塑料废弃物对沥青混凝土体积特性和弹性模量的影响

Husham Al-Tuwayyij, Noorance Al-Mukaram, S. S. Musa
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引用次数: 0

摘要

最近,塑料在许多产品中的使用导致了大量的塑料垃圾,这些垃圾通常难以处理,回收成本也很高。这个问题已经被许多研究人员和环保组织认为需要认真考虑在不同领域回收和再利用塑料废物,例如沥青混合物。在本文中,通过4.75毫米筛子的骨料被5、7、9和11%的塑料瓶所取代。本文采用干燥法,用马歇尔法研究了混合料的体积性能变化。还进行了重复间接拉伸载荷试验,以确定混合料的弹性模量。马歇尔的稳定性,空气的空隙,单位重量,流量,并在矿物团聚体的空隙进行了检查。结果与基准样品进行了对比分析。结果表明,掺塑降低了骨料用量,降低了最佳沥青含量(OAC)。此外,加入塑料后,混合料的体积性能得到改善,使用寿命延长。塑性模量(RM)随塑性添加量的增加而增加。在沥青混合物中重复使用塑料实现了交通运输领域的环保解决方案,因为它减少了沥青和骨料的数量,降低了塑料回收的成本。研究结果表明,该材料的最佳掺量为11%。Doi: 10.28991/CEJ-2023-09-04-012全文:PDF
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Impact of Plastic Waste on The Volumetric Characteristics and Resilient Modulus of Asphalt Concrete
Recently, the use of plastic in many products has led to a huge amount of plastic waste, which is typically difficult to treat and expensive to recycle. This problem has been considered by many researchers and environmental organizations as requiring serious considerations about recycling and reusing plastic waste in different fields, such as asphalt mixtures. In this paper, aggregate passing a 4.75-mm sieve was replaced by 5, 7, 9, and 11% of plastic bottles used for drinking purposes. The dry method was adopted in this work, and the changes in the mixture’s volumetric properties were investigated using the Marshall method. A repeated indirect tensile load test was also conducted to determine the mixture’s resilient modulus. Marshall’s stability, air voids, unit weight, flow, and voids in mineral aggregates were examined. The results were compared and analyzed with the base sample. It was observed that adding plastic decreased aggregate consumption and reduced the optimum asphalt content (OAC). Additionally, the volumetric properties of the mixture improved and its service life was extended after adding plastic. It was also observed that the value of the resilient modulus (RM) increased when the percentage of added plastic increased as well. Reuse of plastic in asphalt mixtures achieves the concept of an environmentally friendly solution in the transportation area because it reduces the amount of asphalt and aggregates and reduces the costs of recycling plastic. Moreover, the optimal plastic content in this paper was achieved at 11%. Doi: 10.28991/CEJ-2023-09-04-012 Full Text: PDF
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来源期刊
Open Civil Engineering Journal
Open Civil Engineering Journal Engineering-Civil and Structural Engineering
CiteScore
1.90
自引率
0.00%
发文量
17
期刊介绍: The Open Civil Engineering Journal is an Open Access online journal which publishes research, reviews/mini-reviews, letter articles and guest edited single topic issues in all areas of civil engineering. The Open Civil Engineering Journal, a peer-reviewed journal, is an important and reliable source of current information on developments in civil engineering. The topics covered in the journal include (but not limited to) concrete structures, construction materials, structural mechanics, soil mechanics, foundation engineering, offshore geotechnics, water resources, hydraulics, horology, coastal engineering, river engineering, ocean modeling, fluid-solid-structure interactions, offshore engineering, marine structures, constructional management and other civil engineering relevant areas.
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