KALINA, Lukas, Vlastimil BILEK, Martin SEDLACIK, Vladislav CABA, Jiri SMILEK, Jiri SVEC, Eva BARTONICKOVA, Pavel ROVNANIK a Josef FLADR. Physico-Chemical Properties of Lithium Silicates Related to Their Utilization for Concrete Densifiers. Energy Materials: Materials Science and Engineering for Energy Systems. BASEL: Taylor & Francis, 2023, roč. 16, č. 6, s. 1-10. ISSN 1996-1944. Dostupné z: https://dx.doi.org/10.3390/ma16062173.
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Základní údaje
Originální název Physico-Chemical Properties of Lithium Silicates Related to Their Utilization for Concrete Densifiers
Autoři KALINA, Lukas (garant), Vlastimil BILEK, Martin SEDLACIK, Vladislav CABA, Jiri SMILEK, Jiri SVEC, Eva BARTONICKOVA, Pavel ROVNANIK a Josef FLADR.
Vydání Energy Materials: Materials Science and Engineering for Energy Systems, BASEL, Taylor & Francis, 2023, 1996-1944.
Další údaje
Originální jazyk angličtina
Typ výsledku Článek v odborném periodiku
Obor 10300 1.3 Physical sciences
Stát vydavatele Švýcarsko
Utajení není předmětem státního či obchodního tajemství
WWW URL
Impakt faktor Impact factor: 3.400 v roce 2022
Kód RIV RIV/00216224:90242/23:00133750
Organizační jednotka CIISB III
Doi http://dx.doi.org/10.3390/ma16062173
UT WoS 000960158100001
Klíčová slova anglicky concrete densifier; lithium silicate; surface treatment; gelation process
Štítky CF NMR, ne MU, rivok
Příznaky Mezinárodní význam, Recenzováno
Změnil Změnil: Mgr. Michal Petr, učo 65024. Změněno: 11. 4. 2024 23:21.
Anotace
Protection of concrete against aggressive influences from the surrounding environment becomes an important step to increase its durability. Today, alkali silicate solutions are advantageously used as pore-blocking treatments that increase the hardness and impermeability of the concrete's surface layer. Among these chemical substances, known as concrete densifiers, lithium silicate solutions are growing in popularity. In the present study, the chemical composition of the lithium silicate densifiers is put into context with the properties of the newly created insoluble inorganic gel responsible for the micro-filling effect. Fourier-transform infrared spectroscopy was used as a key method to describe the structure of the formed gel. In this context, the gelation process was studied through the evolution of viscoelastic properties over time using oscillatory measurements. It was found that the gelation process is fundamentally controlled by the molar ratio of SiO2 and Li2O in the densifier. The low SiO2 to Li2O ratio promotes the gelling process, resulting in a rapidly formed gel structure that affects macro characteristics, such as water permeability, directly related to the durability of treated concretes.
Návaznosti
90242, velká výzkumná infrastrukturaNázev: CIISB III
VytisknoutZobrazeno: 26. 5. 2024 16:02