Mudstones based black clinker ceramic brick

Capa

Citar

Texto integral

Acesso aberto Acesso aberto
Acesso é fechado Acesso está concedido
Acesso é fechado Acesso é pago ou somente para assinantes

Resumo

Ceramic bricks have high strength, durability, aesthetic appeal and are one of the most sought-after building materials. Presently dark-colored cladding materials are becoming increasingly popular in the construction industry. Black color of the brick gives the architecture expressiveness: depth, graphic and brutality. It emphasizes the shapes sculptural plasticity, reveals the structures tectonics and creates strong visual contrasting accents. During the research black ceramic stones based on domestic raw materials were obtained with the tanning of color-enhancing components, and their physical and mechanical properties and visual characteristics were studied. It is found that mudstones, which are widespread in Russia, can be used as a promising raw material for the production of black clinker bricks. Based on this raw material with manganese oxide and a color enhancer addition it is possible to obtain a high-strength ceramic stone with specified physico-mechanical and aesthetic characteristics.

Texto integral

Acesso é fechado

Sobre autores

R. Yashchenko

Don State Technical University

Autor responsável pela correspondência
Email: roma.8929@mail.ru

Engineer

Rússia, 1, Gagarin Square, Rostov-on-Don, 344003

V. Kotlyar

Don State Technical University

Email: diatomit_kvd@mail.ru

Doctor of Sciences (Engineering)

Rússia, 1, Gagarin Square, Rostov-on-Don, 344003

K. Lapunova

Don State Technical University

Email: keramik_kira@mail.ru

Candidate of Sciences (Engineering)

Rússia, 1, Gagarin Square, Rostov-on-Don, 344003

M. Orlova

Don State Technical University

Email: marina.nekrasova.96@list.ru

Candidate of Sciences (Engineering)

Rússia, 1, Gagarin Square, Rostov-on-Don, 344003

Bibliografia

  1. Devos K., Devlieger L., Steeman M. Reclaimed or new? Life cycle assessment of ceramic bricks. Journal of Cleaner Production. 2024. Vol. 476. 143764. https://doi.org/10.1016/j.jclepro.2024.143764
  2. Geilson Márcio Albuquerque de Vasconcelos, Tiago Ancelmo de Carvalho Pires, Jose Jéferson Rêgo Silva Structural and fire performance of masonry walls with ceramic bricks. Engineering Structures. 2023. Vol. 291. 116399. https://doi.org/10.1016/j.engstruct.2023.116399
  3. Cajamarca-Zuniga D., Kabantsev O.V., Campos D. Geometric characterization of solid ceramic bricks for construction in Ecuador. Structural Mechanics of Engineering Constructions and Buildings. 2023. Vol. 19. No. 3, pp. 329–336. EDN: RCYIGM. https://doi.org/10.22363/1815-5235-2023-19-3-329-336
  4. Baranova S.I. Problems of studying brick production in Eastern Europe and Siberia. Vestnik of Tomsk State University. 2024. No. 508, pp. 152–159. (In Russian).EDN: HUYZOV. https://doi.org/10.17223/15617793/508/16
  5. Kardash O.V., Girchenko E.A., Tanykova N.G., Petrova Yu.Yu., Ermakova K.K. New data on the chemical-technological analysis of ceramics of the Li people of Hainan Island: on the problem of preserving pottery traditions. Problemy Arkheologii, Etnografii, Antropologii Sibiri i Sopredel’nykh Territoriy. 2023. Vol. 29, pp. 638–646. (In Russian). EDN: THYPYY. https://doi.org/10.17746/2658-6193.2023.29.0638-0646
  6. Chudova T.I. Features of the production of clay pottery in the Komi (Zyryan) culture in the late 19th – first half of the 20th century. Bulletin of Archeology, Anthropology and Ethnography. 2019. No. 1 (44), pp 89–97. (In Russian).EDN: ZBJDFJ. https://doi.org/10.20874/2071-0437-2019-44-1-089-097
  7. Bozhko Yu.A., Lapunova K.A. About the development of brick-design in Russia. Stroitel’nye Materialy [Construction Materials]. 2020. No. 12, pp. 21–24. (In Russian). EDN: GGQGIR. https://doi.org/10.31659/0585-430X-2020-787-12-21-24
  8. Kotlyar V.D., Nebezhko N.I., Terekhina Yu.V., Popov Yu.V., Nebezhko Yu.I., Yashchenko R.A. Features of black clinker brick production. Stroitel’nye Materialy [Construction Materials]. 2020. No. 4–5, pp. 97–102. (In Russian). EDN: LJZYNB. https://doi.org/10.31659/0585-430X-2020-780-4-5-97-102
  9. Tatskiy L.N., Ilyina L.V. Development of charge compositions from low-quality clay raw materials in the technology of volumetric coloring wall ceramics. Izvestiya of Higher Educational Institutions. Construction. 2020. No. 1 (733), pp. 87–101. (In Russian). EDN: PCBRMQ. https://doi.org/10.32683/0536-1052-2020-733-1-87-101
  10. Shevando V.V., Abdrakhimov A.V., Vdovina E.V., Abdrakhimova E.S., Abdrakhimov V.Z. The influence of ash and slag material on the properties of bricks. Ekologiya i Promyshlennost’ Rossii. 2009. No. 3, pp. 30–32. (In Russian).EDN: KTOMZT
  11. Levitsky I.A., Khoruzhik O.N. The relationship between the properties, phase composition and microstructure of clinker bricks. Steklo I Keramika. 2021. No. 5, pp. 26–33. (In Russian). EDN: ZRWGXW
  12. Stolboushkin A.Yu., Fomina O.A., Akst D.V., Ivanov A.I., Druzhinin M.S. Production of decorative wall ceramics from clay raw materials and manganese ore mining waste. Stroitel’nye Materialy [Construction Materials]. 2016. No. 12, pp. 38–44. (In Russian). EDN: XHFQDP. https://doi.org/10.31659/0585-430X-2016-744-12
  13. Kondratenko V.A. Keramicheskiye stenovyye materialy: optimizatsiya ikh fiziko-tekhnicheskikh svoystv i tekhnologicheskikh parametrov proizvodstva [Ceramic wall materials: optimization of their physical and technical properties and production process parameters]. Moscow: Kompozit. 2005. 509 p.
  14. Kotlyar V.D., Terekhina Yu.V., Kotlyar A.V. Testing methods for stone-like raw materials for the production of compression-molded wall products. Stroitel’nye Materialy [Construction Materials]. 2014. No. 4, pp. 24–27. (In Russian).EDN: SAJLER

