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Recuring Studies on Concretes Subjected to Elevated Temperatures and Suddenly Cooled by Water Quenching

机译:高温骤冷骤冷混凝土的反复研究

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Concrete is found to undergo degradation when subjected to elevated temperatures during an accidental event, such as fire and lose substantial amount of its original strength. The loss of strength in concrete is mainly attributed to the decomposition of Calcium Silicate Hydrate (C-S-H) and release of chemically bound water, which begins when the exposure temperature exceeds 500℃. When such a concrete is supplied with water and allowed to recure, it is found to recover substantial amount of its lost strength. This work is carried out to investigate the effect of recuring on strength recovery of un-blended and blended concrete specimen (100 mm cubes) subjected to elevated temperatures from 400℃ to 700℃, in steps of 100℃, for a retention period of two hours at the designated temperatures. The concrete cubes immediately after exposure were subjected to thermal shock by quenching them in water, and then temperature of thermally shocked concrete is allowed to cool to room temperature. The cooled specimen were then recured in water for 1, 3, 7, 14, 21, 28, 56 days and tested for compressive strength recovery. These studies were carried out for Portland Cement (PC) based concrete and Portland & Granulated Blast Furnace Slag (70% PC + 30% GGBS) based concrete (blended concrete), and some interesting results are presented and discussed in this paper.
机译:发现混凝土在意外事件(例如着火)中经受高温时会降解,并失去大量的原始强度。混凝土强度的损失主要归因于水合硅酸钙(C-S-H)的分解和化学结合水的释放,这种化学作用从暴露温度超过500℃开始。当给这种混凝土供水并使其复原时,发现它能恢复大量的强度损失。进行这项工作以100℃为步长,以100℃为步长,研究调压对未掺和掺混混凝土试样(100毫米立方体)以100℃为步长的强度恢复的影响。在指定温度下的小时数。刚暴露后的混凝土立方体通过在水中淬火而受到热冲击,然后使热冲击混凝土的温度冷却至室温。然后将冷却的样品在水中重新放置1、3、7、14、21、28、56天,并测试其抗压强度。这些研究是针对波特兰水泥(PC)基混凝土和波特兰和粒状高炉矿渣(70%PC + 30%GGBS)基混凝土(混合混凝土)进行的,本文给出并讨论了一些有趣的结果。

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