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Determination of the composition and density of polymer composite materials in details and constructions by nondestructive methods

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Abstract

The physical basis of the method of diagnostics of polymer composite materials for determination of their composition and density, as well as information-bearing parameters of diagnostics, are considered. The correlation between the content of the filler and density of the material and the velocity of propagation of the impulse of ultrasonic vibrations is studied. It is shown that the composition and density of the material can be determined to a high precision by the control procedure described in the article only at low porosity.

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References

  1. E. N. Kablov, “Innovations of VIAM as part of implementing the Strategic Directions of Development of Materials and Technologies of Their Processing for the Period up to 2030,” Aviats. Mater. Tekhnol., No. 1, 3–33 (2015).

    Google Scholar 

  2. E. N. Kablov, “Aerospace materials science,” VseMater., Entsikl. Sprav., No. 3, 2–14 (2008).

    Google Scholar 

  3. V. V. Murashov and K. S. Mishurov, “Evaluation of the strength characteristics of carbon fiber reinforced plastics by acoustic method,” Aviats. Mater. Tekhnol., No. 1, 81–85 (2015).

    Google Scholar 

  4. V. V. Murashov, “Types of production and operational defects of the multilayer glued constructions and polymer composite materials products and methods to detect them,” in Proc. 5th European-American Workshop on Reliability of NDT (Berlin, 2013). http://www.nde-reliability.de/Proceedings/Posters

    Google Scholar 

  5. A. P. Petrova and N. F. Lukina, “Adhesives for reusable space system,” Tr. VIAM, No. 4 (2013). http://www.viam-works.ru

  6. V. V. Murashov, “Non-destructive testing of blanks and components made of carbon-carbon composite material for the space shuttle Buran,” Aviats. Mater. Tekhnol., No. S1, 152–157 (2013).

    Google Scholar 

  7. V. V. Murashov and A. F. Rumyantsev, “Flaw detection and diagnostics of polymer composites by acoustic methods,” in Collection: 75 Years. Aviation Materials. Selected Works of VIAM, 1932–2007 (VIAM, Moscow, 2007), pp. 342–347.

    Google Scholar 

  8. V. V. Murashov, E. I. Kosarina, and A. S. Generalov, “Quality control of aircraft parts made of polymer composite materials and multi-layered constructions,” Aviats. Mater. Tekhnol., 2013, No. 3, 65–70 (2013).

    Google Scholar 

  9. V. V. Murashov, “Control of multilayer laminated structures by acoustic-thermal method,” Klei, Germetiki, Tekhnol., No. 9, 36–40 (2014).

    Google Scholar 

  10. V. V. Murashov, K. S. Mishurov, and K. V. Sorokin, “Evaluation of CFRP strength in monolithic structures under shear stress and compression by NDT methods,” Kontrol’ Diagn., No. 10, 29–34 (2011).

    Google Scholar 

  11. K. V. Sorokin, V. V. Murashov, M. Yu. Fedotov, and V. A. Goncharov, “Prediction of defects in structures of PCM by the method of determining the hardness changes occurring in actuation of the material,” Aviats. Mater. Tekhnol., No. 2, 20–22 (2011).

    Google Scholar 

  12. A. S. Bakunov, V. V. Murashov, and A. M. Sysoev, “Control of the propeller blades by means of low-frequency acoustics,” Kontrol’ Diagn., No. 6, 72–74 (2012).

    Google Scholar 

  13. Yu. V. Lange, Acoustic Low-Frequency Methods and Means of Non-Destructive Control of Multilayer Structures (Mashinostroenie, Moscow, 1991) [in Russian].

    Google Scholar 

  14. V. V. Murashov and A. S. Generalov, “Control of multilayer multilayer structures by low-frequency acoustic methods,” Aviats. Mater. Tekhnol., No. 2, 59–67 (2014).

    Google Scholar 

  15. V. V. Murashov, “Non-destructive control of blanks and components made of carbon-carbon composite material of the space shuttle Buran,” Tr. VIAM, No. 4 (2013). http://www.viam-works.ru

  16. V. V. Murashov, “Control of monolithic and laminated structures made of polymeric composite materials by the acoustic impedance method,” Aviats. Prom-st., No. 3, 43–48 (2009).

    Google Scholar 

  17. V. V. Murashov, “Attestation of glued articles by acoustic impedance method,” Polym. Sci., Ser. D 3 (4), C. 267–273 (2010).

    Article  Google Scholar 

  18. V. V. Murashov, “Control of multilayer constructions by spectral acoustic-impedance defectoscopy,” Polym. Sci., Ser. D 7 (2), C. 133–135 (2014).

