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1.
Solar furnace melting and fast-quench techniques have been used to prepare calcium aluminate glasses from 75 mol% CaO to 82 mol% Al2O3, which have been studied by Raman spectroscopy. The CaAl2O4 glass spectrum may be interpreted in terms of a fully-polymerized network of tetrahedral aluminate units, which is depolymerized on addition of CaO component analogous to binary silicate systems. The spectra of glasses with higher alumina content than CaAl2O4 may not be simply interpreted and a structural model is proposed which would be consistent with the glass spectra and with observed crystal structures along the CaAl2O4Al2O3 join. This model suggests formation of highly condensed aluminate tetrahedral on initial addition of alumina, with the appearance of aluminate polyhedra of higher average coordination at higher alumina content. Similar high coordination polyhedral are also suggested for a limited composition range along the CaOCaAl2O4 join. These interpretations are compared with the results of a previous study in the SiO2Al2O3 glass system.  相似文献   

2.
Raman spectra of some ternary and quaternary glasses in the system Na2OCaOMgOAl2O3SiO2 are presented. The spectra are interpreted in terms of the structural alteration of the glass as the composition is altered from the binary end members to more complicated glasses. Addition of CaO and MgO to soda-silica glasses act only to increase the disorder of the network slightly. Addition of Al2O3 greatly modifies the network. In some soda-lime-aluminosiliscate compositions an estimate can be made of the amount of aluminum in four- and six-fold coordination. It is shown that the amounts of four- and sixfold coordinated aluminum depend on the glass composition.  相似文献   

3.
《Journal of Non》1997,217(1):99-105
27Al and 29Si MAS NMR studies were performed on roller-quenched SiO2Al2O3-glasses with Al2O3 contents ranging from 10 to 60 mol% and on SiO2Al2O3Na2O glasses containing 10 mol% Al2O3 and 2.5 to 10 mol% Na2O. Pure aluminium silicate glasses show NMR peaks at 0, 30 and 60 ppm. The frequency distribution of the different Al-sites is not affected by the glass composition. In glasses of the system SiO2Al2O3Na2O the 30 ppm peak decreases to zero as the Na2O content increases. The 30 ppm peak is assigned to distorted triclustered AlO-tetrahedra, rather than to fivefold coordinated Al. Triclustering of tetrahedra may provide for charge neutrality in glasses with molar excess of Al2O3 over Na2O. As charge balance is increasingly achieved by addition of alkali ions, the tendency of tetrahedral triclustering is reduced, reflected by the disappearance of the 30 ppm peak in glasses containing ≥ 7.5 mol% Na2O.  相似文献   

4.
J. Wong 《Journal of Non》1976,20(1):83-100
Room temperature infrared transmission spectra in the range 4000-250 cm?1 of binary phosphosilicate glass (PSG) films deposited by reacting argon- or nitrogen-diluted PH3SiH4O2 mixtures on heated silicon substrates at 300–400° C have been obtained across the whole composition range. In all the as-deposited binary films, an absorption at ≈1300 cm?1 characteristics of the P=O vibration was found to persist, together with a couple of broad absorptions in the regions 1200-900 cm?1 and 500 cm?1. Using a differential infrared technique the broad feature in the higher frequency region has been resolved into two well-defined bands at ≈1100 and 970 cm?1. A detailed analysis shows that the intensity variation of the differential band at ≈1100 cm?1 conforms well, at least to 50 mol% P2O5, to a simple structural model that yields an analytic distribution of POSi linkages as a function of composition by assuming chemical mixing in the vapor-deposited P2O5SiO2 system. Furthermore, the system may be written as (P=O)2 O3SiO2 in order to emphasize the similarity of its coordination scheme with that of the B2O3SiO2 system studied earlier. The nature of these CVD films has also been elucidated by thermal and water treatments.  相似文献   

5.
Once oil is extracted from oil shales, the inorganic solid which remains is from the CaOMgOAl2O3SiO2 system. The material is easily melted and forms a glass upon cooling. Its viscosity in the forming region is actually less than that of commercial soda-lime glass. Shale glasses exhibit excellent dielectric behavior, while their other properties are generally comparable to commercial glasses. These glasses appear to be promising materials for future applications.  相似文献   

