Physical and mechanical properties of pre-bound aggregate composites
- Авторлар: Erofeev V.T.1, Kaznacheev S.V.1, Pankratova E.V.2, Seleznev V.A.1, Tyuryahina T.P.1
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Мекемелер:
- National Research Ogarev Mordovia State University
- Keramzit LLC
- Шығарылым: Том 18, № 5 (2022)
- Беттер: 399-406
- Бөлім: Analysis and design of building structures
- URL: https://journals.rcsi.science/1815-5235/article/view/325757
- DOI: https://doi.org/10.22363/1815-5235-2022-18-5-399-406
- ID: 325757
Дәйексөз келтіру
Толық мәтін
Аннотация
New building materials and products in construction and reconstruction, which improve the performance and efficiency characteristics of buildings, reduce material consumption, cost and labor intensity, are always relevant. A promising direction for further development of composite materials is the employment of pre-bound aggregate materials. Their production is a two-stage process, which involves at first creating an optimal aggregate mix and gluing the grains to each other and secondly filling the voids of the obtained aggregate framework with a high-workability matrix. Presented research is an experimental investigation of physical and technical properties of pre-bound aggregate composite materials. Composites with complex binders are also considered in this study. In such cases, the aggregate framework and the grouting matrix were made of binders of different nature, which are incompatible when the components are mixed ordinarily. When studying composites, a complex of physical and mechanical methods was used. Improvement of physical and mechanical properties of framework composites in comparison with composites obtained according to conventional techno- logy has been established. These advantages are identified primarily for such properties as deformability, impact strength, creep.
Негізгі сөздер
Авторлар туралы
Vladimir Erofeev
National Research Ogarev Mordovia State University
Email: vlalmo@mail.ru
ORCID iD: 0000-0001-8407-8144
Doctor of Technical Sciences, Professor, Academician of the Russian Academy of Architecture and Construction Sciences, Director of the Institute of Architecture and Construction Engineering, Head of the Chair of Building Materials and Technologies, Director of the Research Institute “Materials Science”
68 Bolshevistskaya St, Saransk, 430005, Russian FederationSergey Kaznacheev
National Research Ogarev Mordovia State University
Хат алмасуға жауапты Автор.
Email: kaznacheevsv@mail.ru
ORCID iD: 0000-0002-0053-3160
Candidate of Technical Sciences, Associate Professor, Associate Professor of the Chair of Building Materials and Technologies
68 Bolshevistskaya St, Saransk, 430005, Russian FederationElena Pankratova
Keramzit LLC
Email: elenapankratova3@yandex.ru
ORCID iD: 0000-0001-9164-1759
Deputy Director for Science and Technology
49 Oktyabrskaya St, room 53, Ulyanovsk, 432032, Russian FederationVyacheslav Seleznev
National Research Ogarev Mordovia State University
Email: vyacheslav.seleznev.00@mail.ru
ORCID iD: 0000-0003-1202-9209
postgraduate, Chair of Building Materials and Technologies
68 Bolshevistskaya St, Saransk, 430005, Russian FederationTatyana Tyuryahina
National Research Ogarev Mordovia State University
Email: kitana1908@mail.ru
ORCID iD: 0000-0002-0138-5411
postgraduate, Chair of Building Materials and Technologies
68 Bolshevistskaya St, Saransk, 430005, Russian FederationӘдебиет тізімі
- Solomatov V.I., Bobryshev A.N., Himmler K.G. Polymer composite materials in construction (V.I. Solomatov, ed.). Moscow: Strojzdat Publ.; 1988. (In Russ.)
- Bazhenov Yu.M. Betonopolymers. Moscow: Strojzdat Publ.; 1983. (In Russ.)
- Lipatov Yu.S. Physical chemistry of filled polymers. Moscow: Himiya Publ.; 1977. (In Russ.)
- Hozip V.G. Strengthening of epoxy polymers. Kazan: Dom Pechati Publ.; 2004. (In Russ.)
- Sokolova Yu.A., Gotlib E.M. Modified epoxy mixtures and coatings in construction. Moscow: Strojzdat Publ.; 1990. (In Russ.)
