Page 108 - Engineered Interfaces in Fiber Reinforced Composites
P. 108

Chapter 3.  Measurements  of  interfacelinterlaminar properties   91

                Qiu, Y. and Schwartz, P.  (1991).  A new method  for study of the fiber-matrix  interface in composites:
                  Single fiber pull-out from a microcomposite. J. Adhesion Sci. Technol. 5, 741-756.
                Qiu, Y. and  Schwartz,  P.  (1993). Single fiber pull-out  from  a  microcomposite  test.  Composites  Sci.
                  Technol. 48, 5-10.
                Rao,  V.,  Herrera-Franco,  P.,  Ozzello,  A.D.  and  Drzal,  L.T.  (1991).  A  direct  comparison  of  the
                  fragmentation  test and the microbond  pull-out test for determining the interfacial shear strength. .I.
                  Adhesion, 34, 65-77.
                Ripling, E.J., Mostovoy,  S. and Patrick,  R.L. (1964). Measuring fracture toughness of adhesive joints.
                  Mater. Research and Standarh, p.  129.
                Roman,  I.  and  Aharonov,  R.  (1992).  Mechanical  interogation  of  interfaces  in  monofilament  model
                  composites of continuous Sic fiber-aluminium  matrix. Acta Metull. Mater. 40, 477485.
                Rosen, B.W. (1964). Tensile failure of fibrous composites. AIAA J. 2,' 1985-1991.
                Rosen,  B.W.  (1972).  A  simple  procedure  for  experimental  determination  of  the  longitudinal  shear
                  modulus of unidirectional composites. J. composites Mater. 6, 552-554.
                Russell, A.J. and Street, K.N. (1984). Factors affecting the interlaminar fracture energy of graphite/epoxy
                  laminates.  In  Proc.  4th  Intern.  Con$  on  Composite  Materinls.  (T.  Hayashi,  K.  Kawata  and  S.
                  Umekawa eds.), Japan Society of Composites Materials, Tokyo, p.  129.
                Russell, A.J. and Street, K.N. (1985). Moisture and temperature effects on the mixed-mode delamination
                  fracture of unidirectional graphite/epoxy.  In Delamination and Debonding of Materials, ASTM STP
                  876 (W.S.  Johnson ed.),  ASTM, Philadelphia, PA, pp. 349-372.
                Sandorf. P.E. (1980). Saint-Venant effects in an orthotropic beam. J. Composite Muter. 14, 199-212.
                Sastry,  A.M.,  Phoenix  S.L.  and  Schwartz,  P.  (1993).  Analysis  of  interfacial  failure  in  a  composite
                  microbundle pull-out experiment. Composites Sci. Technol. 48, 237-25 1.
                Sattar, S.A. and Kellogg, D.H.  (1969). The effect of geometry on the mode of failure of composites in
                  short  beam  shear  test.  In  Composite  Materials:  Testing  and  Design,  ASTM  STP  460,  ASTM,
                  Philadelphia, PA, pp. 62-71.
                Scherf, J., Cohen, Y.  and Wagner, H.D. (1992). Interfacial strength measurements in poly (p-phenylene
                  benzobisthiazole)/epoxy composites. Intern. J. Adhesion Adhesive, 12, 25 1-256.
                Scherf, J. and Wagner,  H.D. (1992). Interpretation  of fiber fragmentation  in carbon/epoxy  single fiber
                  composites: Possible fiber pre-tension effects. Polym. Eng. Sci. 32, 298-304.
                Shafry, N.,  Brandon, D.G.  and Terasaki,  M. (1989). Interfacial friction and debond strength of aligned
                  ceramic matrix composites, Euro-Ceramics, Vol. 3, Engineering Ceramics (G. de With, R.A. Terpstra
                  and R. Metselaar eds.), Elsevier, London, pp. 453457.
                Shih, G.C. and Ebert, L.J. (1986). Interface strength effects on the compressive-flexurelshear failure mode
                  transition  of composites subjected to four-point bending. J. Mater. Sci. 21, 3957-3965.
                Sims,  D.F.  (1 973).  In-plane  shear  stress-strain  response  of  unidirectional  composite  materials.  J.
                  Composite Mater. 7, 124-128.
                Slepetz, J.M., Zegas, T.F. and Rovello, R. (1978). In-plane shear test for composite materials, Report No.
                  AMMRC TR78-30, Army Materials and Mechanics Research Center, Watertown, MA (quoted in Lee
                  and Munro (1990)).
                Spigel, B.S.,  Sawyer, J.W. and Prabhakaran, P. (1985). An investigation of the Iosipescu and asymmetric
                  four-point  bend  tests  for  composite  materials.  In  Proc.  1985  SEM  Spring  Con$  Experimental
                  Mechanics, Society of Experimental Mechanics, pp. 833-843.
                Stumpf,  H.  and  Schwartz, P.  (1993). A  Monte Carlo  simulation  of  the  stress rupture  of  seven fiber
                  microcomposites. Composites Sei.  Technol. 49, 25 1-263.
                Sullivan, J.L., Kao, B.G.  and van Oene, H. (1984). Shear properties and a stress analysis obtained from
                  vinyl-ester Iosipescu specimens. Exper. Mech. 24, 223-232.
                Termonia, Y. (1987). Theoretical study of the stress transfer in single fiber composites. J. Mater. Sci. 22,
                  504508.
                Termonia, Y. (1993). Dependence of fiber critical length on modulus in single fiber composites. J. Mater.
                  Sei. Lett. 12, 132-733.
                Vautey, P. and Favre, J.P. (1990). Fiberlmatrix load transfer in thermoset and thermoplastic composites-
                  single fiber models and hole sensitivity of laminates. Composites Sci. Technol. 38, 271-288.
   103   104   105   106   107   108   109   110   111   112   113