    Article  CAS  Google Scholar 

  19. V. V. Murashov, “Control of glued structures by the electromagnetic acoustic variant of the impedance method,” Polym. Sci., Ser. D 7 (2), 136–139 (2014).

    Article  CAS  Google Scholar 

  20. V. V. Murashov, “Control of multilayer glued constructions of polymeric composite materials,” Polym. Sci., Ser. D 5 (2), 109–115 (2012).

    Article  CAS  Google Scholar 

  21. V. V. Murashov, “Control of laminated structures by the acoustic free vibration method,” Polym. Sci., Ser. D 5 (4), 341–345 (2012).

    Article  Google Scholar 

  22. V. V. Murashov, “Glued joint strength diagnostics,” Polym. Sci., Ser. D 2 (1), C. 64–70 (2009).

    Article  Google Scholar 

  23. V. V. Murashov, “Nondestructive testing of glued joints,” Polym. Sci., Ser. D 2 (1), C. 58–63 (2009).

    Article  Google Scholar 

  24. V. V. Murashov and V. M. Aleksashin, “Control of the strength of the connection zone of elements of integrated structures made of polymer composites by ultrasonic method,” Klei, Germetiki, Tekhnol., No. 7, 15–19 (2014).

    Google Scholar 

  25. V. V. Murashov, “Identification of areas of absence of adhesive bonding between layers in multilayer structures,” Polym. Sci., Ser. D 7 (1), C. 46–48 (2014).

    Article  CAS  Google Scholar 

  26. V. V. Murashov, V. M. Aleksashin, and K. S. Mishurov, “Evaluation of the strength of the connection zone of elements of integrated structures made of carbon fiber reinforced plastics by the laser-acoustic method of ultrasonic testing,” in Coll. Doc. VIII Sci. Conf. on Hydroaviation “Gidroaviasalon-2010”: Part II (TsAGI, Moscow, 2010), pp. 116–121.

    Google Scholar 

  27. J. Rose, “Achievements and prospects of development of the ultrasonic waveguide method of control,” Mater. Eval. 68 (5), 494–500 (2010).

    Google Scholar 

  28. V. V. Murashov, “On the question of determining the elastic and strength properties of polymer composites by the acoustic complex method,” Deform. Razrushenie Mater., No. 11, 39–45 (2014).

    Google Scholar 

  29. Non-Destructive Testing: Reference Book, Vol. 3: Ultrasonic Testing, Ed. by I. N. Ermolov and Yu. V. Lange (Mashinostroenie, Moscow, 2006) [in Russian].

    Google Scholar 

  30. V. V. Murashov and A. F. Rumyantsev, “Defects of solid parts and multilayer structures made of polymer composite materials and methods for their detection. Part 1: Defects of monolithic components and multilayer structures made of polymeric composite materials,” Kontrol’ Diagn., No. 4, 23–31 (2007).

    Google Scholar 

  31. I. M. Kruglyanskii, et al., “A qualifier of methods and means of non-destructive testing of structures made of polymeric composite materials,” Nauchn. Tr. MATI im. K.E. Tsialkovskogo 6 (78), 222–226 (2003).

    Google Scholar 

  32. V. V. Murashov, “Determination of porosity of carbon fiber reinforced plastics in aviation designs by the laseracoustic method of ultrasonic testing,” Aviats. Promst., No. 3, 33–36 (2011).

    Google Scholar 

  33. V. T. Bobrov, S. G. Rozlovenko, and V. V. Murashov, “Materials characterization,” Test. Diagn., No. 2, 42–44 (2010).

    Google Scholar 

  34. E. Kablov, V. Murashov, and A. Rumyantsev, “Diagnostics of polymer composites by acoustic methods,” Ultrasound, No. 2, 7–10 (2006).

    Google Scholar 

  35. E. N. Kablov, RF Pat. 2214590, Byull. Izobret., No. 29 (2003).

  36. A. A. Karabutov, I. M. Pelivanov, N. B. Podymova, and A. V. Reznikov, “The use of ND: YAG-lasers with diode pumping in non-destructive ultrasonic testing of graphite-epoxy composites,” Kontrol’ Diagn., No. 11, 24–29 (2002).

    Google Scholar 

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Correspondence to K. S. Mishurov.

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Original Russian Text © K.S. Mishurov, V.V. Murashov, 2015, published in Klei. Germetiki. Tekhnologii, 2015, No. 10, pp. 16–21.

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Mishurov, K.S., Murashov, V.V. Determination of the composition and density of polymer composite materials in details and constructions by nondestructive methods. Polym. Sci. Ser. D 9, 176–180 (2016). https://doi.org/10.1134/S1995421216020155

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