286
LE VERRE
[76] NAPOLITANO A., HAWKINS E.G., Viscosity of a standard sodalime silica
glass, J. Res. Nat. Bur. Std. 68A, 439–448 (1964).
[77] VARSHNEYA A.K., BURLINGAME N.H., SCHULTZE W.H., Parallel plate
viscometry to study deformation-induced viscosity changes in
glass, Glastech. Ber. 63K, 447–459 (1990).
[78] NEUVILLE D.R., RICHET P., Viscosity and mixing in molten (Ca, Mg)
pyroxenes and garnets, Geochim. Cosmochim. Acta 55, 1011–1019
(1991).
[79] HAGY H.E., Experimental evaluation of beam bending method of
determining glass viscosities in the range 10
8 to 10
15 poises, J. Am.
Ceram. Soc. 46, 93 (1963).
[80] GOODIER J.N., Slow viscous flow and elastic strain, Phil. Mag. 22,
678 (1936).
[81] GUILLEMET C., GY R., LABROT M., SIPP A., NEUVILLE D., RICHET P., Viscosity, configurational entropy and structural relaxation of a silica
sodalime glass, Comptes-rendus XVI
e congrès du verre 2, Bol. Soc.
Esp. Ceram. Vidr. Madrid, 183 (1992).
[82] LAWN B.R., MARSHALL D.B., CHANTIKUL P., Residual stress effects in
sharp contact cracking, J. Mater. Sci. 14, 2225–2235 (1979).
[83] GRIFFITH A.A., The phenomena of rupture and flow in solids, Phil.
Trans. Roy. Soc. (London) A 221, 163 (1920).
[84] MARSH D.M., Plastic flow and fracture of glass, Proc. Roy. Soc. (London) Ser. A 282 (1388), 33–43 (1964).
[85] LAWN B.R., Physics of fracture, J. Am. Ceram. Soc. 66, 83–91 (1983).
[86] HILLIG W.B., Plastic behavior and fracture in glass, in: Microplasticity, Ch. J. Mc Mahon Ed., Interscience publishers (1968).
[87] LAWN B.R., EVANS A.G., A model for crack initiation in elastic/plastic indentation field, J. Mater. Sci. 12 (11), 2195–2199 (1977).
[88] ISHIKAWA H., SHINKAI N., Critical load for median crack initiation in
Vickers indentation of glasses, J. Am. Ceram. Soc. 65, C-124 (1982).
[89] LATHABAI S., RÖDEL J., LAWN B.R., DABBS T., Fracture mechanics for
subthresold indentation flaws, J. Mater. Sci. 26, 2157–2168 (1991).
[90] GIANNAKOPOULOS A.E., LARSSON P.L., VESTERGAARD R., Analysis of
Vickers indentation, Int. J. Solids Struct. 31, 2679–2708 (1994).
[91] INNISS D., ZHONG Q., KURKJIAN C.R., Chemically corroded pristine
silica fibers : blunt or sharp flaws ? J. Am. Ceram. Soc. 76 (12),
3173–3177 (1993).
LE VERRE
[76] NAPOLITANO A., HAWKINS E.G., Viscosity of a standard sodalime silica
glass, J. Res. Nat. Bur. Std. 68A, 439–448 (1964).
[77] VARSHNEYA A.K., BURLINGAME N.H., SCHULTZE W.H., Parallel plate
viscometry to study deformation-induced viscosity changes in
glass, Glastech. Ber. 63K, 447–459 (1990).
[78] NEUVILLE D.R., RICHET P., Viscosity and mixing in molten (Ca, Mg)
pyroxenes and garnets, Geochim. Cosmochim. Acta 55, 1011–1019
(1991).
[79] HAGY H.E., Experimental evaluation of beam bending method of
determining glass viscosities in the range 10
8 to 10
15 poises, J. Am.
Ceram. Soc. 46, 93 (1963).
[80] GOODIER J.N., Slow viscous flow and elastic strain, Phil. Mag. 22,
678 (1936).
[81] GUILLEMET C., GY R., LABROT M., SIPP A., NEUVILLE D., RICHET P., Viscosity, configurational entropy and structural relaxation of a silica
sodalime glass, Comptes-rendus XVI
e congrès du verre 2, Bol. Soc.
Esp. Ceram. Vidr. Madrid, 183 (1992).
[82] LAWN B.R., MARSHALL D.B., CHANTIKUL P., Residual stress effects in
sharp contact cracking, J. Mater. Sci. 14, 2225–2235 (1979).
[83] GRIFFITH A.A., The phenomena of rupture and flow in solids, Phil.
Trans. Roy. Soc. (London) A 221, 163 (1920).
[84] MARSH D.M., Plastic flow and fracture of glass, Proc. Roy. Soc. (London) Ser. A 282 (1388), 33–43 (1964).
[85] LAWN B.R., Physics of fracture, J. Am. Ceram. Soc. 66, 83–91 (1983).
[86] HILLIG W.B., Plastic behavior and fracture in glass, in: Microplasticity, Ch. J. Mc Mahon Ed., Interscience publishers (1968).
[87] LAWN B.R., EVANS A.G., A model for crack initiation in elastic/plastic indentation field, J. Mater. Sci. 12 (11), 2195–2199 (1977).
[88] ISHIKAWA H., SHINKAI N., Critical load for median crack initiation in
Vickers indentation of glasses, J. Am. Ceram. Soc. 65, C-124 (1982).
[89] LATHABAI S., RÖDEL J., LAWN B.R., DABBS T., Fracture mechanics for
subthresold indentation flaws, J. Mater. Sci. 26, 2157–2168 (1991).
[90] GIANNAKOPOULOS A.E., LARSSON P.L., VESTERGAARD R., Analysis of
Vickers indentation, Int. J. Solids Struct. 31, 2679–2708 (1994).
[91] INNISS D., ZHONG Q., KURKJIAN C.R., Chemically corroded pristine
silica fibers : blunt or sharp flaws ? J. Am. Ceram. Soc. 76 (12),
3173–3177 (1993).
