Abstract
The tensile mechanical properties of two polyester / glass crossply laminates cured under different conditions have been investigated. Large thermal strains are generated which severely reduce the strain at which the cracking of the plies is initiated. The two chemically similar resins produced laminates which behaved differently.
The rapid stress corrosion failure of the outer 0° plies of a crossply laminate is shown to be associated with transverse cracks in the 90° ply.
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References
Bailey, J. E. and Parvizi, A., On fibre debonding effects and the mechanism of transverse ply failure in cross-ply laminates of glass fibre/thermosets composites, J. Mat.Sci., 16 (1981)649–59.
Bailey, J. E., Curtis, P. T. and Parvizi, A., cracking and longitudinal splitting behaviour of glass and carbon fibre reinforced epoxy cross-ply laminates and the effect of Poisson and thermally generated strain, Proc. R. Soc. Lond. A, 366 (1979) 599–623.
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(a)Jones, F. R., Mulheron, M. J., Wheatley, A. R. and Bailey, J. E., The effect of curing conditions on the properties of the matrix and interfacial bond in glass fibre reinforced polyesters, Interfaces in composites materials, PRI meeting, Liverpool 1981, paper 6. (b)Jones, F. R. and Mulheron, M. J., unpublished results.
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Jones, F. R. and Wheatley, A. R., in preparation.
Bailey, J. E., Fryer, T. M. W. and Jones, F. R., Environmental stress-corrosion edge cracking of glass reinforced polyesters. In: Advances in composite materials (ICCM 3), Vol. I, Bunsell, A. R. et al. (eds), Paris, Pergamon Press, 1980. 514–28.
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© 1981 Applied Science Publishers Ltd
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Jones, F.R., Wheatley, A.R., Bailey, J.E. (1981). The Effect of Thermal Strains on the Microcracking and Stress Corrosion Behaviour of GRP. In: Marshall, I.H. (eds) Composite Structures. Springer, Dordrecht. https://doi.org/10.1007/978-94-009-8120-1_27
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DOI: https://doi.org/10.1007/978-94-009-8120-1_27
Publisher Name: Springer, Dordrecht
Print ISBN: 978-94-009-8122-5
Online ISBN: 978-94-009-8120-1
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