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Vpliv izbranega dolomitnega agregata na lastnosti svežega in obstojnost strjenega betona : doktorska disertacija
ID Turk, Tilen (Author), ID Bokan-Bosiljkov, Violeta (Mentor) More about this mentor... This link opens in a new window, ID Marinšek, Marjan (Comentor), ID Štukovnik, Petra (Comentor), ID Jagličić, Zvonko (Member of the commission for defense), ID Sever Škapin, Andrijana (Member of the commission for defense), ID Rogan Šmuc, Nastja (Member of the commission for defense)

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Abstract
V doktorski disertaciji smo raziskovali vpliv alkalno karbonatne reakcije (ACR) na obstojnost cementnih kompozitov. Za namen študije smo uporabili dolomitni agregat in referenčni apnenčev agregat. Poskuse smo izvajali pri različnih starostih kompozitov, različnem cementu (CEM I in CEM III/B), različnem vodocementnem razmerju (0,45 in 0,6) in izpostavljenosti različnim mehanskim in kemijskim dejavnikom (zmrzovanje in tajanje v prisotnosti talilne soli, sulfatni napad ob prisotnosti sušenja in vlaženja ter kislinski sulfatni napad). Ugotovili smo, da alkalno karbonatna reakcija pozitivno vpliva na obstojnost cementnih kompozitov v primeru zmrzovanja in tajanja in prisotnosti talilnih soli, pri čemer so se kot najbolj obstojni izkazali pospešeno starani dolomitni kompoziti s CEM III/B cementom. S kemijskimi analizami smo ugotovili, da je pri betonu z alkalno karbonatno reakcijo tvorba hidrotalcita kemijsko spontanejša reakcija, ta pa povzroči njegovo boljšo obstojnost. Ugotovili smo tudi, da lahko zasičenost porne raztopine z ioni, ki so posledica ACR, pripomore k zmanjšanju temperature zmrzovanja, kar ravno tako pomembno doprinese k njegovi boljši obstojnosti. Pri izpostavljenosti dolomitnih kompozitov sulfatnemu napadu in kislinskemu sulfatnemu napadu pa so se le ti izkazali kot manj obstojni v primerjavi z apnenčevimi kompoziti. Do tega je prišlo zaradi tvorbe sekundarnih sulfatnih produktov, ki so oslabili mehanske lastnosti kompozitov. Preverjali smo tudi vpliv recikliranega agregata na lastnosti sveže betonske mešanice in s kemijskimi analizami ugotovili njegovo kompleksno sestavo. S pomočjo termodinamskih modelov in kemijskih analiz ter poznavanja vpliva žveplovih spojin na obstojnost kompozitov smo lahko predpostavili mehanizem, ki vpliva na podaljšan čas vezanja cementnega kompozita, določili primerno koncentracijo agregata, ki nima vpliva na hitrost vezanja ter predpostavili njegovo obstojnost v njegovem življenjskem ciklu.

Language:Slovenian
Keywords:doktorske disertacije, grajeno okolje, dolomit, apnenec, agregat, beton, kloridi, sulfati, recikliran agregat, portland cement, žlindrin cement, pospešeno staranje, obstojnost
Work type:Doctoral dissertation
Typology:2.08 - Doctoral Dissertation
Organization:FGG - Faculty of Civil and Geodetic Engineering
Place of publishing:Ljubljana
Publisher:[T. Turk]
Year:2025
Number of pages:XXIV, 116 str.
PID:20.500.12556/RUL-182501 This link opens in a new window
UDC:666.972.1:691.322(043.3)
COBISS.SI-ID:240396803 This link opens in a new window
Publication date in RUL:14.05.2026
Views:263
Downloads:0
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Secondary language

Language:English
Title:Impact of dolomite aggregate on the properties of fresh and durability of hardened concrete : doctoral dissertation
Abstract:
Doctoral dissertation explores the impact of alkali carbonate reaction (ACR) on the durability of cement composites. Therefore, the study utilized dolostone and limestone aggregate as reference material. The experiments covered various dependent properties relevant to planning durable concrete, including different aging regimes, various cement types (CEM I and CEM III/B), different water/cement ratios (0.45 and 0.6), and exposure to different mechanical and chemical degrading mechanisms. The study observed that ACR enhances the durability of cement composites when subjected to freeze/thaw cycles and de-icing agents, particularly when aged CEM III/B binder is employed. Chemical analysis confirmed that hydrotalcite, a byproduct of ACR, reacts spontaneously and exhibits superior frost resistance compared to limestone counterparts, where hydrotalcite is present in lower concentrations. Additionally, the improved frost resistance of dolostone composites can be attributed to the presence of enriched pore solution containing ACR ions, which lower freezing temperature and potentially enhances durability. However, when dolostone composites were exposed to sulfates, ACR resulted in reduced durability compared to reference limestone composites. Chemical analysis revealed the formation of secondary sulfate products that negatively impacted the mechanical properties of dolostone composites. Furthermore, the processes influencing the setting time of concrete when recycled aggregate is incorporated were investigated. Chemical analysis revealed a complex composition of the aggregate. Thermodynamic models, chemical analyses, and knowledge about sulfurous species and their impact on cement composite durability were employed to propose a mechanism affecting the setting time of the composite. Additionally, recommended concentrations of recycled aggregate that did not affect setting time were determined. Finally, the dissertation concluded by drawing conclusions about the composite durability during its service life.

Keywords:built environment, dolostone, limestone, aggregate, concrete, chlorides, sulphates, recycled aggregate, portland cement, slag cement, accelerated aging, durability

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