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Damage Modeling of Asphaltic Pavement Rough Interfaces Under Tensile and Shear Loading

机译:拉伸和剪切负荷下沥青路面粗糙界面损伤模型

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摘要

The interface mechanical behavior in asphaltic pavement structures represents a key parameter for the computational design. Several degradation mechanisms are observed in surface layers due to the de-bonding despite the implementation of tack coats or reinforcing systems. The interface modeling becomes more important in the pavement field during the last ten years, even if this concept is widely studied in composites, masonry structures... Furthermore, the experimental research highlights the sensitivity of the imperfect interface behavior in respect to the underlayer roughness. Due to these concerns, parametrical studies are proposed in this paper, by using a macro scale cohesive zone model. This model allows taking into account the damage behavior of the interface, in pure or mixed mode. Damage mechanisms are governed by internal variables. The numerical results based on a finite element method are compared with experimental tensile and shear data. The geometrical periodic roughness (triangular, crenel) and the mixed mode failure are investigated under monotonic loading. A parametric numerical analysis is presented and shows clearly the roughness influence of these structures.
机译:沥青路面结构中的界面机械行为代表了计算设计的关键参数。尽管脱粘,但是在表面层中观察到几种降解机制,尽管脱粘,但尽管切割粘性涂层或增强系统。在过去的十年中,界面建模在路面场中变得更加重要,即使这种概念在复合材料中广泛研究,砌体结构......此外,实验研究突出了不完美界面行为对底层粗糙度的敏感性。由于这些问题,通过使用宏观凝聚区域模型,本文提出了参数研究。该模型允许考虑界面的损坏行为,以纯或混合模式。损坏机制由内部变量控制。将基于有限元方法的数值结果与实验拉伸和剪切数据进行比较。在单调载荷下研究了几何周期粗糙度(三角形,Crenel)和混合模式失败。提出了参数数值分析并清楚地显示了这些结构的粗糙度影响。

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