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FIRED BUILDING MATERIALS MANUFACTURED BY ADDING SILICA NANOPOWDER

https://doi.org/10.31675/1607-1859-2018-20-2-150-156

Abstract

The paper presents research results on the analysis of ceramic brick manufactured with the addition blast-furnace sludge which is a waste of AO ‘EVRAZ’ metallurgical combine. The effect of the silica nanopowder is considered in relation to physical and mechanical properties of finished materials. It is found that the nanopowder addition in the amount of 0.05 wt.% leads to the compressive strength increase. The X-ray phase analysis show that the nanopowder addition increases the amount of quartz-containing components which represent mostly mullite- and anorthite-like compounds.

About the Authors

N. K. Skripnikova
Tomsk State University of Architecture and Building
Russian Federation

Nelli K. Skripnikova, DSc, Professor 

2 Building 2, 634003, Tomsk, Russia




I. Yu. Yur'ev
Tomsk State University of Architecture and Building
Russian Federation

Ivan Yu. Yur'ev, PhD, Head of Research Department 

2 Building 2, 634003, Tomsk, Russia




P. V. Kosmachev
Tomsk State University of Architecture and Building
Russian Federation

Pavel V. Kosmachev, Assistant Professor 

2 Building 2, 634003, Tomsk, Russia




V. V. Shekhovtsov
Tomsk State University of Architecture and Building
Russian Federation

Valentin V. Shekhovtsov, Research Assistant 

2 Building 2, 634003, Tomsk, Russia




O. G. Volokitin
Tomsk State University of Architecture and Building
Russian Federation

Oleg G. Volokitin, DSc, Professor 

2 Building 2, 634003, Tomsk, Russia




M. A. Semenovykh
Tomsk State University of Architecture and Building
Russian Federation

Mark A. Semenovykh, Undergraduate 

2 Building 2, 634003, Tomsk, Russia




References

1. Suvorova O.V., Makarov D.V., Kumarova V.A., Nekipelov D.A. Ispol'zovaniye otkhodov obogashcheniya rud dlya polucheniya stroitel'noy keramiki s povyshennymi fiziko-tekhnicheskimi svoystvami [Ore tails in building ceramics production with increased physical and technical properties]. Trudy Fersmanovskoi nauchnoi sessii GI KNTs RAN. 2017. No. 14. Pр. 263–266. (rus)

2. Zhang L. Production of bricks from waste materials – A review. Construction and Building Materials. 2013. V. 47. Pp. 643–655.

3. Velasco P.M. Fired clay bricks manufactured by adding wastes as sustainable construction material. Construction and Building Materials. 2014. V. 63. Pp. 97–107.

4. Stolboushkin A.Yu. Stenovyye keramicheskiye materialy matrichnoy struktury na osnove nespekayushchegosya maloplastichnogo tekhnogennogo i prirodnogo syr'ya: dis. dokt. tekhn. nauk [Wall ceramic materials of matrix structure based on non-caking low-plastic industrial and natural raw material. DSc Thesis]. Novosibirsk, 2014. Pр. 365. (rus)

5. Vereshchagin V.I., Buruchenko A.E., Kashchuk I.V. Vozmozhnosti ispol'zovaniya vtorichnogo syr'ya dlya polucheniya stroitel'noy keramiki i sitallov [Secondary raw materials in building ceramics production and sitalls]. Stroitel'nye materialy. 2000. No. 7. Pр. 20–23. (rus)

6. Levit A.I. Sovremennoye sostoyaniye i perspektivy nedropol'zovaniya na Yuzhnom Urale [Current state and prospects of subsoil use in the Southern Urals]. Vestnik Chelyabinskogo gosudarstvennogo universiteta. 2007. No. 6. Pр. 48–55. (rus)

7. Shekhovtsov V.V., Volokitin O.G., Otmakhov V.I., Volokitin G.G., Skripnikova N.K. Issledovaniye polykh mikrosfer, poluchennykh na osnove zoloshlakovykh otkhodov TES Kemerovskoy oblasti v potoke termicheskoy plazmy [Hollow ash and slag waste-based microspheres using thermal plasma treatment]. Steklo i keramika. 2018. No. 1. Pр. 36–39. (rus)

