One method for identifying of laminations in composite materials

Authors

  • Bocharova O.V. Southern Scientific Center, Rostov-on Don, Российская Федерация
  • Andjikovich I.E. Southern Federal University, Rostov-on Don, Российская Федерация
  • Lyzhov V.A. Southern Federal University, Rostov-on Don, Российская Федерация
  • Sedov A.V. Southern Scientific Center, Rostov-on Don, Российская Федерация
  • Kalinchuk V.V. Southern Scientific Center, Rostov-on Don, Российская Федерация

UDC

539.3/620.179.163

DOI:

https://doi.org/10.31429/vestnik-17-1-1-49-56

Abstract

The problem of identifying hidden inhomogeneities in composite materials has been investigated. An effective approach has been proposed that allows recognizing the presence of heterogeneity and determining its type, based on monitoring changes in the parameters of surface wave fields. To increase the informativeness of the wave field, an original method has been developed that allows capturing minor differences in wave fields. This method is based on the use of optimal signal expansions on a basis that is adaptively tuned to the maximum possible sensitivity to heterogeneity characteristics. A series of experimental studies was conducted to investigate the possibility of using this approach to identify heterogeneities in a sandwich composite. The possibility of recognizing the presence and type of heterogeneity (separation of fiberglass, rigid inclusions) from the reflected and transmitted wave field has been investigated. The experimental results showed that using of the proposed approach provides a clear recognition of the type of heterogeneity in the diagnostic space of images. When recognizing the presence of heterogeneity and determining its type in a sandwich composite, the transmitted wave field is more informative.

Keywords:

heterogeneity, non-destructive testing, surface wave field, composite material

Acknowledgement

Работа выполнена при финансовой поддержке Российского фонда фундаментальных исследований в рамках научных проектов: 18-38-00871-мол_а, 18-08-01012, 19-48-230042-р_а.

Author Infos

Olga V. Bocharova

канд. физ.-мат. наук, старший научный сотрудник лаборатории динамики неоднородных структур Южного научного центра РАН

e-mail: olga.v.bocharova@gmail.com

Igor E. Andjikovich

канд. физ.-мат. наук, старший научный сотрудник лаборатории динамики неоднородных структур Южного федерального университета

e-mail: ocean_8@mail.ru

Vyacheslav A. Lyzhov

канд. физ.-мат. наук, научный сотрудник лаборатории динамики неоднородных структур Южного научного центра РАН

e-mail: maggod-rnd@yandex.ru

Andrey V. Sedov

д-р физ.-мат, доцент, ведущий научный сотрудник лаборатории динамики неоднородных структур Южного научного центра РАН

e-mail: sedov_a.v@mail.ru

Valery V. Kalinchuk

д-р физ.-мат. наук, член-корреспондент РАН, заведующий отделом механики, математики и нанотехнологий Южного научного центра РАН

e-mail: vkalin415@mail.ru

References

  1. Panin, V.F., Gladkov, Yu.A. Konstruktsii s zapolnitelem [Placeholder constructions]. Mashinostroenie, Moscow, 1991. (In Russian)
  2. Panin, V.F. Konstruktsii s sotovym zapolnitelem [Honeycomb Structures]. Mashinostroenie, Moscow, 1982. (In Russian)
  3. Prokhorov, B.F., Kobelev, V.N. Trekhsloynye konstruktsii v sudostroenii [Three-layer structures in ship\-building]. Sudostroenie, Leningrad, 1972. (In Russian)
  4. Krysin, V.N. Sloistye kleenye konstruktsii v samoletostroenii [Laminated glued constructions in aircraft construction]. Mashinostroenie, Moscow, 1980. (In Russian)
  5. Kershenbaum, V.Ya. (ed.) Nerazrushayushchie metody kontrolya [Non-destructive testing methods]. Nauka i tekhnika, Moscow, 1992. (In Russian)
  6. Boopathy, G., Surendar, G., Nema, A. Review on non-destructive testing of composite materials in aircraft applications. Int. J. of Mechanical Engineering and Technology, 2017, vol. 8, iss. 8, pp. 1334–1342.
  7. Solov'ev, A.N., Sobol', B.V., Vasil'ev, P.V. Ul'trazvukovaya lokatsiya vnutrennikh treshchinopodobnykh defektov v sostavnom uprugom tsilindre s primeneniem apparata iskusstvennykh neyronnykh setey [Ultrasonic location of internal crack-like defects in a composite elastic cylinder using an artificial neural network apparatus]. Defektoskopiya [Defectoscopy], 2016, vol. 52, no. 3, pp. 3–9. (In Russian)
  8. Bocharova, O.V., Sedov, A.V., Andzhikovich, I.E., Kalinchuk, V.V. Ob odnom metode identifikatsii defektov, osnovannom na kontrole struktury i osobennostey poverkhnostnykh volnovykh poley [About one defect identification method based on the control of the structure and features of surface wave fields]. Defektoskopiya [Defectoscopy], 2016, vol. 52, no. 7, pp. 21–28. (In Russian)
  9. Dervilis, N., Choi, M., Taylor, S.G., Barthorpe, R.J., Park, G., Farrar, C.R., Worden K. On damage diagnosis for a wind turbine blade using pattern recognition. J. of Sound and Vibration, 2014, vol. 333, iss. 6, pp. 1833–1850.
  10. Bocharova, O.V., Andzhikovich, I.E., Lyzhov, V.A., Sedov, A.V., Kalinchuk, V.V. O vozmozhnostyakh bispektral'nogo podkhoda k obrabotke signala v zadachakh nizkochastotnoy defektoskopii [On the possibilities of the bispectral approach to signal processing in the tasks of low-frequency flaw detection]. Ekologicheskiy vestnik nauchnykh tsentrov Chernomorskogo ekonomicheskogo sotrudnichestva [Ecological Bulletin of the Scientific Centers of the Black Sea Economic Cooperation], 2019, vol. 16, no. 1, pp. 66–72. (In Russian)
  11. Esipov, Yu.V., Mukhortov, V.M., Kalinchuk, V.V., Andzhikovich, I.E. O vozmozhnosti rannego diagnoza sostoyaniya sterzhnevykh konstruktsiy s primeneniem segnetoelektricheskikh datchikov dinamicheskoy deformatsii [On the possibility of an early diagnosis of the state of bar structures using ferroelectric sensors of dynamic deformation]. Ekologicheskiy vestnik nauchnykh tsentrov Chernomorskogo ekonomicheskogo sotrudnichestva [Ecological Bulletin of the Scientific Centers of the Black Sea Economic Cooperation], 2010, vol. 7, no. 4, pp. 29–35. (In Russian)
  12. Esipov, Yu.V., Mukhortov, V.M., Kalinchuk, V.V. Ispytatel'naya ustanovka dlya analiza deformatsii modeley trekhmernykh konstruktsiy [Testing installation for the analysis of deformation of models of three-dimensional structures]. Izmeritel'naya tekhnika [Measuring equipment], 2008, no. 10, pp. 39–42. (In Russian)

Issue

Section

Physics

Pages

49-56

Submitted

2020-03-04

Published

2020-03-31

How to Cite

Bocharova O.V., Andjikovich I.E., Lyzhov V.A., Sedov A.V., Kalinchuk V.V. One method for identifying of laminations in composite materials. Ecological Bulletin of Research Centers of the Black Sea Economic Cooperation, 2020, vol. 17, no. 1, pp. 49-56. DOI: https://doi.org/10.31429/vestnik-17-1-1-49-56 (In Russian)