Keywords: non-autoclaved silicate materials

INFLUENCE OF ARTIFICIAL CALCIUM HYDROSILICATES ON THE HARDENING PROCESSES AND PROPERTIES OF NON-AUTOCLAVE SILICATE MATERIALS BASED ON UNCONVENTIONAL ALUMINOSILICATE RAW MATERIALS

https://doi.org/10.34031/2618-7183-2020-3-2-19-28
Abstract
Оne of the possible ways to improve the properties of building materials is to modify the processes of structure formation, which can be realized through the use of crystalline primers. In this regard, it is urgent to study the effect of artificial calcium hydrosilicates on hardening processes, as well as the properties of non-autoclave silicate materials based on non-traditional aluminosilicate raw materials. Studies have shown that the addition of artificial calcium hydrosilicates (CSH) in an amount of 1-1.5 wt. %, when the content in the mixture of CaO is less than 10 wt. %, effectively increases the strength parameters of products at all stages of heat and moisture treatment from 8 to 16%. The most intense increase in strength is observed during the heat-moisture treatment (TBO) from 3 to 6 hours and is at least 13%, while in samples without the addition of artificial calcium hydrosilicates, the strength increase is 6%. The addition of artificial calcium hydrosilicates intensifies the processes of structure formation, which ensures an increase in crystalline matter, and, due to the fibrous structure, acts as a fiber, which contributes to the nano-reinforcement of the cementing substance formed from neoplasms in the CaO-SiO2(Al2O3)-H2O system based on clay rocks and calcium oxide. Due to the accelerated set of strength, it is possible to reduce the duration of isothermal exposure while maintaining the necessary performance characteristics.
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SMART HOUSE AS A NEW TYPE OF HOUSING

https://doi.org/10.34031/2618-7183-2020-3-1-83-88
Abstract
Оn a number of examples, the significance and need for the introduction and development of “smart homes” in Russian cities are revealed. This paper describes the development of architecture, new innovations and technologies, modern materials. All this can significantly improve the lives of everyone, especially the life of older people and people with disabilities. Remote control and automation of devices, by expanding existing functionalities, such as heating control, by increasing safety, or by providing assistance services by means of monitoring, warning and detecting health problems, is undoubtedly a technological breakthrough. Also, much attention was paid to the use of innovative intellectual materials to improve environmental sustainability, economic efficiency and safety. New technologies and high-performance materials are being developed to meet these needs, offering creative and innovative solutions to long-standing problems that are especially negative for the environment. The study will discuss and analyze the integration of smart materials, technology and architecture, which promises to transform architectural thought so that we can hardly imagine it today.
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