Preview

Study of the effect of combined reinforcement and modification of epoxy resin with rubbers on the impact strength of carbon fiber-reinforced plastic

https://doi.org/10.32523/ejpfm.2024080103

Abstract

The effect of modified epoxy resin with polyurethane, silicone, and butadiene rubber and combined reinforcement with fiberglass and Kevlar on the strength properties of carbon fiber-reinforced plastic was studied. It was found that when rubber is introduced into the composition of the epoxy resin, polyurethane, and combined reinforcement according to the carbon fiber/Kevlar scheme in a ratio of 10:10 leads to an increase in impact strength by 42% to 273 kJ/m2 and compressive strength increases by 35% to 575 MPa.

About the Authors

M.N. Meiirbekov
Satbayev University; JSC National Center of Space Research and Technology
Kazakhstan

Almaty



M. B. Ismailov
JSC National Center of Space Research and Technology
Kazakhstan

Almaty



A. K. Kenzhegulov
Satbayev University, JSC Institute of Metallurgy and Ore Beneification
Kazakhstan

Almaty



L.M. Mustafa
JSC National Center of Space Research and Technology
Kazakhstan

Almaty



I.B. Tashmukhanbetova
LLP International Educational Corporation
Kazakhstan

Almaty



References

1. N. Saba, M. Jawaid, Hybrid Polymer Composite Materials (2017) 57–82.

2. M.N. Meiirbekov, M.B. Ismailov, Complex Use of Mineral Resources 312(1) (2020) 11–21. (In Russian).

3. A.A. Mamayeva, A.T. Imbarova, M.T. Chukmanova, Solid State Phenomena 316 (2021) 40–45.

4. S.A. Bello et al., Tribology in Industry 37(4) (2015) 500–524.

5. A.T. Ospanali et al., Eurasian Physical Technical Journal 17 (2020) 35–38.

6. A.S. Mostovoy, Development of compositions, technologies and determination of properties of micro- and nanofilled epoxy composites of functional purpose, dis. candidate of technical sciences. (Saratov: Saratov State Technical University, 2014) 149 p.

7. T. Raja et al., Journal of Nanomaterials, 2022 (2022) 9475468.

8. A.M. Yermakhanova et al., Eurasian Physical Technical Journal, 20(2)(44) (2023) 70–78.

9. E. Maccaferri et al., Polymers 13(12) (2021) 1918.

10. X. Tian et al., Polymers 12(4) (2020) 988.

11. Yu.A. Mikhailin, Structural polymer composite materials (St. Petersburg: Scientific foundations and technologies, 2008) 822 p.

12. M.N. Meyirbekov et al., Space Materials and Technologies 28(5) (2022) 67–74. (in Ukrainian)

13. N.M. Nurazzi et al., Polymers 13(13) (2021) 2170.

14. H. Ta¸sçi, A. A¸skin, M Tano˘ glu, Journal of the Turkish Chemical Society Section B: Chemical Engineering 1 (2017) 35–42.

15. B. Baiserikov et al., Eurasian Physical Technical Journal 20(3) (2023) 62–69.

16. A. Rajpurohit et al., Journal of Composites Science 4(1) (2020) 6.

17. T.D. Jagannatha, G. Harish, International Journal of Mechanical Engineering and Robotics Research 4(2) (2015) 131–137.

18. A. Rajpurohit et al., ECCM18–18th European Conference on Composite Materials (Greece, Athens, 2018) 1–8.

19. Y. Swolfs, I. Verpoest, L. Gorbatikh, International Materials Reviews 64(4) (2019) 181–215.

20. V. Pandey, A. Vijayan, M. Senbagan, International Research Journal of Engineering and Technology (IRJET). 07(06) (2020) 714–721.

21. A.M. Yermakhanova et. al., J. Elast. Plast. 55(2) (2023) 331–346.

22. G.A. Vodovozov et al., Usp. Khim. Khim. Tekhnol. 29(10) (2015) 20.

23. B. Li et al., Polymers and Polymer Composites 27(9) (2019) 582–586.

24. R. Januszewski et. al., Industrial & Engineering Chemistry Research 60(5) (2021) 2178–2186.

25. S. Sprenger et. al., Composites Science and Technology 105 (2014) 86–95.

26. N.K. Kalinina, N.V. Kostromina, V.S. Osipchik, Advances in chemistry and chemical technology 5(73) (2007) 60–64.

27. V.N. Ngan et al., Plastic Masses 3(4) (2019) 3–6. (In Russian)

28. V.N. Vernigorova, S.M. Sadenko, Materials science of polymers and composite materials based on them (Penza: PGUAS, 2013) 420 p. (In Russian)

29. N.A. Adnan, M.F. Malia, T.F. Ahmed, Chemistry and Materials Research 7(5) (2015) 97–109.


Review

For citations:


Meiirbekov M., Ismailov M.B., Kenzhegulov A.K., Mustafa L., Tashmukhanbetova I. Study of the effect of combined reinforcement and modification of epoxy resin with rubbers on the impact strength of carbon fiber-reinforced plastic. Eurasian Journal of Physics and Functional Materials. 2024;8(1):23-32. https://doi.org/10.32523/ejpfm.2024080103

Views: 186


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 2522-9869 (Print)
ISSN 2616-8537 (Online)