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低密度聚乙烯废料改性沥青混合料的机械与经济可行性:通往可持续道路建设之路

Mechanical and economical feasibility of LDPE Waste-modified asphalt mixtures: pathway to sustainable road construction.

作者信息

Singh Aakash, Gupta Ankit

机构信息

Department of Civil Engineering, Indian Institute of Technology (BHU) Varanasi, Varanasi, India.

出版信息

Sci Rep. 2024 Oct 25;14(1):25311. doi: 10.1038/s41598-024-75196-5.

Abstract

This research study evaluates the impact of low-density polyethylene (LDPE) modified asphalt binder on the mechanical performance and economical feasibility of asphalt concrete (AC) mixtures. LDPE-modified mixtures were compared with conventional mixes prepared with various binders commonly used in India, i.e., VG 30, VG 40, Polymer-Modified Binder (PMB), and Crumb Rubber Modified Binder (CRMB). LDPE-modified mixtures exhibit superior mechanical performance, increasing the stiffness of AC mixtures by 171% and 125% at 25 °C and 35 °C, respectively, compared to VG 30 base binder. Additionally, the indirect tensile strength (ITS) improved by 51% over VG 30. LDPE-modified mixtures also showed improved resistance to permanent deformation, with RT values up to 133.46% higher than VG 30, and higher fatigue resistance, as indicated by increased CT values compared to VG 30 and CRMB. However, the CT values for LDPE-modified mixtures were 26.32% and 56% lower than those for VG 40 and PMB, respectively. Pavement analysis using 3D-Move showed lesser deflections at pavement layer interfaces, resulting in higher rutting and fatigue life for LDPE-modified pavements. Furthermore, LDPE-modified pavements showed up to 57% higher fatigue life (N)  and up to 42.33% higher rutting life (N) than other pavements. The economic analysis showed that the cost of LDPE-modified pavements is comparable to VG 40 and around 10% more economical than pavements containing PMB. Using LDPE also offers environmental benefits by repurposing up to 750 kg for every kilometer of single-lane pavement section having 50mm thick surface course. Overall, LDPE-modified asphalt mixtures present a sustainable and high-performance solution for asphalt pavement construction.

摘要

本研究评估了低密度聚乙烯(LDPE)改性沥青结合料对沥青混凝土(AC)混合料力学性能和经济可行性的影响。将LDPE改性混合料与印度常用的各种结合料制备的传统混合料进行了比较,即VG 30、VG 40、聚合物改性结合料(PMB)和橡胶粉改性结合料(CRMB)。与VG 30基础结合料相比,LDPE改性混合料表现出优异的力学性能,在25℃和35℃时,AC混合料的刚度分别提高了171%和125%。此外,间接拉伸强度(ITS)比VG 30提高了51%。LDPE改性混合料还表现出更好的抗永久变形能力,其RT值比VG 30高出133.46%,并且具有更高的抗疲劳性,与VG 30和CRMB相比,CT值有所增加。然而,LDPE改性混合料的CT值分别比VG 40和PMB低26.32%和56%。使用3D-Move进行的路面分析表明,路面层间的挠度较小,这使得LDPE改性路面具有更高的车辙和疲劳寿命。此外,LDPE改性路面的疲劳寿命(N)比其他路面高出57%,车辙寿命(N)高出42.33%。经济分析表明,LDPE改性路面的成本与VG 40相当,比含PMB的路面经济约10%。使用LDPE还具有环境效益,对于每公里单车道路面段,表面层厚度为50mm时,可重新利用多达750kg。总体而言,LDPE改性沥青混合料为沥青路面施工提供了一种可持续的高性能解决方案。

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