Журнал Российского общества по неразрушающему контролю и технической диагностике
The journal of the Russian society for non-destructive testing and technical diagnostic
 
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18 | 11 | 2024
2016, 10 October

DOI: 10.14489/td.2016.10.pp.014-020

 

Ivanov V. I., Belov P. A., Nasibullin T. S.
THE TYPES OF THE ACOUSTIC EMISSION SOURCES IN THE COMPOSITE MATERIALS
(pp. 14-20)

Abstract. The Fiber Reinforced Polymeric Composite material (FRPC) is considered in the article as non-uniform material with the complexity structure representing a multiple set of the cells connected among themselves. It results in a big variety of defects and mechanisms of fracture of the FRPC structural elements. Each act of fracture is connected by the radiation of impulses of the acoustic emission (AE) which parameters display parameters of fracture of separate cells. The complexity of structure causes complexity of impulses forms of AE. Process of fracture represents consecutive fracture of cells one after another. At the same time, there is a fracture of cells in different parts of object. The multiple fracture of parts of object leading eventually to the general fracture of all object turns out. The models of an elementary and single impulse of AE are described. The  functions of AE sources and the general estimates of influence of a form and a size of an element of fracture on a form of impulses of AE are given. It is shown that the source of AE possesses the difficult directional pattern, at the same time both longitudinal, and shear waves are radiated.

Keywords: acoustic emission, composites, defects, sources AE.

 

V. I. Ivanov (JSC RII “Spectrum”, Moscow, Russia) E-mail: Данный адрес e-mail защищен от спам-ботов, Вам необходимо включить Javascript для его просмотра.
P. A. Belov, T. S. Nasibullin (Scientific and Innovative Center “Institute of Development of Researches, Developments and Transfer of Technologies”, Moscow, Russia)

 

 

1. Potapov A. I. (1980). Quality inspection and reliability prediction of structures made of composite materials. Leningrad: Mashinostroenie. [in Russian language]
2. Shipsha V. G., Pavlov I. V. (2015). St. Petersburg International scientific and technical remote conference «Devices and methods of quality NDT of the products and structures made of composite and heterogeneous materials» Territoriia NDT, (1), pp. 28-31. [in Russian language]
3. Klyuev V. V. (Ed.), Ivanov V. I., Vlasov I. E. (2006). Nondestructive testing. Handbook. In 8 volumes. Volume 7. Book 1. Method of acoustic emission. 2nd Ed. (revised and complemented). Moscow: Mashinostroenie. [in Russian language]
4. Belov P. A., Lurie S. A. (2014). Gradient effects in fracture mechanics for nano-structured materials. Engineering Fracture Mechanics, 130, pp. 3-11, doi: 10.1016/j.engfracmech.2014.07.032
5. Murashov V. V., Rumiantsev A. F. (2007). Defects of monolithic parts and multilayer structures made of polymer composite materials and detection methods. Part 1. Defects of monolithic parts and multilayer structures made of polymer materials. Kontrol'. Diagnostika, (4), pp. 23-31 [in Russian language]
6. Suzuki H., Takemoto M., Ono K. (1993). A study of fracture dynamics in a model composite by acoustic emission signal processing. Journal of Acoustic Emission, II(3), pp. 117-128.
7. Ramirez-Jimenez C., Pharaoh M., Papadakis N., Reynolds N. (2004). Differentiation of micro-failures in glass polypropylene composites by means of acoustic emissions technologies. 26th European Cоnference on Acoustic Emission Testing. September 15-17, 2004. Berlin, Germany. Lecture 32, pp. 329-338.
8. Polilov A. N. (2015). Experimental mechanics of the fracture. Moscow: Izdatel'stvo MGTU im. N. E. Baumana. [in Russian language]
9. Gorenberg A. Ia. (2008). Study of deformation and fracture of the polymer matrix, fibers and composites using electron microscopy techniques. PhD dissertation. Moscow: Inctitut khimicheskoi fiziki im. N. N. Semenova of the RAS. [in Russian language]
10. Bentahar M., El Guerjouma R. (2009). Monitoring progressive damage in polymerbased composite using non-linear dynamics and acoustic emission. J. Acoust. Soc. Am. January, 125(1).
11. Andreikiv A. E., Lysak N. V. (1989). Methods of acoustic emission in the study of fracture processes. Kiev: Naukova dumka. [in Russian language]
12. Ivanov V. I. (1986). Acoustic emission in the process of coherent fracture. Doklady AN SSSR, 287(2), pp. 302-306. [in Russian language]

 

 

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