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Mehanizmi samoceljenja betona
ID Pekovec, Nina (Author), ID Marinšek, Marjan (Mentor) More about this mentor... This link opens in a new window

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Abstract
Kljub svoji nepogrešljivi uporabi betona v današnjem svetu, je življenjska doba tega gradbenega materiala razmeroma kratka, predvsem zaradi njegove nagnjenosti k nastanku razpok. Nastanek teh napak oslabi trdnost in nosilnost konstrukcije ter spodbuja vdiranje vode in drugih snovi vanj, kar na armiranih betonih spodbuja korozijo jeklene strukture. Samoceljenje betona je zmožnost gradbenega materiala, da sam popravlja nastale napake. Mehanizme samoceljenja se glede na dodatke v material delijo na avtogene in avtonomne. Avtogeni mehanizmi potekajo v betonu brez posebnih dodatkov, kar ga uvršča med cenovno najdostopnejši mehanizem samoceljenja. Slabost tega mehanizma je njegova nepredvidljivost, nezanesljivost in zmožnost polnjenja samo majhnih razpok (do 100 µm). Avtogeno samoceljenje se lahko izboljša z raznimi dodatki, ki omejujejo dimenzije razpok, zagotavljajo vodo čez daljše obdobje in priskrbijo mesta za nastanek produktov kemijskih reakcij avtogenega celjenja. Kljub temu pa lahko ta mehanizem zaceli razpoke samo do 140 µm. Z namenom zmožnosti celjenja širših razpok in boljše predvidljivosti mehanizma se je razvilo avtonomno celjenje, ki temelji na dodatku posebnih zdravilnih snovi v betonsko matrico. Pod ta mehanizem spadajo vse metode kemijskega in biološkega samoceljenja.

Language:Slovenian
Keywords:avtogeno samoceljenje, avtonomno samoceljenje, beton, mehanizmi samoceljenja, razpoke, samoceljenje betona, spodbujeno avtogeno samoceljenje
Work type:Bachelor thesis/paper
Typology:2.11 - Undergraduate Thesis
Organization:FKKT - Faculty of Chemistry and Chemical Technology
Year:2024
PID:20.500.12556/RUL-161284 This link opens in a new window
COBISS.SI-ID:214050563 This link opens in a new window
Publication date in RUL:09.09.2024
Views:186
Downloads:72
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Secondary language

Language:English
Title:Self-healing mechanisms of concrete
Abstract:
Despite its indispensable use in today's world, concrete has a relatively short service life, mainly due to its tendency to crack. The formation of these defects weakens the strength and load-bearing capacity of the structure and promotes the ingress of water and other substances into it, which in turn causes the reinforced concrete to corrode the steel structure. Self-healing of concrete is the ability of the building material to repair the defects itself. Depending on the additions to the material, self-healing mechanisms are divided into autogenous and autonomous. Autogenous mechanisms take place in concrete without special additives, making it one of the most affordable self-curing mechanisms. The disadvantages of this mechanism are its unpredictability, its unreliability and its ability to fill only small cracks (up to 100 µm). Autogenous self-healing can be improved by various additives which limit the dimensions of the cracks, provide water over a longer period and provide sites for the formation of the products of the chemical reactions of autogenous healing. However, this mechanism can only heal cracks up to 140 µm. In order to be able to heal wider cracks and to improve the predictability of the mechanism, autonomous healing has been developed based on the addition of special healing agents to the concrete matrix. All chemical and biological self-healing methods fall under this mechanism.

Keywords:autogenous self-healing, autonomous self-healing, concrete, concrete self-healing, cracks, induced autogenous self-healing, self-healing mechanisms

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