Evaluation of the influence of interface bonding condition on mechanical responses of bituminous pavement surface layers

Q1 Engineering
Marina Al Bacha , Pierre Hornych , Mai-Lan Nguyen , Olivier Chupin , Ferhat Hammoum
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引用次数: 0

Abstract

Roads play a crucial role in the socio‐economic development of a region, providing a means of transportation for people and goods. However, traffic loads, weather conditions, and other factors can lead to damage of road pavements, especially of the surface layer over time. One important factor affecting the response of surface layers under traffic loading is the bonding condition between asphalt layers. In this paper, the aim is to analyze the strains at the base of surface layers in asphalt pavement structures with two different bonding conditions: one with a tack coat and one without tack coat. To achieve this, experimental measurements on full-scale pavement tests and numerical calculations in viscoelasticity are carried out. Calculations are performed using three interface models: bonded interface, sliding interface and thin elastic interface. The findings show that structures with a tack coat exhibit significant sliding at the interface. Moreover, the use of a bonded interface in design methods cannot predict correctly the measurements. In addition, the study shows that taking into account temperature gradients in the pavement structure improves significantly measurement prediction, especially at high temperatures.

界面粘结条件对沥青路面表层力学响应影响的评价
道路在一个地区的社会经济发展中发挥着至关重要的作用,为人员和货物提供了交通工具。然而,随着时间的推移,交通负荷、天气条件和其他因素会导致道路路面的损坏,尤其是对路面表层的损坏。影响面层在交通荷载作用下响应的一个重要因素是沥青层之间的粘结状态。本文的目的是分析沥青路面结构在两种不同粘结条件下的基层应变:一种是有粘性涂层的,另一种是没有粘性涂层的。为此,进行了全尺寸路面试验测量和粘弹性数值计算。采用粘结界面、滑动界面和薄弹性界面三种界面模型进行计算。研究结果表明,具有粘性涂层的结构在界面处表现出明显的滑动。此外,在设计方法中使用粘合界面不能正确预测测量结果。此外,研究表明,考虑路面结构的温度梯度可以显著改善测量预测,特别是在高温下。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Transportation Engineering
Transportation Engineering Engineering-Automotive Engineering
CiteScore
8.10
自引率
0.00%
发文量
46
审稿时长
90 days
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