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张佳莹,等:
曲面复合材料部件的自动相控阵超声检测
2018,40(11):29-32,41. structures:a state-of-the-art review[J]. Advances in
[4] GHOLIZADEH S.A review of non-destructive testing Mechanical Engineering,2020,12(4):72-77.
methods of composite materials[J]. Procedia Structural [10] KHODAYAR F,LOPEZ F,IBARRA-CASTANEDO
Integrity,2016,1:50-57. C,et al.Optimization of the inspection of large
[5] GUPTA R,MITCHELL D,BLANCHE J,et al. composite materials using robotized line scan
A review of sensing technologies for non-destructive thermography[J]. Journal of Nondestructive Evaluation,
evaluation of structural composite materials[J]. Journal of 2017,36(2):32.
Composites Science,2021,5(12):319. [11] 危荃,金翠娥,周建平,等. 空气耦合超声技术在航空
[6] MA M Y,CAO H Y,JIANG M S,et al.High 航天复合材料无损检测中的应用[J]. 无损检测,2016,
precision detection method for delamination defects in 38(8):6-11.
carbon fiber composite laminates based on ultrasonic [12] 董方旭,王从科,凡丽梅,等. X射线检测技术在复合材料
technique and signal correlation algorithm[J]. Materials, 检测中的应用与发展 [J]. 无损检测,2016,38(2):67-72.
2020,13(17):3840. [13] 詹绍正,宁宁,王丹. 超声相控阵技术在航空复合材
[7] 张继敏,周晖,刘奎,等. 复合材料层压结构超声相控 料结构无损检测中的应用及发展[J]. 无损检测,2015,
阵检测的缺陷定量表征[J]. 无损检测,2016,38(1): 37(4):19-23.
20-25. [14] 张博. 大型复合材料撞击损伤的红外热成像检测技术
[8] IBRAHIM M E. Nondestructive evaluation of thick-section 研究[D]. 成都:电子科技大学,2022.
composites and sandwich structures: a review[J]. [15] 曾吕明, 龙柏年,廖为圣,等. 薄型层压复合材料的大视
Applied Science and Manufacturing,2014,64:36-48. 场激光超声检测研究[J]. 航空制造技术,2023,66(22):
[9] WANG B,ZHONG S,LEE T L,et al. Non- 53-59.
destructive testing and evaluation of composite materials/ [16] 李秀峰,付汝龙,杨宝林. 碳纤维复合材料全聚焦3D相
structures:a state-of-the-art review[J]. Advances in 控阵超声检测[J]. 无损探伤,2021,45(4):31-34.
Mechanical Engineering,2020,12(4). [17] 刘鑫,刘青山,康兴东. 轨道车辆碳纤维复合材料粘
[9] WANG B,ZHONG S C,LEE T L,et al.Non- 接结构超声相控阵技术研究[J]. 轨道交通材料,2023,
destructive testing and evaluation of composite materials/ 2(3):60-63.
(上接第19页) stress using the energy ratio of multiple echoes[J]. IEEE
146(6):4183. Sensors Journal,2022,22(5):3928-3936.
[16] ZHANG G D,LI X B,ZHANG S Z,et al. Investigation [19] FU T,CHEN P,YIN A J. A new axial stress measurement
of frequency-dependent attenuation coefficients for multiple method for high-strength short bolts based on stress-
solids using a reliable pulse-echo ultrasonic measurement dependent scattering effect and energy attenuation
technique[J]. Measurement,2021,177:109270. coefficient[J]. Sensors,2022,22(13):4692.
[17] HU Y L,CHEN P,PENG X M,et al. Measurement of [20] 王路. 螺栓形状对其紧固应力超声测量的影响[J]. 计量
axial stress in high-strength short bolts using ultrasonic 技术,1999(4):23-25.
attenuation[J]. Measurement Science and Technology, [21] LI A, QIN Z, BAO F, et al. Particle swarm optimization
2023,34(8):085013. algorithm[J]. Computer Engineering and Applications,
[18] HE X L,CHEN P. Ultrasonic measurement of bolt axial 2002, 1(21):1-3.
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2024 年 第 46 卷 第 12 期
无损检测

