Skip to main content
Log in

A Composite of Layered Structure. Transversal Strength and Young’s Modulus

  • Published:
Polymer Science, Series D Aims and scope Submit manuscript

Abstract

One of the most important characteristics of a layered composite is the transversal elasticity modulus. For its calculation, the mixture formula is widely used now. A number of experiments have demonstrated that, in some cases, the mixture formula gives essentially underestimated results for the transversal elasticity modulus. Based on the contact-layer model, the solution explaining the synergism of elastic properties by the appearing essentially nonuniform stressed state was found for this problem in this paper. It follows from the found solution that the average transversal joint strength found from experiment may be ambiguous, as the destruction of a model may occur due to tangent stresses before attaining the transversal strength.

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

Fig. 1.
Fig. 2.
Fig. 3.
Fig. 4.
Fig. 5.
Fig. 6.
Fig. 7.
Fig. 8.
Fig. 9.
Fig. 10.

Similar content being viewed by others

REFERENCES

  1. R. A. Turusov, Adhesive Dynamics (Moscow State University of Civil Engineering, Moscow, 2016) [in Russian].

    Google Scholar 

  2. A. S. Freidin and R. A. Turusov, Properties and Calculation of Adhesive Joints (Khimiya, Moscow, 1990) [in Russian].

    Google Scholar 

  3. R. A. Turusov and A. M. Kuperman, “Elastic properties of thin adhesive interlayersi,” Polym. Sci., Ser. D 7, 1–8 (2014).

    Article  CAS  Google Scholar 

  4. R. A. Turusov, K. T. Vuba, and A. S. Freidin, “Study of the temperature-humidity effect on the structural and deformational behavior of wood–steel reinforcement adhesive joints,” Trudy Tsentr. Nauchno-Issled. Inst. Stroit. Konstr. im. V.A. Kucherenko, No. 24, 86–124 (1972).

    Google Scholar 

  5. A. P. Petrova and G. V. Malysheva, Adhesives, Adhesive Joints, and Adhesive Prepregs, Ed. by V. F. Kablov (All-Russian Institute of Aviation Materials, Moscow, 2017) [in Russian].

    Google Scholar 

  6. I. A. Kozlov, M. A. Fomina, I. A. Volkov, and A. P. Petrova, “Effects of surface preparation techniques for bonding of aluminum foil on strength of adhesive joints in honeycomb structures,” Polym. Sci., Ser. D 12, 254–260 (2019).

    Article  CAS  Google Scholar 

  7. A. P. Petrova, N. F. Lukina, A. K. Alekhin, and Ya. A. Bryk, “Using sealants for gluing dissimilar materials,” Polym. Sci., Ser. D 14, 34–37 (2021).

    Article  CAS  Google Scholar 

  8. Dinh Tho Vu and E. A. Korol, “The stress-strain state of three-layer precast flexural concrete enclosure structures with the contact interlayers,” Buildings  11 (3), 88 (2021).

    Article  Google Scholar 

  9. E. A. Korol and Dinh Tho Vu, “Geometric and physio-mechanical characteristics of the contact layer area of multilayer reinforced concrete structures,” IOP Conf. Ser.: Mater. Sci. Eng. 1015, 012034 (2019).

  10. Dinh Tho Vu and E. A. Korol, “Influence of contact layers on cracking resistance of bending three-layer structures,” Vestn. Mosk. Gos. Stroit. Univ., No. 15 (7), 988–998 (2020).

    Google Scholar 

  11. V. I. Andreev, R. A. Turusov, and N. Yu. Tsybin, “The contact layer method in calculating of the shear compounds,” MATEC Web Conf. 117, 00008 (2017).

  12. R. A. Turusov and L. I. Manevich, “Contact layer method in adhesive mechanics. adhesive strength during normal detachment,” Polym. Sci., Ser. D. 3, 159–169 (2010).

