PLASMOCHEMICAL MODIFICATION OF WALL BUILDING MATERIALS

Author:

Bessmertnyy Vasiliy123,Puchka O.1,Bondarenko Diana1,Antropova I.2,Bragina Lyudmila4

Affiliation:

1. Belgorod State Technological University named after V.G. Shukhov

2. Belgorod University of Cooperation, Economics and Law

3. Stary Oskol Technological Institute after A. A. Ugarov, National University of Science and Technology “MISiS” branch

4. National Technical University «Kharkov Polytechnic Institute»

Abstract

the aim of the work is to study the effect of a high-temperature plasma torch on the processes of phase transformations and layer-by-layer modification of the protective and decorative coating on concrete using as a filler a mixture of quartz sand and hollow glass microspheres. The main tasks included: investigation of the processes of evaporation and thermal diffusion of oxides of plasma-coated coatings; study of phase transformations in the melt and its subsequent crystallization in the process of rapid spontaneous cooling of the fused protective and decorative coating; study of the effect of sodium liquid glass on the processes of polymorphic transformations of alumina and the formation of micro-wicks due to the intense diffusion of sodium oxide; study of operational characteristics of protective and decorative coatings. It was established that the initial phases in the protective-decorative coating are α-Al2O3 and CaO∙6Al2O3 (β-Al2O3), and the liquid sodium glass in the coating leads additionally to the formation of Na2O∙11Al2O3. The top layer of the protective and decorative coating is Na–Ca–Al–Si glass with regions of heterogeneities containing an increased content of sodium oxide. The content of aluminum oxide in the protective and decorative coating based on the battle of high-alumina refractory was 95.1 %. The introduction into the coating composition of sodium liquid glass minimizes the processes of dehydration of the binding component and changes the chemical composition of the protective and decorative coating. Reduction of the aluminum oxide content to 83.0 % affects the microhardness indicators. Microhardness of the concrete surface due to the introduction of liquid glass is reduced from 2510 HV to 887 HV.

Publisher

BSTU named after V.G. Shukhov

Subject

General Medicine

Reference21 articles.

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