8. Kotlyar V.D., Ustinov A.V., Kovalev V.Yu., Terekhina Yu.V. Keramicheskiye kamni kompressionnogo formovaniya na osnove opok i otkhodov obogashcheniya [Compression molding of ceramic stone based on molding box and tails]. Stroitel'nye materialy. 2013. No. 4. Pp. 44–46. (rus)

9. Lazareva T.L., Kulikova E.S. Issledovaniye vliyaniya otkhodov promyshlennosti na svoystva stenovoy keramiki [Industry waste effect on wall ceramics properties]. Tekhnicheskie nauki - ot teorii k praktike. 2016. No. 55. Pp. 135–140. (rus)

10. Guryeva V.A., Butrimova N.V., Doroshin A.V., Dubinetsky V.V., Vdovin K.М. Ekologo-ekonomicheskiy effekt primeneniya nefteshlamov pri proizvodstve keramicheskogo kirpicha [Ecological and economic benefit from using oil sludge in ceramic brick production]. Mezhdunarodnyi nauchno-issledovatel'skii zhurnal. 2016. No. 11-4 (53). Pp. 50–53. (rus)

11. Kosmachev P.V., Dem’yanenko O.V., Vlasov V.A., Kopanitsa N.O., Skripnikova N.K. Kompozicionnye materialy na osnove cementa [Composite materials based on cement with nanodispersed silicon dioxide]. Vestnik of Tomsk State University of Architecture and Building. 2017. No. 4 (63). Pp. 101–106. (rus)

12. Sarkisov Yu.S., Kopanitsa N.O., Kasatkina A.V. O nekotorykh aspektakh primeneniya nanomaterialov i nanotekhnologiy v stroitel'stve [Aspects of construction application of nanomaterials and nanotechnologies]. Vestnik of Tomsk State University of Architecture and Building. 2012. No. 4. Рр. 226–234. (rus)

13. Shandakov S.D., Kosobutsky A.V. Opticheskiye svoystva plenok na osnove uglerodnykh nanotrubok v infrakrasnom i teragertsovom diapazone spektra [Optical properties of films based on carbon nanotubes in infrared and terahertz spectral ranges]. Izvestiya vuzov. Fizika. 2016. T. 59. No. 5. Рр. 130–136. (rus)

14. Kosmachev P.V., Vlasov V.A., Skripnikova N.K. Issledovanie struktury i svoistv nanoporoshka SiO2, poluchennogo plazmennym metodom iz prirodnykh vysokokremnezemistykh syr'evykh materialov [Structure and properties of silica nanopowder obtained by plasma treatment from natural high-silica raw materials]. Izvestiya vuzov. Fizika. 2017. V. 60. No. 2. Pр. 46–50. (rus)

15. Abzaev Yu.A., Volokitin G.G., Skripnikova N.K., Volokitin O.G., Shekhovtsov V.V. Issledovaniya po ispol'zovaniyu plazmennoy tekhnologii pri poluchenii kvartsevoy keramiki. Chast' 1: Analiz kvartsevogo peska [Plasma treatment of quartz ceramics. Part 1. Silica sand analysis]. Vestnik of Tomsk State University of Architecture and Building. 2014. No. 5. Рр. 106–111. (rus)


Review

For citations:


Skripnikova N.K., Yur'ev I.Yu., Kosmachev P.V., Shekhovtsov V.V., Volokitin O.G., Semenovykh M.A. FIRED BUILDING MATERIALS MANUFACTURED BY ADDING SILICA NANOPOWDER. Vestnik Tomskogo gosudarstvennogo arkhitekturno-stroitel'nogo universiteta. JOURNAL of Construction and Architecture. 2018;(2):150-156. (In Russ.) https://doi.org/10.31675/1607-1859-2018-20-2-150-156

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ISSN 1607-1859 (Print)
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