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Articles

Fracture energy in structural adhesive joints of composite-aluminum under adverse environments conditions

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Pages 201-214 | Received 10 Apr 2013, Accepted 27 Jul 2013, Published online: 11 Sep 2013

References

  • Charla KK. Composite materials science and technology. Nueva York: Springer; 2001.
  • Rastogi N. Design of composite driveshafts for automotive applications. Paper presented at: SAE 2004 World Congress & Exhibition. Technical paper series, 2004-01-0485; 2004 Mar 8; Detroit, MI.
  • Cho DH, Lee DG. Manufacture of one-piece automotive drive shafts with aluminum and composite materials. Compos. Struct. 1997;38:309–319.
  • Grant DR, Adams RD, da Silva LFM. Experimental and numerical analysis of single-lap joints for the automotive industry. Int. J. Adhes. Adhes. 2009;29:405–415.
  • Adams RD, Comyn J, Wake WC. Structural adhesive joints in engineering. London: Chapman & Hall; 1997.
  • Suárez JC, López F. Uniones adhesivas estructurales [Structural adhesive joints]. Madrid: CYTED; 2000.
  • Reis P, Grundmüller S. Worldwide design handbook. Munich: Loctite European Group; 1998.
  • LeBack C, Brechet Y, Shercliff HR, Jeggy T, Salvo L. Selection of joining methods in mechanical design. Mater. Des. 2002;23:405–416.
  • Arenas JM, Alia C, Narbón JJ, Ocaña R, González C. Considerations for the industrial application of structural adhesive joints in the aluminium-composite material bonding. Compos. Part B Eng. 2013;44:417–423.
  • Kweon JH, Jung JW, Kim TH, Choi JH, Kim DH. Failure of carbon composite-to-aluminum joints with combined mechanical fastening and adhesive bonding. Compos. Struct. 2006;75:192–198.
  • Harald O, Dag M. Experimental and analytical strength analysis of double-lap joints for marine applications. Composites Part B. 2009;40:29–40.
  • Boyd SW, Blake JIR, Shenoi RA, Mawella J. Optimisation of steel-composite connections for structural marine applications. Composites Part B. 2008;39:891–906.
  • Yang B, Huang WM, Li C, Li L. Effects of moisture on the thermomechanical properties of a polyurethane shape memory polymer. Polymer. 2006;47:1348–1356.
  • Abot JL, Yasmin A, Daniel IM. Hygroscopic behavior of woven carbon–epoxy composites. J. Reinf. Plast. Compos. 2005;24:195–207.
  • Sugita Y, Winkelmann C, La Saponara V. Environmental and chemical degradation of carbon/epoxy lap joints for aerospace applications, and effects on their mechanical performance. Compos. Sci. Technol. 2010;70:829–839.
  • Da Silva LFM, das Neves PJC, Adams RD, Spelt JK. Analytical models of adhesively bonded joints – Part I: literatue survey. Int. J. Adhes. Adhes. 2009;29:319–330.
  • Da Silva LFM, das Neves PJC, Adams RD, Wang A, Spelt JK. Analytical models of adhesively bonded joints – Part II: comparative study. Int. J. Adhes. Adhes. 2009;29:331–341.
  • Van Straalen IJJ, Wardenier J, Vogelesang LB, Soetens F. Structural adhesive joints in engineering-drafting design rules. Int. J. Adhes. Adhes. 1998;18:41–49.
  • Minford JD. Comparative aluminium joint evaluations in varying saltwater exposure conditions. J. Adhes. 1985;18:19–24.
  • Liljedahl CDM, Crocombe AD, Wahab MA, Ashcroft IA. Modelling the environmental degradation of adhesively bonded aluminium and composite joints using a CZM approach. Int. J. Adhes. Adhes. 2007;27:505–518.
  • Buch X, Shanahan MER. Thermal and thermo-oxidative ageing of an epoxy adhesive. Polym. Degrad. Stab. 2000;68:403–411.
  • Carlsson LA, Gillespie JW, Pipes RB. On the analysis and design of end notch flexure (ENF) for mode II testing. J. Compos. Mater. 1986;20:594–604.
  • Chen CC, Linzell DG. Modeling end notched flexure tests to establish cohesive element Mode II fracture parameters. Eng. Fract. Mech. 2010;77:1338–1347.
  • Arrese A, Carbajal N, Vargas G, Mujika F. A new method for determining mode II R-curve by the End-Notched Flexure test. Eng. Fract. Mech. 2010;77:51–70.
  • De Moura MFSF, Campilho RDSG, Gonçalves JPM. Pure mode II fracture characterization of composite bonded joints. Int. J. Solids Struct. 2009;46:1589–1595.
  • Todo M, Jarb PYB, Takahashia K. Initiation of a mode-II interlaminar crack from an insert film in the end-notched flexure composite specimen. Compos. Sci. Technol. 2000;60:263–272.
  • Calidad del Aire – Ayuntamiento de Madrid [Air Quality – City Council of Madrid] [Internet]. Madrid: Concejalía de Medio Ambiente; [cited 2013 Jan 23]. Available from: http://www.mambiente.munimadrid.es/svca/index.php?lang=es
  • Arenas JM, Alía C, Narbón JJ, Ocaña R, González C. Considerations for the industrial application of structural adhesive joints in the aluminium – composite material bonding. Composites Part B. 2013;44:417–423.
  • Ouyang Z, Li G. Nonlinear interface shear fracture of end notched flexure specimens. Int. J. Solids Struct. 2009;46:2659–2668.
  • Ji G, Ouyang Z, Li G. On the interfacial constitutive laws of mixed mode fracture with various adhesive thicknesses. Mech. Mater. 2012;47:24–32.
  • AENOR. UNE-EN 15062-2007: Adhesivos para piel y materiales para calzado. Adhesivos en base disolvente y en dispersión. Ensayos de envejecimiento de las uniones en condiciones especificadas. [UNE-EN 15062-2007: Adhesives for leather and footwear materials – Solvent-based and dispersion adhesives – Testing ageing of bonds under specified conditions]. Madrid: Asociación Española de Normalización; 2007.

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