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Influence of epoxy resin curing systems and aluminium surface modification on selected properties of adhesive joints


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1. Kuczmaszewski, J. Fundamentals of metal-metal adhesive joint design. Lublin University of Technology, Polish Academy of Sciences, Lublin, 2006.Search in Google Scholar

2. Godzimirski, J. Adhesive plastics. Application in repair of technical equipment, WNT, Warsaw, 2010, (in Polish).Search in Google Scholar

3. Czaplicki, J., Ćwikliński, J., Godzimirski, J. & Konar, P. Adhesive plastics. Transport and Communication Publishers, Warsaw, 1987, (in Polish).Search in Google Scholar

4. Bereska, B., Iłakowska, J., Czaja, K. & Bereska, A. (2014) Hardeners for epoxy resins. Przem. Chem. - Chemical Industry, 93/4:443-448, DOI: dx.medra.org/10.12916/przemchem.2014.443.Search in Google Scholar

5. da Silva, L.F.M. & Lopes, M.J.C.Q. (2009) Joint strength optimization by the mixed-adhesive technique. Int. J. Adhes. Adhes. 29(5): 509-514, DOI: 10.1016/j.ijadhadh.2008.09.009.10.1016/j.ijadhadh.2008.09.009Open DOISearch in Google Scholar

6. Banea, M.D. & Da Silva, L.F.M. (2009) Adhesively bonded joints in composite materials: an overview. Proceedings of the Institution of Mechanical Engineers Part L: Journal of Materials: Design and Applications 223(1), 1-18, DOI: 10.1243/14644207JMDA219.10.1243/14644207JMDA219Open DOISearch in Google Scholar

7. Wingfield, J.R.J. (1993) Treatment of composite surfaces for adhesive bonding. Int. J. Adhes. Adhes 13, 3, 151-156. DOI 10.1016/0143-7496(93)90036-9.10.1016/0143-7496(93)90036-9Open DOISearch in Google Scholar

8. Rudawska, A. Filipek, P. & Kowalska, B. (2016) The choosen issues of epoxy compounds modification. Polymer Processing 170(22), 91-99.Search in Google Scholar

9. Szymańska, J., Kostrzewa, M., Bakar, M. & Białkowska, A. (2017) Study on adhesive properties and curing of reactive liquid rubbers toughened epoxy-clay ternary hybrid nanocomposites. J. Polym. Eng. - online 11.09.201. DOI: 10.1515/polyeng-2017-0099.10.1515/polyeng-2017-0099Open DOISearch in Google Scholar

10. Palmieri, F.L. at al. (2015) Laser surface preparation of epoxy composites for secondary bonding: optimization of ablation depth. Composite Materials. SAMPE Baltimore Conference and Exhibition, Baltimore, USA, 18-21 May 2015.Search in Google Scholar

11. Liston, E.M., Martinu, L. & Wertheimer, M.R. (1993) Plasma surface modification of polymers for improved adhesion: a critical review. J. Adhes. Sci. Techno. 7(10), 1091-1127. DOI: 10.1163/156856193X00600.10.1163/156856193X00600Open DOISearch in Google Scholar

12. Rudawska, A., Reszka, M. & Warda, T. et al. (2016) Milling as a method of surface pre-treatment of steel for adhesive bonding. J. Adhes. Sci. Technol. 30(23), 2619-2636. DOI.org/10.1080/01694243.2016.1191585.10.1080/01694243.2016.1191585Open DOISearch in Google Scholar

13. Rudawska, A., Bociąga, E. & Olewnik-Kruszkowska, E. (2017) The effect of primers on adhesive properties and strength of adhesive joints made with polyurethane adhesives. J. Adhes. Sci. Technol. 31(3), 327-344. doi.org/10.1080/01694243.2016.1215013.10.1080/01694243.2016.1215013Open DOISearch in Google Scholar

14. Abrahami, T.S., Hauffman, T. & De Kok, J.M.M. et al. (2016) Effect of anodic aluminum oxide chemistry on adhesive bonding of epoxy. J. Phys. Chem.: C 120(35), 19670-19677. DOI: 10.1021/acs.jpcc.6b04957.10.1021/acs.jpcc.6b04957Open DOISearch in Google Scholar

15. Martin, R. (2008) Ageing of composites. Cambridge: Woodhead Publishing Limited.10.1533/9781845694937Search in Google Scholar

16. Harris B (2003) Fatigue in composites, Cambridge: Woodhead Publishing Limited.10.1533/9781855738577Search in Google Scholar

17. Hu, H., Sun, C.T (2003) The equivalence of moisture and temperature in physical aging of polymeric composites. J. Compos. Mater. 37(10), 913-928. doi.org/10.1177/0021998303037010004.10.1177/0021998303037010004Search in Google Scholar

18. Szymiczek, M., Rojek, M. & Wróbel, G. (2016) The influence of the ageing-fatigue degradation on the mechanical properties of glass-reinforced composites. Pol. J. Chem. 18(1), 113-119. doi.org/10.1515/pjct-2016-0017.10.1515/pjct-2016-0017Open DOISearch in Google Scholar

19. Wang, J., Ganga, Rao, H., Liang, R. & Liu, W. (2003) Durability and prediction models of fiber-reinforced polymer composites under various environmental conditions: A critical review. J. Reinf. Plast. Compos. 35(3), 179-211. doi. org/10.1177/0731684415610920.10.1177/0731684415610920Open DOISearch in Google Scholar

20. Kuczmaszewski, J. & Kłonica, M. (2015) Comparative researches of shearing strength of single-lap adhesive bonded joints 316l steel after „thermal shock”. Polymer Processing 164(21), 125-130.Search in Google Scholar

21. EN 1465:2009 (2009) Adhesives - Determination of tensile lap-shear strength of bonded assemblies.Search in Google Scholar

22. Tabal Wholesale (2017) Sheets from aluminium alloys. Available at: http://hurtownia.tabal.pl/stop-5754-gatunekpa11,262.html (accessed 10 June 2017).Search in Google Scholar

23. Hull, D. & Clyne, T.W. (1996) An introduction to composite materials. Cambridge: Cambridge University Press.10.1017/CBO9781139170130Search in Google Scholar

24. Characteristic card of materials (HUNTSMANN).Search in Google Scholar

25. PN-EN ISO 868:2005 (2005) - Plastics and ebonite - Determination of indentation hardness by means of a durometer (Shore hardness).Search in Google Scholar

eISSN:
1899-4741
Language:
English
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Journal Subjects:
Industrial Chemistry, Biotechnology, Chemical Engineering, Process Engineering