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2022 | OriginalPaper | Chapter

Acoustic Emission in Plate-Like Structures

Authors : Theodore E. Matikas, Dimitrios G. Aggelis

Published in: Acoustic Emission Testing

Publisher: Springer International Publishing

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Abstract

Structural elements commonly obtain plate geometries. This is usual in aeronautics, automotive, naval applications and at the same time becomes more and more common in civil engineering with the expansion in the use of lightweight panels and fibrous media over bulk concrete. Acoustic emission (AE) is typically applied on these geometries yielding excellent results in laboratory and industrial conditions. The plate geometries however, create some specificities compared to bulk geometries. These are mainly related to the conditions of wave propagation since “plate wave dispersion” is exhibited, resulting in strong change of the acoustic signals as they propagate through the material. This influences the received AE waveforms rendering the study of “Lamb waves” of paramount importance in case someone wishes to go into detail in the characterization of plate structures based on their AE behavior. The present chapter offers a firm theoretical basis for guided waves, demonstrates dispersion and tries to examine its influence compared to bulk media from the AE point of view. Several basic applications of AE in plates are given to exhibit the level of the state of the art in laboratory and practice and where it can be further pushed.

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Literature
1.
go back to reference Rösner H, Meyendorf N, Sathish S, Matikas TE (2000) Nondestructive evaluation of fatigue in titanium alloys. MRS 591:73–78CrossRef Rösner H, Meyendorf N, Sathish S, Matikas TE (2000) Nondestructive evaluation of fatigue in titanium alloys. MRS 591:73–78CrossRef
2.
go back to reference Sathish S, Martin SW, Matikas TE (1999) Rayleigh wave velocity mapping using scanning acoustic microscope. In: Proceedings of review of progress in quantitative nondestructive evaluation, vol 18. Plenum, New York, pp 2025–2030 Sathish S, Martin SW, Matikas TE (1999) Rayleigh wave velocity mapping using scanning acoustic microscope. In: Proceedings of review of progress in quantitative nondestructive evaluation, vol 18. Plenum, New York, pp 2025–2030
3.
go back to reference Sathish S, Matikas TE, Stryker A, Nagy PB (2000) Acoustic techniques for early detection of fatigue damage. In: Proceedings of AeroMat, Dayton, Ohio Sathish S, Matikas TE, Stryker A, Nagy PB (2000) Acoustic techniques for early detection of fatigue damage. In: Proceedings of AeroMat, Dayton, Ohio
4.
go back to reference Aggelis DG, Kordatos EZ, Strantza M, Soulioti DV, Matikas TE (2011) NDT approach for characterization of subsurface cracks in concrete. Constr Build Mater 25(7):3089–3097 Aggelis DG, Kordatos EZ, Strantza M, Soulioti DV, Matikas TE (2011) NDT approach for characterization of subsurface cracks in concrete. Constr Build Mater 25(7):3089–3097
5.
go back to reference Daponte P, Maceri F, Olivito RS (1995) Ultrasonic signal-processing techniques for the measurement of damage growth in structural materials. IEEE Trans Instrum Meas 44(6):1003–1008CrossRef Daponte P, Maceri F, Olivito RS (1995) Ultrasonic signal-processing techniques for the measurement of damage growth in structural materials. IEEE Trans Instrum Meas 44(6):1003–1008CrossRef
6.
go back to reference Dassios KG, Matikas TE (2013) Damage assessment in a SiC-fiber reinforced ceramic matrix composite. J Eng 2013:6. Published online Dassios KG, Matikas TE (2013) Damage assessment in a SiC-fiber reinforced ceramic matrix composite. J Eng 2013:6. Published online
7.
8.
go back to reference Viktorov IA (1967) Rayleigh and lamb waves: physical theory and applications. Plenum Press Viktorov IA (1967) Rayleigh and lamb waves: physical theory and applications. Plenum Press
9.
go back to reference Matikas TE, Shell E, Nicolaou PD (1999) Characterization of fretting fatigue damage using nondestructive approaches. In: Proceedings of SPIE conference on nondestructive evaluation of aging materials and composites III, vol 3585, pp 2–10, 0277786X (ISSN). SPIE—The International Society for Optical Engineering, Newport Beach, CA, USA. https://doi.org/10.1117/12.339835 Matikas TE, Shell E, Nicolaou PD (1999) Characterization of fretting fatigue damage using nondestructive approaches. In: Proceedings of SPIE conference on nondestructive evaluation of aging materials and composites III, vol 3585, pp 2–10, 0277786X (ISSN). SPIE—The International Society for Optical Engineering, Newport Beach, CA, USA. https://​doi.​org/​10.​1117/​12.​339835
10.
