Keywords: properties

THE INFLUENCE OF FORCED CARBONIZATION ON THE PROPERTIES OF GYPSUM-LIME SYSTEMS BASED ON SECONDARY RAW MATERIALS

https://doi.org/10.34031/2618-7183-2021-4-6-69-81
Abstract
The use of secondary raw materials for the production of building materials is a modern trend in solving environmental problems. In the Republic of Crimea, dumps of secondary raw materials – phosphogypsum and lime dust – have accumulated in large quantities at various enterprises. The analysis of phosphogypsum, which has been in the dumps for more than 5 years, showed that by its quality indicators it can be attributed to the 2nd grade in accordance with GOST 4013-2019, and the specific effective activity of the material (Aeff) corresponds to the I class of materials, which makes it suitable for the production of gypsum binders. Prototypes-cylinders were made from a mixture of phosphogypsum with lime dust of 1:1 composition at a pressure of 30 MPa and then subjected to hardening according to three schemes, in order to separate the passage of various types of hardening and study each of them for the physico-mechanical properties of the resulting material. The analysis of experimental data made it possible to establish the effectiveness of simultaneous flow in the system of two types of hardening – carbonate and hydration for lime and phosphogypsum components of the raw mixture, respectively. As a result of the organization of a mixed type of hardening of gypsum-lime binder, samples with a compressive strength of 26.5 MPa and a softening coefficient of 0.63 were obtained within 90 minutes. The calcium carbonate formed in the process, which is the product of the reaction between calcium hydroxide and carbon dioxide, significantly increases the water resistance of the hydration products of gypsum binder. It is established that with an optimal combination of technological factors and hardening conditions, a significant increase in the physical and mechanical characteristics of the carbonized material is possible in a short time.
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RESEARCH ON THE STRUCTURE OF CLAY RAW MATERIALS FOR CERAMIC PRODUCTS

https://doi.org/10.34031/2618-7183-2020-3-4-13-23
Abstract
Abstract: the research uses some methods for determining materials, strictly applying the current standards and requirements of the Russian Federation. The degree of scientific development of this research is that specialists of the Department of Engineering Physics and Materials Physics of Engineering Faculty of Bashkir State University and the laboratory of JSC "Ceramics" of the Republic of Bashkortostan conducted research in the field of ceramic materials science for construction purposes. The methodological basis of the research is based on well-known methods of studying the structure of clay raw materials suitable for the production of construction products, with the choice of a stable light range of products and eliminates cracking in the technological process of brick production. The correct composition leads to a reduction in energy consumption without compromising the physical and mechanical characteristics of products.
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THE INFLUENCE OF RAW MATERIALS ON THE PROPERTIES OF FOAM GLASS AND THE DEVELOPMENT PROSPECTS

https://doi.org/10.34031/2618-7183-2020-3-1-44-48
Abstract
This paper considers the influence of raw components on the properties of foam glass and the development prospects of its use. The aim of the work is to identify the development prospects of foam glass appliance based on the study of the influence of raw materials on its properties. The task is to study the effect of initial materials on the properties of foam glass and the application fields of foam glass products in detail. To solve the problem a theoretical analysis of the scientific and technical literature and articles is used as a research method. As a result of the study, the main components used in the production of foam glass, their influence on the properties of the ready-made material and the application fields of foam glass products are considered. The authors draw a conclusion that the use of foam glass, which can reduce the effect of electromagnetic radiation, and foam glass made using industrial wastes is prospective.
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ADDITIVE TECHNOLOGY IN CONSTRUCTION

https://doi.org/10.34031/2618-7183-2018-1-3-33-42
Abstract
The main innovative technologies of construction 3-D printing in modern construction are considered. This direction of research confirms the relevance of the selected issue. Development of compositions for building 3D printing allows for construction of not only individual constructions, but also buildings and constructions in general. Experimental compositions with effective for building print supplements will receive enough dense structure of concrete are developed. To assess the use of quartz sand for use in 3-d printers studies were conducted of their basic properties. The role of additive technologies in modern construction in the construction of buildings and structures that will lead to future changes in the construction market.
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