Abstract

The article deals with issues of optimizing the composition of efficient concrete increased water resistance, reducing its cost without losing or increasing its basic properties. In recent years, the most effective method of tightness to water in the construction of buried and underground structures, as opposed to the use of bituminous and other traditional materials, is a method based on the use of concrete with increased water resistance. This type of tightness to water is called “White bath” in Europe. The essence of the technology is that the role of the impervious layer is performed directly by the concrete itself. The subject of the study is the composition of self-stressing concrete, which has a high density and fastness to water, but a high price compared to the concrete on Portland cement, which limits its wide application. The aim of the study is the development and optimization of the composition or stressing concrete with desired properties using a variety of mineral and polymeric additives to reduce the cost of the finished product while maintaining or improving the significant operational indicators.

Highlights

  • Process engineers face a number of tasks related to the properties and quality of concrete in modern capital construction

  • There is an additional increase in the cost of construction

  • The objective of this study is to optimize the composition of self-stressing concrete with desired properties, reducing the quantity of expanding additive (EA), through the use of various modifying additives, including secondary raw materials obtained from certain types of wastes from the production of metallurgy and the construction industry

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Summary

Introduction

Process engineers face a number of tasks related to the properties and quality of concrete in modern capital construction. The problem of such concrete is its cost, because the expanding additive (EA) based on ciment fondu has a high price.

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