ANNEXE 5 – VISCOÉLASTICITÉ
393
[14] DUFFRÈNE L., GY R., MASNIK J.E., KIEFFER J., BASS J.D., Temperature dependence of the high-frequency viscoelastic behavior of a
soda-lime silica glass, J. Am. Ceram. Soc. 81, 1278–1284 (1998).
[15] DUCROUX J.P., REKHSON S.M., MERAT F.L., Structural relaxation in thermo-rheologically complex materials, J. Non-Cryst. Solids
172–174, 541 (1994).
[16] CORSARO R.D., Volume relaxation of dry and wet boron trioxide in
the glass transformation range following a sudden change of pressure, Phys. Chem. Glasses 17, 13–22 (1976).
[17] GY R., On the equilibrium isothermal compressibility of soda-lime
silicate glass, J. Non-Cryst. Solids 128, 101–108 (1991).
[18] SIMMONS J.H., SIMMONS C.J., Non linear viscous flow in glass forming, Ceram. Bull. 68 (11), 1949 (1989).
[19] GY R., RACAUD J.B., RIOU D., Investigation of rheology of a silicate
glass at 1150
◦ C, XVIIth Proc. Int. Congress on Glass, Vol. 3, p. 471
(1995).
[20] WEBB S.L., DINGWELL D.B., The onset of non-newtonian rheology
of silicate melts. A fiber elongation study, Phys. Chem. Miner. 17,
125–132 (1990).
[21] BOTTINGA Y., Non-newtonian rheology of homogeneous silicate
melts, Phys. Chem. Miner. 20, 454–459 (1994).
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