for electromagnetic ultrasonic thickness measurement [J]. Western special equipment, 2021, 4(1): 9-13.
[12] 张翱龙, 王俊杰, 姜超, 等. 电磁超声横波测厚影响因素分析 [J]. 无损检测, 2021, 43(11): 1-5, 36. DOI:  10.11973/wsjc202111001.

ZHANG A L, WANG J J, JIANG C, et al. Analysis on influencing factors of electromagnetic ultrasonic shear wave thickness measurement [J]. Nondestructive testing, 2021, 43(11): 1-5, 36. DOI:  10.11973/wsjc202111001.
[13] 唐琴, 石文泽, 卢超, 等. 多层螺旋线圈电磁超声换能器优化设计及其实验研究 [J]. 中南大学学报(自然科学版), 2020, 51(7): 1792-1803. DOI:  10.11817/j.issn.1672-7207.2020.07.005.

TANG Q, SHI W Z, LU C, et al. Optimization design and experimental study of multi-layer spiral coils electromagnetic acoustic transducer [J]. Journal of Central South University (science and technology), 2020, 51(7): 1792-1803. DOI:  10.11817/j.issn.1672-7207.2020.07.005.
[14] 李继承, 戚政武, 苏宇航, 等. 基于电磁超声技术的管道壁厚检测研究 [J]. 中国特种设备安全, 2023, 39(增刊2): 52-55,66. DOI:  10.3969/j.issn.1673-257X.2023.S2.010.

LI J C, QI Z W, SU Y H, et al. Research on thickness testing of pipeline based on electromagnetic ultrasonic [J]. China special equipment safety, 2023, 39(Suppl. 2): 52-55,66. DOI:  10.3969/j.issn.1673-257X.2023.S2.010.
[15] 杨理践, 诸海博, 邢燕好, 等. 基于电磁超声横波的铝板厚度检测技术 [J]. 无损探伤, 2016, 40(4): 10-14. DOI:  10.13689/j.cnki.cn21-1230/th.2016.04.005.

YANG L J, CHU H B, XING Y H, et al. Aluminum plate thickness detection technology based on electromagnetic ultrasonic shear wave [J]. Nondestructive testing technology, 2016, 40(4): 10-14. DOI:  10.13689/j.cnki.cn21-1230/th.2016.04.005.
[16] 方志泓, 贾晶晶, 王理博, 等. 高温气冷堆蒸汽发生器换热管电磁超声导波检测方法研究 [J]. 压力容器, 2023, 40(10): 1-8,37. DOI:  10.3969/j.issn.1001-4837.2023.10.001.

FANG Z H, JIA J J, WANG L B, et al. Research on electromagnetic ultrasonic guided wave detection method for heat exchange tube of steam generator in high-temperature gas-cooled reactor [J]. Pressure vessel technology, 2023, 40(10): 1-8,37. DOI:  10.3969/j.issn.1001-4837.2023.10.001.
[17] 肖菲, 钱超, 宋海涛, 等. 面向高温管道壁厚测量的双模态电磁超声换能器研究 [J]. 仪表技术与传感器, 2023(6): 34-39. DOI:  10.3969/j.issn.1002-1841.2023.06.006.

XIAO F, QIAN C, SONG H T, et al. Research on dual-mode EMAT for high temperature pipe wall thickness measurement [J]. Instrument technique and sensor, 2023(6): 34-39. DOI:  10.3969/j.issn.1002-1841.2023.06.006.
[18] 黄焕东, 张皓琦, 竺国荣, 等. 大型锅炉系统内高温管道检测技术研究 [J]. 管道技术与设备, 2022(6): 31-34,48. DOI:  10.3969/j.issn.1004-9614.2022.06.008.

HUANG H D, ZHANG H Q, ZHU G R, et al. Research on detection technology of high-temperature pipeline in large-scale boiler system [J]. Pipeline technique and equipment, 2022(6): 31-34,48. DOI:  10.3969/j.issn.1004-9614.2022.06.008.
[19] 李蓉雪, 杨理践, 高松巍, 等. 基于改进EMD的电磁超声检测数据处理技术 [J]. 无损检测, 2022, 44(6): 1-5,31. DOI:  10.11973/wsjc202206001.

LI R X, YANG L J, GAO S W, et al. Data processing technology of electromagnetic ultrasonic testing based on improved EMD [J]. Nondestructive testing, 2022, 44(6): 1-5,31. DOI:  10.11973/wsjc202206001.
[20] 阮星翔, 汪磊, 向登峰. 电磁超声检测信号小波去噪研究 [J]. 仪表技术, 2019(4): 13-15,20. DOI:  10.19432/j.cnki.issn1006-2394.2019.04.004.

RUAN X X, WANG L, XIANG D F. Study on wavelet denoising of electromagnetic ultrasonic detection signal [J]. Instrumentation technology, 2019(4): 13-15,20. DOI:  10.19432/j.cnki.issn1006-2394.2019.04.004.
[21] 杨亮, 杨理践. 电磁超声金属板测厚信号处理方法 [J]. 自动化应用, 2017(10): 42-44,59. DOI:  10.3969/j.issn.1674-778X.2017.10.020.

YANG L, YANG L J. Electromagnetic ultrasonic metal plate thickness measurement signal processing method [J]. Automation application, 2017(10): 42-44,59. DOI:  10.3969/j.issn.1674-778X.2017.10.020.