Mechanical characterization of an alternative laterite gravel used as pavement material

A. Guimarães, C. Lima, F. Aragão, Laura Motta, Juliana Santos
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Abstract

Laterite gravels have been successfully adopted as pavement materials in the field. Despite that, they are often rejected in material selection processes because of its base on traditional gradation and consistency limits requirements. To allow a deeper evaluation of such material found abundantly in tropical countries, along to characterizing traditional parameters, repeated load triaxial tests were performed in a Laterite Gravel from Acre/Brazil to evaluate its elastic and plastic behavior through Resilient Modulus (RM) and Permanent Deformation (PD), respectively. In addition, a simulation was conducted in the MeDiNa software, based on the test results considering stress states that are usually applied in pavement layers. The material showed RM values higher than 500 MPa, which was considered high compared to materials such as Quartz and Granite. It was also observed low permanent deformation (below 1 mm for higher tensions applied) and accommodation of displacement (shakedown) for most specimens. The simulation results showed low rutting prediction for the Laterite Gravel applied in highway pavement layers. Thus, the results indicated that the lateritic gravel can be adopted in the composition of base or subbase layers of flexible pavements, even though some limits of the parameters specified by traditional specifications were violated, as expected. In addition, we also highlight the need for adoption of new material selection strategies that are based on key mechanical characteristics to avoid discarding potentially well performing materials.
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用作路面材料的红土砾石替代品的力学特征
红土砾石已被成功地用作路面材料。尽管如此,由于其基于传统的级配和稠度限制要求,在材料选择过程中经常被拒之门外。为了对这种大量存在于热带国家的材料进行更深入的评估,除了对传统参数进行表征外,还对巴西阿克里的一种红土砾石进行了重复加载三轴试验,分别通过弹性模量(RM)和永久变形(PD)对其弹性和塑性行为进行评估。此外,还根据测试结果,在 MeDiNa 软件中进行了模拟,考虑了通常应用于路面层的应力状态。材料显示的 RM 值高于 500 兆帕,与石英和花岗岩等材料相比属于高值。此外,还观察到大多数试样的永久变形(施加较高张力时低于 1 毫米)和位移适应性(抖动)较低。模拟结果表明,应用于公路路面层的红土砾石车辙预测值较低。因此,结果表明红土砾石可用于柔性路面的基层或底层,尽管违反了传统规范规定的一些参数限制。此外,我们还强调了采用基于关键机械特性的新材料选择策略的必要性,以避免放弃潜在的性能良好的材料。
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