Bibliographie
[1]
MAZIÈRES C., Les solides non cristallins, Presses Universitaires de
France (1978).
[2]
GRANTCHAROVA E., AVRAMOV I., GUTZOW I., Calorimetric study of
vitreous and crystalline sodium metaphosphate NaBO 3 , Thermochimica Acta 102, 249–256 (1986).
[3]
INOUE A., Bulk Amorphous Alloys, preparation and fundamental
characteristics, Trans. Tech. Publications Ltd. (1998).
[4]
ZARZYCKI J., Les verres et l’état vitreux, Masson (1982).
[5]
HAGGERTY J.S., COOPER A.R., Configurational thermal expansion of
three inorganic glasses, in: Physics of Non-Crystalline Solids, PRINS,
J.A. Ed., pp. 436–443, North Holland Pub., Amsterdam (1965).
[6]
TOOL A.Q., Relation between inelastic deformability and thermal
expansion of glass in its annealing range, J. Am. Ceram. Soc. 29,
240–253 (1946).
[7]
NEMILOV S.V., Entropie et structure de valence du verre (en russe),
Fiz. Khim. Stekla 2, 97–109 (1976).
[8]
WEYL W.A., MARBOE E.C., The constitution of glasses, Interscience
Publishers, New-York, vol. I (1962), vol. II/1 (1964), vol. II/2 (1967).
[9]
ANGELL C.A., RAO K.J., Configurational excitations in condenser
matter and the “bond lattice” model for the liquid-glass transition,
J. Chem. Phys. 57, 470–481 (1972).
[10] CHEN H.S., Entropy model for flaw behavior in metallic glasses, J.
Non-Cryst. Solids 22, 135–143 (1976).
[11] GUTZOW I., SCHMELZER J., The vitreous state, Springer (1965).
[12] BESTUL A.B., CHANG S.S., Excess entropy at glass transformation, J.
Chem. Phys., 40, 3731–3733 (1964).
[13] TAMMANN G., Der Glaszustand, Leopold Voss Verlag, Leipzig (1933).
[1]
MAZIÈRES C., Les solides non cristallins, Presses Universitaires de
France (1978).
[2]
GRANTCHAROVA E., AVRAMOV I., GUTZOW I., Calorimetric study of
vitreous and crystalline sodium metaphosphate NaBO 3 , Thermochimica Acta 102, 249–256 (1986).
[3]
INOUE A., Bulk Amorphous Alloys, preparation and fundamental
characteristics, Trans. Tech. Publications Ltd. (1998).
[4]
ZARZYCKI J., Les verres et l’état vitreux, Masson (1982).
[5]
HAGGERTY J.S., COOPER A.R., Configurational thermal expansion of
three inorganic glasses, in: Physics of Non-Crystalline Solids, PRINS,
J.A. Ed., pp. 436–443, North Holland Pub., Amsterdam (1965).
[6]
TOOL A.Q., Relation between inelastic deformability and thermal
expansion of glass in its annealing range, J. Am. Ceram. Soc. 29,
240–253 (1946).
[7]
NEMILOV S.V., Entropie et structure de valence du verre (en russe),
Fiz. Khim. Stekla 2, 97–109 (1976).
[8]
WEYL W.A., MARBOE E.C., The constitution of glasses, Interscience
Publishers, New-York, vol. I (1962), vol. II/1 (1964), vol. II/2 (1967).
[9]
ANGELL C.A., RAO K.J., Configurational excitations in condenser
matter and the “bond lattice” model for the liquid-glass transition,
J. Chem. Phys. 57, 470–481 (1972).
[10] CHEN H.S., Entropy model for flaw behavior in metallic glasses, J.
Non-Cryst. Solids 22, 135–143 (1976).
[11] GUTZOW I., SCHMELZER J., The vitreous state, Springer (1965).
[12] BESTUL A.B., CHANG S.S., Excess entropy at glass transformation, J.
Chem. Phys., 40, 3731–3733 (1964).
[13] TAMMANN G., Der Glaszustand, Leopold Voss Verlag, Leipzig (1933).
