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第 44 卷 第 3 期             刘韧等: 管道缺陷和特征的多点多频超声导波检测方法                                          779


                 Part 1: Defect identification[J]. International Journal of  and multimodal characteristics of ultrasonic guided wave
                 Applied Mechanics, 2014, 6(4): 1450034.           in circular tube[J]. Journal of Applied Acoustics, 2018,
              [8] 何存富, 郑明方, 吕炎, 等. 超声导波检测技术的发展、应用与                 37(3): 338–344.
                 挑战 [J]. 仪器仪表学报, 2016, 37(8): 1713–1735.        [17] 张旭, 安志武, 廉国选, 等. 薄壁管道内壁缺陷的周向导波检
                 He Cunfu, Zheng Mingfang, Lyu Yan, et al. Develop-  测 [J]. 声学学报, 2016, 41(6): 857–862.
                 ment, applications and challenges in ultrasonic guided  Zhang Xu, An Zhiwu, Lian Guoxuan, et al. Nondestruc-
                 waves testing technology[J]. Chinese Journal of Scientific  tive testing of interior radial crack of thin-walled pipe
                 Instrument, 2016, 37(8): 1713–1735.               by circumferential guided waves[J]. Acta Acustica, 2016,
              [9] 雷玉兰, 陈波. 管道导波检测探头背衬层参数和频率特性的实                    41(6): 857–862.
                 验研究 [J]. 科学技术与工程, 2017, 17(30): 190–193.       [18] Heinlein S, Cawley P, Vogt T K. Reflection of torsional
                 Lei Yulan, Chen Bo. Experimental study on the param-  T(0,1) guided waves from defects in pipe bends[J]. NDT
                 eters and frequency characteristics of the backing sensor  & E International, 2018, 93: 57–63.
                 for pipeline guided wave inspection[J]. Science Technology
                                                                [19] Heinlein S, Cawley P, Vogt T K. Validation of a proce-
                 and Engineering, 2017, 17(30): 190–193.
                                                                   dure for the evaluation of the performance of an installed
             [10] Vinogradov S, Eason T, Lozev M. Evaluation of mag-
                                                                   structural health monitoring system[J]. Structural Health
                 netostrictive transducers for guided wave monitoring of
                                                                   Monitoring, 2018, 18(5–6): 1557–1568.
                 pressurized pipe at 200 C [J]. Journal of Pressure Vessel
                                  ◦
                                                                [20] 伍文君, 王悦民, 陈乐, 等. 管道弯头对低频纵向导波传播特
                 Technology, 2017, 140(2): 021603.
                                                                   性影响分析 [J]. 声学学报, 2017, 42(1): 95–102.
             [11] 王松浩, 胡芷逸, 张应红, 等. 超声导波管道缺陷定位方法研
                                                                   Wu Wenjun, Wang Yuemin, Chen Le, et al. The effect
                 究 [J]. 应用声学, 2022, 41(4): 558–567.
                                                                   of pipe bend on low-frequency longitudinal mode guided
                 Wang Songhao, Hu Zhiyi, Zhang Yinghong, et al. Ul-
                                                                   wave propagation[J]. Acta Acustica, 2017, 42(1): 95–102.
                 trasonic guided waves for defect location in pipeline[J].
                                                                [21] Yamamtoto T, Furukawa T, Nishino H. Frequency de-
                 Journal of Applied Acoustics, 2022, 41(4): 558–567.
                                                                   pendence of the defect sensitivity of guided wave testing
             [12] Cheong Y M, Kim S, Jung H K. Application of
                                                                   for efficient defect detection at pipe elbows[J]. Materials
                 magnetostrictive transducer for the Long-Range guided
                                                                   Transactions, 2016, 57(3): 397–403.
                 wave inspection[J]. Key Engineering Materials, 2007,
                                                                [22] Vinogradov S. Development of Enhanced guided wave
                 70(345–346): 1295–1298.
                                                                   screening using broadband magnetostrictive transducer
             [13] Wang S J, Li C, He C, et al. Design method of unidi-
                                                                   and non-linear signal processing[C]// Proceedings of the
                 rectional wideband SH guided wave phased array magne-
                                                                   Fourth Japan-US Symposium on Emerging NDE Capabil-
                 tostrictive patch transducer[J]. Sensors and Actuators, A.
                                                                   ities for a Safer World, 2010.
                 Physical, 2022, 344(37): 113710.
             [14] Zhou W H, Ma X H, Li C, et al. Design of broadband  [23] Kim Y W, Park K J. The interaction of fundamental
                 magnetostrictive sh guided wave transducer for structural  torsional guided waves from axial and oblique defects in
                 health monitoring[C]// FENDT 2021-Proceedings of 2021  pipes[J]. Insight - Non-Destructive Testing and Condition
                 far East Forum on Nondestructive Testing, 2021.   Monitoring, 2021, 63(6): 334–340.
             [15] 王悦民, 刘勇, 沈立华, 等. 管道中磁致伸缩导波传播方向控               [24] Kim Y W, Park K J. Characterization of axial and
                 制理论与试验 [J]. 海军工程大学学报, 2012, 24(6): 16–20,         oblique defects in pipes using fundamental torsional
                 25.                                               guided modes[J]. NDT & E International, 2017, 92:
                 Wang Yuemin, Liu Yong, Shen Lihua, et al. Theoretical  149–158.
                 and experimental research on direction control of magne-  [25] 栗霞飞, 刘飞, 赵满全, 等. 基于超声导波检测管道缺陷的数
                 tostrictive guided wave propagation in pipes[J]. Journal of  值模拟 [J]. 声学技术, 2019, 38(2): 164–169.
                 Naval University of Engineering, 2012, 24(6): 16–20, 25.  Li Xiafei, Liu Fei, Zhao Manquan, et al.  Numerical
             [16] 王鑫, 张金, 沈洋, 等. 圆管超声导波频散与多模态特性 [J]. 应             simulation of pipeline defects detection based on ultra-
                 用声学, 2018, 37(3): 338–344.                        sonic guided wave[J]. Technical Acoustics, 2019, 38(2):
                 Wang Xin, Zhang Jin, Shen Yang, et al. The dispersion  164–169.
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