Correlating the Durability Properties of Roller Compacted Concrete

S. Sarsam
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Abstract

Roller compacted concrete is the zero-slump concrete mixture, usually prepared at low cement content and low workability, and subjected to compaction by rollers to increase the density and improve the aggregate particles interlock. It is recommended for heavy duty pavement and can withstand harsh environment. Modeling the physical behavior of roller compacted concrete exhibits a quick and easy start to predict the future behavior of the material. In the present assessment, roller compacted concrete mixtures have been prepared in the laboratory using three percentages of Portland cement (10, 12, and 16) % to simulate low, medium, and high cement content from roller compacted concrete point of view. The mixtures were poured into the cylinder mold of 101.6 mm diameter and 116.4 mm height in five successive layers. Each layer had practiced 25 blows of the modified Proctor hammer with 4.5 kg weight, falling from 450 mm height. Specimens were withdrawn from the mold after 24 hours and cured for 28 days in a water bath at 20°C. Specimens were subjected to bulk density, absorption, and porosity determination. Test results were analyzed and modeled. It can be observed that the gradation of aggregates (dense or gap)does not exhibit a significant issue in the absorption-density relationship. However, Dense gradation exhibits lower porosity than gap gradation. It can be concluded that the obtained mathematical models may be implemented to predict the relationship between the durability parameters of roller compacted concrete in terms of porosity, absorption, and density with high coefficients of determination.
碾压混凝土耐久性的相关性研究
碾压混凝土是零坍落度混凝土混合料,通常在低水泥掺量和低和易性条件下配制,经碾压机压实,以增加密度,改善骨料颗粒互锁。适用于重型路面,能承受恶劣环境。对碾压混凝土的物理行为进行建模,可以快速简便地开始预测材料的未来行为。在目前的评估中,在实验室中使用三种百分比的波特兰水泥(10%、12%和16%)制备了碾压混凝土混合物,以从碾压混凝土的角度模拟低、中、高水泥含量。将混合物连续五层倒入直径为101.6 mm、高度为116.4 mm的圆柱形模具中。每一层都练习用4.5公斤重的改良普罗克特锤击25下,从450毫米的高度落下。试件在24小时后从模具中取出,在20°C水浴中固化28天。试样进行了体积密度、吸收率和孔隙率的测定。对试验结果进行了分析和建模。可以观察到,聚集体的级配(密集或间隙)在吸收-密度关系中没有表现出显著的问题。致密级配的孔隙度低于间隙级配。所得数学模型可用于预测碾压混凝土耐久性参数在孔隙率、吸收量和密度方面的关系,且具有较高的决定系数。
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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