Development of a New Composition of Engobe on the Basis of Cryolite and Anorthosite

Number of journal: №4-2015
Autors:

Pleshko M.V.
Pleshko M.S.

DOI: https://doi.org/10.31659/0585-430X-2015-724-4-78-81
УДК: 666.3.017, 666.3.019

 

AbstractAbout AuthorsReferences
The need for using the engobe for manufacturing ceramic tiles according to the technology of rapid single firing with the use of red-burning raw materials is demonstrated. A new coating composition with improved characteristics of decorative and physical-mechanical properties has been developed; artificial technical cryolite instead of expensive frit is used in it and Turkish feldspar and alumina are partially replaced with anorthosite. Optimum formulation has been selected on the basis of the complex of laboratory study; it includes feldspar MAN/19, zirconium silicate NATA/4, Vladimirovskaya clay VKS-2, technical alumina of G-0 brand (UAZ-SUAL), Glukhovetsky kaolin KN-83, anorthosite, artificial technical cryolite, and quartz sand VS-050-1. The use of the developed composition makes it possible to ensure high qualitative indexes of the ceramic coating at low self-cost of initial raw materials.
M.V. PLESHKO, Engineer (This email address is being protected from spambots. You need JavaScript enabled to view it.)
M.S. PLESHKO, Doctor of Science (Engineering) (This email address is being protected from spambots. You need JavaScript enabled to view it.)

Rostov State Transport University (2, Rostovskogo Strelkovogo Polka Narodnogo Opolcheniya Square, Rostov-na-Donu, 344038, Russian Federation)

1. Solodskij N.F., Shamrikov A.S. Raw materials and ways to improve the efficiency of production of building ceramics. Steklo i keramika. 2009. No. 1, pp. 26–29. (In Russian).
2. Zhukov A.D., Gorbunov G.I., Belash N.A. Energy-saving technology of ceramic tiles. Vestnik MGSU. 2013. No. 10, pp. 122–130. (In Russian).
3. Galenko A.A., Verchenko A.V. Improvement of production technology of ceramic building materials single firing. Izvestija vuzov. Severo-Kavkazskij region. Tehnicheskie nauki. 2011. No. 4, pp. 88–91. (In Russian).
4. Pleshko M.V., Pleshko M.S. Ceramic materials based on single-firing gabbro-dolerita and moderately red-burning clay. Steklo i keramika. 2015. No. 1, pp. 21–24. (In Russian).
5. Zubehin A.P., Kulikov V.A., Popova L.D. Development of angoba for ceramic tiles. Steklo i keramika. 2003. No. 2, pp. 15–17. (In Russian).
6. Adylov G.T., Menosmanova G.S., Riskiev T.T., Rumi M.H., Fajziev Sh.A. Prospects of expanding the raw material base for the ceramics industry. Steklo i keramika. 2010. No. 2, pp. 29–31. (In Russian).
7. Golenko A.A. Development of angoba for veneering ceramic tiles single-fired. Tehnicheskie nauki. 2010. No. 1, pp. 88–91. (In Russian).
8. Bojarko G.Ju., Hat’kov V.Ju. Production and consumption of fluoride mineral resources in Russia. Part 2. Izvestija Tomskogo politehnicheskogo universiteta. 2004. Vol. 307. No. 2, pp. 165–169. (In Russian).
9. Nikiforova Je.M., Eromasov R.G., Stupko O.V. Phase transformations in the system: polymineral loam soil impurity-mineralizer Sovremennye problemy nauki i obrazovanija. 2013. No. 1, pp. 51–59. (In Russian).
10. Bubnova T.P., Garanzha A.V. Features of technological mineralogy anorthosite - raw materials, multi-purpose. New methods of technological mineralogy in the evaluation of metallic ores and industrial minerals: a collection of scientific articles. According to the materials of III Russian seminar on technological mineralogy. Petrozavodsk. 2009, pp. 94–97. (In Russian).
11. Skamnickaja L.S., Bubnova T.P. Composites on the basis of anorthosites and their properties. Stroitel’nye Materialy [Construction Materials]. 2012. No. 1, pp. 64–69. (In Russian).

For citation: Pleshko M.V., Pleshko M.S. Development of a New Composition of Engobe on the Basis of Cryolite and Anorthosite. Stroitel’nye Materialy [Construction Materials]. 2015. No. 4, pp. 78-81. DOI: https://doi.org/10.31659/0585-430X-2015-724-4-78-81


Print   Email