Theoretical and Experimental Analysis of Concrete Stress-Strain with Artificial Coarse Aggregates and Steel Fibers

M. Wulandari
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Abstract

Artificial coarse aggregates is an innovation to replace natural coarse aggregate. In this study, the material used for the preparation of coarse aggregate is industrial waste, namely Expanded Polystyrene (EPS). The purpose of using this s in addition to knowing the magnitude of the compressive strength, it is also necessary to know the amount of strain that occurs when the concrete receives a load. In addition to improving the performance of compressive strength, steel fibers are also added to the concrete mixture. The method used in this research is experimental and analyzed with a mathematical model to determine the theoretical modeling of the stress-strain curve. The experimental test results show that the use of steel fibers can increase the compressive strength of normal concrete while the effect of this artificial coarse aggregates can increase the strain value by 39% of normal concrete. The results of experimental and theoretical comparisons of mixture composition which are considered to be closest to the stress-strain curve of normal concrete are concrete with a mixture of 15% artificial coarse aggregates and concrete with a mixture of 15% artificial coarse aggregates and 0,75% steel fibers.
人工粗骨料与钢纤维混凝土应力-应变的理论与试验分析
人工粗集料是替代天然粗集料的一种创新。在本研究中,用于制备粗骨料的材料是工业废料,即发泡聚苯乙烯(EPS)。使用这种方法的目的除了知道抗压强度的大小外,还需要知道混凝土在承受荷载时发生的应变量。除了提高抗压强度性能外,钢纤维也被添加到混凝土混合料中。本研究采用的方法是通过实验和数学模型分析来确定应力-应变曲线的理论模型。试验结果表明,钢纤维的使用可提高普通混凝土的抗压强度,而人工粗骨料的作用可使普通混凝土的应变值提高39%。试验和理论比较的结果认为最接近正常混凝土的应力-应变曲线的混合料组成是15%人工粗骨料混合料的混凝土和15%人工粗骨料与0.75%钢纤维混合料的混凝土。
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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