Page 12 - 《应用声学》2023年第6期
P. 12

1122                                                                                2023 年 11 月


                                                                   of surface roughness on the piezoelectric ultrasonic thick-
                                                                   ness measurement[J]. Nondestructive Testing, 2016, 38(5):
                            参 考     文   献
                                                                   1–4.
              [1] 黄慧敏. 国产化核级手动截止阀故障及对策分析 [D]. 杭州:                [8] Hou H S, Chen C L, Zhu B B, et al. Ultrasonic thick-
                 浙江大学, 2017.                                       ness measurements of thin-walled composite steel pipe[J].
              [2] 董超杰. 国产化核级手动截止阀故障及对策初探 [J]. 产业创                  Materials Evaluation, 2019, 77(2): 166–173.
                 新研究, 2020(12): 159–160.                         [9] 赵洪波. TOFD 技术在海底管道环焊缝检测中的应用 [J]. 石
                 Dong Chaojie. Fault and countermeasure of domestic nu-  油化工自动化, 2020, 56(5): 68–71.
                 clear manual stop valve[J]. Research on Industrial Inno-  Zhao Hongbo. Application of TOFD technology in sub-
                 vation, 2020(12): 159–160.                        marine pipeline girth welds detection[J]. Petrochemical
              [3] 肖巍, 金春山, 燕智敏, 等. 核岛截止阀阀体阀盖密封唇焊质                  Automation, 2020, 56(5): 68–71.
                 量控制 [J]. 焊接技术, 2016, 45(2): 87–90.             [10] 张敏婧, 赵英亮, 王黎明, 等. 基于改进 STA/LTA 的高精
                 Xiao Wei, Jin Chunshan, Yan Zhimin, et al.  Valve  度超声测厚方法研究 [J]. 国外电子测量技术, 2021, 40(10):
                 cover seal lip welding quality control for valve body globe  117–122.
                 valve[J]. Welding Technology, 2016, 45(2): 87–90.  Zhang Minjing, Zhao Yingliang, Wang Liming, et al. Re-
              [4] 刘勇. 密封唇焊结构奥氏体不锈钢阀门焊接性能研究 [D]. 大                  search on high precision ultrasonic thickness measurement
                 连: 大连理工大学, 2017.                                  method based on improved STA/LTA[J]. Foreign Elec-
              [5] Zhou G, Xu G, Liu J, et al. Assessment of laser weld  tronic Measurement Technology, 2021, 40(10): 117–122.
                 width based on time and frequency domains of ultrasonic  [11] 王艳玲, 李光亚, 侯亚峰. 基于空耦超声共振法的复合材料测
                 testing signals[J]. Journal of Materials Processing Tech-  厚技术研究 [J]. 机械与电子, 2022, 40(1): 54–58.
                 nology, 2018, 251: 175–180.                       Wang Yanling, Li Gangya, Hou Yafeng.  Research on
              [6] Jiao J, Liu W, Zhang J, et al. Time–frequency analy-  thickness measurement of composite materials based on
                 sis for ultrasonic measurement of liquid-layer thickness[J].  air-coupled ultrasonic resonance method[J]. Machinery
                 Mechanical Systems & Signal Processing, 2013, 35(1–2):  and Electronics, 2022, 40(1): 54–58.
                 69–83.                                         [12] ASTM. Guide for evaluating performance characteristics
              [7] 崔西明, 王哲, 张卓, 等. 表面粗糙度对压电超声测厚的影                   of phased-array ultrasonic examination instruments and
                 响 [J]. 无损检测, 2016, 38(5): 1–4.                    systems: ASTM E2491–2013[S].
                 Cui Ximing, Wang Zhe, Zhang Zhuo, et al. The impact
   7   8   9   10   11   12   13   14   15   16   17