FIRST-CLASS RESOURCE-SAVING AND COMPETITIVE BUILDING MATERIALS AND PRODUCTS
https://doi.org/10.54596/2309-6977-2022-1-134-141
Abstract
The introduction of modern high-quality, environmentally friendly materials, products and structures in the field of construction will significantly reduce the consumption of materials and energy consumption of construction facilities and significantly increase the productivity of the construction sector. One of the modern directions of construction is the production of first-class, resource-saving building materials, products and structures, as well as the design and construction of buildings that combine the convenience of planning solutions, environmental friendliness and energy efficiency.
About the Authors
D. BorangalikyzyKazakhstan
Nur-Sultan
A. Zh. Imanov
Kazakhstan
Nur-Sultan
D. T. Kuzhantayeva
Kazakhstan
Nur-Sultan
D. Zh. Abdugaparov
Kazakhstan
Nur-Sultan
References
1. Lesovik V.S. Povyshenie effectivnosti proizvodstva stroitelnykh materialov s uchetom genezisa gornykh porod // Moskva, 2006. – S. 519.
2. Suleymanovа L.A. Energy-efficient concretes for green construction / L.A. Suleymanova, V.S. Lesovik, K.А. Kara, M.V. Malyukova, K.A. Suleymanov // Research Journal of Applied Sciences. 2014. – S. 1086-1092.
3. Suleymanovа L.A., Lesovik V.S., Lukuttsova N.P., Kondrashev K.R., Suleymanov K.A. Energy efficient technologies of production and use non-autoclaved aerated concrete // International Journal of Applied Engineering Research. 2015. – S. 11244-12412.
4. Suleymanovа L.A., Energiya svyazi – osnova ronstructivnykh I eksplyatatsionnykh kharakteristic betonov // Izvestiya vyshykh uchebno - Vestnik V.G. Shukhov BSTU 2017. Stroitelstvo. 2007. – № 9. С. 91–99.
5. Lesovik. V.S., Fischer H.B., Tschernyschova N. Gipsovye compozity dlya optimizatsiya systemy «Chelovek – material – sreda obitaniya» (Gips kompositeim System «Mensch – Werkstoff – Lebensraum» // 2. Weima Gypsum Conference – Weimar, 26 – 27 März, 2014. – S. 31– 45.
6. Lesovik. V.S. Sostoyanie i perspective ispolzovaniya tekhnogennova syrya // BST: Byulleten stroitelnoi tekhniki. 2014. № 7 (959). S. 49–63.
7. Lesovik. V.S., Alfimova N.I., Kovtun M.N., Lostovetskii A.N. O vozmozhnesti ispolzovaniya tekhnogennykh peskov v kacgestve syrya dlya proizvodstva stroitelnykh materialov// Regionalnaya arkhitektura i stroitelstvo. 2008. №2. S. 11–16.
8. Lesovik. V.S., Kharkharin A.N., Vishnevskaya Y.U, Alfimova N.I., Sheichenko N.I., Trunov P.V. Kompozitsionnoe vyazhushee. Patent na izobretenie RUS 2385301 11.03.2009
9. Alfimova N.I., Nikiforova N.A. Optimizatsiya parametrov izgotovleniya kompozitsionnykh vyazhushikh na osnove vulkanicheskova syrya// Regionalnaya arkhitektura i stroitelstvo. 2016. № 4 (29). S. 32–40.
10. Ageeva M.S., Alfimova N.I. Effectivnye kompozitsionnye vyazhushie na osnove tekhnogennova syrya. Saarbrucken, 2015.
11. Suleymanovа L.A., Lesovik V.S. Gazobetony neavtoklavnogo tverdeniya na kompozitsionnykh vyazhushikh Belgorod: Izdotelstvo BGTU, 2013. S. 204.
12. Suleymanovа L.A., Lesovik V.S., Suleimenova A.G. Neavtoklavnye gazobetony na kompozitsionnykh vyazhushikh. Belgorod: Izdatelstvo BGTU, 2010. S. 143.
13. Suleimenova L.A. Algoritm polucheniya energoeffectivnogo gazobetona s uluchshennymi pokazatelyami kachestva // Vestnik BGTU imeni Shukhova V.G. 2011. № 5. S. 59–61.
14. Suleimenova L.A., Kara K.A. Gazobetony na kompozitsionnykh vyazushikh dlya monolitnogo stroitelstvo. Belgorod: Kostanto, 2011. S. 141.
15. Suleymanovа L.A., Lesovik V.S., Kara K.A. Energoeffectivnye gazobetony na kompozitsionnykh vyazhushikh dlya monolitnogo stroitelstva // Izvestiya vysshykh uchebnukh zavedenii. Stroitelstvo. 2012. № 4. S. 11–24.
Review
For citations:
Borangalikyzy D., Imanov A.Zh., Kuzhantayeva D.T., Abdugaparov D.Zh. FIRST-CLASS RESOURCE-SAVING AND COMPETITIVE BUILDING MATERIALS AND PRODUCTS. Vestnik of M. Kozybayev North Kazakhstan University. 2022;(1 (53)):134-141. https://doi.org/10.54596/2309-6977-2022-1-134-141