go back to reference Bar-Cohen Y, Lih SS, Mal AK (2001) NDE of composites using leaking lamb waves. NDT&E J Bar-Cohen Y, Lih SS, Mal AK (2001) NDE of composites using leaking lamb waves. NDT&E J
11.
go back to reference Diamanti K, Hodgkinson JM, Soutis C (2002) Damage detection of composite laminates using PZT generated lamb waves. In: Balageas D (ed) Structural health monitoring. DEStech Publications Inc., pp 398–405 Diamanti K, Hodgkinson JM, Soutis C (2002) Damage detection of composite laminates using PZT generated lamb waves. In: Balageas D (ed) Structural health monitoring. DEStech Publications Inc., pp 398–405
12.
go back to reference Light GM, Minachi A, Spinks RL (2001) Development of a guided wave technique to detect defects in thin steel plates prior to stamping. In: Proceedings of 7th ASME NDE topical conference, vol 20, pp 163–165 Light GM, Minachi A, Spinks RL (2001) Development of a guided wave technique to detect defects in thin steel plates prior to stamping. In: Proceedings of 7th ASME NDE topical conference, vol 20, pp 163–165
13.
go back to reference Lin X, Yuan FG (2001) Damage detection of a plate using migration technique. J Intell Mater Syst Struct 12(7) Lin X, Yuan FG (2001) Damage detection of a plate using migration technique. J Intell Mater Syst Struct 12(7)
14.
go back to reference Mal A (2001) NDE for health monitoring of aircraft and aerospace structures. In: Proceedings of 7th ASME NDE topical conference, vol 20, pp 149–155 Mal A (2001) NDE for health monitoring of aircraft and aerospace structures. In: Proceedings of 7th ASME NDE topical conference, vol 20, pp 149–155
15.
go back to reference Devilla F, Roldan E, Tirano C, Mares R, Nazarian S, Osegueda R (2001) Defect detection in thin plates using S0 lamb wave scanning. In: Proceedings of SPIE advanced nondestructive evaluation for structural and biological health monitoring, vol 4335, pp 121–130 Devilla F, Roldan E, Tirano C, Mares R, Nazarian S, Osegueda R (2001) Defect detection in thin plates using S0 lamb wave scanning. In: Proceedings of SPIE advanced nondestructive evaluation for structural and biological health monitoring, vol 4335, pp 121–130
16.
go back to reference Duke JC (1988) Acousto-ultrasonics—theory and applications. Plenum Press Duke JC (1988) Acousto-ultrasonics—theory and applications. Plenum Press
17.
go back to reference Dupont M, Osmont R, Gouyon R, Balageas DL (2000) Permanent monitoring of damage impacts by a piezoelectric sensor based integrated system. In: Chang F-K (ed) Structural health. Technomic, pp 561–570 Dupont M, Osmont R, Gouyon R, Balageas DL (2000) Permanent monitoring of damage impacts by a piezoelectric sensor based integrated system. In: Chang F-K (ed) Structural health. Technomic, pp 561–570
18.
go back to reference Benson DM, Karpur P, Matikas TE, Kundu T (1995) Experimental generation of lamb wave dispersion using Fourier analysis of leaky modes. In: Proceedings of 21th annual review of progress in quantitative nondestructive evaluation, vol 14A. Plenum, New York, Snowmass Village, Colorado, pp 187–194 Benson DM, Karpur P, Matikas TE, Kundu T (1995) Experimental generation of lamb wave dispersion using Fourier analysis of leaky modes. In: Proceedings of 21th annual review of progress in quantitative nondestructive evaluation, vol 14A. Plenum, New York, Snowmass Village, Colorado, pp 187–194
19.
go back to reference Benson DM, Karpur P, Stubbs DA, Matikas TE (1995) Characterization of damage progression and its correlation to residual strength in a sigma/Ti-6242 composite using nondestructive methods. ASME (Eng Mater) 69(1):285–292 Benson DM, Karpur P, Stubbs DA, Matikas TE (1995) Characterization of damage progression and its correlation to residual strength in a sigma/Ti-6242 composite using nondestructive methods. ASME (Eng Mater) 69(1):285–292
20.
