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                 tion in polycrystalline metal using phase-field modeling[J].  [15] Camacho J, Fritsch C. Phase coherence imaging of grained
                 Ultrasonics, 2016, 67: 18–29.                     materials[J]. IEEE Transactions on Ultrasonics Ferro-
              [9] Chen Y, Lou Z B, Zhou Q, et al. Modeling of ultrasonic  electrics Frequency Control, 2011, 58(5): 1006–1015.
                 propagation in heavy-walled centrifugally cast austenitic  [16] 彭小冲, 费跃农. 相控阵超声接收动态聚焦算法及其物理实
                 stainless steel based on EBSD analysis[J]. Ultrasonics,  现 [J]. 应用声学, 2014, 33(5): 453–461.
                 2015, 59: 31–39.                                  Peng Xiaochong, Fei Yuenong. Receiving dynamic depth
             [10] 严宇, 张晓峰, 杨会敏, 等. 核电主管道奥氏体不锈钢焊缝的                  focusing algorithm of phased array ultrasound imaging
                 相控阵超声检测 [J]. 无损检测, 2018, 40(2): 24–28.            and its physical implementation scheme[J]. Journal of Ap-
                 Yan Yu, Zhang Xiaofeng, Yang Huimin, et al. Phased ar-  plied Acoustics, 2014, 33(5): 453–461.
                 ray ultrasonic testing for austenitic stainless steel weld of  [17] 王冲, 毛捷, 廉国选. 阵元固体指向性补偿对超声全聚焦成像
                 primary coolant piping in nuclear power plant[J]. Nonde-  的优化研究 [J]. 应用声学, 2018, 37(5): 732–737.
                 structive Testing, 2018, 40(2): 24–28.            Wang Chong, Mao Jie, Lian Guoyuan. The optimiza-
             [11] 周正干, 李洋, 周文彬. 相控阵超声后处理成像技术研究、应用                  tion for ultrasonic total focusing method of solid directiv-
                 和发展 [J]. 机械工程学报, 2016, 52(6): 1–11.               ity compensation of array element[J]. Journal of Applied
                 Zhou Zhenggan, Li Yang, Zhou Wenbin.  Ultrasonic  Acoustics, 2018, 37(5): 732–737.
                 phased array post-processing imaging techniques: a re-  [18] 李衍. 超声相控阵全聚焦法成像检测 [J]. 无损检测, 2017,
                 view[J]. Journal of Mechanical Engineering, 2016, 52(6):  39(5): 57–64.
                 1–11.                                             Li Yan. Ultrasonic phased array imaging testing by total
             [12] Caroline H, Bruce W D, Paul D W. Post-processing of  focusing method[J]. Nondestructive Testing, 2017, 39(5):
                 the full matrix of ultrasonic transmit–receive array data  57–64.
                 for non-destructive evaluation[J]. NDT & E International,  [19] Zhang J, Drinkwater B W, Wilcox P D. Comparison of ul-
                 2005, 38(8): 701–711.                             trasonic array imaging algorithms for nondestructive eval-
             [13] 李衍. 钢焊缝全聚焦法检测应用演示 [J]. 无损探伤, 2018,               uation[J]. IEEE Transactions on Ultrasonics Ferroelectrics
                 42(1): 1–5, 23.                                   Frequency Control, 2013, 60(8): 1732–1745.
                 Li Yan. Demonstration of application of total focusing  [20] 汪琼. 厚壁铝合金摆动电弧窄间隙 MIG 焊工艺技术研究 [D].
                 method to inspection of steel welds[J]. Nondestructive  哈尔滨: 哈尔滨工业大学, 2013.
                 Testing Technology, 2018, 42(1): 1–5, 23.      [21] Besson J, Devillers-Guerville L, Pineau A. Modeling of
             [14] Camacho J, Brizuela J, Fritsch C, et al. Grain noise re-  scatter and size effect in ductile fracture: application to
                 duction by phase coherence imaging[J]. AIP Conference  thermal embrittlement of duplex stainless steels[J]. Engi-
                 Proceedings, 2010, 1211(1): 855–862.              neering Fracture Mechanics, 2000, 67(2): 169–190.
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