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Effect of laboratory-produced cellulose nanofiber as an additive on performance of asphalt binders and mixes

机译:实验室产生的纤维素纳米纤维作为沥青粘合剂性能的添加剂的影响

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摘要

In recent years, major initiatives have been taken to replace non-renewable materials with environmentally friendly and sustainable ones. The present study was undertaken to apply a scalable process for laboratory production of Cellulose Nanofibers (CNF) and to evaluate feasibility of using the produced CNF as a sustainable plant-based asphalt additive to improve the mechanical properties and durability of asphalt pavements. To achieve this goal, CNF was produced in the laboratory by applying electrospinning technique. Structure, morphology, and the size distribution of the produced CNF were evaluated using Scan Electron Microscopy. Also, tensile strength tests in two perpendicular directions were conducted on lab-produced CNF. The effect of incorporating different amounts of CNF in three types of asphalt binders, namely PG 58-28, PG 64-34, and PG 70-28 on fracture energy and dynamic viscosity of binder blends were evaluated by conducting Izod impact and rotational viscometer tests, respectively. Additionally, effect of CNF dosage in binder on its adhesion and moisture-induced debonding potential with aggregates of three different mineralogy was evaluated by conducting binder bond strength test. Furthermore, effect of incorporating CNF in asphalt mixes on their cracking, rutting, and moisture-induced damage potential was evaluated by conducting semicircular bend, Hamburg wheel tracking, and tensile strength ratio tests, respectively. From the tests conducted on asphalt binders and mixes, it was concluded that, incorporation of CNF resulted in an overall improvement in binder-aggregates adhesion, an asphalt binder with a higher fracture energy and dynamic viscosity, and an asphalt mix with a higher resistance to rutting, cracking, and moisture-induced damage. (c) 2021 Elsevier Ltd. All rights reserved.
机译:近年来,已采取主要举措取代与环保和可持续可持续的非可再生材料。本研究进行了应用纤维素纳米纤维(CNF)的实验室生产的可扩展方法,并评估使用所生产的CNF作为可持续植物基沥青添加剂的可行性,以改善沥青路面的机械性能和耐久性。为了实现这一目标,通过施加静电纺丝技术,在实验室中生产CNF。使用扫描电子显微镜评估所生产的CNF的结构,形态和尺寸分布。此外,在实验室生产的CNF上进行了两个垂直方向的拉伸强度试验。通过进行Izod碰撞和旋转粘度计测试,评估掺入三种类型的沥青粘合剂中的不同量CNF,即PG 58-28,PG 64-34和PG 70-28的效果,并进行旋转粘度计试验, 分别。另外,通过进行粘合剂粘合强度试验评价CNF剂量在其粘合剂上对其粘附和水分诱导的剥离电位的粘附和耐水分诱导的电位。此外,通过分别进行半圆形弯曲,汉堡轮跟踪和拉伸强度比试验,评估将CNF掺入沥青混合物中的效果。从对沥青粘合剂和混合物进行的测试中,结论是,CNF的掺入导致粘合剂聚集体粘附的总体改善,沥青粘合剂具有较高的骨折能量和动态粘度,以及具有更高抗性的沥青混合车辙,开裂和湿气诱导的损伤。 (c)2021 elestvier有限公司保留所有权利。

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