REVIEW PAPER |
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Acoustic Emission Technique for Damage Detection and Failure Process Determination of Fiber-reinforced Polymer Composites: an Application Review |
HUANG Zhanhong, HUANG Chunfang, ZHANG Jianwei, JIANG Dazhi, JU Su
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College of Aeronautics and Astronautics, National University of Defense Technology, Changsha 410073 |
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Abstract Acoustic emission (AE), a non-destructive testing technique, has advantages such as activeness, insensitivity to geometry of samples, immediacy and characteristic, etc. By establishing the links between composite material’s failure features and the AE signals, determining each failure mode of the composites in loading process, and also involving the stress-strain curves, this technique can obtain the failure mechanisms of the composites. The present paper reviews the application and analysis methodology of the AE technique in fiber reinforced polymer composites, and sketches out the future trends and prospect.
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Published: 10 April 2018
Online: 2018-05-11
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1 刘贵民,马丽丽.无损检测技术[M].北京:国防工业出版社,2010:1. 2 Zhou W, Tian X, Zhang T, et al. Acoustic emission attenuation and source location of glass fiber composites for wind turbine blades[J].Journal of Hebei University(Natural Science Edition),2012,32(1):100(in Chinese). 周伟,田晓,张亭,等.风电叶片玻璃钢复合材料声发射衰减与源定位[J].河北大学学报(自然科学版),2012,32(1):100. 3 杨明纬.声发射检测[M].北京:机械工业出版社,2005:1. 4 Yan S, Lu X M, Zeng T. Low-velocity impact and residual compressive properties of composite laminates based on AE[J].Journal of Harbin University of Science and Technology,2014,19(1):112(in Chinese). 严实,陆夏美,曾涛.复合材料层板冲击后剩余压缩性能声发射分析[J].哈尔滨理工大学学报,2014,19(1):112. 5 Haar A. Zur theorie der orthogonalen funktionen-systeme[J].Mathe-matische Annalen,1910,69:331. 6 Guo H J, Zhang Y T, He C X.The extraction of weak signal based on wavelet analysis[J].Light Industry Science and Technology,2016(2):65(in Chinese). 郭会娟,张永涛,何春霞.基于小波分析的微弱信号的提取[J].轻工科技,2016(2):65. 7 Yang J B, Wang Y, Gao H, et al. Application of wavelet transform to process the arrival time of acoustic emission waves[J].Nondestructive Testing,2001,23(11):482(in Chinese). 杨建波,王阳,高虹,等.小波变换用于声发射波波达时间的研究[J].无损检测,2001,23(11):482. 8 Zhang T H, Zhang H P, Yan X. Application of wavelet analysis in study of acoustic emission signal for composite inspection[J].Fiber Reinforced Plastics/Composites,2007(1):46(in Chinese). 张同华,张慧萍,晏雄.小波分析在复合材料声发射信号特征研究中的应用[J].玻璃钢/复合材料,2007(1):46. 9 Al-Jumaili S K, Holford K M, Eaton M, et al. Classification of acoustic emission data from buckling test of carbon fibre panel using unsupervised clustering techniques[J].Structural Health Monitoring,2015,14(3):241. 10Nielsen A. Acoustic emission source based on pencil lead breaking[J].The Danish Welding Institute,Publication,1980,80:15. 11Fotouhi M, Suwarta P, Jalalvand M, et al. Detection of fibre fracture and ply fragmentation in thin-ply UD carbon/glass hybrid laminates using acoustic emission[J].Composites Part A Applied Science and Manufacturing,2016,86:66. 12Arumugam V P, Sidharth A A, Santulli C. Failure modes characte-rization of impacted carbon fibre reinforced plastics laminates under compression loading using acoustic emission[J].Composite Mate-rials,2014,48(28):3457. 13 Pashmforoush F, Khamedi R, Fotouhi M, et al. Damage classification of sandwich composites using acoustic emission technique and k-means genetic algorithm[J].Journal of Nondestructive Evaluation,2014,33:481. 14 Li L, Lomov S V, Xiong Y. Correlation of acoustic emission with optically observed damage in a glass/epoxy woven laminate under tensile loading[J].Composite Structures,2015,123:45. 15 Yang B L, Zhang T H, Zhang H P, et al. Damage mechanisms analysis of UHMWPE/LDPE composites based on the use of pattern re-cognition techniques on acoustic emission signals[J].Acta Materiae Compositae Sinica,2008,25(2):35(in Chinese). 杨璧玲,张同华,张慧萍,等.基于声发射信号模式识别的UHMWPE/LDPE复合材料损伤机制分析[J].复合材料学报,2008,25(2):35. 16 Aslan M. Investigation of damage mechanism of flax fibre LPET commingled composites by acoustic emission[J].Composite Part B Engineering,2013,54:289. 17 Godin N, Huguet S, Gaertner R. Integration of the Kohonen’s self-organizing map and k-means algorithm for the segmentation of the AE date collected during tensile tests on cross-ply composites[J].NDT&E International,2005,38:299. 