6.
The epr spectra of V4+ and radiation centres have been studied in β-eucryptite (LiAlSiO4), β-, γ-spodumene (LiAlSi2O6) and in glasses prepared by the fusion of the single crystals. It is shown that the electronic structures of the vitreous state in the Li2OAl2O3SiO2 system and that of the crystalline forms differ considerably. The change of the electronic structure on crystallization is not direct, but is realized through the intermediate state whose electronic structure differs from that of glasses and crystals.  相似文献   

7.
The EPR and optical spectra of vanadium in glasses of ternary Al2O3P2O5SiO2 and Al2O3P2O5B2O3 systems have been measured. The results were compared with earlier data for vanadium in binary phosphate, aluminophosphate and silicaphosphate glasses and with results of de-Biasi for V4+ in crystalline powder α-crystobalite AlPO4. The superpositions of two hyperfine spectra (ASB-I and ASB-II) were found for many glasses of ternary systems. Both spectra can be attributed to VO2+ ions. The intensity ratio of the ASB-II spectrum to ASB-I depends on glass composition but is great (> 7) for all the glasses. Only the ASB-II spectrum was observed in glasses with low concentration of Al2O3. The spectral parameters of ASB-II spectrum are g| = 1.916–1.921; g 1.980–1.988; A| = (188?190) × 10?4cm?1 and A = (74–77) × 10?4cm?1. Three intense bands at 370, 455 and 700 ans 720 nm observed in these glasses can be attributed to V3+ ions. The excellent agreement of the parameters of the EPR spectrum of V4+ ions in crystalline α-crystobalite AIPO4 and ASB-II spectra in the glasses under study suggest the identical electron structure of the paramagnetic species. This species is believed to be characterized by optical bands at 680 and 790 nm which have been observed by de Biasi. The orbital mixing coefficients indicate strong tetragonal distortion of vanadyl complexes responsible for the ASB-II spectrum. It is assumed that VO2+ ions responsible for this spectrum act as modifiers fitting into the relatively small holes of the three-dimensional networks of phosphate glasses containing no cations of large radii. The microscopic basicity of oxygens in such holes must be about 0.48.  相似文献   

8.
Glass-forming regions of the systems Na2SSiO2 and Na2SB2O3 have been investigated in order to clarify whether Na2S could be substituted for Na2O in sodium silicate or borate glasses, and the results were interpreted in terms of the structures of silicate and borate glasses. No difference was found in the glass-forming range of SiO2 content between the Na2SSiO2 and Na2OSiO2 systems, and the red color of Na2SSiO2 glasses suggests that the formation of polysulfides in the glass structure is probably due to the entrance of sulfur ions in the non-bridging sites of the glass network. On the other hand, not all of the sulfur added to the glass batches could be retained in the Na2SB2O3 glasses and the amount remaining in the glass products changed depending upon the amount of sodium ions in the glasses. Only a trace of sulfur was observed in the glasses containing less than 13 mol% of Na2S in the batches, but the sulfur content in the glasses increased steeply with sodium content up to 35 mol%, reached the maximum and then decreased slowly with sodium content. The insolubility of sulfur in the glasses with low sodium content was interpreted based on the compositional dependence of basicity of alkali-borate glasses, and the change in solubility of sulfur with sodium concentration was explained based on the well-known boron anomaly caused by the change in the coordination state of boron and on the formation of non-bridging oxygens or sulfurs in the glass structure.  相似文献   

9.
The mixed alkali glass system Na2OK2OAl2O3SiO2 was investigated. Density, transformation temperature, refractive index, and chemical durability were studied. Optical absorption and ESR spectra of the CuO-doped glasses were determined.Calculations of the polarizability of O2?, bonding parameters of the Cu2+ complex, and the packing density are presented. It was found that for the mixed alkali glasses, the oxygen- alkali bond has a more ionic character than expected from additivity. This fact enables the non-linear changes of the refractive index, of the shift of the Cu2+ absorption band, and of the covalency to be interpreted as the Na mole fraction is varied. It is also possible to explain qualitatively the density, Tg and chemical durability non-linear variations with change of the Na content by the ionicity deviations of the bond character and the postulated pairs of Na+ and K+ ions in the mixed alkali glasses.  相似文献   

10.
Vickers indentations in some alumiio-borate glasses were studied. Glass compositions are based on the system B2O3Al2O3CaO with replacement of part of all the CaO by alkali oxide or divalent oxide, or replacement of part of B2O3 by SiO2, TiO2 or ZrO2. Trends in Vickers hardness values are correlated with the Littleton softening points of the same glasses. Observations of the indentations indicate the possibility of a flow mechanism for forming indentations.  相似文献   

