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生物添加剂对再生沥青路面的影响。

Influence of Bio-Additives on Recycled Asphalt Pavements.

作者信息

D'Addio Giuseppe, Oreto Cristina, Viscione Nunzio, Veropalumbo Rosa

机构信息

Department of Civil, Construction and Environmental Engineering, University of Naples Federico II, Via Claudio 21, 80125 Napoli, Italy.

出版信息

Materials (Basel). 2024 Jul 16;17(14):3526. doi: 10.3390/ma17143526.

Abstract

The construction and maintenance of asphalt pavements is a resource-consuming sector, where the continuous rehabilitation of the superficial layers demands large volumes of non-renewable resources. The present work focuses on the design and characterization of asphalt mixtures for the binder layer of an asphalt pavement containing 50% reclaimed asphalt (RAP), in which seven different bio-based additives, identified as R1A, R1C, R2A, R2B, R2C, R3A, and R3B, were added to improve the workability, strength, and stiffness properties. The experimental program envisioned the hot mixing of aggregates and RAP with either a 50/70 or a 70/100 bitumen and, in turn, each of the seven bio-additives. The asphalt mixtures underwent the characterization of their densification properties; air voids; indirect tensile strength (ITS); indirect tensile stiffness modulus at 10, 20, 40, and 60 °C; and rutting resistance at 60 °C. The results highlighted that the performance in terms of workability and ITS of the resulting mixtures depends on the type of bio-additive and largely on the fresh bitumen type, while the stiffness at high temperature is not significantly affected by the presence of the bio-additives.

摘要

沥青路面的建设和维护是一个资源消耗型领域,其中表层的持续修复需要大量不可再生资源。目前的工作重点是设计和表征一种含有50%再生沥青(RAP)的沥青路面粘结层的沥青混合料,其中添加了七种不同的生物基添加剂,分别标识为R1A、R1C、R2A、R2B、R2C、R3A和R3B,以改善其施工性能、强度和刚度特性。实验方案设想将集料和RAP与50/70或70/100的沥青以及七种生物添加剂中的每一种进行热拌。对沥青混合料进行了压实特性、空隙率、间接拉伸强度(ITS)、10、20、40和60℃下的间接拉伸刚度模量以及60℃下的抗车辙性能的表征。结果表明,所得混合料在施工性能和间接拉伸强度方面的表现取决于生物添加剂的类型,并且在很大程度上取决于新鲜沥青的类型,而高温下的刚度不受生物添加剂存在的显著影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3feb/11278329/ab2e355d28aa/materials-17-03526-g001.jpg

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