Damage Modelling in Adhesive Butt Joints under Torsion via Imperfect Interface Models

Article Preview

Abstract:

We report on an analytical model for damage description in adhesive butt joints. In themodel, the thin adhesive layer is replaced by a damaging bonding interface. The mechanical behaviorof the interface is described by a nonlinear and rate­dependent imperfect contact law. The law takesinto account both stress and displacement jumps, and it can describe both soft and hard adhesive layers.Unlike classic cohesive zone models, phenomenological in nature, the proposed contact law explicitlyaccounts for material and damage properties of the adhesive layer. A first comparison with literaturedata of adhesive butt joints loaded in torsion indicates that the model can successfully reproduce theirexperimental stress­strain response.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

281-286

Citation:

Online since:

May 2022

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2022 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] A. Higgins: Int. J. Adhes. Adhes. Vol. 20(5) (2000) p.67.

Google Scholar

[2] F. Cavezza, M. Boehm, H. Terryn, T. Hauffman: Metals Vol. 10(6) (2020), p.730.

Google Scholar

[3] G. Sokolowski, M. Krasowski, A. Szczesio-Wlodarczyk, B. Konieczny, J. Sokolowski, K. Bociong: Materials Vol.14(3)(2021), p.599.

DOI: 10.3390/ma14030599

Google Scholar

[4] A. Maurel-Pantel, M. Lamberti, M. L. Raffa, C. Suarez, F. Ascione, F. Lebon: Compos. Struct. Vol.239 (2020), p.112034.

DOI: 10.1016/j.compstruct.2020.112034

Google Scholar

[5] B.Kawecki, J. Podgórski: Materials Vol. 13(22) (2020), p.5075.

Google Scholar

[6] F.C. Campbell, in Manufacturing Processes for Advanced Composites, Chapter 8 - Adhesive Bonding and Integrally Cocured Structure: A Way to Reduce Assembly Costs through Parts Integration, edited by F.C. Campbell (2004), p.241.

DOI: 10.1016/b978-185617415-2/50009-5

Google Scholar

[7] L. D. C. Ramalho, R. D. S. G. Campilho, J. Belinha, L. F. M. Da Silva: Int. J. Adhes. Adhes. Vol. 96, p.102451.

Google Scholar

[8] G. Viana, M. Costa, M. Banea, L. da Silva, in: Proc. Inst. Mech. Eng. Pt. L J. Mater. Des. Appl. Vol. 231(5) (2017), p.488.

Google Scholar

[9] A. Rudawska, J.W. Sikora, M. Müller, P. Valášek: Int. J. Adhes. Adhes. Vol. 97 (2020), p.102487.

Google Scholar

[10] H. Chai: Int. J. Fract. Vol. 60 (1993), p.311.

Google Scholar

[11] C. Goidescu, H. Welemane, D. Kondo, C. Gruescu: Eur. J. Mech. A Solids Vol. 37 (2013), p.172.

Google Scholar

[12] J. Zhang, J. Wang, Z. Yuan, H. Jia: Int. J. Adhes. Adhes. Vol. 85 (2018), p.37.

Google Scholar

[13] R. D. Campilho, M. D. Banea, J. A. B. P. Neto, L. F. da Silva: Int. J. Adhes. Adhes. Vol. 44 (2013), p.48.

Google Scholar

[14] C. Hu, G. Huang, C. Li: Materials Vol. 14 (2021), p.1016.

Google Scholar

[15] G. Yu, X. Chen, B. Zhang,K. Pan, L. Yang: Metals Vol. 10 (2020), p.1028.

Google Scholar

[16] C. D. M. Liljedahl, A. D. Crocombe, M. A. Wahab, I. A. Ashcroft: Int. J. Adhes. Adhes. Vol. 27 (2007), p.505.

Google Scholar

[17] A. Pirondi, F. Moroni: Materials Vol. 12 (2019), p.181.

Google Scholar

[18] R. Rizzoni, S. Dumont, F. Lebon, E. Sacco: Int. J. Solids Struct. Vol. 51 (2014), p.4137.

Google Scholar

[19] F. Lebon, S. Dumont, R. Rizzoni, J.C. López-Realpozo, R. Guinovart-Díaz, R. RodríguezRamos, J. Bravo-Castillero, F. J. Sabina: Compos. B. Eng. Vol. 60 (2016), p.58.

DOI: 10.1016/j.compositesb.2015.12.003

Google Scholar

[20] M. Serpilli, S. Lenci: Int. J. Solids Struct. Vol. 81 (2016), p.130.

Google Scholar

[21] M. Serpilli: Math. Mech. Solids Vol. 23 (2018), p.667.

Google Scholar

[22] M. Serpilli, R. Rizzoni, F. Lebon, S. Dumont: Int. J. Solids Struct. Vol. 180-181 (2019), p.97.[23] S. Dumont, F. Lebon, M.L. Raffa, R. Rizzoni: Ann. Solid Struct. Mech. Vol. 9 (2017), p.13.

DOI: 10.1007/s12356-017-0047-8

Google Scholar

[24] M.L. Raffa, F. Lebon, R. Rizzoni, R: submitted.

Google Scholar

[25] M. Kachanov: Adv. Appl. Mech. Vol. 30 (1994), p.259.

Google Scholar

[26] M.L. Raffa, F. Lebon, R. Rizzoni, R: Technologies Vol. 9 (2021), p.19.

Google Scholar

[27] S. Murakami, Y. Sekiguchi, C. Sato, E. Yokoi, T. Furusawa: Int. J. Adhes. Adhes. Vol. 67 (2016), p.86.

Google Scholar

[28] C. Weng, J. Yang, D. Yang, B. Jiang: Polymers, Vol. 11 (2019), p.470.

Google Scholar

[29] Ankit Rohatgi, WebPlotDigitizer, https://automeris.io/WebPlotDigitizer. Version: 4.4, November, (2020).

Google Scholar

[30] J. Kosmann,O. Klapp, D. Holzhüter, M.J. Schollerer, A. Fiedler, C., Nagel, C. Hühne: Int. J. Adhes. Adhes. Vol. 83 (2018), p.50.

DOI: 10.1016/j.ijadhadh.2018.02.020

Google Scholar

[31] R.J.C. Carbas, M.A. Dantas, E.A.S. Marques, L.F.M. da Silva: J. Adv. Join. Proc. Vol. 3 (2021), 100061.

Google Scholar