Ceramic Brick of Semi-dry Pressing Based on a Composition of Aluminosilicate Raw Materials and the Mineral Product of Drilling Waste

Number of journal: 9-2023
Autors:

Gur’eva V.A.,
Dubinetskiy V.V.

DOI: https://doi.org/10.31659/0585-430X-2023-817-9-18-22
УДК: 691.42

 

AbstractAbout AuthorsReferences
The results of scientific studies of the effect of activated carbonate-containing mineral product of drilling waste (ACMPOB) in a composition with low-melting loam on phase and structure formation under conditions of low-temperature synthesis, properties of ceramic bricks intended for the construction of wall structures of buildings and structures are presented. As a result of processing the carbonate-containing drilling waste with a 6% HCl solution, optimizing the compositions of molding masses, technological parameters of semi-dry pressing, drying and firing, the formation of crystalline anorthite- and wollastonite-like neoplasms is achieved, which ensures the production of ceramic bricks that meet the requirements of GOST 530–2012: strength grade M 125–150, density 1.6–1.9 g/cm3, water absorption 12–14%, frost resistance F75.
V.A. GUR’EVA1, Doctor of Sciences (Engineerig) (This email address is being protected from spambots. You need JavaScript enabled to view it.);
V.V. DUBINETSKIY2, senior lecturer

1 Orenburg State University (13, Avenue Pobedy, Orenburg, 460018, Russian Federation)
2 Buzuluk Humanitarian and Technological Institute (BHTI) (branch) of OSU (35, Rabochaya Street, Buzuluk, Orenburg Region, 461040, Russian Federation)

1. Semenov A.A. The state of the Russian market of ceramic wall materials. Stroitel’nye Materialy [Construction Materials]. 2016. No. 8, pp. 9–15. (In Russian). DOI: https://doi.org/10.31659/0585-430X-2016-740-8-9-15
2. Kolyada S.V. Prospects for the development of production of building materials in Russia until 2020. Stroitel’nye Materialy [Construction Materials]. 2008. No. 7, pp. 4–8. (In Russian).
3. Turchaninov V.I. Construction materials from industrial waste and local raw materials of the Orenburg region. Orenburg: OSU, 2006. 150 p.
4. Dubinetsky V.V., Guryeva V.A., Vdovin K.M. Drilling mud in the production of construction ceramics products. Stroitel’nye Materialy [Construction Materials]. 2015. No. 4, pp. 75–76. (In Russian).
5. Guryeva V.A., Dubinetsky 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. 55–59. (In Russian).
6. Salakhov A.M. Increasing the strength of building ceramic products: from theory to practice. Vestnik of Kazan Technological University. 2012. No. 5, pp. 18–21. (In Russian).
7. Gur’eva V.A., Dubinetckiy V.V. Chemical method for activation of carbonate-containing raw materials in the technology of production of ceramic bricks by semi-dry pressing. Stroitel’nye Materialy [Construction Materials]. 2021. No. 9, pp. 28–31. (In Russian). DOI: https://doi.org/10.31659/0585-430X-2021-795-9-28-31
8. Yatsenko N.D., Zubekhin A.P. Scientific bases of innovative technologies of ceramic bricks and management of its properties depending on the chemical and mineralogical composition of raw materials. Stroitel’nye Materialy [Construction Materials]. 2014. No. 4, pp. 28–31.
9. Pavlov V.F. Investigation of reactions occurring during the firing of masses based on kaolinite clays with the addition of calcium, sodium, and potassium carbonates. Proceedings of the Institute NIIStroykeramka, 1981. Iss. 46, pp. 53–75. (In Russian).

For citation: Gur’eva V.A., Dubinetskiy V.V. Ceramic brick of semi-dry pressing based on a composition of aluminosilicate raw materials and the mineral product of drilling waste. Stroitel’nye Materialy [Construction Materials]. 2023. No. 9, pp. 18–22. (In Russian). DOI: https://doi.org/10.31659/0585-430X-2023-817-9-18-22


Print   Email