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Estimation of Strength and Pore Structure of Alkali-Activated Fire Protection Materials at High Temperature  

Song, Hun (한국세라믹기술원)
Kim, Young-Ho (세진특허법률사무소)
Kim, Wan-Ki (협성대학교 건축공학과)
So, Hyung-Suk (서남대학교 건축공학과)
Publication Information
Journal of The Korean Digital Architecture Interior Association / v.12, no.4, 2012 , pp. 59-66 More about this Journal
Abstract
This study is interested in identifying the effectiveness of alkali-activated fire protection material compounds including the alkali-activator such as potassium hydroxide, sodium silicate and fly ash as the fire resistant finishing materials. Also, this paper is concerned with change in compressive strength and pore structure of the alkali-activated fire protection material at high temperatures. The testing methods of fire protection materials in high temperature properties are make use of TG-DSC and mercury intrusion porosimetry measurements. This study results show that compressive strength is rapidly degraded depending on a rise of heating temperature. Porosity showed a tendency to increase irrespective of specimen types. This is due to both the outbreak of collapse of gel comprising the cement and a micro crack by heating. However, alkali-activated fire protection material composed of potassium hydroxide, sodium silicate and fly ash has the thermal stability of the slight decrease of compressive strength and porosity at high temperature. These thermal stability is caused by the ceramic binding capacity induced by alkali activation reaction by the reason of the thermal analysis result not showing the decomposition of calcium hydrate.
Keywords
Fire; Fire Resistance; alkali-activated; Strength; Porosity;
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