290
LE VERRE
[137] ROSSELAND, Theoretical Astrophysics, Oxford University Press, London (1936).
[138] BANNER D., KLARSFELD S., Influence of composition upon apparent
conductivity and emissivity of glass as a function of thickness and
temperature, in: Thermal conductivity, CREMERS C.J., FINE H.A.,
Eds., pp. 539–551, Plenum Press, New-York (1990).
[139] BLAZEK A., Review of thermal conductivity data in glass, I.C.G., Institut National du Verre, Charleroi, Belgium (1983).
[140] CRANK J., The mathematics of diffusion, Oxford, Clarendon Press
(1956).
[141] DOREMUS R.H., Glass Science, p. 161, Wiley & sons (1973).
[142] FRISCHAT G.H., Sodium diffusion in SiO 2 glass, J. Am. Ceram. Soc.
51, 528–530 (1968).
[143] JOHNSON J.R., BRISTOW R.W., BLAU H.H., Diffusion of ions in some
simple glasses, J. Am. Ceram. Soc. 34, 165–172 (1951).
[144] ANDERSON O.L., STUART D.A., Calculation of activation energy of
ionic conductivity in silica glasses by classical methods, J. Am.
Ceram. Soc. 37 (12), 573–580 (1954).
[145] TERAI R., The mixed alcali effect in the Na 2 O—Cs 2 O—SiO 2 glasses,
J. Non-Cryst. Solids 6 (2), 121–135 (1971).
[146] TERAI R., Self-diffusion of sodium ions and electrical conductivity in
sodium aluminosilicate glasses, Phys. Chem. Glasses 10, 146–152
(1969).
[147] FRISCHAT G.H., Kationenselbstdiffusion in silicate Gläsern, Glastech. Ber. 44, 93–98 (1971).
[148] FRISCHAT G.H., Evidence for calcium and aluminium diffusion in
SIO 2 glass, J. Am. Ceram. Soc. 52, 625 (1969).
[149] YINNON H., COOPER A.R., Oxygen diffusion in multicomponent glass
forming silicates, Phys. Chem. Glasses 21 (6), 204–211 (1980).
[150] MIKKELSEN J.C. Jr, Self diffusivity of network oxygen in vitreous
SiO 2 , Appl. Phys. Lett. 45 (11), 1187–1189 (1984).
[151] BREBEC G., SEGUIN R., SELLA C., BEVENOT J., MARTIN J.C., Diffusion
du silicium dans la silice amorphe, Acta Metall. 28, 327–333 (1980).
[152] LACHARME J.P., C.R. Mesure par radio-isotopes des coefficients de
diffusion de Na et K dans des verres type verre à glace avec remplacement partiel de Na 2 O par K 2 O, Acad. Sci. Ser. C, 270 (16), 1350–
1353 (1970).
LE VERRE
[137] ROSSELAND, Theoretical Astrophysics, Oxford University Press, London (1936).
[138] BANNER D., KLARSFELD S., Influence of composition upon apparent
conductivity and emissivity of glass as a function of thickness and
temperature, in: Thermal conductivity, CREMERS C.J., FINE H.A.,
Eds., pp. 539–551, Plenum Press, New-York (1990).
[139] BLAZEK A., Review of thermal conductivity data in glass, I.C.G., Institut National du Verre, Charleroi, Belgium (1983).
[140] CRANK J., The mathematics of diffusion, Oxford, Clarendon Press
(1956).
[141] DOREMUS R.H., Glass Science, p. 161, Wiley & sons (1973).
[142] FRISCHAT G.H., Sodium diffusion in SiO 2 glass, J. Am. Ceram. Soc.
51, 528–530 (1968).
[143] JOHNSON J.R., BRISTOW R.W., BLAU H.H., Diffusion of ions in some
simple glasses, J. Am. Ceram. Soc. 34, 165–172 (1951).
[144] ANDERSON O.L., STUART D.A., Calculation of activation energy of
ionic conductivity in silica glasses by classical methods, J. Am.
Ceram. Soc. 37 (12), 573–580 (1954).
[145] TERAI R., The mixed alcali effect in the Na 2 O—Cs 2 O—SiO 2 glasses,
J. Non-Cryst. Solids 6 (2), 121–135 (1971).
[146] TERAI R., Self-diffusion of sodium ions and electrical conductivity in
sodium aluminosilicate glasses, Phys. Chem. Glasses 10, 146–152
(1969).
[147] FRISCHAT G.H., Kationenselbstdiffusion in silicate Gläsern, Glastech. Ber. 44, 93–98 (1971).
[148] FRISCHAT G.H., Evidence for calcium and aluminium diffusion in
SIO 2 glass, J. Am. Ceram. Soc. 52, 625 (1969).
[149] YINNON H., COOPER A.R., Oxygen diffusion in multicomponent glass
forming silicates, Phys. Chem. Glasses 21 (6), 204–211 (1980).
[150] MIKKELSEN J.C. Jr, Self diffusivity of network oxygen in vitreous
SiO 2 , Appl. Phys. Lett. 45 (11), 1187–1189 (1984).
[151] BREBEC G., SEGUIN R., SELLA C., BEVENOT J., MARTIN J.C., Diffusion
du silicium dans la silice amorphe, Acta Metall. 28, 327–333 (1980).
[152] LACHARME J.P., C.R. Mesure par radio-isotopes des coefficients de
diffusion de Na et K dans des verres type verre à glace avec remplacement partiel de Na 2 O par K 2 O, Acad. Sci. Ser. C, 270 (16), 1350–
1353 (1970).
