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Investigation of the influence of crack width on healing properties of asphalt binders at multi-scale levels

机译:裂缝宽度对多尺度沥青混合料愈合性能的影响研究

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Crack width, a practical measurement of the damage severity in the field, is conceptually believed to have important influence on the healing properties of asphalt materials. Understanding the relationship between crack widths and healing capacity of asphalt pavement provides practical linkage between the microscopic healing phenomena and the macroscopic pavement performance. The objective of this paper is to characterize the healing behavior of asphalt binders with different crack width at multi scale levels. A Field Emission Scanning Electron Microscopy (FESEM) was used to directly monitor the effect of crack width on healing at macroscale level. Small scale molecular dynamics (MD) simulation models with different crack widths were built to investigate the micromechanical healing mechanism of asphalt binder and characterize the influence of crack width on healing. The MD modeling was conducted using an open-source code software LAMMPS (Large-scale Atomic/Molecular Massively Parallel Simulator). Healing was found to be triggered by the diffusion mechanism of asphalt molecules. Higher temperature would result in higher diffusivity of molecules and thus higher healing rate. Degree of aging would also have important impact on healing. Both the macroscopic and microscopic investigation indicated that crack width had important influence on the healing of asphalt. For the same crack length asphalt heals faster when the width of crack is smaller. (C) 2016 Elsevier Ltd. All rights reserved.
机译:从理论上讲,裂缝宽度是现场损坏严重程度的实用度量,对沥青材料的愈合性能具有重要影响。理解裂缝宽度与沥青路面修复能力之间的关系,可以在微观修复现象与宏观路面性能之间建立起实际联系。本文的目的是在多尺度水平上表征具有不同裂缝宽度的沥青粘合剂的愈合性能。场发射扫描电子显微镜(FESEM)用于直接监测裂纹宽度对宏观修复的影响。建立了具有不同裂缝宽度的小分子动力学(MD)模拟模型,以研究沥青结合料的微机械修复机理,并表征裂缝宽度对修复的影响。使用开放源代码软件LAMMPS(大型原子/分子大规模并行模拟器)进行MD建模。发现愈合是由沥青分子的扩散机制触发的。较高的温度将导致分子的较高扩散性,从而导致较高的治愈率。衰老程度也将对康复产生重要影响。宏观和微观研究均表明,裂缝宽度对沥青的修复有重要影响。对于相同的裂纹长度,当裂纹宽度较小时,沥青的愈合速度更快。 (C)2016 Elsevier Ltd.保留所有权利。

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