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First published July 1987

Consolidation Experiments for Laminate Composites

Abstract

Consolidation experiments conducted on special prepregs made of constant viscosity oils and aligned graphite fibers are reported. Measurements of the deformation behavior of the fibers in the "drained" state (oil impregnated, but zero pressure in the oil) reveal that, to a first approximation, the fiber network can be modelled as a nonlinear elastic network, and a model based on bending beam behavior is shown to accurately fit the data. Further more, a finite load (> 3 psi) is required to compress the fibers to volume fractions equal to, and above the range of about 0.56 to 0.61. Sample to sample variation, and in a few cases inelastic effects are also noted. Measurements of the permeability of the fiber bundle indicate a strong anisotropy as well as a strong fiber volume fraction dependence. It is shown that the Carman-Kozeny equation gives a good approximation to the axial direction permeability with kxx = 0.7. Compared to this, the transverse permeability is smaller by a factor of 25 or more. Furthermore, the transverse permeability depends upon fiber mo bility. Experiments comparing the measured and predicted values of the "resin" pressure during simulated compression molding show reasonable agreement. Similar experiments for simulated bleeder ply molding show that the theory tends to overpredict the rate of decay of the "resin" pressure if the Carman-Kozeny equation is used. This difference is probably due to a slight fiber rearrangement which unloads the fibers and causes a "log jam" effect. The incorporation of a modified Carman-Kozeny equation which allows Szz → 0 for Vf < 1 yields an excellent fit to the data. The implications of the results are discussed.

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References

Gutowski, T.G. "A Resin Flow/Fiber Deformation Model for Composites," SAMPE Quarterly, 16(4):58-64 (July 1985).
Gutowski, T.G., T. Morigaki and Z. Cai. "The Consolidation of Laminate Composites," The Journal of Composite Materials, 21(2).172-188 (February 1987).
Gutowski, T., G.J. Kingery and D. Boucher. "Experiments in Composites Consolidation: Fiber Deformation," Proceedings of the Society of Plastics Engineers 44th Annual Technical Conference (May 1986)
Gutowski, T.G., Z. Cai, J. Kingery and S.J. Wineman. "Resin Flow/Fiber Deformation Experiments," SAMPE Quarterly, 17(4):54-58 (July 1986 ).
Loos, A.C. and G.S. Springer. "Curing of Epoxy Matrix Composites," The Journal of Composite Materials, 17 (March 1983)
Lindt, J.T. "Engineering Principles of the Formation of Epoxy Resin Composites," SAMPE Quarterly (October 1982 ).
Halpin, J.C., J.L. Kardos and M.P. Dudukocic. "Processing Science: An Approach for Prepreg Composite Systems," Pure and App. Chem., 55(5) (1983 ).
Bauer, S. "High Speed Fiber Spreading for the Manufacture of Prepreg with a Thermoplastic Matrix," S. M. Thesis Department of Mechanical Engineering, M.I.T. (1987).
Van Wyk, C.M. "Note on the Compressibility of Wool," J. Textile Inst., 37:T285 (1946 ).
Williams, J.G., C.E.M. Morris and B.C. Ennis. "Liquid Flow Through Aligned Fiber Beds," Poly. Eng. & Sci, 14(6) (1974).
Scheidegger. The Physics of Flow Through Porous Media U. Toronto Press, 3rd ed. (1974).
Browning, C.E., R.A. Brand, E.L. McKague, J.L. Kardos and M.P. Dudukovic. "Processing Science of Epoxy Resin Composites," Industrial Review General Dynamics Convair Division, San Diego, CA (October 26, 1983)
Campbell, F.C., A.R. Mallow and G.A. Blase "Computer Aided Curing of Composites," 6th Interim Report to AFWAL/ML (1985).
Bibbo, M. and T.G. Gutowski. "Analysis of the Pulling Force in Pultrusion," Proceedings of the Society of Plastics Engineers 44th Annual Technical Conference (May 1986).
Carman, P.C. Flow of Gases Through Porous Media, Butterworths Scientific Publications, London (1956).
Kardos, J., M.P. Dudukovic, E.L. McKague and M.W. Lehman. "Void Formation and Transport During Laminate Processing An Initial Model Framework," in Composite Materials ASTM STP, C. E Browning, ed (1982).
Cardwell, W.T. et al. "Average Permeabilities of Heterogeneous Oil Sands," AIME Trans, 160:34 (1945).
Cai, Z. "Molding Behavior of Composites," S. M. Thesis, M.E., MIT (1986).
Kay, J. and R. Nedderman. "Fluid Mechanics and Heat Transfer," Camb. U Press, 3rd ed. (1974 ).

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Article first published: July 1987
Issue published: July 1987

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Authors

Affiliations

T.G. Gutowski
Massachusetts Institute of Technology Laboratory for Manufacturing and Productivity Cambridge, Massachusetts 02139
Z. Cai
Massachusetts Institute of Technology Laboratory for Manufacturing and Productivity Cambridge, Massachusetts 02139
S. Bauer
Massachusetts Institute of Technology Laboratory for Manufacturing and Productivity Cambridge, Massachusetts 02139
D. Boucher
Massachusetts Institute of Technology Laboratory for Manufacturing and Productivity Cambridge, Massachusetts 02139
J. Kingery
Massachusetts Institute of Technology Laboratory for Manufacturing and Productivity Cambridge, Massachusetts 02139
S. Wineman
Massachusetts Institute of Technology Laboratory for Manufacturing and Productivity Cambridge, Massachusetts 02139

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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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    Go to citation Crossref Google Scholar
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