392
LE VERRE
Bibliographie
[1] REKHSON S.H., Viscoelasticity of glass, in: Glass Science and Technology, Vol. 3, UHLMANN, D.R. et KREIDL N.D. (Eds.), pp. 1–117,
Academic Press, New York (1986).
[2] KURKJIAN C.R., Relaxation of torsional stress in the transformation
range of a soda-lime-silica glass, Phys. Chem. Glasses 4, 128–136
(1963).
[3] REKHSON S.H., GONCHUKOVA N.O., CHERNOUSOV M.A., Creep and
stress relaxation in glass in and below transition region, 11th Proc.
Int. Cong. Glass, Prague 1, 329–339 (1977).
[4] BAUMGAER TEL M., WINTER H.H., Determination of discrete relaxation and retardation time spectra from dynamic mechanical data,
Rheol. Acta 28 (6) 511–519 (1989).
[5] GY, R., DUFFRÈNE, L., LABROT, M., New insights into the viscoelasticity of glass, J. Non-Cryst. Solids 175, 103–117 (1994).
[6] DUFFRÈNE L., GY R., Viscoelastic constants of a soda-lime silica
glass, J. Non-Cryst. Solids 211, 30–38 (1997).
[7] ROUXEL T., SANGLEBŒUF J.C., The brittle to ductile transition in a
soda-lime-silica glass, J. Non-Cryst. Solids 271, 224–235 (2000).
[8] DE BAST J., GILARD P., Rhéologie du verre sous contrainte dans
l’intervalle de transformation, IRSIA, Comptes rendus de recherches
n
◦ 32, Bruxelles (1965).
[9] MILLS J.J., Low frequency storage and loss moduli of sodasilica glasses in the transformation range, J. Non-Cryst. Solids 14,
255–267 (1974).
[10] VAN DEN BRINK J.P., Master stress relaxation function of silica
glasses, J. Non-Cryst. Solids 196, 210–215 (1996).
[11] TAUKE J., LITOVITZ T.A., MACEDO P.B., Viscous relaxation and nonarrhenius behavior in B 2 O 3 , J. Am. Ceram. Soc. 51, 158–163 (1968).
[12] IDE J.M., Velocity of sound in rocks and glasses as a function of
temperature, J. Geol. 45, 689 (1937).
[13] HUANG Y.Y., HUNT J.L., STEVENS J.R., Determination of elastic
constants in isotropic silicate glasses by Brillouin scattering, J. Appl.
Phys. 44, 3589 (1973).
LE VERRE
Bibliographie
[1] REKHSON S.H., Viscoelasticity of glass, in: Glass Science and Technology, Vol. 3, UHLMANN, D.R. et KREIDL N.D. (Eds.), pp. 1–117,
Academic Press, New York (1986).
[2] KURKJIAN C.R., Relaxation of torsional stress in the transformation
range of a soda-lime-silica glass, Phys. Chem. Glasses 4, 128–136
(1963).
[3] REKHSON S.H., GONCHUKOVA N.O., CHERNOUSOV M.A., Creep and
stress relaxation in glass in and below transition region, 11th Proc.
Int. Cong. Glass, Prague 1, 329–339 (1977).
[4] BAUMGAER TEL M., WINTER H.H., Determination of discrete relaxation and retardation time spectra from dynamic mechanical data,
Rheol. Acta 28 (6) 511–519 (1989).
[5] GY, R., DUFFRÈNE, L., LABROT, M., New insights into the viscoelasticity of glass, J. Non-Cryst. Solids 175, 103–117 (1994).
[6] DUFFRÈNE L., GY R., Viscoelastic constants of a soda-lime silica
glass, J. Non-Cryst. Solids 211, 30–38 (1997).
[7] ROUXEL T., SANGLEBŒUF J.C., The brittle to ductile transition in a
soda-lime-silica glass, J. Non-Cryst. Solids 271, 224–235 (2000).
[8] DE BAST J., GILARD P., Rhéologie du verre sous contrainte dans
l’intervalle de transformation, IRSIA, Comptes rendus de recherches
n
◦ 32, Bruxelles (1965).
[9] MILLS J.J., Low frequency storage and loss moduli of sodasilica glasses in the transformation range, J. Non-Cryst. Solids 14,
255–267 (1974).
[10] VAN DEN BRINK J.P., Master stress relaxation function of silica
glasses, J. Non-Cryst. Solids 196, 210–215 (1996).
[11] TAUKE J., LITOVITZ T.A., MACEDO P.B., Viscous relaxation and nonarrhenius behavior in B 2 O 3 , J. Am. Ceram. Soc. 51, 158–163 (1968).
[12] IDE J.M., Velocity of sound in rocks and glasses as a function of
temperature, J. Geol. 45, 689 (1937).
[13] HUANG Y.Y., HUNT J.L., STEVENS J.R., Determination of elastic
constants in isotropic silicate glasses by Brillouin scattering, J. Appl.
Phys. 44, 3589 (1973).
