Investigation of flexible pavement maintenance patching factors using a finite element model

Lu, Yujia, Hajj, Ramez
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引用次数: 1

Abstract

Patching of flexible pavements is one of the most important functions of pavement maintenance. Although finite element modeling has become commonplace in the world of pavement engineering, modeling has not yet been significantly leveraged for maintenance applications which improve safety, ride quality, and pavement service life. The objective of this study was to model viscoelastic properties of pavement and patching materials to determine the effect of various repair factors on pavement performance using the finite element method. Specifically, surface permanent deformation, local shear stress concentration, and horizontal strain distribution were investigated. Two types of models were simulated; the first model applied static loading to a surface layer fixed on a plate and the second model applied cyclic traffic loading to a two-layered flexible pavement system. The results demonstrate the importance of patching using a semi-permanent method. The results also demonstrated the accumulated effect of repeated loading using a time-dependent material response. Results also indicated that a larger patching area resulted in less influence of the shape of the area, while a circular area proved superior to a conventional rectangular patch for sizes near the tire footprint and smaller than it. Different responses were observed depending on the type of patching material modeled, demonstrating the effect of material choice in maintenance applications. Finally, mesh optimization was performed to ensure appropriate mesh sizes are used in future studies to accurately represent the pavement layers and patches.
基于有限元模型的柔性路面养护修补因素研究
柔性路面的修补是路面养护的重要功能之一。尽管有限元建模在路面工程领域已经变得司空见惯,但建模还没有被显著地用于提高安全性、乘坐质量和路面使用寿命的维护应用。本研究的目的是利用有限元方法模拟路面和修补材料的粘弹性特性,以确定各种修补因素对路面性能的影响。具体而言,研究了表面永久变形、局部剪应力集中和水平应变分布。模拟了两种模型;第一个模型对固定在板上的面层施加静荷载,第二个模型对两层柔性路面系统施加循环交通荷载。结果表明,使用半永久性方法修补的重要性。结果也证明了累积效应的重复加载使用时间相关的材料响应。结果还表明,较大的修补面积对区域形状的影响较小,而圆形区域证明优于传统的矩形区域,尺寸接近轮胎足迹,比它小。根据不同类型的修补材料模型,观察到不同的反应,证明了材料选择在维护应用中的影响。最后,进行了网格优化,以确保在未来的研究中使用合适的网格尺寸来准确地表示路面层和斑块。
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
CiteScore
5.70
自引率
0.00%
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0
审稿时长
13 weeks
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