go back to reference Krishnamurthy S, Matikas TE, Karpur P, Miracle DB (1995) Ultrasonic evaluation of the processing of fiber-reinforced metal-matrix composites. Compos Sci Technol 54(2):161–168CrossRef Krishnamurthy S, Matikas TE, Karpur P, Miracle DB (1995) Ultrasonic evaluation of the processing of fiber-reinforced metal-matrix composites. Compos Sci Technol 54(2):161–168CrossRef
21.
go back to reference Krishnamurthy S, Matikas TE, Karpur P, Miracle DB (1995) Ultrasonic techniques for the interface characterization of continuously reinforced metallic composites. In: Proceedings of TMS/ASM symposium on interface measurements and application to MMC properties, Cleveland, Ohio Krishnamurthy S, Matikas TE, Karpur P, Miracle DB (1995) Ultrasonic techniques for the interface characterization of continuously reinforced metallic composites. In: Proceedings of TMS/ASM symposium on interface measurements and application to MMC properties, Cleveland, Ohio
22.
go back to reference Kundu T, Ehasni M, Maslov KI, Guo D (1999) C-scan and L-scan generated images of the concrete/GFRP composite interface. NDT&E Int 32(2):61–69CrossRef Kundu T, Ehasni M, Maslov KI, Guo D (1999) C-scan and L-scan generated images of the concrete/GFRP composite interface. NDT&E Int 32(2):61–69CrossRef
23.
go back to reference Kundu T, Karpur P, Matikas TE, Nicolaou PD (1996) Lamb wave mode sensitivity to detect various material defects in multilayered composite plates. In: Proceedings of 22th review of progress in quantitative nondestructive evaluation, vol 15A. Plenum, New York, Seattle, Washington, pp 231–238 Kundu T, Karpur P, Matikas TE, Nicolaou PD (1996) Lamb wave mode sensitivity to detect various material defects in multilayered composite plates. In: Proceedings of 22th review of progress in quantitative nondestructive evaluation, vol 15A. Plenum, New York, Seattle, Washington, pp 231–238
24.
go back to reference Kundu T, Maslov K, Karpur P, Matikas TE, Nicolaou PD (1996) A lamb wave scanning approach for the mapping of defects in [0/90] titanium matrix composites. Ultrasonics 34(1):43–49CrossRef Kundu T, Maslov K, Karpur P, Matikas TE, Nicolaou PD (1996) A lamb wave scanning approach for the mapping of defects in [0/90] titanium matrix composites. Ultrasonics 34(1):43–49CrossRef
25.
go back to reference Hu C, Yang B, Xuan F-Z, Yan J, Xiang Y (2020) Damage orientation and depth effect on the guided wave propagation behavior in 30CrMo steel curved plates. Sensors (Switzerland) 20(3). art. no. 849 Hu C, Yang B, Xuan F-Z, Yan J, Xiang Y (2020) Damage orientation and depth effect on the guided wave propagation behavior in 30CrMo steel curved plates. Sensors (Switzerland) 20(3). art. no. 849
26.
go back to reference Liu H, Yang JL, Liiu KX (2007) Love waves in layered graded composite structures with imperfectly bonded interface. Chin J Aeronaut 20(3):210–214 Liu H, Yang JL, Liiu KX (2007) Love waves in layered graded composite structures with imperfectly bonded interface. Chin J Aeronaut 20(3):210–214
27.
go back to reference Barnett DM, Lothe J, Gavazza SD, Musgrave MJ (1985) Considerations of the existence of interfacial (Stoneley) waves in bonded anisotropic elastic half-spaces. Proc R Soc Lond A402:153–166MathSciNetMATH Barnett DM, Lothe J, Gavazza SD, Musgrave MJ (1985) Considerations of the existence of interfacial (Stoneley) waves in bonded anisotropic elastic half-spaces. Proc R Soc Lond A402:153–166MathSciNetMATH
28.
go back to reference Tomar SK (2006) Propagation of Stoneley waves at an interface between two microstretch elastic half-spaces. J Vib Control 12(9):995–1009MathSciNetCrossRef Tomar SK (2006) Propagation of Stoneley waves at an interface between two microstretch elastic half-spaces. J Vib Control 12(9):995–1009MathSciNetCrossRef
29.
