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Effect of polypropylene plastic on concrete properties as a partial replacement of stone and brick aggregate

机译:聚丙烯塑料对混凝土性能作为石材和砖骨料局部替代的影响

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The application of waste materials in concrete is getting more popular in the concrete industries as it can reduce the associated costs and environmental impacts. The present study investigates the performances of concrete while incorporating polypropylene (PP) plastic, derived from waste plastic products, as a partial replacement of natural stone aggregate (SA) and burnt clay brick aggregate (BA). The main variables include the percentage of PP aggregate (PPA) (0%, 10 %, 20 %, and 30 %), water-cement ratio (0.45 and 0.55), and types of aggregate (SA and BA). Results are presented in terms of workability, hardened density, compressive, tensile strengths, modulus of rupture, modulus of elasticity (MoE), ultrasonic pulse velocity (UPV), and cost analysis. Furthermore, empirical equations are proposed for predicting different properties of concrete; especially, predicting compressive strengths from the UPV values. Results indicated that the slump value increased with increasing the percentage of PPA. Concrete with 10 % PPA exhibited higher compressive strength, modulus of rupture, and splitting tensile strengths, even, higher than that of the control stone aggregate concrete (SAC) and control brick aggregate concrete (BAC). The UPV values varied with aggregate types and PPA content. Both the compressive strength and the UPV values decreased with the increasing percentages of PPA from 10 to 30. Furthermore, SAC exhibited higher compressive strength and UPV values compared to BAC. A good correlation was found between the compressive strength and the UPV values for concrete with PPA. From the cost sensitivity analysis, it was observed that concrete containing 10 % PP content had the highest strength over cost ratio compared to the control and other PPA concrete. Therefore, it is recommended to use up to 10 % PPA either with stone aggregate or brick aggregate for structural concrete. Finally, this study will open new opportunities for producing green concrete by using non-biodegradable waste plastic materials.
机译:废料在混凝土中的应用在混凝土产业中越来越受欢迎,因为它可以降低相关成本和环境影响。本研究调查了混凝土的性能,同时掺入衍生自废塑料制品的聚丙烯(PP)塑料,作为天然石骨料(SA)和烧焦粘土砖骨料(BA)的部分替代。主要变量包括PP骨料(PPA)(0%,10%,20%和30%),水水泥比(0.45和0.55)的百分比,以及骨料类型(SA和BA)。结果以可加工性,硬化密度,压缩,抗拉强度,破裂模量,弹性模量(MOE),超声波脉冲速度(UPV)和成本分析而介绍。此外,提出了用于预测混凝土的不同性质的经验方程;特别地,预测来自UPV值的压缩强度。结果表明,随着PPA的百分比增加,坍落度增加。具有10%PPA的混凝土表现出更高的抗压强度,破裂模量和分裂拉伸强度,甚至高于控制石骨料混凝土(SAC)和控制砖骨料混凝土(BAC)。 UPV值随着聚合类型和PPA内容而变化。抗压强度和UPV值均随着PPA的百分比从10至30的增加而降低。此外,与Bac相比,SAC表现出更高的抗压强度和UPV值。抗压强度与PPA混凝土的抗压强度和UPV值之间发现了良好的相关性。从成本敏感性分析中,观察到含有10%PP含量的混凝土与对照和其他PPA混凝土相比具有最高强度的成本比。因此,建议使用高达10%的PPA与结构混凝土的石炭骨料或砖骨料。最后,本研究将通过使用非可生物降解的废物材料开辟生产绿色混凝土的新机会。

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