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Abstract
The use of complex modifiers for plain cement concrete mixtures and concrete is becoming increasingly popular in modern materials science. The article presents studies of the influence of a polymer additive structured by carbon nanomaterials on physical and mechanical characteristics of plain cement concrete mixtures. IR spectroscopy and thermogravimetry have shown that the use of carbon nanomaterials significantly altered the structure of plain cement concrete mixtures. As a result of the fact that the high-strength nanomaterial is the center of crystallization of cement rock newly formed structures, a denser reinforced microstructure is formed, which significantly increases the strength properties of plain cement concrete mixtures. The inclusion of a polymer complex additive in plain cement concrete mixtures leads to higher and longer plasticizing, which plays an important role in the production of monolithic products. It was determined that, in the presence of a complex modifier (polymer additive structured by carbon nanotubes), the crystalline structure of calcium hydrosilicates is compacted, which causes high physical and mechanical characteristics of modified plain cement concrete mixtures. It has been experimentally shown that the additive Ethacryl HF (France) from the class of polycarboxylates, chosen for research, acts as an accelerator for setting and curing cement paste, and also increases its strength characteristics. In general, in this study, there is a water-reducing effect from the application of the additive for all plain cement concrete mixtures. Water requirements are reduced by 5 mas. %, while the strength is increased by 19%. The formulation of plain cement concrete mixtures modified by polymer additives, structured by carbon nanotubes, with high performance were developed.
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1 North Minzu University, School of Civil Engineering, Yinchuan, People’s Republic of China (GRID:grid.464238.f) (ISNI:0000 0000 9488 1187); National Aviation University, Department of Computer Technologies of Construction and Reconstruction of Airports, Kiev, Ukraine (GRID:grid.38199.3a) (ISNI:0000 0004 0399 7184)
2 North Minzu University, School of Civil Engineering, Yinchuan, People’s Republic of China (GRID:grid.464238.f) (ISNI:0000 0000 9488 1187)
3 National Academy of Sciences of Ukraine, Institute of Chemistry of High-Molecular Compounds, Kiev, Ukraine (GRID:grid.418751.e) (ISNI:0000 0004 0385 8977)
4 National Aviation University, Department of Computer Technologies of Construction and Reconstruction of Airports, Kiev, Ukraine (GRID:grid.38199.3a) (ISNI:0000 0004 0399 7184)