go back to reference Zhu J, Popovics JS, Schubert F (2004) Leaky Rayleigh and Scholte waves at the fluid-solid interface subjected to transient point loading. J Acoust Soc Am 116(4):2101–2110CrossRef Zhu J, Popovics JS, Schubert F (2004) Leaky Rayleigh and Scholte waves at the fluid-solid interface subjected to transient point loading. J Acoust Soc Am 116(4):2101–2110CrossRef
30.
go back to reference Li B, Li M-H, Tong Lu (2018) Interface waves in multilayered plates. J Acoust Soc Am 143(4):2541–2553CrossRef Li B, Li M-H, Tong Lu (2018) Interface waves in multilayered plates. J Acoust Soc Am 143(4):2541–2553CrossRef
31.
go back to reference Graff K (ed) (1991) Scattering and diffraction on elastic waves. Wave motion in elastic solids. Dover Publications, pp 394–430 (Chap. 7) Graff K (ed) (1991) Scattering and diffraction on elastic waves. Wave motion in elastic solids. Dover Publications, pp 394–430 (Chap. 7)
32.
go back to reference Chaix JF, Garnier V, Corneloup G (2006) Ultrasonic wave propagation in heterogeneous solid media: theoretical analysis and experimental validation. Ultrasonics 44:200–210CrossRef Chaix JF, Garnier V, Corneloup G (2006) Ultrasonic wave propagation in heterogeneous solid media: theoretical analysis and experimental validation. Ultrasonics 44:200–210CrossRef
33.
go back to reference Philippidis TP, Aggelis DG (2005) Experimental study of wave dispersion and attenuation in concrete. Ultrasonics 43(7):584–595 Philippidis TP, Aggelis DG (2005) Experimental study of wave dispersion and attenuation in concrete. Ultrasonics 43(7):584–595
34.
go back to reference Scholey JJ, Wilcox PD, Wisnom MR, Friswell MI (2010) Quantitative experimental measurements of matrix cracking and delamination using acoustic emission. Compos A 41:612–623CrossRef Scholey JJ, Wilcox PD, Wisnom MR, Friswell MI (2010) Quantitative experimental measurements of matrix cracking and delamination using acoustic emission. Compos A 41:612–623CrossRef
35.
go back to reference Eaton M, May M, Featherston C, Holford KM, Hallet S, Pullin R (2011) Characterisation of damage in composite structures using acoustic emission. J Phys Conf Ser 305:012086CrossRef Eaton M, May M, Featherston C, Holford KM, Hallet S, Pullin R (2011) Characterisation of damage in composite structures using acoustic emission. J Phys Conf Ser 305:012086CrossRef
36.
go back to reference Sause M, Hamstad M (2018) 7.14 acoustic emission analysis. In: Beaumont PWR, Zweben CH (eds) Comprehensive composite materials II, vol 7. Academic Press, Oxford, pp 291–326 Sause M, Hamstad M (2018) 7.14 acoustic emission analysis. In: Beaumont PWR, Zweben CH (eds) Comprehensive composite materials II, vol 7. Academic Press, Oxford, pp 291–326
37.
go back to reference Li L, Lomov SV, Yan X (2015) Correlation of acoustic emission with optically observed damage in a glass/epoxy woven laminate under tensile loading. Compos Struct 123:45–53CrossRef Li L, Lomov SV, Yan X (2015) Correlation of acoustic emission with optically observed damage in a glass/epoxy woven laminate under tensile loading. Compos Struct 123:45–53CrossRef
38.
go back to reference Blom J, El Kadi M, Wastiels J, Aggelis DG (2014) Bending fracture of textile reinforced cement laminates monitored by acoustic emission: influence of aspect ratio. Constr Build Mater 70:370–378CrossRef Blom J, El Kadi M, Wastiels J, Aggelis DG (2014) Bending fracture of textile reinforced cement laminates monitored by acoustic emission: influence of aspect ratio. Constr Build Mater 70:370–378CrossRef
39.
go back to reference Kolanu NR, Raju G, Ramji M (2019) Damage assessment studies in CFRP composite laminate with cut-out subjected to in-plane shear loading. Compos Part B Eng 166:257–271 Kolanu NR, Raju G, Ramji M (2019) Damage assessment studies in CFRP composite laminate with cut-out subjected to in-plane shear loading. Compos Part B Eng 166:257–271
40.
