Porous Ceramics on the Basis of Low-Melting Clays and Slurries

Number of journal: №4-2017
Autors:

Gur’eva V.A.
Doroshin A.V.
Vdovin K.M.
Andreeva Yu.E.

DOI: https://doi.org/10.31659/0585-430X-2017-747-4-32-36
AbstractAbout AuthorsReferences
Results of the study of possibility to obtain porous wall ceramic materials from the masses on the basis of a composition of low-grade clay raw materials and non-plastic components according to the technology of making the initial raw mix porous and subsequent fixation of the porous structure by burning are presented. Compositions of masses ensuring the obtain- ing of necessary porosity and mechanical strength of a ceramic matrix on the basis of low-melting clays and slurries of different origin have been determined. The need to introduce the aluminum powder into the mass composition as an additional pore-forming additive in an amount of 0.1–1.3% depending on the amount of calcium hydroxide in the mixes is revealed. The reasonability to use the broken glass in an amount of 15–20% for accelerating the process of the ceramic matrix sintering has been determined
V.A. GUR’EVA, Doctor of Sciences (Engineering) (This email address is being protected from spambots. You need JavaScript enabled to view it.),
A.V. DOROSHIN, Engineer,
K.M. VDOVIN, Engineer,
Yu.E. ANDREEVA, Magistrand

Orenburg State University (13, Pobedy Avenue, 460018, Orenburg, Russian Federation)

1. Kuvykin N.A., Bubnov A.G., Grinevich V.I. Opasnye promyshlennye otkhody [Hazardous industrial waste]. Ivanovo: Ivanovo State University of Chemical Technology. 2004. 148 p. 
2. Zhukov A.A. Control and Supervisory activities Results in terms of waste production and consumption management of Department of Russian Natural Supervision across the Orenburg region in the first 9 months and tasks for the fourth quarter of 2012. Orenburg: Department of Russian Natural Supervision. 2012. 6 p. (In Russian). 
3. Poligon po utilizatsii i pererabotke otkhodov bureniya i neftedobychi: Printsipial’nye tekhnologicheskie resheniya. Kn. 3. Razrabotka printsipial’nykh tekhnologicheskikh reshenii po obezvrezhivaniyu i utilizatsii burovykh shlamov i neftezagryaznennykh peskov [The disposal and treatment of waste drilling and oil production: Basic technology solutions. Book 3. Development of fundamental technology solutions for deactivation and disposal of drilling sludge and oil-contaminated sands. Ed. By Saveliev V.N.] Surgut: Oil and gas production. 1996. 101 p. 
4. Sadykov R.K., Sabitov A.A., Kabirov R.R. Prospects of using the mineral-raw material base of haydite raw materials in the Republic of Tatarstan. Stroitel’nye Materialy [Construction Materials]. 2014. No. 5, pp. 4–7. (In Russian). 
5. Petrov V.P. Tokareva S.A. Porous fillers produced from industrial waste. Stroitel’nye Materialy [Construction Materials]. 2011. No. 12, pp. 46–51. (In Russian). 
6. Onatsky C.P. Proizvodstvo keramzita [Production of expanded clay]. Moscow: Stroyizdat. 1971. 305 p. 
7. Gurieva V.A., Dubinetsky V.V., Vdovin K.M. Drilling slurry in production of building ceramic products. Stroitel’nye Materialy [Construction Materials]. 2015. No. 4, pp. 75–77. (In Russian). 
8. Gurieva V.A., Dubinetskiy V.V., Vdovin K.M., Butrimova N.V. Wall ceramic on the basis of highly calcined raw materials of Orenburzhye. Stroitel’nye Materialy [Construction Materials]. 2016. No. 12, pp. 55–57. (In Russian). 
9. Yatsenko N.D., Zubekhin A.P. Scientific bases of innovative technologies of ceramic bricks and the management of its properties depending on chemical and mineralogical composition of materials. Stroitel’nye Materialy [Construction Materials]. 2014. No. 4, pp. 28–31. (In Russian). 
10. Rogovoy M.I. Tekhnologiya iskusstvennykh poristykh zapolnitelei v keramike (Reprintnoe vosproizvedenie izdaniya 1974 g.) [Technology of artificial porous aggregates in ceramics (Reprinted edition 1974)]. Moscow: EKOLIT. 2011. 320 p.

For citation: Gur’eva V.A., Doroshin A.V., Vdovin K.M., Andreeva Yu.E. Porous ceramics on the basis of low-melting clays and slurries. Stroitel’nye Materialy [Construction Materials]. 2017. No. 4, pp. 32–36. DOI: https://doi.org/10.31659/0585-430X-2017-747-4-32-36. (In Russian).


Print   Email