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Engineering Performance of Concrete Incorporated with Recycled High-Density Polyethylene (HDPE)—A Systematic Review

机译:混凝土的工程性能与再生高密度聚乙烯(HDPE) - A系统综述

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摘要

Incorporating recycled plastic waste in concrete manufacturing is one of the most ecologically and economically sustainable solutions for the rapid trends of annual plastic disposal and natural resource depletion worldwide. This paper comprehensively reviews the literature on engineering performance of recycled high-density polyethylene (HDPE) incorporated in concrete in the forms of aggregates or fiber or cementitious material. Optimum 28-days’ compressive and flexural strength of HDPE fine aggregate concrete is observed at HDPE-10 and splitting tensile strength at HDPE-5 whereas for HDPE coarse aggregate concrete, within the range of 10% to 15% of HDPE incorporation and at HDPE-15, respectively. Similarly, 28-days’ flexural and splitting tensile strength of HDPE fiber reinforced concrete is increased to an optimum of 4.9 MPa at HDPE-3 and 4.4 MPa at HDPE-3.5, respectively, and higher than the standard/plain concrete matrix (HDPE-0) in all HDPE inclusion levels. Hydrophobicity, smooth surface texture and non-reactivity of HDPE has resulted in weaker bonds between concrete matrix and HDPE and thereby reducing both mechanical and durability performances of HDPE concrete with the increase of HDPE. Overall, this is the first ever review to present and analyze the current state of the mechanical and durability performance of recycled HDPE as a sustainable construction material, hence, advancing the research into better performance and successful applications of HDPE concrete.
机译:混凝土制造并入回收的废塑料是塑料每年处置和自然资源枯竭全球的快速发展趋势中最具有经济和生态可持续发展的解决方案之一。本文全面回顾在混凝土结合在聚集体或纤维或水泥质材料的形式回收的高密度聚乙烯(HDPE)的性能工程文献中。最佳28天的HDPE细骨料混凝土的抗压强度和抗弯强度在HDPE-10和劈拉强度,观察到在HDPE-5,而对于HDPE粗骨料混凝土,在10%的范围内,以在HDPE HDPE掺入和15% -15,分别。类似地,增强的28天的抗弯和分裂HDPE纤维的拉伸强度混凝土是在HDPE-3和4.4兆帕分别增加至4.9兆帕的最佳在HDPE-3.5,和比标准/素混凝土基质(HDPE-更高0),在所有列入HDPE水平。疏水性,光滑的表面纹理和HDPE的非反应性已导致混凝土基体和HDPE,从而减少HDPE混凝土的机械和耐久性性能与HDPE的增加之间较弱的键。总的来说,这是有史以来第一次审查存在和分析的再生HDPE的机械性能和耐久性能的当前状态为可持续建筑的材料,因此,推进研究更好的性能和HDPE混凝土的成功的应用。

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