11.
The structure of glasses within the system Li2O–Al2O3–B2O3–P2O5 has been studied through 31P, 11B and 27Al Nuclear Magnetic Resonance, and the effect of Al2O3 substitution by B2O3 and P2O5 network formers on the structure and properties investigated for a constant Li2O content. Multinuclear NMR results reveal that substitution of Al2O3 for B2O3 and P2O5 network formers in a glass with composition 50Li2O·15B2O3·35P2O5 produces a change in boron environment from four-fold to three-fold coordination. Meanwhile aluminum can be present in four-, five- and six-fold coordinations a higher amount of Al(IV) groups is found for increasing alumina contents. The behavior of the glass transition temperature and electrical conductivity of the glasses has been interpreted as a function of the structural changes induced in the glass network when alumina is substituted for B2O3, P2O5 or both. Small additions of alumina produce a drastic increase in glass transition temperature, while it does not change for [Al2O3] greater than 3 mol.%. However, the electrical conductivity shows very different behavior depending on the type of substitution; it can remain constant when B2O3 content decreases or sharply decrease when P2O5 is substituted by Al2O3, which is attributed to a higher amount of BO3 and phase separation.  相似文献   

12.
Gi-Hyun Kim  Il Sohn 《Journal of Non》2012,358(12-13):1530-1537
The effect of Al2O3 on viscosity in the calcium silicate melt-based system containing Na2O and CaF2 was investigated and correlated with the melt structure using FTIR (Fourier transform infrared) spectroscopy, XPS (X-ray photoelectron spectroscopy), and Raman spectroscopy. Substituting SiO2 with Al2O3 modified the dominant silicate network into a highly structured alumino-silicate structure with the aluminate structure being particularly prevalent at 20 mass% of Al2O3 and higher. As the melts become increasingly polymerized with higher Al2O3 content, the fraction of symmetric Al–O0 stretching vibrations significantly increased and the viscosity increased. XPS showed a decrease in the amount of non-bridged oxygen (O?) but an increase in bridged oxygen (O0) and free oxygen (O2?) with higher Al2O3. Although changes in the structure and viscosity with higher CaO/(SiO2 + Al2O3) were not significant, the symmetric Al–O0 stretching in the [AlO4]5?-tetrahedral units decreased. The apparent activation energy for viscous flow varied from 118 to 190 kJ/mol.  相似文献   

13.
E. Mansour 《Journal of Non》2012,358(3):454-460
A series of glass of the molar formula xAl2O3-(50-x)PbO-25B2O3-25SiO2 with x:2.5–17.5 with step of 2.5 mol.% was prepared and measured for, density, molar volume and infrared absorption. A semiquantitative analysis of the IR spectra was performed. It was found that each oxide would contribute in density with a specific factor. The density factor related to PbO is markedly higher than that of the other two oxides represent the glass skeleton which means that the content of PbO is the main factor affecting the density. The depolymerization of the whole glass skeleton increases with increasing the content of Al2O3. There is a competition between the role of PbO and Al2O3 in changing the value of N4 and the crosslinking of the glass network. The silicate network tends to be distinguished from the reminder of the whole glass network with increasing alumina. The IR band located near 700 cm? 1 was suggested to be due to the vibrations of bridging oxygens between trigonal boron atoms. An essential change in the role of PbO in these glasses from glass modifier to glass former occurred around 12 mol.% Al2O3.  相似文献   

14.
Measurements of the critical stress intensity factor KIc are reported for glasses in the Na2OSiO2, PbOSiO2, ZnOB2O3, PbOB2O3, Na2OGeO2 and 20Na2O?(80 ? x) B2O3 ? xSiO2 systems. The variations of KIc with composition are not directly related to the simultaneous variations of Young's modulus. A tentative interpretation is given.  相似文献   

15.
The structure of Na2OGa2O3SiO2 glasses of four different compositions containing up to 45 mol. % Ga2O3 has been determined by the X-ray diffraction method. The radial distribution function D(r) obtained indicates that Ga3+ ions are in fourfold coordination and GaO4 tetrahedra are formed in these glasses. The reduced intensity function S·i(S) and radial distribution function D(r) which were calculated based on a structural model for A-25, 0.25(Ga2O3)·0.75(Na2O·2SiO2)/3 glass agreed well with the observed ones.  相似文献   

