Page 252 - Engineered Interfaces in Fiber Reinforced Composites
P. 252
Chapter 5. Surface treatments ofJi6ers and effects on composite properties 233
Jones. C., Keily, C.J. and Wang, S.S. (1989). The characterization of an SCS-6/Ti-6Al-4V MMC
interface. J. Mater. Res. 4, 327-335.
Jones, F.R. and Pawson, D. (1989). The effect of surface treatment on the interfacial strength of corrosion
resistant glass fibers in a vinylestcr resin. In Proc. ECCM-3, Developments in the Science und
Technology of Composite, Materials (A.R. Bunsell, P. Lamicq and A Massiah, eds.), Elsevier Appl.
Sci., London.
Kalanta J. and Drzal L.T. (1990a). Structural properties of aramid fibers and their influence on fiber
adhesion. In Proc. ICCI-2, Controlled Interphases in Composite Materials (H. Ishida ed.), Elsevier,
New York, pp. 685-690.
Kalanta J. and Drzal L.T. (1990b). The bonding mechanism of aramid fibers to epoxy matrices. Part I1 -
an experimental investigation. J. Muter. Sci. 25, 4194-4202.
Katzmann. H.A. (1987). Fiber coatings for the fabrication of graphite reinforced magnesium composites.
J. Mater. Sci. 22, 144.
Keller, T.S.. Hoffmann, A.S., Ratner, B.D., McElroy, B.J. (1981). Chemical modification of Kevlar
surfaces for improved adhesion to epoxy resin matrices: I. Surface characterization. In Proc. Intern.
Symp. Polymer Surfaces, Vol. 2 (K.L. Mittal ed.). Plenum Press, New York, pp. 861-879.
Kiescheke, R.R., Somehk. R.E. and Clyne T.W. (1991a). Sputter deposited barrier coatings on Sic
monofilaments for use in reactive metallic matrices - Part I. Optimisation of barrier structurc. Actu
Metall. Muter. 39. 427436.
Kiescheke, R.R., Warwick, C.M. and Clyne T.W. (1991b). Sputter deposited barrier coatings on Sic
monofilaments for use in reactive metallic matrices - part 111. Microstructural stability in composites
based on magnesium and titanium. Actu Metall. Muter. 39, 445452.
Kim. J.K. and Mai, Y.W. (1991a). High strength, high fracture toughness fiber compositcs with intcrfacc
control -- a rcview. Composites Sci. Technol. 41, 333-378.
Kim. J.K. and Mai, Y.W. (1991b). The effect of interfacial coating and temperature on the fracture
behaviors of unidirectional KFRP and CFRP. J. Mater. Sci. 26,47014720.
Kim. J.K. and Mai. Y.W. (1993). Interfaces in composites. In Structure and Properties of Fiber
Composites. Materials Science and Technology, Series Vol. 13, (T.W. Chou ed.), VCH Publishers.
Weinheim, Germany. Ch. 6, pp. 239-289.
KO, Y.S.. Forsman, W.C. and Dziemianowicz, T.S. (1982). Carbon fiber-reinforced composites: effect or
fiber surfacc on polymer properties. Poljjm. Eng. Sci. 22, 805-814.
Koenig, J.L.. Shih, P.T.K. (1971). Raman studies of the glass fiber-silane-resin interface. J. Colloid.
Interface Sci. 36, 247-253.
Koenig, J.L., Emadipour, H. (1985). Mechanical characterization of the interfacial strength of glass
reinforccd composites. Polym. Composites 6, 142-150.
Krukonis, V. (1977). In Boron and Refractory Borides, Springer Verlag, Berlin. p 517.
Ladizcsky, N.H. and Ward, I.M. (1983). A study of the adhesion of drawn polyethylene fiber/polymer
resin systems. J. Muter. Sci. 18, 533-544.
Ladizesky. N.H. and Ward, I.M. (1989). The adhesion behaviour of high modulus polyethylene fibers
following plasma and chcmical treatments. J. Mater. Sri. 24, 3763-3773.
Lancin, M., Bour, J.S. and Thibault-desseaux, J. (1988). HREM characterization of the interface in a Sic
fiber/Ti matrix compositc. In High TemperuturejHigh Performance Composites, Mat. Res. Soc. Simp.
Proc. Vol. 120 (F.D. Lemkey, S.G. Fishman, A.G. Evans and J.R. Strife eds.), MRS, Pittsburgh. PA.
pp. 351-356.
Lee-Sullivan. P. Chian, K.S., Yue. C.Y. and Looi, H.C. (1994). Effects of bromination and hydrolysis
trcatments on the morphology and tensile properties of Kevlar-29 fiber. J. Maw. Sci. Leu. 13. 305-
309.
Li. P.X., Ma. Z.Y. and Liu, G.B. (1989). In Interfhces in Metal Matrix Compo.vite.y. (R.Y. Liu ed.). Thc
3M Society. pp. 307-316.
Li, Q, (1990). In Proc. ICCI-III, ControNed Inrerjuce Structures (H. Ishida ed.), Elsevier Sci. Pub., New
York.
Li, Z.F. and Netravali, A.N. (1992). Surface modification of UHSPE fibers through allylamine plasma
deposition. 11. effect on fiber and fiber/epoxy interface. J. Appl. Polym. Sci. 44, 319--332.

