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首页> 外文期刊>Road materials and pavement design >Evaluation of top-down cracking potential for asphalt pavements with 4.75 mm nominal maximum aggregate size mixture layer using full-scale field tests and finite element analysis
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Evaluation of top-down cracking potential for asphalt pavements with 4.75 mm nominal maximum aggregate size mixture layer using full-scale field tests and finite element analysis

机译:使用全面现场测试和有限元分析评估标称最大骨料混合物尺寸为4.75 mm的沥青路面自上而下的开裂可能性

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摘要

This study primarily focused on evaluating top-down cracking resistance for pavement structures with 4.75mm nominal maximum aggregate size asphalt mixtures (i.e. SP-4.75) that will help determine more effective application of these mixes for layered flexible pavement system. Crack evaluation and pavement surface response measurements were conducted using full-scale field test sections. In addition, a three-dimensional (3-D) viscoelastic finite-element (FE) pavement model was developed to further validate the results of field tests using analytical solution. The results indicated that the pavement structure with SP-4.75 mixture at the top becomes more prone to top-down cracking when a thin layer with unmodified asphalt binder is applied. It was found that both layer thickness and binder type are key parameters to control top-down cracking potential. Also, the comparative observations between analytical and experimental results confirm that the FE model developed was able to provide accurate, reliable, and realistic prediction for change in pavement surface strain responses due to different conditions of SP-4.75 layer application. It was concluded that adequate thickness and binder type should be considered for proper application of SP-4.75 mixture as a surface course of layered flexible pavement system to effectively resist top-down cracking.
机译:这项研究主要关注评估标称最大骨料尺寸为4.75mm的沥青混合料(即SP-4.75)的路面结构的自顶向下抗裂性,这将有助于确定这些混合料在分层柔性路面系统中的更有效应用。裂纹评估和路面表面响应测量是使用完整的现场测试部分进行的。此外,还开发了三维(3-D)粘弹性有限元(FE)路面模型,以使用分析解决方案进一步验证现场测试的结果。结果表明,当使用未改性沥青结合料的薄层时,顶部带有SP-4.75混合物的路面结构更容易产生自上而下的开裂。发现层厚度和粘合剂类型都是控制自上而下的开裂可能性的关键参数。同样,分析和实验结果之间的比较观察结果证实,开发的有限元模型能够为由于SP-4.75层施加条件不同而引起的路面表面应变响应的变化提供准确,可靠和现实的预测。结论是,应适当考虑SP-4.75混合物的适当厚度和粘结剂类型,以作为层状柔性路面系统的表面层,以有效抵抗自上而下的开裂。

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