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publication name Coupled effect of elevated temperature and cooling condition on the properties of Ground Clay Bricks mortars
Authors M.A. Abd-El.Aziz, S. Abd.El.Aleem and Mohamed Heikal
year 2013
keywords
journal
volume Not Available
issue Not Available
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Local/International International
Paper Link http://www.degruyter.com/view/j/sjce.2013.21.issue-4/sjce-2013-0020/sjce-2013-0020.xml?format=INT
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Abstract

When a concrete structure is exposed to fire and cooling, some deterioration in its chemical resistivity and mechanical properties takes place. This deterioration can reach a level at which the structure may have to be thoroughly renovated or completely replaced. In this investigation, four types of cement mortars, ground clay bricks (GCB)/sand namely 0/3, 1/2, 2/1 and 3/0, were used. Three different cement contents were used: 350, 400 and 450 kg/m3. All the mortars were prepared and cured in tap water for 3 months and then kept in laboratory atmospheric conditions up to 6 months. The specimens were subjected to elevated temperatures up to 700°C for 3h and then cooled by three different conditions: water, furnace, and air cooling. The results show that all the mortars subjected to fire, irrespective of cooling mode, suffered a significant reduction in compressive strength. However, the mortars cooled in air exhibited a relativity higher reduction in compressive strength rather than those water or furnace cooled. The mortars containing GCB/sand (3/0) and GCB/sand (1/2) exhibited a relatively higher thermal stability than the others.

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