Impact of Rolled and Crushed Aggregate with Natural Pozzolan on the Behavior of HPC

S. Zitouni, M. Maza, N. Tebbal, Z. Rahmouni
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引用次数: 2

Abstract

High performance concrete (HPC) has several advantages in building construction that cannot be achieved using conventional concrete in terms of strength durability, resistance to chemical attack, and workability of high performance concrete are high. The introduction of fillers and additives contributed to the improvement of high-performance concrete (HPC), other parameters also influence the performance of these HPCs, coarse aggregate fraction is known to strongly influence both fresh and hardened concrete’s properties. Consequently, selection of both content and particle size distribution for (HPC) mixture is an important issue regarding the predicted performance of concrete. For to make concrete more improvement , the porosity of the granular skeleton as well as the rheology of our HPC, 3/8 fraction of rolled gravel with smooth and rounded surfaces was introduced, in substitution for the crushed gravel of the same fraction , by testing various combinations of fractions 3/8 of rolled gravel and fraction 8/15 of crushed gravel in the present study, and based on previous results obtained the combinations 35,40 and 45% fraction 3/8 of rolled gravel and 65 , 60 and 55% fraction 8/15 of crushed gravel (binary granular system) respectively, gives a minimal porosity . Super plasticizer and four percentages of pozzolan were experimented. Compressive strength function of coarse aggregate was determined at 7, 14 and 28 days. Results have revealed that the mixtures with modified granule size distribution system ,1.5% of superplasticizer and 5% by weight of pozzolan allow an improvement in the compressive strength of 35.1% relative to the control concrete.
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天然火山灰碾碎骨料对高性能混凝土性能的影响
高性能混凝土(HPC)在建筑施工中具有传统混凝土在强度、耐久性、抗化学侵蚀、和易性等方面无法达到的优点。填料和添加剂的引入有助于高性能混凝土(HPC)的改善,其他参数也影响这些高性能混凝土的性能,已知粗骨料分数对新混凝土和硬化混凝土的性能都有强烈的影响。因此,选择(HPC)混合料的含量和粒径分布是预测混凝土性能的一个重要问题。为使混凝土更加改善,颗粒骨架的孔隙度以及HPC的流变学,3/8的砾石和光滑圆滚表面被引入,在替换的碎砾石相同分数,通过测试的各种组合分数3/8的轧制碎石和分数8/15的碎砾石在目前的研究中,基于之前的结果组合35岁,40 - 45%分数3/8的砾石和65年,滚60%和55%的破碎砾石(二元颗粒体系)的8/15分别给出最小孔隙度。试验了强力增塑剂和四百分火山灰。测定粗骨料在7、14、28 d时的抗压强度函数。结果表明,改性粒径分配体系、掺量为1.5%的高效减水剂和掺量为5%的火山灰混合料的抗压强度比对照混凝土提高了35.1%。
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