[1] Li Wei, Guo Quanfeng. Application of carbon fiber composites to cosmonautic fields [J]. Chinese Optics, 2011, 4(3): 201-212. (in Chinese) doi:  10.3969/j.issn.2095-1531.2011.03.001
[2] Zhang Junqiang, Yan Changxiang. Application of carbon/epoxy composites to support structures of space payloads [J]. Chinese Optics, 2009, 2(2): 79-84. (in Chinese) doi:  10.3969/j.issn.2095-1531.2009.02.002
[3] Chen Yuan, Yu Fujie, Hu Mingduo, et al. Design and implementation of combination cam-type Z-pin pre-insertion device for aeronautical materials [J]. Optics and Precision Engineering, 2019, 27(2): 379. (in Chinese) doi:  10.3788/OPE.20192702.0379
[4] Shah S Z H, Karuppanan S, Megat-Yusoff P S M, et al. Impact resistance and damage tolerance of fiber reinforced composites: A review [J]. Composite Structures, 2019, 217: 100-121. doi:  10.1016/j.compstruct.2019.03.021
[5] Richardson M O W, Wisheart M J. Review of low-velocity impact properties of composite materials [J]. Composites Part A: Applied Science and Manufacturing, 1996, 27(12): 1123-1131. doi:  10.1016/1359-835X(96)00074-7
[6] Meo M, Polimeno U, Zumpano G. Detecting damage in composite material using nonlinear elastic wave spectroscopy methods [J]. Applied Composite Materials, 2008, 15(3): 115-126. doi:  10.1007/s10443-008-9061-7
[7] Lei L, Ferrarini G, Bortolin A, et al. Thermography is cool: defect detection using liquid nitrogen as a stimulus [J]. NDT & E International, 2019, 102: 137-143.
[8] Deane S, Avdelidis N P, Castanedo C I, et al. Application of NDT thermographic imaging of aerospace structures [J]. Infrared Physics & Technology, 2019, 97: 456-466. doi:  10.1016/j.infrared.2019.02.002
[9] Li Yin, Tian Gan, Yang Zhengwei, et al. Detection capability evaluation of low velocity impact damage in composites using ultrasonic infrared thermography [J]. Chinese Journal of Scientific Instrument, 2016, 37(5): 1124-1130. (in Chinese)
[10] Liu Junyan, Liu Liqiang, Wang Yang. Experimental study on active infrared thermography as a NDI tool for carbon–carbon composites [J]. Composites Part B: Engineering, 2013, 45(1): 138-147. doi:  10.1016/j.compositesb.2012.09.006
[11] Kou Guangjie, Yang Zhengwei, Jia Yong, et al. Detection on cracks in blades with complex profile based on ultrasonic infrared thermal imaging [J]. Infrared and Laser Engineering, 2019, 48(12): 1204002. (in Chinese) doi:  10.3788/IRLA201948.1204002
[12] Tian Gan, Yang Zhengwei, Zhu Jietang, et al. Vibration characteristics and acoustic chaos analysis in ultrasonic infrared thermal wave detection [J]. Infrared and Laster Engineering, 2016, 45(3): 0304003. (in Chinese)
[13] Yang Zhengwei, Kou Guangjie, Zhou Wei, et al. Theoretical model for heat generation of crack on different preload force under ultrasound excitation [J]. Infrared and Laster Engineering, 2020, 49(S1): 20200158. (in Chinese)
[14] Maldague X P V. Introduction to NDT by active infrared thermography [J]. Materials Evaluation, 2002, 60(9): 1060-1072.
[15] Usamentiaga R, Venegas P, Guerediaga J, et al. Infrared thermography for temperature measurement and non-destructive testing [J]. Sensors, 2014, 14(7): 12305-12348. doi:  10.3390/s140712305
[16] Adams R D, Cawley P, Pye C J, et al. A vibration technique for non-destructively assessing the integrity of structures [J]. Journal of Mechanical Engineering Science, 1978, 20(2): 93-100. doi:  10.1243/JMES_JOUR_1978_020_016_02
[17] Milne A J M, Reynolds W N. The non-destructive evaluation of composites and other materials by thermal pulse video thermography [C]//Proceedings of SPIE, 1985, 520(12): 119-122.
[18] Avdelidis N P, Almond D P, Dobbinson A, et al. Aircraft composites assessment by means of transient thermal NDT [J]. Progress in Aerospace Sciences, 2004, 40(3): 143-162. doi:  10.1016/j.paerosci.2004.03.001
[19] Ibarra-Castanedo C, Avdelidis N P, Grinzato E G, et al. Delamination detection and impact damage assessment of GLARE by active thermography [J]. International Journal of Materials and Product Technology, 2011, 41(1-4): 5-16.
[20] Gaudenzi P, Bernabei M, Dati E, et al. On the evaluation of impact damage on composite materials by comparing different NDI techniques [J]. Composite Structures, 2014, 118: 257-266. doi:  10.1016/j.compstruct.2014.07.048
[21] Chulkov A O, Vavilov V P, Nesteruk D A, et al. Synthesizing data of active infrared thermography under optical and ultrasonic stimulation of products made of complex-shaped CFRP [J]. Russian Journal of Nondestructive Testing, 2020, 56(7): 595-601. doi:  10.1134/S1061830920070037
[22] Li Y, Zhang W, Yang Z, et al. Low-velocity impact damage characterization of carbon fiber reinforced polymer (CFRP) using infrared thermography [J]. Infrared Physics & Technology, 2016, 76: 91-102.
[23] Pracht M, Świderski W. Experimental testing of aramid composite applied in ballistic armour by ultrasonic IR thermography [J]. Problems of Mechatronics Armament Aviation Safety Engineering, 2019, 10(2): 79-88. doi:  10.5604/01.3001.0013.2117
[24] Quattrocchi A, Freni F, Montanini R. Comparison between air-coupled ultrasonic testing and active thermography for defect identification in composite materials [J]. Nondestructive Testing and Evaluation, 2021, 36(1): 97-112. doi:  10.1080/10589759.2019.1699084
[25] Panettieri E, Fanteria D, Montemurro M, et al. Low-velocity impact tests on carbon/epoxy composite laminates: a benchmark study [J]. Composites Part B: Engineering, 2016, 107: 9-21. doi:  10.1016/j.compositesb.2016.09.057
[26] Ishikawa T, Aoki Y, Suemasu H. Pursuit of mechanical behavior in compression after impact (CAI) and open hole compression (OHC) [C]//Proceedings of 15th International Conference on Composite Materials (ICCM-15), 2005.
[27] Renshaw J, Chen J C, Holland S D, et al. The sources of heat generation in vibrothermography [J]. NDT & E International, 2011, 44: 736-739.
[28] Upadhyay J, Jaiswal A. A joint implementation of adaptive histogram equalization and interpolation [J]. Optik, 2015, 126(24): 5936-5940. doi:  10.1016/j.ijleo.2015.08.150
[29] Vyavahare A J, Thool R C. Segmentation using region growing algorithm based on CLAHE for medical images[C]//Fourth International Conference on Advances in Recent Technologies in Communication and Computing (ARTCom2012), 2012: 182-185.
[30] Shin D H, Park R H, Yang S, et al. Block-based noise estimation using adaptive Gaussian filtering [J]. IEEE Transactions on Consumer Electronics, 2005, 51(1): 218-226. doi:  10.1109/TCE.2005.1405723
[31] Dudzik S. A simple method for defect area detection using active thermography [J]. Opto-Electronics Review, 2009, 17(4): 338-344. doi:  10.2478/s11772-009-0016-9