16.
The structural model for the system Na2OB2O3SiO2 suggested by Yun, Feller and Bray is discussed. A different structural model is suggested in this paper the results of which are in better agreement with experiment.  相似文献   

17.
Polarized Raman spectra of x NaAlO2·(100 ? x) GeO2 glasses (x = 0, 5, 10, 15, 20, 25, 33, 42, and 50) are presented. Analyses of the Raman data indicate that the aluminogermanate glasses have three-dimensional network structures consisting of interconnected AlO4 and GeO4 tetrahedra; Na+ ions are present in cavities and charge balance the Al3+ ions. Systematic changes are observed in the frequencies, intensities and polarization characteristics of spectral bands with variations in the NaAlO2 content of these glasses. The antisymmetric stretching mode [νas (TOT), where T = Al, Ge] in the high-frequency region of the spectra (800–1000 cm?1) appears as a doublet consisting of well-defined bands in the spectra of glasses along the entire join. Both components of the high-frequency doublet shift to a lower frequency with increasing NaAlO2 content, indicating that the νas (GeO4) and νas(AlO4) stretching modes are coupled. The variations in the TO force constants and TOT bond angles with change in composition most likely cause the bands to shift. The frequencies of the Raman bands of sodium aluminogermanate glasses are compared with those of the corresponding bands in isostructural sodium gallogermanate glasses. On the basis of this comparison, the origin and delocalization of the vibrational modes producing characteristic Raman bands in the spectra of these glasses are discussed. The changes observed in the Raman spectra of aluminogermanate glasses with variation in NaAlO2 content are analogous to those observed in the spectra of glasses along the NaAlO2SiO2 join.  相似文献   

18.
《Journal of Non》1986,79(3):275-284
The infrared, optical absorption spectra and electrical conductivity of sodium-digerminate glasses containing iron oxide have been studied as a function of iron content. Addition of iron does not introduce any new absorption band in the infrared spectrum of pure sodium-digermanate glass. A small shift of the existing absorptions toward lower wavenumbers is observed. These are in agreement with the spectra of Fe2O3Na2O2SiO reported earlier. The optical absorption spectra also indicated that the non-bridging oxygen present in pure sodium-digermanate glass was unaffected by the addition of Fe2O3 in a small quantity. The DC conductivity measurements revealed “mixed conduction” phenomenon in which ionic as well as electronic conduction occur in the glass.  相似文献   

19.
Ionic distributions of three sorts of oxygens in glasses in the systems Na2OSiO2K2OSiO2 and PbOSiO2 were determined from molar refractivity. The distribution of these oxygen ions in PbOSiO2 glasses was compared with that determined by the XPS method and with the theoretical calculation based on the athermal mixture model. The present result showed good agreement with that by the XPS method when the PbO content was 70 mol % or over, and showed a discrepancy when the PbO content was less than 70 mol %. It was indicated that a theoretical treatment based on a higher approximation that the athermal mixture model is required in order to enable the comparison with experiments for silica contents higher than 50 mol %.  相似文献   

20.
Hong Li  Jinshu Cheng  Liying Tang 《Journal of Non》2008,354(12-13):1418-1423
Extensive corrosion experiments on electrocast alumina–zirconia–silica (AZS) refractories by molten CaO–Al2O3–SiO2 (CAS) and Na2O–CaO–SiO2 (NCS) glasses were carried out at various temperatures under static condition. The features and mechanism of the corrosion were compared and analyzed. The changes of microstructure and phase composition of refractories in the course of the melt corrosion were also studied. X-ray diffraction (XRD), scanning electron microscope (SEM) and chemical analysis were used to characterize the corroded refractory materials and reacted melts. The reasons of alumina–zirconia–silica bricks corroded are the meltdown of their own composition, penetration or permeation of alkali oxide in the glass melt and scouring of the glass melt. The results show that the refractories resistance against corrosion of the oxides like Na2O, K2O or CaO is weak, and that the corrosion mechanism of NCS/AZS is different from that of CAS/AZS. In a static condition, CaO–Al2O3–SiO2 melts corroded alumina–zirconia–silica brick more severely than Na2O–CaO–SiO2. The result provides useful reference to a prospective selection of refractory materials in glass and glass–ceramics manufacture.  相似文献   

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