284
LE VERRE
[45] SOSMAN R., The properties of silica, Chemical Catalog Company,
Reinhold Publishing Co., New York, 437 p. (1927).
[46] MALLINDER F.P., PROCTOR B.A., Elastic constants of fused silica as a
fonction of large tensile strain, Phys. Chem. Glasses 5 (4), 91 (1964).
[47] BRENNER S.S., J. Appl. Phys. 27, 1484 (1956).
[48] ERNSBERGER F.M., Strength of glasses, Proc. 8th international congress on glass, Society of glass technology, Sheffield (1969).
[49] VARSHNEYA A.K., Fundamentals of inorganic glasses, Academic
Press Inc., 171 p. (1993).
[50] LIVSHITS V.Y. et al., Acoustic and elastic properties of glasses in the
Na 2 O—Al 2 O 3 —SiO 2 system Sov. J. Glass Phys. Chem. 8, 463–468
(1982).
[51] HOVESTADT H., Jena glass and its scientific and industrial applications, traduction anglaise par EVERETT J.D., Mac Millan and Co.,
Londres (1902).
[52] SHELBY J.E., DAY D.E., Mechanical relaxation in mixed-alcali silicate glasses, J. Am. Ceram. Soc. 52, 169–174 (1969).
[53] FITZGERALD J.V., Anelasticity of glass ; II. Internal friction and
sodium ion diffusion in tank plate glass, a typical soda-lime-silica
glass, J. Am. Ceram. Soc. 34, 314–319, 339–342, 388–391 (1951).
[54] WEBER N., GOLDSTEIN M., Stress-induced migration and partial
molar volume of sodium ions in glass, J. Chem. Phys. 41, 2898–
2901 (1964).
[55] KIRBY P.L., Internal friction in glass, part II. Flexural and torsional
vibrations, J. Soc. Glass Technol. 38, 383–420 (1954).
[56] SEIFERT F.A., MYSEN B.O., VIRGO D., Raman study of densified
vitreous silica, Phys. Chem. Glasses 24, 141–145 (1983).
[57] SUSMAN S., VOLIN K.J., LIEBERMANN R.C., GWANMESIA G.P., YANBIN
WANG, Structural changes in irreversibly densified fused silica:
implications for the chemical resistance of high level nuclear waste
glasses, Phys. Chem. Glasses 31, 144–150 (1990).
[58] MACKENZIE J.D., High-pressure effects on oxide glasses : I. Densification in rigid state, J. Am. Ceram. Soc. 46 (10), 461–470 (1963).
[59] BRUCKNER R., Mechanical properties of glasses, in: Materials Science
and Technology 9, p. 667, CAHN R.W., HAASEN P., KRAMER J., Eds.
(1976).
[60] UHLMANN D.R., Densification of alcali silicate glasses at high pressure, J. Non-Cryst. Solids 13, 89–99 (1973–1974.)
LE VERRE
[45] SOSMAN R., The properties of silica, Chemical Catalog Company,
Reinhold Publishing Co., New York, 437 p. (1927).
[46] MALLINDER F.P., PROCTOR B.A., Elastic constants of fused silica as a
fonction of large tensile strain, Phys. Chem. Glasses 5 (4), 91 (1964).
[47] BRENNER S.S., J. Appl. Phys. 27, 1484 (1956).
[48] ERNSBERGER F.M., Strength of glasses, Proc. 8th international congress on glass, Society of glass technology, Sheffield (1969).
[49] VARSHNEYA A.K., Fundamentals of inorganic glasses, Academic
Press Inc., 171 p. (1993).
[50] LIVSHITS V.Y. et al., Acoustic and elastic properties of glasses in the
Na 2 O—Al 2 O 3 —SiO 2 system Sov. J. Glass Phys. Chem. 8, 463–468
(1982).
[51] HOVESTADT H., Jena glass and its scientific and industrial applications, traduction anglaise par EVERETT J.D., Mac Millan and Co.,
Londres (1902).
[52] SHELBY J.E., DAY D.E., Mechanical relaxation in mixed-alcali silicate glasses, J. Am. Ceram. Soc. 52, 169–174 (1969).
[53] FITZGERALD J.V., Anelasticity of glass ; II. Internal friction and
sodium ion diffusion in tank plate glass, a typical soda-lime-silica
glass, J. Am. Ceram. Soc. 34, 314–319, 339–342, 388–391 (1951).
[54] WEBER N., GOLDSTEIN M., Stress-induced migration and partial
molar volume of sodium ions in glass, J. Chem. Phys. 41, 2898–
2901 (1964).
[55] KIRBY P.L., Internal friction in glass, part II. Flexural and torsional
vibrations, J. Soc. Glass Technol. 38, 383–420 (1954).
[56] SEIFERT F.A., MYSEN B.O., VIRGO D., Raman study of densified
vitreous silica, Phys. Chem. Glasses 24, 141–145 (1983).
[57] SUSMAN S., VOLIN K.J., LIEBERMANN R.C., GWANMESIA G.P., YANBIN
WANG, Structural changes in irreversibly densified fused silica:
implications for the chemical resistance of high level nuclear waste
glasses, Phys. Chem. Glasses 31, 144–150 (1990).
[58] MACKENZIE J.D., High-pressure effects on oxide glasses : I. Densification in rigid state, J. Am. Ceram. Soc. 46 (10), 461–470 (1963).
[59] BRUCKNER R., Mechanical properties of glasses, in: Materials Science
and Technology 9, p. 667, CAHN R.W., HAASEN P., KRAMER J., Eds.
(1976).
[60] UHLMANN D.R., Densification of alcali silicate glasses at high pressure, J. Non-Cryst. Solids 13, 89–99 (1973–1974.)
