Probabilistic models with desired physical and chemical properties used to develop new technologies for glass production in aviation | Vestnik Tomskogo gosudarstvennogo universiteta. Chimia – Tomsk State University Journal of Chemistry. 2017. № 9. DOI: 10.17223/24135542/9/2

Probabilistic models with desired physical and chemical properties used to develop new technologies for glass production in aviation

The article shows the energy calculations on the structure of the potential surface energy (PES), which indicate agreement with the theory of restructuring for the structure of glass. Data is given on the anion structure of melts in the modeling experiment, based on semi-empirical and ab initio calculations. It notes the closeness of the results obtained for the two models and their qualitative and quantitative agreement with experimental data. By means of a model experiment, the possibility is shown of constructing probabilistic models, taking into account particularities of structure formation of oxide systems with given physical-chemical properties used for the development of new production technologies of glass cockpits of civil and military aircraft and illuminators for orbital space stations.

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Keywords

расплавы, модификаторы, квантовохимические расчеты, комплекс, структурные фрагменты, стекла, решеточная модель, модельный эксперимент, Melt modifiers, quantum chemical calculations, complex, structural fragments, glass, lattice model systems, model experiment

Authors

NameOrganizationE-mail
Babina Inga A.Department of Mathematics and Natural Sciencesbabina_inga@mail.ru
Всего: 1

References

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 Probabilistic models with desired physical and chemical properties used to develop new technologies for glass production in aviation | Vestnik Tomskogo gosudarstvennogo universiteta. Chimia – Tomsk State University Journal of Chemistry. 2017. № 9. DOI: 10.17223/24135542/9/2

Probabilistic models with desired physical and chemical properties used to develop new technologies for glass production in aviation | Vestnik Tomskogo gosudarstvennogo universiteta. Chimia – Tomsk State University Journal of Chemistry. 2017. № 9. DOI: 10.17223/24135542/9/2

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