Flexural Behavior of Normal and High Strength Self-Curing Self- Compacted Concrete Beams of Local Materials

Enas Khudhur, None Aqeel H. Chkheiwer, None Adel A. Al Menhosh
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Abstract

In some construction industries, there are difficulties in achieving the required concrete compaction, Self-compaction is an alternative option. Working with self-compaction self-curing concrete requires a unique approach. This study aims to examine the possibility of producing self-compacting concrete with normal and high self-cure rates. This research observed how both the self-curing and self-compacting concrete behaved under normal and high-strength conditions. Two stages were prepared for this investigation. The first stage of this research studied the effect of a curing agent on the fundamental characteristics of both normal-strength and high-strength self-compacting concrete, with the aim of achieving self-curing self-compacting concrete. The primary variables of this study include the grade of concrete, the type of curing agent, the reinforcing bars, and the dosage of these variables. In the second stage, reinforced concrete beams were cast with one of the two proposed concrete types, and their behavior was studied. The findings were analyzed in terms of the beginning cracking loads, the ultimate loads, and the crack patterns of the testing beams. According to the results, both the normal-strength and the high-strength varieties of self-curing self-compacting concrete are effective in providing structural features, which are absent from the processes of curing and compacting. Curing chemicals are utilized to mitigate the process of water evaporation in self-compacting concrete, hence enhancing the water retention capabilities of self-compacting concretes that possess enough hardened concrete characteristics.
本地材料普通和高强度自养护自密实混凝土梁的受弯性能
在一些建筑行业,在实现所需的混凝土压实方面存在困难,自压实是另一种选择。处理自密实自养护混凝土需要一种独特的方法。本研究旨在探讨生产具有正常和高自固化率的自密实混凝土的可能性。本研究观察了自养护和自密实混凝土在正常和高强条件下的表现。本研究分为两个阶段。本研究的第一阶段研究了固化剂对普通强度和高强自密实混凝土基本特性的影响,目的是实现自养护自密实混凝土。本研究的主要变量包括混凝土的等级、固化剂的类型、钢筋以及这些变量的用量。在第二阶段,用两种混凝土类型中的一种浇筑钢筋混凝土梁,并研究其性能。对试验梁的初始开裂荷载、极限开裂荷载和开裂形态进行了分析。结果表明,自养护自密实混凝土的普通强度和高强品种都能有效地提供养护和密实过程中所缺乏的结构特征。养护化学品用于减轻自密实混凝土中的水分蒸发过程,从而增强具有足够硬化混凝土特性的自密实混凝土的保水能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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