RESEARCH ON THE CONSTRUCTION TECHNOLOGY OF REINFORCED MONOLITHIC POLYMER-COATED FLOORS AND IMPROVEMENT OF PRODUCTION TECHNOLOGY
Keywords:
Reinforced polymer-coated floors, monolithic polymer coatings, polymer-cement concrete, polymer mastic, polymer dispersion, polyvinyl acetate mastic, Pavilit mastic, chopped glass fibers, reinforcing materials, metal mesh, synthetic polymers, polymerization, polycondensation, copolymers, polymer–cement mixture, physico-mechanical properties, strength, water absorption, disintegration, hardness, elasticity, construction technology, seamless floor coatings, impact resistance, crack resistance, gypsum–aluminous cement, mastic compositions, leveling layer, surface layer, localization, modernization, machine-building plant floors, floors under transport loads.Abstract
This research work highlights the issues of construction technology and the improvement of production processes of reinforced monolithic polymer-coated floors. Polymer–cement concrete, polyvinyl acetate mastic (“Pavilit”), mastics based on polymer dispersion, and their physico-mechanical properties (strength, hardness, water absorption, disintegration, elasticity) were analyzed. The main advantages of polymer coatings-hygienic quality, resistance to wear and impact, aesthetic appearance, and long service life-were demonstrated. At the same time, some shortcomings of existing coatings, in particular low impact resistance, were identified, and prospects for strengthening them through reinforcement with chopped glass fibers were substantiated. The proposed technology is considered an effective solution for the construction of floors in industrial and public buildings, serving to create high-quality and economically efficient floor coatings in the construction sector.
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