Инд. авторы: Kazantseva L.K., Seretkin Y.V., Puzanov I.S.
Заглавие: STABILITY OF FOAM-SILICATE AGGREGATES AGAINST ALKALI IN CEMENT
Библ. ссылка: Kazantseva L.K., Seretkin Y.V., Puzanov I.S. STABILITY OF FOAM-SILICATE AGGREGATES AGAINST ALKALI IN CEMENT // Glass and Ceramics. - 2018. - Vol.74. - Iss. 9-10. - P.372-377. - ISSN 0361-7610. - EISSN 1573-8515.
Внешние системы: DOI: 10.1007/s10717-018-9997-5; РИНЦ: 35506096; SCOPUS: 2-s2.0-85040817937; WoS: 000423143000015;
Реферат: eng: The chemical activity with respect to alkali in cement (ASR resistance) for granulated aggregates (Penosital (R), classic foam glass, microspheres of fly ash) in aqueous extract from concrete was investigated. The basic conditions for reaching ASR resistance of aggregates such as foam sital and microspheres of fly ash were determined.
Ключевые слова: crystallization of glass; foam glass; microspheres of fly ash; alkali-silicate reaction; foam sital; heat-insulation materials;
Издано: 2018
Физ. характеристика: с.372-377
Цитирование: 1. Standard Test Method for Determination of Length Change of Concrete Due to Alkali-Silica Reaction, ASTM C 1293-01: Annual Book of ASTM Standards, American Society for Testing and Materials, Philadelphia (2002), V. 04.02. 2. C. Carlos, M. Mancio, K. Shomglin, et al., Celerated Laboratory Testing for Alkali-Silica Reaction Using ASTM 1293 and Comparison with ASTM 1260 (2004). 3. F. M. Ivanov, G. V. Lyubarskaya, and N. K. Rozental’, “Interaction of aggregates in concrete with alkalis in cement and additives,” Beton Zhelezobeton, No. 1, 15 – 18 (1995). 4. http://www.penosytal.com/comparecement.html. 5. http://www.penosytal.com/pub11.html. 6. M. A. Dushkina, Development of Compositions and Technology for Obtaining Foam-Glass-Crystal Materials Based on Silica Raw Material, Author’s Abstract of Candidate’s Thesis [in Russian], Tomsk (2015). 7. M. A. Dushkina, “Evaluation of the stability of foam-glass materials against corrosive liquids,” in: 29th International Scientific and Applications Conference on Modern Engineering and Technology, Sec. 6, Materials Science [in Russian], Tomsk (2013), pp. 48 – 49. 8. L. K. Kazantseva and I. S. Puzanov, “Crystallization of amorphous phase in a foam glass as a method of reduction of the alkali-silica reaction,” Steklo Keram., No. 3, 3 – 8 (2016); L. K. Kazantseva and I. S. Puzanov, “Crystallization of amorphous phase in a foam glass as a method of reduction of the alkali-silica reaction,” Glass Ceram., 73(3 – 4), 77 – 81 (2016). 9. ST SEV 4421–83. Protection from Corrosion in Construction: Protective Properties of Concrete with Respect to Steel Fixtures. Electrochemical Methods of Testing, Dresden (1983). 10. Yu.M. Butt, M. M. Sychev, and V. V. Timashev, Chemical Technology of Binding Materials [in Russian], Vyssh. Shkola, Moscow (1980).