Page 103 - Engineered Interfaces in Fiber Reinforced Composites
P. 103

86                Engineered interfaces in fiber reinforced composites

                     Barsoum, M. and Tung, I.C. (1991). Effect of oxidation on single fiber interfacial shear stresses in a Sic-
                       borosilicate glass system. J. Am. Ceram. SOC. 74, 2693-2696.
                     Bartos,  P.  (1981).  Review  paper:  Bond  in  fiber  reinforced  cements  and  concrete.  Intern. J. Cement
                       Composites 3,  159-177.
                     Bascom, W.D.  and Jensen, M. (1986). Stress transfer in single fiber resin tensile tests. J. Adhesinn 19,219-
                       239.
                     Baxevanakis,  C.  Jeulin,  D.,  Valentin,  D.  (1993).  Fracture  statistics  of  single  fiber  composite
                       specimen.Composites  Sei. Technol. 48, 47-56.
                     Beltzer, A.I., Piau, M. and Weitsman, Y. (1992). Note on the ineffective length of a fiber. Mech. Mater.
                       13, 285-294.
                     Benzeggagh, M.L., Prel, Y.J. and de Charentenay,  F.X. (1985). Instrumentation of mode I and mode I1
                       tests for crack tip strain profile study under static and cyclic loading. In Proc. ECCM-I, p. 291.
                     Berg,  C.A.,  Tirosh,  J.  and  Israeli,  M.  (1972).  Analysis  of  short  beam bending  of  fiber  reinforced
                       composites. In Composite Materials: Testing and Design (2nd ConJ), ASTM STP 497 (C.E. Browning
                       ed.), ASTM, Philadelphia, PA, pp. 206-218.
                     Berry, J.P. (1963). Determination of fracture surface energies by the cleavage technique. J. Appl. Phys. 34,
                       62.
                     Birger, S.,  Moshonov, A. and Kenig, S. (1989). Failure mechanisms of graphite fabric epoxy composites
                       subjected to flexural loading. Composites 20, 136144.
                     Biro,  D.A.,  McAlea,  P.K.  and  Deslandes,  Y.  (1991).  Application  of  the  microbond  technique:
                       characterization  of carbon fiber-epoxy interfaces. Polym. Eng. Sei. 37, 1250-1256.
                     Boll, D.J., Jensen, R.M., Cordner, L. and Bascom, W.D. (1990). Compression behaviour of single carbon
                       filaments embedded in an epoxy polymer. J. Composite Mater. 24, 208-219.
                     Boukhili, B.,  Hubert,  P. and Gauvin, R. (1991). Loading rate effect as a function of the span-to-depth
                       ratio in three-point bend testing of unidirectional pultruded composites. Composites 22, 39-45.
                     Bright, J.D.,  Shetty, D.K., Griffin, C.W. and Limaye, S.Y. (1989). Interfacial bonding and friction in Sic
                       filament-reinforced ceramic and glass matrix composites. J. Am. Ceram. Soc. 72, 1891-1898.
                     Broutman  L.J.  (1969).  Measurement  of  the  fiber-polymer matrix  interfacial  strength.  In  Interjaces in
                       Composites, ASTM STP 452, ASTM, Philadelphia, PA, pp. 2741.
                     Browning, C.E., Abrahams, F.L. and Whitney, J.M.  (1983). A four-point shear test for graphite/epoxy
                       composites.  In  Composite  Materials:  Quality  Assurance  and  Processing, ASTM  STP 797, ASTM,
                       Philadelphia, PA, pp. 5474.
                     Brun, M.K. and Singh, R.N. (1988). Effect of thermal expansion mismatch and fiber coating on the fiber/
                       matrix interfacial shear stress in ceramic matrix composites. Ah. Ceram. Mater. 3, 506509.
                     Brussat, T.R.,  Chiu,  S.T.  and  Mostovoy, S. (1977). Fracture mechanics for structural adhesive bonds.
                       AFML-TR-77-163, Air Force Materials Laboratory, Wright-Patterson Air Force base, Dayton, OH.
                     Butler, E.P.,  Fuller,  E.R.  and Chan, H.M.  (1990). Interface properties  for ceramic composites from a
                       single-fiber pull-out  test.  In Interfaces in  Composites, Mat.  Res.  SOC. Symp. Proc.,  Vol. 170 (C.G.
                       Pantano and E.J.H.  Chen eds.), MRS, Pittsburgh,  PA. pp.  17-24.
                     Carlsson,  L.A.,  Gillespie, J.W.  and Pipes, R.B.  (1986). On the analysis and design of  the end notched
                       flexure (ENF) specimen for mode I1 testing. J. Composite Mater. 20, 594.
                     Carlsson, L.A. and Gillespie Jr., J.W. (1989). Mode I1 interlaminar fracture of composites. In Application
                       offracture mechanics to composite materials. (K. Friedrich ed.), Elsevier Sci. Pub. New York, pp, 113-
                       157.
                     Chamis,  C.C.  (1974).  Mechanics  of  load  transfer  at  the  interface.  In  Interfuces  of  Polymer  Matrix
                       Composiles, Composite Materials, Vol. 6, Ch. 2, (E.P. Plueddemann ed.), Academic Press, New York.
                     Chamis, C.C. and Sinclair, J.H.  (1976). 10" off-axis test for intralaminar shear characterization  of fiber
                       composites. NASA TN D-8215.
                     Chamis, C.C. and Sinclair, J.H.  (1977).  10" off-axis test for shear properties in fiber composites. Exper.
                       Mech. 17, 339-346.
                     Chen, E.J.H.  and Croman R.B.  (1993). Microdebonding investigation on the effects of thermal residual
                       stress on the bond  strength of a graphitelpolyimide composites. Composites Sci. Technol. 48, 173-
                       179.
   98   99   100   101   102   103   104   105   106   107   108