Nanotechnological and energy-saving methods of production of building composites

The bases of silicate materials’ manufacture of non-autoclave hardening are developed. The realisation opportunity of technological decision complex of using of mineral substances’ structure in silicate materials’ manufacture of non-autoclave hardening and wall's products on their basis is theo...

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Main Authors: Shynkevych Olena, Lutskin Yevgen, Koishev Oleksandr, Bondarenko Georgiy, Tertychnyi Andriy, Myronenko Igor
Format: Article
Language:English
Published: EDP Sciences 2017-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201711601015
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spelling doaj-23d1b93cd94a4373a55ea213b0cf8e5a2021-02-02T01:22:39ZengEDP SciencesMATEC Web of Conferences2261-236X2017-01-011160101510.1051/matecconf/201711601015matecconf_trs2017_01015Nanotechnological and energy-saving methods of production of building compositesShynkevych Olena0Lutskin Yevgen1Koishev Oleksandr2Bondarenko Georgiy3Tertychnyi Andriy4Myronenko Igor5Odessa State Academy of Civil Engineering and ArchitectureOdessa State Academy of Civil Engineering and ArchitectureOdessa State Academy of Civil Engineering and ArchitectureOdessa State Academy of Civil Engineering and ArchitectureOdessa State Academy of Civil Engineering and ArchitectureOdessa National Maritime UniversityThe bases of silicate materials’ manufacture of non-autoclave hardening are developed. The realisation opportunity of technological decision complex of using of mineral substances’ structure in silicate materials’ manufacture of non-autoclave hardening and wall's products on their basis is theoretically proved and practically confirmed. The complex activation of mixture with water materials, as slip, defined the transition from autoclave treatment to thermo-moisture one of silicate materials. The possibility of the practical realization of structure mineral substances’ reserve for the energy consumption of silicate material production are proved experimentally. The optimization of the composition and the hardening conditions in the conditions of thermo-moisture treatment on the basis of experimentally-statistical modelling ensured the receipt of materials with the required properties. The analysis connection between hardening conditions and contents has been fulfilled on experimental-statistic models. The changing of silicate materials’ properties under the influence of inorganic modifier’ surface, of hardening conditions and content of gypsum addition have been estimated. Correlation analysis allows to receive new information about the influence of the contents and the hardening conditions on a degree of interrelation between the structure and the properties of building materials. Optimal compositions and the regimes of hardening are recommended for the receipt of wall’s articles of a different purpose.https://doi.org/10.1051/matecconf/201711601015
collection DOAJ
language English
format Article
sources DOAJ
author Shynkevych Olena
Lutskin Yevgen
Koishev Oleksandr
Bondarenko Georgiy
Tertychnyi Andriy
Myronenko Igor
spellingShingle Shynkevych Olena
Lutskin Yevgen
Koishev Oleksandr
Bondarenko Georgiy
Tertychnyi Andriy
Myronenko Igor
Nanotechnological and energy-saving methods of production of building composites
MATEC Web of Conferences
author_facet Shynkevych Olena
Lutskin Yevgen
Koishev Oleksandr
Bondarenko Georgiy
Tertychnyi Andriy
Myronenko Igor
author_sort Shynkevych Olena
title Nanotechnological and energy-saving methods of production of building composites
title_short Nanotechnological and energy-saving methods of production of building composites
title_full Nanotechnological and energy-saving methods of production of building composites
title_fullStr Nanotechnological and energy-saving methods of production of building composites
title_full_unstemmed Nanotechnological and energy-saving methods of production of building composites
title_sort nanotechnological and energy-saving methods of production of building composites
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2017-01-01
description The bases of silicate materials’ manufacture of non-autoclave hardening are developed. The realisation opportunity of technological decision complex of using of mineral substances’ structure in silicate materials’ manufacture of non-autoclave hardening and wall's products on their basis is theoretically proved and practically confirmed. The complex activation of mixture with water materials, as slip, defined the transition from autoclave treatment to thermo-moisture one of silicate materials. The possibility of the practical realization of structure mineral substances’ reserve for the energy consumption of silicate material production are proved experimentally. The optimization of the composition and the hardening conditions in the conditions of thermo-moisture treatment on the basis of experimentally-statistical modelling ensured the receipt of materials with the required properties. The analysis connection between hardening conditions and contents has been fulfilled on experimental-statistic models. The changing of silicate materials’ properties under the influence of inorganic modifier’ surface, of hardening conditions and content of gypsum addition have been estimated. Correlation analysis allows to receive new information about the influence of the contents and the hardening conditions on a degree of interrelation between the structure and the properties of building materials. Optimal compositions and the regimes of hardening are recommended for the receipt of wall’s articles of a different purpose.
url https://doi.org/10.1051/matecconf/201711601015
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