A model to calculate the viscosity of silicate melts

Our recently developed model to describe the viscosity of silicate melts is extended to describe and predict the viscosities of alkali-rich silicate melts. The model requires one additional binary parameter for each O–SiO system, where is an alkali metal, to a total of three binary parameters per bi...

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Bibliographic Details
Published inInternational journal of materials research Vol. 103; no. 3; pp. 313 - 328
Main Authors Kim, Wan-Yi, Pelton, Arthur D., Decterov, Sergei A.
Format Journal Article
LanguageEnglish
Published De Gruyter 01.03.2012
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Summary:Our recently developed model to describe the viscosity of silicate melts is extended to describe and predict the viscosities of alkali-rich silicate melts. The model requires one additional binary parameter for each O–SiO system, where is an alkali metal, to a total of three binary parameters per binary system alkali oxide – silica. In addition to unary and binary parameters, the model requires two ternary parameters for each alumina-containing ternary system –Al –SiO , where is a basic oxide, to describe the viscosity maxima in these ternary systems due to the Charge Compensation Effect. The viscosity of multicomponent melts and of ternary melts –SiO , where and are basic oxides, is predicted by the model solely from the unary, binary and ternary parameters. The available viscosity data for the alkali-containing subsystems of the Al –CaO–MgO–Na O–K O–SiO system are reviewed. The model reproduces the experimental data for binary and ternary melts and predicts the viscosities of multicomponent melts within experimental error limits. In particular, the viscosities of glass melts and melts of importance for petrology are well predicted by the model.
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ISSN:1862-5282
2195-8556
DOI:10.3139/146.110637