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Nonlinear elasto-plastic performance prediction of materials stabilized with bitumen emulsion in rural road pavements

机译:农村公路路面沥青乳液稳定材料的非线性弹塑性性能预测

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This article presents numerical modelling of rural road pavement sections recycled in situ with two materials stabilized with bitumen emulsion. The two materials stabilized with bitumen emulsion are base course materials comprising 25% reclaimed asphalt pavement and 75% natural aggregates with and without 1 % cement. A 3D-finite difference model was used to determine the response of these pavement sections when subjected to two types of loads with four types of soil subgrades of varying resistances. A nonlinear elasto-plastic Mohr-Coulomb model was used in the two materials stabilized with bitumen emulsion, and a nonlinear model was adopted in the four soil subgrades. Both the resilient and permanent behaviours of these materials were modelled. An analysis was conducted on rutting and fatigue resistances of the base course materials. The base course material containing 1 % cement is more resistant and is apt for use in lightly trafficked rural roads. Both base course materials stabilized with bitumen emulsion will first fail from rutting before fatigue.
机译:本文介绍了用沥青乳化稳定的两种材料现场回收的农村公路路面的数值模拟。两种用沥青乳液稳定的材料都是基础料,包括25%的再生沥青路面和75%的天然骨料(有或没有1%水泥)。使用3D有限差分模型来确定这些路面截面在承受两种载荷以及四种具有不同阻力的土壤路基的情况下的响应。两种采用沥青乳液稳定的材料均采用非线性弹塑性莫尔-库仑模型,而四种土基均采用非线性模型。这些材料的弹性和永久行为均已建模。对基础材料的耐车辙性和耐疲劳性进行了分析。包含1%水泥的基础层材料具有更高的抵抗力,适合在人口较少的乡村道路上使用。用沥青乳液稳定的两种基层材料在疲劳之前都将首先因车辙而失效。

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