The Influence of Waste Plastic Fiber on the Characteristics of Light Weight Concrete with Expanded Polystyrene (EPS) as Aggregate

Aya Sabah Salah Alden, Abdulkader Ismail AL-Hadethi
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Abstract

This research aims to create lightweight concrete mixtures containing waste from local sources, such as expanded polystyrene (EPS) beads and waste plastic fibers (WPFs), all are cheap or free in the Republic of Iraq and without charge. The modern, rigid, and mechanical properties of LWC were investigated, and the results were evaluated. Three mixtures were made, each with different proportions of plastic fibers (0.4%, 0.8%, 1.2%), in addition to a lightweight concrete mixture containing steak fibers (0.4%, 0.8%, 1.2%), in addition to a lightweight concrete mixture. It contains 20% EPS. The study found that the LWC caused by the addition of WPFs reduced the density (lightweight) of the concrete mixtures because EPS tends to form more blocks, absorb water, and dry the mixture. While the increase in WPF content increased in compressive strength, as the compressive strength of the concrete mix containing (EPS) was only 13.6 MPa, the compressive strength increased to 17.6 MPa when WPFs were added. The addition of plastic also increased the bending resistance, where the bending resistance of the concrete mix containing (EPS) was only 2.26 MPa and increased to 2.66 MPa when (WPFs) were added.
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废塑料纤维对膨胀聚苯乙烯(EPS)轻混凝土性能的影响
这项研究的目的是制造轻质混凝土混合物,其中含有来自当地的废物,例如膨胀聚苯乙烯(EPS)珠和废塑料纤维(wpf),这些在伊拉克共和国都很便宜或免费,而且不收费。研究了LWC的现代、刚性和力学性能,并对结果进行了评价。制作了三种混合料,每种混合料中含有不同比例的塑料纤维(0.4%、0.8%、1.2%),以及含有牛排纤维(0.4%、0.8%、1.2%)的轻质混凝土混合料,以及轻质混凝土混合料。它含有20%的EPS。研究发现,由于EPS倾向于形成更多的块体,吸收水分,并使混合物干燥,因此加入wpf引起的LWC降低了混凝土混合物的密度(轻质)。随着WPF掺量的增加,抗压强度也随之增加,含EPS混凝土的抗压强度仅为13.6 MPa,加入WPF后,抗压强度增加到17.6 MPa。塑料的加入也提高了抗弯性能,其中含EPS混凝土的抗弯性能仅为2.26 MPa,加入wpf后抗弯性能提高到2.66 MPa。
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来源期刊
自引率
0.00%
发文量
24
审稿时长
16 weeks
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