Читать книгу Encyclopedia of Glass Science, Technology, History, and Culture - Группа авторов - Страница 87

References

Оглавление

1 1 Cable, M. (1998). A century of development in glass melting. J. Am. Ceram. Soc. 81: 1083–1094.

2 2 Simpson, W. and Myers, D.D. (1978). The redox number concept and its use by the glass technologists. Glass Technol. 19: 82–85.

3 3 Nemeč, L. and Cincibusová, P. (2009). Glass melting and its innovation potentials: the potential role of glass flow in the sand dissolution process. Ceramics Silikaty 53: 145–155.

4 4 Nemeč, L., Jebavá, M., and Dyrčíková, P. (2013). Glass melting phemomena, their ordering and melting space utilization. Ceramics Silikaty 57: 275284.

5 5 Jebsen‐Marwedel, H. and Brückner, R. (1980). Glastechnische Fabrikationsfehler, “Pathologische” Ausnahmezustände des Werkstoffes Glas und ihre Behebung; Eine Brücke zwischen Wissenschaft, Technologie und Praxis, 229. Berlin: Springer.

6 6 Müller‐Simon, H. (1999). Sulfate fining in soda lime silicate glasses (in German). In: HVG Course 1999, 45–72. Offenbach: Deutsche Glastechnische Gesellschaft.

7 7 Conradt, R. (2008). The industrial glass melting process, Chapter II:24. In: The SGTE Casebook. Thermodynamics at Work (ed. K. Hack). Boca Raton: CRC Press.

8 8 Conradt, R. (2010). Thermodynamics of glass melting. In: Fiberglass and Glass Technology – Energy‐Friendly Compositions and Applications (eds. F.T. Wallenberger and P.A. Bingham), 385–412. Berlin: Springer.

9 9 Conradt, R. (2019). Prospects and physical limits of processes and technologies in glass melting. J. Asian Ceram. Soc. 7: 377–396.

Encyclopedia of Glass Science, Technology, History, and Culture

Подняться наверх