It is shown that a highly-efficient chemical activation of the cement-containing composite mixture with the help of a new generation nanostructural additive makes it possible to develop high-strength finegrained and heavy-weight concretes with the improved strength and deformation characteristics. The recommended nanostructural additive has an increased triple effect: reactive, catalytic, and plasticizing. The use of the proposed additive many times increases the hydration activity of the hardening system, exerting a double energy effect on it, chemical and thermal, thus making it possible to develop the composite building material of a new level of physical and mechanical properties
This paper presents the results of studying the properties of cement-based composites modified with ...
The aim of this paper is to summarize and assess the possibility of using nanoparticles as additives...
The application of nanomaterials in high-performance concrete (HPC) has been extensively studied wor...
It is shown that a highly-efficient chemical activation of the cement-containing composite mixture w...
The most common and reliable material without which modern construction is indispensable is concrete...
The paper deals with the development of composite binders for producing concrete with improved chara...
AbstractOne of the problems of modern construction material science is to provide durable composite ...
No building technology challenged the architecture like the sequence of successful innovations which...
For more than a century, several inclusions have been mixed with Portland cement—nowadays the most-c...
The paper discusses the current state of research of the effect of nanodispersed additives on the pr...
It has been shown that significant reduction of «carbon trace» in construction technology is achieve...
An innovative method for the creation of rapid hardening building composites with multifunctional pu...
Development of nanotechnologies allows to solve a number of problems of construction materials scien...
It has been shown that significant reduction of «carbon trace» in construction technology is achieve...
Consideration is being given to the effect of a plasticizing additive containing carbon nanomaterial...
This paper presents the results of studying the properties of cement-based composites modified with ...
The aim of this paper is to summarize and assess the possibility of using nanoparticles as additives...
The application of nanomaterials in high-performance concrete (HPC) has been extensively studied wor...
It is shown that a highly-efficient chemical activation of the cement-containing composite mixture w...
The most common and reliable material without which modern construction is indispensable is concrete...
The paper deals with the development of composite binders for producing concrete with improved chara...
AbstractOne of the problems of modern construction material science is to provide durable composite ...
No building technology challenged the architecture like the sequence of successful innovations which...
For more than a century, several inclusions have been mixed with Portland cement—nowadays the most-c...
The paper discusses the current state of research of the effect of nanodispersed additives on the pr...
It has been shown that significant reduction of «carbon trace» in construction technology is achieve...
An innovative method for the creation of rapid hardening building composites with multifunctional pu...
Development of nanotechnologies allows to solve a number of problems of construction materials scien...
It has been shown that significant reduction of «carbon trace» in construction technology is achieve...
Consideration is being given to the effect of a plasticizing additive containing carbon nanomaterial...
This paper presents the results of studying the properties of cement-based composites modified with ...
The aim of this paper is to summarize and assess the possibility of using nanoparticles as additives...
The application of nanomaterials in high-performance concrete (HPC) has been extensively studied wor...