- Elshii I.M. Polymer concrete in hydraulic engineering construction. Moscow: Strojzdat Publ.; 1980. (In Russ.)
- Potapov Yu.B., Solomatov V.I., Korneev A.D. Polyester polymer concrete. Voronezh: Izd-vo Voronezhskogo Universiteta Publ.; 1993. (In Russ.)
- Solomatov V.I., Selyaev V.P., Sokolova Yu.A. Chemical resistance of materials. 2nd ed., reprint. and add. Moscow: RAASN Publ.; 2001. (In Russ.)
- Perlin S.M., Makarov V.G. Chemical resistance of fiberglass. Moscow: Himiya Publ.; 1983. (In Russ.)
- Koshkin V.G., Figovskij O.L., Smolin V.F., Nebratenko L.M. Monolithic epoxy, polyurethane and polyester floor coverings. Moscow: Strojzdat Publ.; 1975. (In Russ.)
- Erofeev V.T. Frame building composites (Dr of Technical Sciences dissertation’ abstract). Moscow; 1993. (In Russ.)
- Erofeev V.T., Kruglov V.M., Vatin N.I., Al-Dulaimi S.D.S. Intelligent composites and their use for self-healing concrete. Russian Journal of Transport Engineering. 2019;6(4):11. (In Russ.) https://doi.org/10.15862/12SATS419
- Erofeev V., Shafigullin V., Bobrishev A. investigation of noise - vibration-absorbing polymer composites used in construction. IOP Conference Series: Materials Science and Engineering. 2018;463(4):042034. https://doi.org/10.1088/1757-899X/463/4/042034
- Startsev V.O., Molokov M.V., Blazno A.N., Zhurkovskii M.E., Erofeev V.T., Smirnov I.V. Determination of the heat resistance of polymer construction materials by the dynamic mechanical method. Polymer Science - Series D. 2017;10(4):313-317. https://doi.org/10.1134/S1995421217040141
- Startsev O.V., Makhonkov A., Erofeev V., Gudojnikov S. Impact of moisture content on dynamic mechanical properties and transition temperatures of wood. Wood Material Science and Engineering. 2017;12(1):55-62. https://doi.org/10.1080/17480272.2015.1020566
- Bobryshev A.N., Erofeev V.T., Voronov P.V., Bobryshev A.A., Gavrilov M.A., Barmenkov A.S. Kinetic modes of swelling and dissolution of composites. Fundamental Research. 2016;(6-1):29-35. (In Russ.)
- Erofeev V.T. Fundamentals of technology theory of production, calculation physical and mechanical properties and indicators chemical and biological properties of frame building composites. Structural Mechanics of Engineering Constructions and Buildings. 2022;18(4):283-296. (In Russ.) http://doi.org/10.22363/1815-5235-2022-18-4-283-296
- Erofeev V.T., Al-Dulaimi S.D.S., Fomichev V.T. Chemical aspects of the process of concrete cracks elimination with the help of bacteria. Russian Journal of Transport Engineering. 2018;5(3):12. (In Russ.) https://doi.org/10.15862/13SATS318
- Erofeev V.T., Al-Dulaimi S.D.S., Smirnov V.F. Bacteria for self-healing concretes. Russian Journal of Transport Engineering. 2018;5(4):7. (In Russ.) https://doi.org/10.15862/13SATS318
- Erofeev V.T., Tyuryahin A.S., Tyuryahina T.P., Tingaev A.V. Effective modules of two-phase construction composites with grain filler. Structural Mechanics of Engineering Constructions and Buildings. 2019;15(6):407-414. (In Russ.) http://doi.org/10.22363/1815-5235-2019-15-6-407-414
- Solomatov V.I., Cherkasov V.D., Fomin N.E. Vibration-absorbing composite materials. Saransk: Izd-vo Mordovskogo Universiteta Publ.; 2001. (In Russ.)
- Berg O.Ya., Shcherbakov E.N., Pisanko G.N. High-strength concrete. Moscow: Strojzdat Publ.; 1971. (In Russ.)
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