Chinese Journal of Lasers, Volume. 38, Issue 11, 1103001(2011)
Crack Detection of Engine Blade Based on Laser-Heating Assisted Surface Acoustic Waves Generated by Scanning Laser
[1] [1] He Yuhuai, Liu Changkui, Zhang Bing. Fracture analysis of rotor blade of titanium alloy TC11[J]. The Chinese Journal of Nonferrous Metals, 2010, 20(s1): 365~368
[2] [2] Ren Zhiqiang, Zhu Tong, Zhang Zonglin et al.. Fracture analysis of blade hoop in an aeroengine[J]. Failure Analysis and Prevention, 2010, 5(1): 49~51, 59
[3] [3] Shi Jianjun, Yang Bo. X-ray real-time imaging testing technology of crack on gas turbine′s blades[J]. Nondestructive Inspection, 2009, 33(4): 12~14
[4] [4] Jiang Guoliang, Wu Qiufang, Li Yong. Infrared chart of fatigue crack in the engine blades[J]. Aircraft Engine, 1993, (1): 1~12
[5] [5] Wu Song, Zhao Jianhua, Huang Zhenjia. Application of measurable video-endoscopes in nondestructive testing[J]. Aerospace Materials and Technology, 2000, 30(3): 57~59
[6] [6] Guo Haiou. Research of crack detection for aero engine compressor stair vane[J]. Nondestructive Inspection, 2004, 28(5): 45~46
[7] [7] Zhou Lusheng, Yan Zhi, Zhang Baojun et al.. Research of ultrasonic inspection technique of steam turbine on blade root in nuclear power plant[J]. Nondestructive Testing, 2009, 31(9): 703~705
[8] [8] Yuan Yingmin, Sun Jinli, Wan Jun et al.. Signal processing for ultrasonic testing of aero engine compressor vane: application comparison of four typical wavelets[J]. Nondestructive Testing, 2004, 26(7): 332~335
[9] [9] Lin Deyuan, Chen Kailu, Chen Bingzhong. Ultrasonic testing of the T-shaped root of turbine blade by shear waves[J]. Nondestructive Testing, 2005, 27(10): 556~558
[10] [10] Shan Ning, Shi Yikai, Liu Xia. Detecting crack of aircraft engine blade based on optical fiber F-P sensor[J]. Nondestructive Testing, 2009, 31(3): 206~207, 216
[11] [11] Dong Liming, Ni Chenyin, Shen Zhonghua et al.. Determination of elastic constants of materials based on the velocity measurement of laser-generated multi-mode ultrasound[J]. Chinese J. Lasers, 2011, 38(4): 0408004
[12] [12] Kong Lingjian, Zhu Guifang, Jiang Congqun. New detection application of laser ultrasonic[J]. Laser & Optoelectronics Progress, 2010, 47(1): 011203
[13] [13] Gu Zhuowei, Mathieu Perton, Silvio E. Kruger et al.. Bonding quality detection of composite structure by laser shock wave[J]. Chinese J. Lasers, 2011, 38(3): 0308002
[14] [14] Z. Yan, P. B. Nagy. Thermo-optical modulation for improved ultrasonic fatigue crack detection in Ti-6Al-4V[J]. NDT&E International, 2000, 33(4): 213~223
[15] [15] Zhongyu Yan, Peter B. Nagy. Thermo-optical modulation of ultrasonic surface waves for NDE[J]. Ultrasonics, 2002, 40(1-8): 689~696
[16] [16] Hui Xiao, Peter B. Nagy. Enhanced ultrasonic detection of fatigue cracks by laser-induced crack closure[J]. J. Appl. Phys., 1998, 83(12): 7453~7460
[17] [17] V. Gusev, N. Chigarev. Nonlinear frequency-mixing photoacoustic imaging of a crack:Theory[J]. J. Appl. Phys., 2010, 107(12): 124905
[18] [18] V. Zaitsev, V. Gusev, B. Castagnede. Luxemburg-Gorky effect retooled for elastic waves: a mechanism and experimental evidence[J]. Phys. Rev. Lett., 2002, 89(10): 105502
[19] [19] V. Zaitsev, V. Gusev, V. Nzarov et al.. Interaction of acoustic waves with cracks: elastic and inelastic nonlinearity mechanisms on different times scales[J]. Acous. Phys., 2005, 51(1): 80~91
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Dong Liming, Li Jia, Ni Chenyin, Shen Zhonghua, Ni Xiaowu, Chen Jianping, N. Chigarev, V. Tournat, V. Gusev. Crack Detection of Engine Blade Based on Laser-Heating Assisted Surface Acoustic Waves Generated by Scanning Laser[J]. Chinese Journal of Lasers, 2011, 38(11): 1103001
Category: laser manufacturing
Received: Apr. 19, 2011
Accepted: --
Published Online: Oct. 27, 2011
The Author Email: Liming Dong (donglm1985@gmail.com)