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Asphalt Pavement Aging and Temperature Dependent Properties through a Functionally Graded Viscoelastic Model, Part-II: Applications

机译:通过功能梯度粘弹性模型的沥青路面老化和温度相关特性,第二部分:应用

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This is the second article in a series of two papers describing simulation of functionally graded viscoelastic properties in asphalt concrete pavements. The techniques developed are applicable to other viscoelastic material systems with continuous, spatial grading of material properties. A full-depth asphalt concrete pavement has been simulated to demonstrate the applicability and importance of the graded viscoelastic analysis method. Based on the graded finite elements developed by Kim and Paulino[1], Buttlar et al. [2] used graded finite elements to determine typical responses to tire loading for an aged asphalt concrete pavement. In the current study, a similar pavement section is studied using the viscoelastic graded analysis (rather than elastic). Graded, layered and homogeneous material variations were used for a series of simulations, and the results from different approaches were compared.
机译:这是两篇系列文章中的第二篇,描述了沥青混凝土路面中功能梯度粘弹性的模拟。所开发的技术适用于其他具有连续,空间等级的材料特性的粘弹性材料系统。模拟了全深度沥青混凝土路面,以证明分级粘弹性分析方法的适用性和重要性。 Buttlar等人基于Kim和Paulino [1]开发的分级有限元。 [2]使用渐变有限元来确定老化沥青混凝土路面对轮胎载荷的典型响应。在当前研究中,使用粘弹性渐变分析(而非弹性)来研究类似的路面截面。使用渐变,分层和均质的材料变化进行一系列模拟,并对不同方法的结果进行了比较。

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