Arquivos suplementares

Arquivos suplementares
Ação
1. JATS XML
2. Fig. 1. Black brick in Gothic architecture of Western Europe: а – St. Nicholas Church in Stralsund, Germany, 13th century; b – Malbork Castle, Poland, 13th century

Baixar (231KB)
3. Fig. 2. The use of black brick in the architecture of England in the 19th century: а – Sandbach Literary Institute, Neo-Gothic, arch. George G. Scott, Cheshire, 1857; b – the Waite and James Granary, neo-Byzantine style, architect A. Ponton, W.W. Gough, Bristol, 1869

Baixar (181KB)
4. Fig. 3. Residential complex Composition No. 24», architects A. Tsimaylo, N. Lyashenko, M. Nikolaeva. Moscow, 2019

Baixar (374KB)
5. Fig. 4. Effect of trivalent iron oxide on the color of samples fired at a temperature: а – 950оС; b – 1000оС; c – 1050оС; d – 1100оС

Baixar (101KB)
6. Fig. 5. Effect of 4% manganese tetroxide on the color of samples fired at a temperature: а – 950оС; b – 1000оС; c – 1050оС; d – 1100оС

Baixar (86KB)
7. Fig. 6. Effect of copper oxide (4%) on the color of samples fired at a temperature: а – 950оС; b – 1000оС; c – 1050оС; d – 1100оС

Baixar (100KB)
8. Fig. 7. Effect of 2% cobalt oxide on the color of samples fired at a temperature: а – 950оС; b – 1000оС; c – 1050оС; d – 1100оС

Baixar (87KB)
9. Fig. 8. The color of samples, the raw mixture of which contains 4% manganese tetroxide and 1% mineralizer, fired at a temperature: а – 950оС; b – 1000оС; c – 1050оС; d – 1100оС

Baixar (215KB)
10. Fig. 9. Microstructure of a cleavage of a ceramic stone of optimal composition without a mineralizer

Baixar (185KB)
11. Fig. 10. Microstructure of the surface of ceramic stone of optimal composition with mineralizer

Baixar (395KB)

Declaração de direitos autorais © ООО РИФ "СТРОЙМАТЕРИАЛЫ", 2025