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为了探索适合复合材料蜂窝板缺陷检测的红外热像检测法及热像信号处理方法,对蜂窝板的脉冲热像检测(PT)、调制热像检测(MT)及几种热像信号处理方法的缺陷检测能力进行了比较。在脉冲热像检测中,用脉冲相位法进行热像序列处理,并与最佳原始热像进行比较。在调制热像检测中,提出用离散傅里叶级数法和相关系数法进行热像序列处理,并与经典的四点法进行比较。研究结果表明,在蜂窝板脱粘缺陷的检测中,调制热像法的检测效果好于脉冲热像法。在调制热像法的信号处理中,离散傅里叶级数法和相关系数法的应用效果均好于四点法。在最佳调制频率下,以"调制热像-离散傅里叶级数"法进行蜂窝板脱粘缺陷的检测具有最大的缺陷探测能力。

To investigate the optimal infrared thermography testing technique and thermographic data processing methods for the flaw inspection of composite honeycomb panels,the defect detection capabilities of pulsed thermography(PT),modulated thermography(MT) and several thermographic data processing algorithms were compared.In PT,pulsed phase thermography(PPT) was applied to the thermographic signal processing,and compared with the best raw image.In MT,discrete Fourier series(DFS) and correlation coefficient(CC) algorithm were newly proposed to process the experimental data,and compared with the classical Four-point method.The obtained results indicate that,MT is better than PT for debonding inspection of honeycomb panels.The effects of both DFS and CC are better than Four-point method for signal processing of MT.At the best modulation frequency,the MT-DFS method shows the maximum detection capability for debondings in honeycomb panels.

参考文献

[1] Ibarra-Castanedo C, Genest M, Guibert S, et al. Inspection of aerospace materials by pulsed thermography, lock-in thermography and vibrothermography: A comparative study //Knettel K M, Vavilov V P, Miles J J. Proc SPIE Thermosense XXVI. Bellingham, WA: SPIE, 2007: 1-9.
[2] Vavilov V. Evaluating the efficiency of data processing algorithms in transient thermal NDT //Burleigh D, Cramer K, Peacock G. Proc SPIE Thermosense XXVI. Bellingham, WA: SPIE, 2004: 336-347.
[3] 郭兴旺, Vavilov V, 郭广平, 等. 复合材料红外无损检测的建模分析和热像处理 [J]. 北京航空航天大学学报, 2004, 30(4): 363-369.
[4] 李艳红, 金万平, 杨党纲, 等. 蜂窝结构的红外热波无损检测 [J]. 红外与激光工程, 2006, 35(1): 45-48.
[5] 田裕鹏, 周克印, 赵莹莹, 等. 蜂窝结构积水的脉冲相位红外成像检测 [J]. 红外技术, 2006, 28(10): 615-619.
[6] Sfarra S, Ibarra-Castanedo C, Avdelidis N P, et al. A comparative investigation for the nondestructive testing of honeycomb structures by holographic interferometry and infrared thermography [J]. Journal of Physics: Conference Series 214, 2010(012071): 1-4.
[7] Swiderski W. Lock-in Thermography to rapid evaluation of destruction area in composite materials used in military application //Tobin K W, Meriaudeau J F. Proc SPIE-Sixth International Conference on Quality Control by Artificial Version. Bellingham, WA: SPIE, 2003: 506-517.
[8] Meola C, Carlomagno G M, Squillace A, et al. Non-destructive evaluation of aerospace materials with lock-in thermography [J]. Engineering Failure Analysis, 2006, 13: 380-388.
[9] 郭兴旺, 吕珍霞. CFRP层压板脉冲热像检测的图像重建与增强 [J]. 红外技术, 2006, 28(5): 299-305.
[10] Maldague X, Marinetti S. Pulse phase infrared thermography [J]. Journal of Applied Physics, 1996, 79(5): 2694-2698.
[11] Shepard S M, Lhota J R, Rubadeux B A, et al. Reconstruction and enhancement of active thermographic image sequences [J]. Opt Eng, 2003, 42(5): 1337-1342.
[12] 郭兴旺, 其达拉图. 铝试件脉冲红外热无损检测的主分量分析 [J]. 北京航空航天大学学报, 2009, 35(11): 1393-1397.
[13] 李 政, 郭兴旺. 因子分析法在脉冲红外热无损检测中的应用 [J]. 北京航空航天大学学报, 2010, 36(5): 622-626.
[14] 郭兴旺, 李苒笙, 丁蒙蒙. 固体火箭包覆层脱粘调制红外热波检测法的数值模拟 [J]. 机械工程学报, 2011(2): 9-15.
[15] Guo Xingwang, Li Zheng, Liu Yingtao. On-off modulated thermography of composite material and signal processing //Maldague X. Proc of the 10th Edition of the Quantitative Infrared Thermography. Canada, Quebec: QIRT, 2010: 441- 448..
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