go back to reference Gorman MR, Prosser WH (1991) AE source orientation by plate wave analysis. J Acoust Emiss 9(4):283–288 Gorman MR, Prosser WH (1991) AE source orientation by plate wave analysis. J Acoust Emiss 9(4):283–288
41.
go back to reference Hamstad MA (2007) Lamb modal regions with significant AE energy in a thick steel plate. In: International conference on acoutic emission—advances in acoustic emission, pp 247–252 Hamstad MA (2007) Lamb modal regions with significant AE energy in a thick steel plate. In: International conference on acoutic emission—advances in acoustic emission, pp 247–252
42.
go back to reference Dunegan HL (1996) The use of plate wave analysis in acoustic emission testing to detect and measure crack growth in noisy environments. In: Structural materials technology NDE conference, San Diego, CA, Feb 1996. https://trid.trb.org/view/464284. Accessed March 2021 Dunegan HL (1996) The use of plate wave analysis in acoustic emission testing to detect and measure crack growth in noisy environments. In: Structural materials technology NDE conference, San Diego, CA, Feb 1996. https://​trid.​trb.​org/​view/​464284. Accessed March 2021
43.
go back to reference Hamstad MA, O’Gallagher A, Gary J (2001) Effects of lateral plate dimensions on acoustic emission signals from dipole sources. J Acoust Emiss 19:258–274 Hamstad MA, O’Gallagher A, Gary J (2001) Effects of lateral plate dimensions on acoustic emission signals from dipole sources. J Acoust Emiss 19:258–274
44.
go back to reference Ospitia N, Aggelis D, Tsangouri E (2020) Dimension effects on the acoustic behavior of trc plates. Materials 13(4). Art. no. 0955 Ospitia N, Aggelis D, Tsangouri E (2020) Dimension effects on the acoustic behavior of trc plates. Materials 13(4). Art. no. 0955
45.
go back to reference Aggelis DG, El Kadi M, Tysmans T, Blom J (2017) Effect of propagation distance on acoustic emission fracture mode classification in textile reinforced cement. Constr Build Mater 152:872–879CrossRef Aggelis DG, El Kadi M, Tysmans T, Blom J (2017) Effect of propagation distance on acoustic emission fracture mode classification in textile reinforced cement. Constr Build Mater 152:872–879CrossRef
46.
go back to reference Aggelis DG, Matikas TE (2012) Effect of plate wave dispersion on the acoustic emission parameters in metals. Comput Struct 98–99:17–22CrossRef Aggelis DG, Matikas TE (2012) Effect of plate wave dispersion on the acoustic emission parameters in metals. Comput Struct 98–99:17–22CrossRef
47.
go back to reference Sause MGR, Hamstad MA (2018) Numerical modeling of existing acoustic emission sensor absolute calibration approaches. Sens Actuators A Phys 269:294–307CrossRef Sause MGR, Hamstad MA (2018) Numerical modeling of existing acoustic emission sensor absolute calibration approaches. Sens Actuators A Phys 269:294–307CrossRef
48.
go back to reference Maillet E, Baker C, Morscher GN, Pujar VV, Lemanski JR (2015) Feasibility and limitations of damage identification in composite materials using acoustic emission. Compos A Appl Sci Manuf 75:77–83CrossRef Maillet E, Baker C, Morscher GN, Pujar VV, Lemanski JR (2015) Feasibility and limitations of damage identification in composite materials using acoustic emission. Compos A Appl Sci Manuf 75:77–83CrossRef
49.
go back to reference McCrory JP, Al-Jumaili SKh, Crivelli D, Pearson MR, Eaton MJ, Featherston CA, Guagliano M, Holford KM, Pullin R (2015) Damage classification in carbon fibre composites using acoustic emission: a comparison of three techniques. Compos Part B 68:424–430 McCrory JP, Al-Jumaili SKh, Crivelli D, Pearson MR, Eaton MJ, Featherston CA, Guagliano M, Holford KM, Pullin R (2015) Damage classification in carbon fibre composites using acoustic emission: a comparison of three techniques. Compos Part B 68:424–430
50.
go back to reference Al-Jumaili SKh, Holford KM, Eaton MJ, Pullin R (2015) Parameter correction technique (PCT): a novel method for acoustic emission characterisation in large-scale composites. Compos Part B 75:336–344 Al-Jumaili SKh, Holford KM, Eaton MJ, Pullin R (2015) Parameter correction technique (PCT): a novel method for acoustic emission characterisation in large-scale composites. Compos Part B 75:336–344
51.
