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Analysis of the performance of road subgrades using concepts of Pavement Mechanics

机译:路面力学概念的道路路基性能分析

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The pavement is considered a system of multiple finite layers, subject to tensions, deformations and displacements from cyclical traffic demands. The foundation of the structure must have support capacity compatible with the intensity and frequency with which it will be requested. From this perspective, the present study evaluates the performance of four soils with different geological origins, usually found in road subgrades in the state of Rio Grande do Sul, based on the principles of Pavement Mechanics. The methodology applied in this study consisted of numerical simulations assisted by two computational programs: AEMC/SisPav and AASHTOWare Pavement ME Design. The mechanistic analyzes were performed to evaluate the soil response to resilient deformation and shear strength, important properties in the use of paving soils. The results showed that the resilient deformation has a preponderant role in the performance of the materials, since, for the analyzed soils, there is no evidence of shear rupture, both as a road subgrade material and as a foundation of low traffic pavements. This, however, does not rule out the hypothesis of high plastic deformations. Regarding the resilient deformation, it was also observed the inefficiency of the current flexible pavement design method, which does not consider the resilience modulus of the paving materials, resulting in the predominance of fatigue rupture, with the exception of the CB soil, which could lead to pavement to rupture by excessive wheel track rutting.
机译:路面被认为是多个有限层的系统,受循环交通需求的紧张,变形和位移的影响。结构的基础必须具有与所要求的强度和频率兼容的支持能力。从这个角度来看,本研究评估了四种土壤具有不同地质渊源的性能,通常基于路面力学原理,在里约热内明州的道路路基中发现。本研究中应用的方法包括由两个计算计划辅助的数值模拟:AEMC / Sispav和Aashtoware路面我设计。进行机械分析以评价对弹性变形和剪切强度的土壤反应,使用铺设土壤的重要性质。结果表明,弹性变形在材料的性能方面具有优势性作用,因为对于分析的土壤,没有剪切破裂的证据,无论是道路路基材料还是作为低交通路面的基础。然而,这并不能排除高塑性变形的假设。关于弹性变形,还观察到目前柔性路面设计方法的低效率,这不考虑铺设材料的弹性模量,导致疲劳破裂的主要突破,除了CB土壤,可能导致通过过度轮轨道车辙的路面破裂。

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