Page 167 - Fiber Fracture
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                Gupta, P.K.  (1987) Combined effect of flaw distribution and diameter variation on the statistics of glass fiber
                  strength. J. Am. Ceram. Soc., 70 486-492.
                Gupta, P.K.  (1988) Glass fibers for composite materials. In: Fibre Reinforcements for Composite Marerials,
                  pp.  19-70,  A.R.  Bunsell (Ed.). Elsevier, Amsterdam.
                Gupta, P.K.  (1994) Fractography of fiberglass. In: Fractography of Glass, pp.  185-206,  R.C. Bradt and R.E.
                  Tressler (Eds.). Plenum Press, New York.
                Gupta, P.K.,  Inniss, D., Kurkjian,  C.R.  and Brownlow, D.L.  (1994) Determination of  crack velocity as a
                  function of stress intensity from static fatigue data. J. Am. Ceram. SOC., 77: 2445-2449.
                Gupta, P.K.,  Inniss, D.,  Kurkjian, C.R.  and Zhong, Q. (2000) Nanoscale roughness of oxide glass surfaces.
                  J. Noncryst. Solids, 262: 200-206.
                Hecht, J. (1999) City ofLight - The Story ofFiber Optics. Oxford University Press, New York.
                Hertzberg, R.W. (1989) Deformation and Fracture Mechanics of Engineering Materials. Wiley, New York.
                Hibino, Y.  and Hanafusa, H.  (1985) Raman  study on silica optical fibers subjected to high tensile stress.
                  Appl. Phys. Len., 47: 812-814.
                Hibino, Y.,  Sakaguchi, S. and Tajima, Y.  (1984) Crack growth in silica glass under dynamic loading. J. Am.
                  Cerm. SOC., 67: 64-68.
                Hollinger, D.L. and Plant, H.T.  (1964) The role of stress corrosion in glass fibers. Proc. SPI-19, 11 A,  1-14.
                Hunt, R.A.  and McCartney, L.N.  (1979) A new approach to Weibull’s statistical theory of brittle fracture.
                  Int. J. Fract., I5: 365-375.
                Inniss, D.,  Zhong, Q.  and Kurkjian, C.R. (1993) Chemically corroded pristine silica fibers: blunt  or sharp
                  flaws. J. Am. Cemm. SOC., 76: 3173-3177.
                Izawa, T. and Sudo, S. (1987) Optical Fibers: Materials and Fabrication. KTK Scientific Publishers, Tokyo.
                Jakus, K.E.,  Ritter, J.E.  and  Sullivan, J.M.  (1981) Dependency of  fatigue predictions on the form of  the
                  crack velocity equation. J. Am. Cemm. SOC., 64 372-374.
                Katz, J.I.  (1998) Statistics and microphysics of the fracture of glass. J. Appl.  Phys., 84 1928-1931.
                Kokura, K.,  Tomozawa, M. and MacCrone, R.K.  (1989) Defect formation in Si02 glass during fracture. J.
                  Noncryst. Solids. 11 1: 269-276.
                Kurkjian, C.R.  (1985) Strength oflnorganic Glass. Plenum, New York.
                Kurkjian, C.R.  and Inniss, D. (1992) Strength and fatigue of silica. In:  The Physics of  Noncrystalline Solids,
                  pp. 649-653,  L.D.  Pye, W.C.  LaCourse and H.J.  Stevens (Eds.). Taylor and Francis, Philadelphia, PA.
                Kurkjian, C.R.  and Paek, U.C.  (1983) Single-valued strength of perfect silica fibers. Appl.  Phys.  Lett., 42
                  25 1-253.
                Kurkjian, C.R.,  Krause, J.T.  and Matthewson, M.J.  (1989) Strength and  fatigue of  silica optical fibers. J.
                  Lightwave Technol., 7:  1360-1370.
                Kurkjian, C.R.,  Simpkins, P.G. and Inniss, D. (1993) Strength, degradation, and coating of silica lightguides.
                  J. Am. Cerarn. SOC., 76 1106-1  112.
                Lawn, B. (1993) Fracture of  Brittle Solids. Cambridge University Press, Cambridge.
                Lowenstein, K.L.  and  Dowd,  J.  (1968) An  investigation of  the  relationship between glass  fiber tensile
                  strength, the temperature of the glass from which the fiber is drawn, and fiber diameter. Glass Technol., 9:
                  164-171.
                Marder, M. (1996) Statistical mechanics of cracks. Phys. Rev. E, 54 3442-3454.
                Matthewson,  M.J.,  Kurkjian,  C.R.  and  Gulati,  S.T.  (1986)  Strength  measurement  of  optical  fibers  by
                  bending. J. Am. Ceram. Soc., 69: 815-821.
                Mecholsky, J.J.  (1994) Quantitative fractographic analysis of fracture origins in glass. In: Fractography  of
                  Glass, pp. 37-73,  R.C. Bradt and R.E. Tressler (Eds.). Plenum Press, New York,
                Mecholsky, J.J.,  Freiman, S.W.  and Morey, S.M. (1979) Fracture surface analysis of optical fibers. In: Fiber
                  Optics, pp.  187-207,  B. Bendow and S.S. Mitra (FAs.). Plenum Press, New York.
                Michalske, T.A.,  Smith, W.L.  and Bunker,  B.C.  (1991) Fatigue mechanisms in high  strength silica-glass
                  fibers. J. Am. Cerm. SOC., 74 1993- 1996.
                Muraoka, M.  and Abe, H.  (1996) Subcritical crack growth in silica optical fibers in a wide range of crack
                  velocities. J. Am. Ceram. Sm,, 79 51-57.
                Otto, W.H.  (1955) Relationship of  tensile  strength of  glass  fibers to  diameter. J.  Am.  Ceram.  Soc,, 38:
                  122- 124.
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