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Two methods of assessing fracture properties of adhesive joints were studied. Two wedge tests: with continuous deflection and with force measurements were compared. Asymmetric geometry of the bonded joint was considered, i.e. two different plates of aluminium alloys: Al-Cu and Al-Mg, were bonded with epoxy DGEBA adhesive. The analytical model is shown to estimate the values of fracture properties: crack position and critical fracture energy. It was found that both methods allow easy and reliable estimation and comparison of fracture properties, although some differences were observed.
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Strony
43--52
Opis fizyczny
Bibliogr. 17 poz., rys., tab.
Twórcy
autor
autor
autor
autor
autor
- Faculty of Mechanical Engineering, Dept. of Material Science and Engineering, Gdańsk University of Technology, Narutowicza 11/12, 80-233 Gdansk, Poland
Bibliografia
- 1. Wegman R., Tullos T. R.: Handbook of Adhesive Bonded Structural Repair, Noyes Publications, 1992.
- 2. Täljsten B.: The Importance of Adhesive Bonding-An histiroci overview and future possibilities, Proceedings of the International Symposium on Bond Behaviour of FRP in Structures, ed. Chen and Teng, International Institute for FRP in Construction, 2005.
- 3. Licari J. J., Swanson D. W. : Adhesive Technology for electronic applications, William Andrew Publishing, 2005.
- 4. Rider A. N., Olsson-Jacques C. L., Arnott D. R.: Influence of Adherend Surface Preparation on Bond Durability, Surf. Interface Anal. 27, pp. 1055–1063, 1999.
- 5. Critchlow G., Brewis D. M.: Review of surface pretreatments for aluminium alloys, J. Adhesion and Adhesives, 16, pp. 255-275, 1996.
- 6. Irfan M. H.: Chemistry and Technology of Thermosetting Polymers in Construction Applications, Kluwer Academic Publishers, 1998.
- 7. Jin F. L., Park S. J.: Improvement in fracture behaviors of epoxy resins toughened with sulfonated poly(ether sulfone), Polymer Degradation and Stability, pp. 509-514, 2007.
- 8. Aymerich F., Lecca G., Priolo P.: Modelling of delamination growth in composite laminates by the virtual internal bond method, Composites: Part A 39 pp. 145–153, 2008.
- 9. Dillarad D. A.: Adhesion Science and Engineering, A. V. Pocius [ed.] , Eslevier Science, pp.1-45, 2002.
- 10. Bujanda A., Copeland C., Dibelka J., Forster A., Holmes L., Jensen R., Kosik W., McKnight S., Koellhoffer S., Gillespie Jr. J.: Analysis of Adhesively Bonded Ceramics Using an Asymmetric Wedge Test, ARL-TR-4665, 2008.
- 11. Goland M., Reissner E.: The stresses in cemented joints, J. Appl. Mech., Trans. ASME, 66, A17–A27, 1944.
- 12. Carpenter W. C.: Stresses in bonded connections using finite elements, Int. J. Numer. Methods Engng., 15, pp. 1659–1680, 1980.
- 13. Budzik M., Jumel J., Imielinska K., Shanahan M. E. R.: Accurate and continuous adhesive fracture energy determination using an instrumented wedge test, International Journal of Adhesion and Adhesives 29, pp. 694–701, 2009.
- 14. Griffith, A. A.: The phenomena of rupture and flow in solids, Philosophical Transactions of the Royal Society of London, A 221, pp. 163–198, 1922.
- 15. Irwin G.: Analysis of stresses and strains near the end of a crack traversing a plate, Journal of Applied Mechanics 24, pp. 361–364, 1957.
- 16. Aglan H, Abdo Z.: An innovative approach to fatigue disbond propagationin adhesive joints, J Adhes Sci Technol, 10, pp.183–98, 1998.
- 17. Sener J.-Y., Ferracin T.; Caussin L., Delannay F.: On the precision of the wedge-opened double cantilever beam method for measuring the debonding toughness of adhesively bonded plates, International Journal of Adhesion and Adhesives, Volume 22, Number 2, pp. 129-137, 2002.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPG8-0020-0041