    Google Scholar 

  13. R. A. Turusov, “Elastic and thermal behavior of a layered structure I. Experiment and theory,” Mech. Compos. Mater. 50 (6), 801–808 (2015).

  14. P. Galvez, N. Noda, R. Takaki, Y. Sano, T. Miyazaki, J. Abenojar, and M. Martinez, “Intensity of singular stress field (ISSF) variation as a function of the Young’s modulus in single lap adhesive joints,” Int. J. Adhes. Adhes. 95, 102418 (2019).

  15. A. Barroso, F. Paris, and V. Mantic, “Representativity of the singular stress state in the failure of adhesively bonded joints between metals and composites,” Compos. Sci. Technol. 69 (11), 1746–1755 (2009).

  16. W. Gaofeng, L. Guoyong, X. Chonghai, and S. Xiaoqiang, “Finite element simulation of perfect bonding for single fiber pull-out test,” Adv. Mater. Res. 418420, 509–512 (2011).

  17. B. F. Sorensen and H. Lilholt, “Fiber pull-out test and single fiber fragmentation test-analysis and modelling,” IOP Conf. Ser.: Mater. Sci. Eng. 139, 012009 (2016).

  18. B. I. Panshin, Adhesives and Adhesing Technology (Oborongiz, Moscow, 1960) [in Russian].

    Google Scholar 

  19. E. Lertora, D. Campanella, C. Mandolfino, C. Gambaro, L. Fratini, and G. Buffa, “Comparison between FSW and bonded lap joints—a preliminary investigation,” AIP Conf. Proc. 1896 (1), 110004 (2017).

  20. R. A. Turusov, A. M. Kuperman, and E. R. Yakhontova, “Regular composite,” Polym. Sci., Ser. D 7, 9–13 (2014).

    Article  CAS  Google Scholar 

  21. V. V. Glagolev, A. A. Markin, and A. A. Fursaev, “Separation process modeling of composite with adhesive layer,” Vestn. Perm. Nats. Issled. Politekh. Univ., Mekh., No. 2, 34–44 (2016). https://doi.org/10.15593/perm.mech/2016.2.03

    Article  Google Scholar 

  22. V. V. Glagolev, A. A. Markin, and A. A. Fursaev, “Modelling the generation of new material surfaces in a composite with an adhe-sion layer under cohesive destruction,” Vestn. Perm. Nats. Issled. Politekh. Univ., Mekh., No. 2, 45–59 (2017). https://doi.org/10.15593/perm.mech/2017.2.03

    Article  Google Scholar 

  23. V. P. Kuznetsov, M. I. Baumgarten, B. P. Nevzorov, and Yu. A. Fadeev, “Adhesion in composite materials: Terms and physical foundations,” Vestn. Kemer. Gos. Univ., No. 2-1, 173–177 (2014).

  24. R. L. Jonson, Contact Mechanics (Cambridge University Press, Cambridge, 1987).

    Google Scholar 

  25. A. J. Kinloch, Adhesion and Adhesives. Science and Technology (Chapman and Hall, London, 1987).

    Book  Google Scholar 

  26. F. Matthews and R. Rawlings, Composite Materials. Mechanics and Technology (Tekhnosfera, Moscow, 2004) [in Russian].

    Google Scholar 

Download references

Author information

Authors and Affiliations

Authors

Corresponding author

Correspondence to R. A. Turusov.

Additional information

Translated by E. Glushachenkova

Rights and permissions

Reprints and permissions

About this article

Check for updates. Verify currency and authenticity via CrossMark

Cite this article

Turusov, R.A., Andreev, V.I. & Tsybin, N.Y. A Composite of Layered Structure. Transversal Strength and Young’s Modulus. Polym. Sci. Ser. D 15, 10–18 (2022). https://doi.org/10.1134/S1995421222010233

Download citation

  • Received:

  • Revised:

  • Accepted:

  • Published:

  • Issue Date:

  • DOI: https://doi.org/10.1134/S1995421222010233

Keywords:

Navigation