go back to reference Prosser WH, Gorman MR, Humes DH (1999) Acoustic emission signals in thin plates produced by impact damage. J Acoust Emiss 17(1–2):29–36 Prosser WH, Gorman MR, Humes DH (1999) Acoustic emission signals in thin plates produced by impact damage. J Acoust Emiss 17(1–2):29–36
52.
go back to reference Tescheliesnig P, Jagenbrein A, Lackner G (2016) Corrosion detection for ferritic structures. In: JSNDI & IIIAE (eds) Progress in acoustic emission XVIII, Shiotani, Wakayama, Enoki, Yuyama, pp 43–48 Tescheliesnig P, Jagenbrein A, Lackner G (2016) Corrosion detection for ferritic structures. In: JSNDI & IIIAE (eds) Progress in acoustic emission XVIII, Shiotani, Wakayama, Enoki, Yuyama, pp 43–48
53.
go back to reference Takemoto M, Cho H, Suzuki H (2006) Lamb-wave acoustic emission for condition monitoring of tank bottom plates. J Acoust Emiss 24:12–21 Takemoto M, Cho H, Suzuki H (2006) Lamb-wave acoustic emission for condition monitoring of tank bottom plates. J Acoust Emiss 24:12–21
54.
go back to reference Papasalouros D, Bollas K, Kourousis D, Anastasopoulos A (2016) Acoustic emission monitoring of high temperature process vessels & reactors during cool down. In: Emerging technologies in non-destructive testing VI—proceedings of the 6th international conference on emerging technologies in nondestructive testing, ETNDT 2016, pp 197–201 Papasalouros D, Bollas K, Kourousis D, Anastasopoulos A (2016) Acoustic emission monitoring of high temperature process vessels & reactors during cool down. In: Emerging technologies in non-destructive testing VI—proceedings of the 6th international conference on emerging technologies in nondestructive testing, ETNDT 2016, pp 197–201
55.
go back to reference El Kadi M, Blom J, Wastiels J, Aggelis DG (2017) Use of early acoustic emission to evaluate the structural condition and self-healing performance of textile reinforced cements. Mech Res Commun 81:26–31CrossRef El Kadi M, Blom J, Wastiels J, Aggelis DG (2017) Use of early acoustic emission to evaluate the structural condition and self-healing performance of textile reinforced cements. Mech Res Commun 81:26–31CrossRef
56.
go back to reference Surgeon M, Wevers M (1999) One sensor linear location of acoustic emission events using plate wave theories. Mater Sci Eng A 265:254–261CrossRef Surgeon M, Wevers M (1999) One sensor linear location of acoustic emission events using plate wave theories. Mater Sci Eng A 265:254–261CrossRef
57.
go back to reference Ebrahimkhanlou A, Salamone S (2017) Acoustic emission source localization in thin metallic plates: a single-sensor approach based on multimodal edge reflections. Ultrasonics 78:134–145CrossRef Ebrahimkhanlou A, Salamone S (2017) Acoustic emission source localization in thin metallic plates: a single-sensor approach based on multimodal edge reflections. Ultrasonics 78:134–145CrossRef
58.
go back to reference Toyama N, Koo JH, Oishi R, Enoki M, Kishi T (2001) Two-dimensional AE source location with two sensors in thin CFRP plates. J Mater Sci Lett 20(19):1823–1825CrossRef Toyama N, Koo JH, Oishi R, Enoki M, Kishi T (2001) Two-dimensional AE source location with two sensors in thin CFRP plates. J Mater Sci Lett 20(19):1823–1825CrossRef
59.
go back to reference Aljets D, Chong A, Wilcox S, Holford KM (2012) Acoustic emission source location on large plate-like structures using a local triangular sensor array. Mech Syst Signal Process 30:91–102CrossRef Aljets D, Chong A, Wilcox S, Holford KM (2012) Acoustic emission source location on large plate-like structures using a local triangular sensor array. Mech Syst Signal Process 30:91–102CrossRef
Metadata
Title
Acoustic Emission in Plate-Like Structures
Authors
Theodore E. Matikas
Dimitrios G. Aggelis
Copyright Year
2022
DOI
https://doi.org/10.1007/978-3-030-67936-1_9