工程纳米材料对沥青和沥青混合料性能的影响。回顾

Gholam Ali Shafabakhsh, Mostafa Sadeghneja, S. Alizadeh
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引用次数: 1

摘要

近年来,交通负荷的增加和车辆数量的增加等因素加剧了沥青路面层的应力,从而降低了沥青路面的使用寿命。随着沥青路面维修费用的增加和交通负荷的增加,沥青路面最主要的结构失效形式是疲劳裂缝、温度裂缝、湿气裂缝和车辙裂缝。上述故障降低了运营期间的道路安全和服务水平,给政府带来了巨大的成本。在这项研究中,我们回顾了纳米技术在改善沥青混合料抗这些破坏性能方面的最新研究。研究表明,不同的纳米材料由于其结构特性可以提高沥青和沥青混合料的抗开裂和车辙性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Engineering the Effect of Nanomaterials on Bitumen and Asphalt Mixture Properties. A Review
In recent years, several factors such as the increasing traffic loads and increasing number of vehicles have intensified the stress in pavement layers and thus reduced the service life of asphalt pavements. Today, with rising maintenance costs and traffic loads on asphalt pavements, researchers have paid more attention to diminishing defects such as cracks due to fatigue, temperature, moisture, and rutting as the most significant structural failures in asphalt pavements. The mentioned failures reduce road safety and service level during the operation period and impose huge costs on governments. In this study, we review recent research on nanotechnology applications to improve the performance of asphalt mixtures against these failures. Reviewing research suggests that different nanomaterials can improve the performance of bitumen and asphalt mixtures against cracking and rutting due to their structural properties.
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