The internal friction and dielec. losses of mixed Li-Na, Li-K, Li-Cs, Li-Ag, Na-K, Na-Cs, and Na-Ag metaphosphate glasses are related to the mixed alkali effect. The magnitude of the mixed peak correlates better with size differences than with mass differences. The intermediate temp. peak is treated as a mixed proton-alkali peak. The large mech. loss peak, appearing when the alkalies are mixed, was attributed to a coupled movement of dissimilar alkali ions and an explanation of the nature of this coupling is proposed. From this model it is predicted that mixed peaks can occur in any elec. insulating material contg. dissimilar charge carriers
A batch of very dry lithium metaphosphate glass, containing 1% potassium metaphosphate, was prepared...
A series of lithium metaphosphate glasses, containing different amounts of water, was prepared. The ...
The internal friction of R2O·Al2O3·6SiO2 glasses was measured from-180° to 700°C at 0.4 Hz. Glasses ...
The internal friction and dielec. losses of mixed Li-Na, Li-K, Li-Cs, Li-Ag, Na-K, Na-Cs, and Na-Ag ...
The internal friction of Li-Na, Li-K, Li-Cs, Li-Ag, Na-Cs, and Na-Ag metaphosphate glasses was measu...
The internal friction of mixed Li-Na, Li-K, Li-Rb, Li-Cs, Na-K, Na-Rb, Na-Cs, and K-Rb silicate glas...
The internal friction and the dielectric losses of Na-K metaphosphate glasses have been investigated...
The internal friction and dielectric losses of Na-K, Li-Na, Li-Cs, Li-K, Na-Cs, K-Cs, Ag-Li, Ag-Na, ...
The internal friction of silicate glasses containing mixtures of Li-Na, Li-K, Li-Rb, Li-Cs, Na-K, Na...
Fibers of Li2O.Al2O3.2SiO2 glass were ion-exchanged for 1 to 300 min in an NaNO3 bath at 366°C. The ...
Several series of glasses with the general formula xR2O · (1 - x)R' O · P2O5 were prepared and the d...
The mixed alkali effect in glass refers to the large, orders of magnitude, changes in many propertie...
The mixed alkali effect in silicate glasses was examined from internal friction measurements made ov...
A batch of very dry lithium metaphosphate glass, containing 1% potassium metaphosphate, was prepared...
A series of lithium metaphosphate glasses, containing different amounts of water, was prepared. The ...
The internal friction of R2O·Al2O3·6SiO2 glasses was measured from-180° to 700°C at 0.4 Hz. Glasses ...
The internal friction and dielec. losses of mixed Li-Na, Li-K, Li-Cs, Li-Ag, Na-K, Na-Cs, and Na-Ag ...
The internal friction of Li-Na, Li-K, Li-Cs, Li-Ag, Na-Cs, and Na-Ag metaphosphate glasses was measu...
The internal friction of mixed Li-Na, Li-K, Li-Rb, Li-Cs, Na-K, Na-Rb, Na-Cs, and K-Rb silicate glas...
The internal friction and the dielectric losses of Na-K metaphosphate glasses have been investigated...
The internal friction and dielectric losses of Na-K, Li-Na, Li-Cs, Li-K, Na-Cs, K-Cs, Ag-Li, Ag-Na, ...
The internal friction of silicate glasses containing mixtures of Li-Na, Li-K, Li-Rb, Li-Cs, Na-K, Na...
Fibers of Li2O.Al2O3.2SiO2 glass were ion-exchanged for 1 to 300 min in an NaNO3 bath at 366°C. The ...
Several series of glasses with the general formula xR2O · (1 - x)R' O · P2O5 were prepared and the d...
The mixed alkali effect in glass refers to the large, orders of magnitude, changes in many propertie...
The mixed alkali effect in silicate glasses was examined from internal friction measurements made ov...
A batch of very dry lithium metaphosphate glass, containing 1% potassium metaphosphate, was prepared...
A series of lithium metaphosphate glasses, containing different amounts of water, was prepared. The ...
The internal friction of R2O·Al2O3·6SiO2 glasses was measured from-180° to 700°C at 0.4 Hz. Glasses ...