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开发具有高体积再生 EPS 废料的生态高效轻量自密实混凝土。

Development of eco-efficient lightweight self-compacting concrete with high volume of recycled EPS waste materials.

机构信息

Department of Scholarships & Foreign Relation, University of Fallujah, Fallujah, Iraq.

Civil Engineering Department, University of Garmian, Kalar, Kurdistan Region, Iraq.

出版信息

Environ Sci Pollut Res Int. 2021 Sep;28(36):50028-50051. doi: 10.1007/s11356-021-14213-w. Epub 2021 May 4.

Abstract

Reusing the industrial waste materials is one of the main aims of sustainability and achieve the environmental protection. However, concrete is the main production for recycling waste materials and cleaning the climate. The utilization of self-consolidating lightweight concrete (SCLC) can achieve two important advantages of the structure self-weight reduction and improving workability. This paper examined the effect of waste expanded polystyrene (EPS) beads on the workability and hardened characteristics of sustainable SCLCs. Six different EPS volume fractions up to 80% replaced with normal coarse aggregate to produce SCLC mixtures with water to binder (w/b) ratio of 0.35. A total binder content of 500 kg/m by including 20% waste ceramic powder with 80% Portland cement and fine aggregate consist of river sand and fine ceramic with 1:1 ratio in all SCLC mixes. The workability of SCLCs was examined by slump flow time and diameter, L-box height ratio, V-funnel flow time, and segregation resistance. Moreover, the hardened properties tested at different curing periods such as compressive strength at 7, 28, and 90 days; flexural strength at 28 and 90 days; and splitting tensile strength, dry density, voids percent, water absorption, ultrasonic pulse velocity (UPV); and scanning electron microscope (SEM) at 28 days. The results verified that workability of SCLCs enhanced as EPS incorporation increased and achieved the limitations required for self-compacting concrete (SCC) while the strengths value curtailed but the compressive strength satisfied the lower value indicated by ACI for structural purposes. Depending on the water absorption and UPV, results illustrated that all produced sustainable SCLC mixtures had a good durability. Furthermore, a high linear correlation was noticed between the results.

摘要

重复利用工业废料是可持续发展和实现环境保护的主要目标之一。然而,混凝土是回收废料和清洁气候的主要产物。自密实轻集料混凝土(SCLC)的利用可以实现结构自重减轻和改善工作性能的两个重要优势。本文研究了废膨胀聚苯乙烯(EPS)珠粒对可持性 SCLC 工作性能和硬化特性的影响。将 6 种不同的 EPS 体积分数高达 80%的废 EPS 珠粒替代普通粗集料,以制备 w/b 比为 0.35 的 SCLC 混合物。在所有 SCLC 混合物中,总胶凝材料含量为 500kg/m,其中包括 20%废陶瓷粉和 80%波特兰水泥以及由河砂和细陶瓷组成的细集料,比例为 1:1。通过坍落度流动时间和直径、L 箱高度比、V 漏斗流动时间和抗离析性来检验 SCLC 的工作性能。此外,在不同养护期内测试了硬化性能,如 7、28 和 90 天的抗压强度;28 和 90 天的抗弯强度;以及劈裂拉伸强度、干密度、孔隙率、吸水率、超声波脉冲速度(UPV);和 28 天的扫描电子显微镜(SEM)。结果表明,随着 EPS 掺入量的增加,SCLC 的工作性能得到提高,满足了自密实混凝土(SCC)的要求,而强度值有所降低,但抗压强度满足了 ACI 对结构目的的较低要求。根据吸水率和 UPV,结果表明所有生产的可持续 SCLC 混合物都具有良好的耐久性。此外,还注意到结果之间存在高度线性相关性。

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