Quantitative experimental measurements of matrix cracking and delamination using acoustic emission

Jonathan J. Scholey1,2, Paul D. Wilcox1, Michael R. Wisnom2, Michael I. Friswell3
1Department of Mechanical Engineering, University of Bristol, BS8 1TR, UK
2Department of Aerospace Engineering, University of Bristol, BS8 1TR, UK
3School of Engineering, University of Swansea, SA2 8PP, UK

Tài liệu tham khảo

Achenbach JD. On the road from schedule-based non-destructive inspection to structural health monitoring. In: Proceedings of the 6th international workshop on structural health monitoring. Stanford; September 1997. p. 16–28. Hamstad, 1986, A review: acoustic emission, a tool for composite materials studies, Exp Mech, 26, 7, 10.1007/BF02319949 Drouillard, 1996, A history of acoustic emission, J Acoust Emiss, 14, 1 Scruby, 1985, Characterisation of fatigue crack extension by quantitative acoustic emission, Int J Fract, 28, 210, 10.1007/BF00035216 Kim, 1986, Characteristics of an acoustic emission source from a thermal crack in glass, Int J Fract, 31, 211, 10.1007/BF00018928 Gorman, 1991, AE Source Orientation by plate wave analysis, J Acoust Emiss, 9, 283 Surgeon, 1999, Modal analysis of acoustic emission signals from CFRP laminates, NDT&E Int, 32, 311, 10.1016/S0963-8695(98)00077-2 Gorman, 1991, Plate waves produced by transverse matrix cracking, Ultrasonics, 29, 245, 10.1016/0041-624X(91)90063-E Prosser, 1995, Advanced, waveform based acoustic emission detection of matrix cracking in composites, Mater Eval, 53, 1052 Scholey JJ, Wilcox PD, Lee CK, Friswell MI, Wisnom MR. Acoustic emission in wide composite specimens. In: Proceedings of the 27th European conference on acoustic emission testing. Cardiff; September 2006. p. 325–332. Schmerr, 1998 Standard method for primary calibration of acoustic emission sensors. ASTM Standard E1106. Jacobs, 1993, Transfer functions for acoustic emission transducers using laser interferometry, J Acoust Soc Am, 94, 3506, 10.1121/1.407205 Hatano, 1976, Acoustic-emission transducer and its absolute calibration, J Acoust Soc Am, 59, 344, 10.1121/1.380869 Tobias, 1976, Acoustic-emission source location in two dimensions by an array of three sensors, Non-Destr Test, 9, 9, 10.1016/0029-1021(76)90027-X Kurokawa, 2005, Real-time executing source location system applicable to anisotopric thin structures, J Acoust Emiss, 23, 224 Scholey JJ, Wilcox PD, Wisnom MR, Friswell MI. Two-dimensional source location techniques for large composite plates. In: Proceedings of the 28th European conference on acoustic emission testing. Krakow; September 2008. p.160–165. Hamstad, 2001, Effects of lateral plate dimensions on acoustic emission signals from dipole sources, J Acoust Emiss, 19, 258 Viktorov, 1967 Gorman, 1998, Some connections between AE testing of large structures and small samples, Nondestruct Test Eval, 14, 89, 10.1080/10589759808953044 Giglotti, 2004, Loss of bifurcation and multiple shapes of thin [0/90] unsymmetric composite plates subject to thermal stress, Compos Sci Technol, 64, 109, 10.1016/S0266-3538(03)00213-6 Sachse, 1978, On the determination of phase and group velocities of dispersive waves in solids, J Appl Phys, 49, 4320, 10.1063/1.325484 Palakovic B, Lowe MJS. DISPERSE: a system for generating dispersion curves, User’s Manual. Imperial College, London; 2000. Wilcox, 2001, The effect of dispersion on long-range inspection using ultrasonic guided waves, NDT&E Int, 34, 1, 10.1016/S0963-8695(00)00024-4 Cui, 1994, An experimental and analytical study of delamination of unidirectional specimens with cut central plies, J Reinf Plast Compos, 13, 722, 10.1177/073168449401300804 Tian, 1991, The fracture behaviour of carbon/epoxy laminates containing internal cut fibres, J Compos Mater, 25, 1427, 10.1177/002199839102501103 Towse A, Setchell CJ, Potter KD, Clarke AB, Macdonald JHG, Wisnom MR, Adams RD. Use experience with a developmental general purpose non-contacting extensometer with high resolution. ASTM Special Technical Publication 1323; 2001. p. 36–51. Velichko, 2007, Modeling the excitation of guided waves in generally anisotropic multi-layered media, J Acoust Soc Am, 121, 60, 10.1121/1.2390674