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Computational evaluation of long-term ravelling susceptibility of Permeable Friction Courses (PFC)

机译:可渗透摩擦课程长期侵略易感性的计算评估(PFC)

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Ravelling is a main distress in Permeable Friction Courses (PFC). This damage process is enhanced by the presence of moisture and ageing, which further reduces the overall durability of the mixtures. This study uses Finite Element (FE) methods to assess long-term ravelling susceptibility of PFC. Different two-dimensional (2D) PFC microstructures were randomly generated through a Microstructure Generator (MG) and Discrete Element (DE) gravimetric methods. These microstructures were located on top of a conventional pavement and subjected to a moving wheel load under different traffic operation conditions. PFC ravelling was assumed to occur at the asphalt mortar located at the stone-on-stone contacts. The linear viscoelastic and fracture properties of the PFC asphalt mortar were experimentally obtained after subjecting the material to long-term ageing conditions and multiple water moisture cycles, which represent several in-service years. Zero thickness Cohesive Zone Elements (CZE) were included within the mortar-mortar contacts of the PFC to better quantify the potential initiation of ravelling. The results show that the ravelling susceptibility of a PFC is drastically affected by the loading conditions (e.g., load magnitude, vehicle breaking over the pavement, vehicle speed) and the environmental and mechanical degradation of the asphalt mortar when subjected to in-service conditions. (C) 2021 Elsevier Ltd. All rights reserved.
机译:Ravelling是渗透摩擦课程(PFC)的主要困境。通过存在水分和衰老来增强这种损伤过程,这进一步降低了混合物的总耐久性。该研究使用有限元(Fe)方法来评估PFC的长期侵袭易感性。通过微结构发生器(Mg)和分立元件(DE)重量方法随机地产生不同的二维(2D)PFC微结构。这些微结构位于传统的路面顶部,并在不同的交通运行条件下进行移动轮载荷。假设PFC掠夺在位于石材触点的沥青砂浆处发生。在对材料进行长期老化条件和多个水分循环后,在实验获得PFC沥青砂浆的线性粘弹性和断裂性能,这是多年来的含有若干水分循环。零厚度粘性区元素(CZE)包括在PFC的砂浆 - 砂浆触点内,以更好地量化掠夺的潜在启动。结果表明,PFC的止扰易感性受到负载条件(例如,负载幅度,车辆速度超过路面,车辆速度)以及沥青砂浆的环境和机械降解在进行在职条件的影响。 (c)2021 elestvier有限公司保留所有权利。

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