Page 340 - Engineered Interfaces in Fiber Reinforced Composites
P. 340

Chapter 7.  Improvement of  transverse fracture toughness with interface control   32 1

                Beaumont P.W.R. and Phillips D.C. (1972). The fracture energy of glass fiber composites. J. Mater. Sci. 7.
                  682-686.
                Bell J.P.,  Chang J.,  Rhee H.W.  and Joseph  R.  (1987). Application  of ductile polymeric coatings onto
                  graphite fibers. Polym. Composites 8, 4652.
                Benatar,  A.  and  Gutowski,  T.G.  (1986).  Effects  of  moisture  on  interface  modified  graphite  epoxy
                  composites. Polym. Composites 7, 8490.
                Beneveniste, Y.. Dvorak,  G.J. and  Chen, T. (1989). Stress fields in  composite with coated  inclusions.
                  Mech. Mater. I, 305-3 17.
                Bowles, D.E. and Griffin, O.H. (1991a). Micromechanics analysis of space simulated thermal stresses in
                  composites, part I: Theory and unidirectional laminates. J. Reinforced Plast. Composites 10, 504521.
                Bowles, D.E. and Griffin, O.H. (1991b). Micromechanics analysis of space simulated thermal stresses in
                  composites, part 11: Multidirectional laminates and failure predictions. J. Reinforced Plast. Composites
                  10, 522-539.
                Broutman, L.J. and Agarwal, B.D. (1974). A theoretical study of the effect of an interface layer on the
                  properties of composites. Polym. Eng. Sci. 14, 581-588.
                Bucknall, C.B.. Partridge,  I.K. and  Phillips, M.J. (1991). Mechanics of shrinkage control  in  polyester
                  resins containing low-profile additives. Pol-vmer 32, 636640.
                Bucknall, C.B., Patridge, I.K. and Phillips, M.J. (1991). Mechanics of shrinkage control in polyester resins
                  containing low-profile additives. Polymer 32, 636-640.
                Caruso,  J.J.,  Chamis.  C.C.  and  Brown,  H.C.  (1990).  Parametric  studies  to  determine  the  effect  of
                  compliant layers on metal matrix composite system. NASA TM-102465.
                Chamis, C.C. (1971). Lamination  residual stresses in cross-plied fiber composites. NASA TM X-5288 I.
                Chapman, T.J., Gillespie, J.W. and Pipes, R.B. (1990). Prediction of process-induced residual stresses in
                  thermoplastic composites. J. Composite Mater. 24. 61 6643.
                Chawla. K.K. (1993). Ceramic Matrix Composites, Chapman & Hall, London.
                Chou. T.W.. Kelly. A. and Okura, A. (1985). Fiber reinforced metal matrix composites. Cumpositrs. 16,
                  187-206
                Christensen, R.M. (1979). Effective moduli of cylindrical and lamellar system. In Mechanics qf  Composire
                  Materials, J Wiley, New York, pp. 73-105.
                Cook J. and Gordon J.E. (1964). A mechanism for the control of crack propagation  in all-brittle systems.
                  Proc. Ro,v. Soc. Lond. A 282, 508-520.
                Cooper G.A. and Kelly A. (1967). Tensile properties of fiber-reinforced metals: Fracture mechanics. .I.
                  Mech. Phys. So1id.Y  15, 279-297.
                Craddock, J.N.  and Savides, I.S. (1994). Modeling elastic-plastic  behavior of metal matrix composites
                  with reaction zones under  longitudinal tension. Inr. J. Damage Mech. 3, 308-31  I.
                Crasto, AS., Own, S.H. and Subramdnian, R.V. (1988). The influence of the interphase on composite
                  properties: Poly(ethy1ene-co-acrylic acid) and poly(methy1 vinyl ether-co-maleic anhydride) electrodc-
                  posited on graphite fibers. Polym. Composites 9, 78-92.
                Crasto, AS. and Kim, R.Y. (1993). On the determination of residual stresses in fiber-reinforced thermoset
                  composites. J. Reinforced Plast. Composites. 12, 54S558.
                Daabin, A., Gamble, A.J. and Sumner, N.D. (1992). The effect of the interphase and material properties
                  on load transfer in fiber composites. Composites 23, 21CL214.
                Daniel, I.M. and Durelli (1962). Shrinkage stresses around rigid inclusions. Exper. Mech. 2, 24S255.
                Daoust,  J.  Vu-Khanh,  T.,  Ahlstrom,  C.  and  Gerard,  J.F.  (1993).  A  finite  element  model  of  the
                  fragmentation  test for the case of a coated fiber. Composites Sci. Technol. 48, 143-149.
                Dauksys R.J. (1973). Graphite fiber treatments which affect fiber surface morphology and epoxy bonding
                  characteristics. J. Adhesion 5, 21 1-244.
                de Kok, J.M.M.  (1995). Deformation, Yield and Fracture  of Unidirectional Composites in Transverse
                  Loading. Ph.D.  Thesis, Eindhoven University of Technology, The Netherlands.
                Di Anselmo, A.,  Accorsi, M.L. and Di Benedetto, A.T.  (1992). The effect of an interphase on the stress
                  and energy distribution in an embedded single fiber test. Composites Sci. Technol. 44, 215-225.
                Doghri, H., Jansson, S., Leckie, F.A. and Lemaitre (1990). Optimization of interface layers in the design
                  of ceramic fiber reinforced metal matrix composites. NASA CR-185307.
                Doner, D.R., and Novak, R. C. (1969). Structural behaviour of laminates graphite filament composites.
                  In Proc. 24th Annual  Tech. Cor$. Reinforced Plast. Composites, SPI. Paper 2-D.
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