ENERGY SAVING DURING THERMAL TREATMENT OF CONCRETE USING ADDITIVES

Authors

  • Т. M. Dekhta (Ukrainian state university of science and technology, educational and scientific institute of the Dnipro state academy of construction and architecture)
  • S. V. Bondarenko (Ukrainian state university of science and technology, educational and scientific institute of the Dnipro state academy of construction and architecture)
  • S. V. Vasylenko, (Ukrainian state university of science and technology, educational and scientific institute of the Dnipro state academy of construction and architecture)

DOI:

https://doi.org/10.31713/budres.v0i48.45

Abstract

Heat treatment (steaming) of concrete and reinforced concrete products as an effective method of accelerating concrete hardening. Heat treatment of concrete is one of the most responsible construction processes. There are known cases when, due to the increased temperature of the concrete and large temperature differences, excessive temperature stresses arose, as a result of which cracks were formed. When choosing a method of heat treatment of concrete, you must first consider the possibility of using an energy saving method. Its extension is the introduction of additives - concrete hardening accelerators and cements of increased heat release (fast-acting and high-quality), as well as plasticizers and superplasticizers. The effect of a complex slurry-based additive on the properties of reinforced concrete was investigated. The proposed additive increases the strength of concrete in all accepted heat treatment modes compared to the strength of concrete without such an additive. Obtained results is the following, theoretically substantiated and experimentally confirmed complex additive to concrete based on sludge (cake) of metal processing enterprises. The effect of the additive on the strength characteristics of concrete subjected to heat treatment under different regimes and natural hardening concrete is shown. The results of the work are implemented in the production of reinforced concrete products and structures.

Published

2025-12-04

Issue

Section

Статті