23 Acoustic Emission in Coatings—A Review
279
24. J.H. Park, J.S. Kim, K.H. Lee, Acoustic emission characteristics for diagnosis of TBC damaged
by high-temperature thermal fatigue. J. Mater. Process. Technol. 537–541 (2007)
25. C.C. Li, X. Qiao, T. Wang, W. Weng, Q. Li, Damage evolution and failure mechanism of
thermal barrier coatings under Vickers indentation by using acoustic emission technique. Prog.
Nat. Sci. Mater. Int. 90–96 (2018)
26. L. Wang, J.X. Ni, F. Shao, J.S. Yang, X.H. Zhong, H.Y. Zhao, D.Y. Li, Failure behavior of
plasma-sprayed yttria-stabilized zirconia thermal barrier coatings under three-point bending
test via acoustic emission technique. J. Therm. Spray Technol. 116–131 (2017)
27. L. Wang, C. Ming, X.H. Zhong, J.X. Ni, S.Y. Tao, F.F. Zhou, Y. Wang, Prediction of critical
rupture of plasma-sprayed yttria stabilized zirconia thermal barrier coatings under burner rig
test via finite element simulation and in-situ acoustic emission technique. Surf. Coat. Technol.
58–74 (2019)
28. D. Nies, B. Rehmer, B. Skrotzki, R. Vaßen, Damage characterization of thermal barrier coatings
by acoustic emission and thermography. Adv. Eng. Mater. 790–794 (2012)
29. K. Ito, H. Kuriki, H. Araki, S. Kuroda, M. Enoki, Detection of segmentation cracks in top coat
of thermal barrier coatings during plasma spraying by non-contact acoustic emission method.
Sci. Technol. Adv. Mater. 035007 (2014)
30. S. M. Jafari, H. Mehdigholi, M. Behzad, Valve fault diagnosis in internal combustion engines
using acoustic emission and artificial neural network. Shock Vibr. 1–9 (2014)
31. P. Ramasamy, S. Sampathkumar, Prediction of impact damage tolerance of drop impacted
WGFRP composite by artificial neural network using acoustic emission parameters. Compos.
Part B Eng. 457–462 (2014)
279
24. J.H. Park, J.S. Kim, K.H. Lee, Acoustic emission characteristics for diagnosis of TBC damaged
by high-temperature thermal fatigue. J. Mater. Process. Technol. 537–541 (2007)
25. C.C. Li, X. Qiao, T. Wang, W. Weng, Q. Li, Damage evolution and failure mechanism of
thermal barrier coatings under Vickers indentation by using acoustic emission technique. Prog.
Nat. Sci. Mater. Int. 90–96 (2018)
26. L. Wang, J.X. Ni, F. Shao, J.S. Yang, X.H. Zhong, H.Y. Zhao, D.Y. Li, Failure behavior of
plasma-sprayed yttria-stabilized zirconia thermal barrier coatings under three-point bending
test via acoustic emission technique. J. Therm. Spray Technol. 116–131 (2017)
27. L. Wang, C. Ming, X.H. Zhong, J.X. Ni, S.Y. Tao, F.F. Zhou, Y. Wang, Prediction of critical
rupture of plasma-sprayed yttria stabilized zirconia thermal barrier coatings under burner rig
test via finite element simulation and in-situ acoustic emission technique. Surf. Coat. Technol.
58–74 (2019)
28. D. Nies, B. Rehmer, B. Skrotzki, R. Vaßen, Damage characterization of thermal barrier coatings
by acoustic emission and thermography. Adv. Eng. Mater. 790–794 (2012)
29. K. Ito, H. Kuriki, H. Araki, S. Kuroda, M. Enoki, Detection of segmentation cracks in top coat
of thermal barrier coatings during plasma spraying by non-contact acoustic emission method.
Sci. Technol. Adv. Mater. 035007 (2014)
30. S. M. Jafari, H. Mehdigholi, M. Behzad, Valve fault diagnosis in internal combustion engines
using acoustic emission and artificial neural network. Shock Vibr. 1–9 (2014)
31. P. Ramasamy, S. Sampathkumar, Prediction of impact damage tolerance of drop impacted
WGFRP composite by artificial neural network using acoustic emission parameters. Compos.
Part B Eng. 457–462 (2014)
