Fracture, Fatigue, Failure and Damage Evolution, Volume 7

17 Fracture Behavior of Unidirectional Composites Analyzed by Acoustic Emissions Technique 127 References 1. Oskouei, A.R., Zucchelli, A., Ahmadi, M., Minak, G.: Using acoustic emission to evaluate fracture toughness energy release rate (GI) at mode I delamination of composite materials. In: Sikorski, W. (ed.) Acoustic Emission (2012). ISBN 978–953–51-0056-0 2. Silversides, I., Maslouhi, A., LaPlante, G.: Acoustic emission monitoring of interlaminar delamination onset in carbon fibre composites. Struct. Health Monit. 12(2), 126–140 (2013) 3. ASTM D5528–01: Standard Test Method for Mode I Interlaminar Fracture Toughness of Unidirectional Fiber-Reinforced Polymer Matrix Composites. ASTM International, West Conshohocken (2007) 4. Saeedifar, M., Fotouhi, M., Najafabadi, M.A., Toudeshky, H.H., Minak, G.: Prediction of quasi-static delamination onset and growth in laminated composites by acoustic emission. Compos. Part B. 85, 113–122 (2016) 5. Fotouhi, M., Najafabadi, M.A.: Acoustic emission-based study to characterize the initiation of delamination in composite materials. J. Thermoplast. Compos. Mater. 29(4), 519–537 (2016) 6. Mohammadi, R., Saeedifar, M., Toudeshky, H.H., Najafabadi, M.A., Fotouhi, M.: Prediction of delamination growth in carbon/epoxy composites using a novel acoustic emission-based approach. J. Reinf. Plast. Compos. 34(11), 868–878 (2015) 7. Barile, C., Casavola, C., Pappalettera, G., Pappalettere, C.: Acoustic emission analysis in titanium grade 5 samples during fatigue test. Conf. Proc. Soc. Exp. Mech. Ser. 9, 87–91 (2016) 8. Ono, K.: Trends of Recent Acoustic Emission Literature. J. Acoust. Emission. 12, 177 (1994) 9. Dornfeld, D.A.: Application of acoustic emission techniques in manufacturing. NDT Int. 25, 259–269 (1992) 10. Barile, C., Casavola, C., Pappalettera, G., Pappalettere, C.: Fatigue damage monitoring by means of acoustic emission and thermography in Ti grade 5 specimens. Procedia Eng. 114, 487–492 (2015) 11. Barile, C., Casavola, C., Pappalettera, G., Pappalettere, C.: Acoustic emission analysis of aluminum specimen subjected to laser annealing. Conf. Proc. Soc. Exp. Mech. Ser. 8, 309–315 (2014) 12. Barile, C., Casavola, C., Pappalettera, G., Pappalettere, C.: Considerations on acoustic emissions in Ti grade 5 during fatigue test. Procedia Eng. 109, 320–326 (2015) 13. Cesari, F., Dal Re, V., Minak, G., et al.: Damage and residual strength of laminated carbon–epoxy composite circular platesloaded at the centre. Compos. Part A. 38, 1163–1173 (2007) 14. Refahi Oskouei, A., Zucchelli, A., Ahmadi, M., et al.: An integrated approach based on acoustic emission and mechanical information to evaluate the delamination fracture toughness at mode I in composite laminate. Mater. Des. 32, 1444–1455 (2011) 15. Minak, G., Zucchelli, A.: Damage evaluation and residual strength prediction of CFRP laminates by means of acoustic emission techniques. In: Durand, L.P. (ed.) Composite Materials Research Progress, pp. 165–207. Nova Science Publishers Inc, New York (2008) 16. Enoki, M., Kishi, T., Kohara, S.: Determination of microcracking moment tensor of quasi-cleavage facet by AE source characterization. In: Progress in Acoustic Emission III, Proceedings of the Eighth International Acoustic Emission Symposium, The Japanese Society for NonDestructive Inspection, pp. 763–770 (1983) 17. www.mistrasgroup.com 18. Barile, C., Casavola, C., Pappalettera, G., Pappalettere, C.: Hybrid thermography and acoustic emission testing of fatigue crack propagation in Aluminum Samples. Conf. Proc. Soc. Exp. Mech. Ser. 66(5), 247–252 (2015) 19. Barile, C., Casavola, C., Pappalettera, G., Pappalettere, C.: Analysis of crack propagation in stainless steel by comparing acoustic emissions and infrared thermography data. Eng. Fail. Anal. 69, 35–42 (2016) 20. Nemati, N., Metrovich, B., Nanni, A.: Acoustic emission assessment of through-thickness fatigue crack growth in steel members. Adv. Struct. Eng. 16, 269–282 (2015) 21. Barile, C., Casavola, C., Pappalettera, G., Pappalettere, C.: Acoustic sources from damage propagation in Ti grade 5. Meas. 91, 73–76 (2016) 22. Vlasic, F., Nohal, L., Mazal, P., Liskutin, P.: Study of high-cycle fatigue behaviour of titanium alloy using acoustic emission method. Conf. Proc. Metal. 1423–1430 (2014). ISBN 978-80-87294-52-9

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