18 Carvelli V, D’Ettorre A, Lomov S V. Acoustic emission and damage mode correlation in textile reinforced PPS composites[J].Composite Structures,2017,163:399. 19 Li Y, Lin D, Chen W, et al. Application of wet winding resin[J].Aerospace Materials & Technology,2009,39(4):22(in Chinese). 黎昱,林大庆,陈维强,等.湿法缠绕树脂的应用研究[J].宇航材料工艺,2009,39(4):22. 20陈祥宝.聚合物基复合材料手册[M].北京:化学工业出版社,2004:1. 21Fotouhi M, Saeedifar, M Sadeghi S, et al. Investigation of the da-mage mechanisms for mode I delamination growth in foam core sandwich composites using acoustic emission[J].Structural Health Monitoring,2015,14:265. 22Pashmforoush F, Fotouhi M, Ahmadi M. Acoustic emission-based damage classification of glass/polyester composites using harmony search k-means algorithm[J].Journal of Reinforced Plastics and Composites,2012,31(10):671. 23 Fotouhi M, Sadeghi S, Jalalvand M, et al. Analysis of the damage mechanisms in mixed-mode delamination of glass/epoxy composites using acoustic emission data clustering[J].Thermoplastic Composite Materials,2015,1:44. 24 EI-Abbassi F E, Assarar M, Ayad R, et al. Effect of alkali treatment on Alfa fibre as reinforcement for polypropylene based eco-composites:Mechanical behavior and water ageing[J].Composite Structures,2015,133:451. 25 Wang X G, Yang N J, Long X H, et al. Research of failure me-chanism of T700/epoxy composite’s tensile test[J].Non Destructive Testing,2011,35(6):22(in Chinese). 王新刚,阳能军,龙宪海,等.T700/环氧复合材料拉伸损伤机理声发射实验研究[J].无损探伤,2011,35(6):22. 26 Lu C, Ding P, Chen Z H, et al. Damage behavior of carbon-cloth/epoxy resin composite in tensile test based on acoustic emission[J].Failure Analysis and Prevention,2012,7(1):15(in Chinese). 卢超,丁鹏,陈振华,等.不同拉伸速度下的碳布/环氧树脂复合材料声发射评价[J].失效分析与预防,2012,7(1):15. 27 Lv Z H, Liu R, Wang Y R, et al. Acoustic emission monitoring and strain analysis of composite materials embedded with delamination under compression load[J].Fiber Reinforced Plastics/Composites,2015,9:24(in Chinese). 吕智慧,刘然,王雅瑞,等.压缩载荷下复合材料分层损伤演化声发射监测及应变分析[J].玻璃钢/复合材料,2015,9:24. 28 Mhalla M M, Bahloul A, Bouraoui C. Analytical models for predicting tensile strength and acoustic emission count of a glass fiber reinforced polyamide using response surface method[J].Journal of Alloys and Compounds,2017,695:2356. 29 Vieille B, Chabchoub M, Bouscarrat D, et al. A fracture mechanics approach using Acoustic Emission Technique to investigate damage evolution in woven-ply thermoplastic structures at temperatures higher than glass transition temperature[J].Composites Part B Engineering,2016,74:1. 30Wang H W, Chang Y H, Lin C L. A novel anatomical short glass fiber reinforced post in an endodontically treated premolar mechanical resistance evaluation using acoustic emission under fatigue testing[J].Journal of the Mechanical Behavior of Biomedical Materials,2017,65:151. 31Michalocová L, Kadlec M. Carbon/epoxy composite delamination analysis by acoustic emission method under various environmental conditions[J].Engineering Failure Analysis,2016,69:88. 32Kumar C S, Arumugam V, Santulli C. Characterization of indentation damage resistance of hybrid composite laminates using acoustic emission monitoring[J].Composites Part B Engineering,2017,111:165. 33 Mohammadi R, Najafabadi M A, Saeedifar M, et al. Correlation of acoustic emission with finite element predicted damages in open-hole tensile laminated composites[J].Composites Part B Engineering,2017,108:427. 34 Doitrand A, Fagiano C, Carrèarrano N. Damage onset modeling in woven composites based on a coupled stess and energy criterion[J].Engineering Fracture Mechanics,2017,169:189. 35 Sorrentino L, Sarasini F, Tirillò J, et al. Damage tolerance assessment of the interface strength gradation in thermoplastic composites[J].Composites Part B Engineering,2017,113:111. 36 Kadi M E, Blom J, Wastiels J, et al. Use of early acoustic emission to evaluate the structural condition and self-healing performance of textile reinforced cements[J].Mechanics Research Communications,2017,81:26. 37 Saeedifar M, Najafabadi M A, Yousefi J, et al. Delamination analysis in composite laminates by means of acoustic emission and bi-li-near/tri-linear cohesive zone modeling[J].Composite Structures,2017,161:505. 38 Shrestha P, Park Y, Kim C G. Low velocity impact localization on composite wing structure using error outlier based algorithm and FBG sensors[J].Composites Part B Engineering,2016,68:1. 39 Yu F M, Okabe Y, Wu Q, et al. A novel method of identifying da-mage types in carbon fiber-reinforced plastic cross-ply laminates based on acoustic emission detection using a fiber-optic sensor[J].Composites Science and Technology,2016,135:116. |
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