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High-Strength Building Material Based on a Glass Concrete Binder Obtained by Mechanical Activation

BUILDINGS(2023)

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Abstract
As part of the work, the chemical interaction of finely ground glass (similar to 1 mu m), calcium oxide, and water was studied. It is shown that an increase in the fineness of grinding makes it possible to abandon autoclave hardening in the production of products on a hydrosilicate binder. The study of chemical interaction was carried out by calculating the thermodynamic equilibrium and was also confirmed by XRD analysis. DTA analysis showed that an increase in the treatment temperature leads to an increase in the proportion of the reacted phase at the first stage. Subsequently, phase formation is associated with the presence of CaO. The carrier of strength characteristics is the CaOX2SiO(2)X2H(2)O phase. The selection and optimization of the composition make it possible to obtain a high-strength glass concrete material with a strength of about 110 MPa. The micrographs of the obtained samples correspond to classical hydrosilicate systems.
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Key words
glass concrete binder,high-strength
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