基层模量对沥青路面应变分布的影响

K. Yao, Xin Jiang, J. Jiang, Zhonghao Yang, Y. Qiu
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引用次数: 0

摘要

为了研究基层模量对沥青路面应变分布的影响,本文在保持交流层模量不变的情况下,引入基层与交流层模量之比Rm作为控制变量。然后,选择三层路面结构作为分析模型,该结构由恒定模量的交流层和覆盖路基的变模量的基层组成。建立了三维有限元模型,估算了不同Rm作用下交流层沿水平方向和垂直方向的应变。结果表明:Rm会改变交流层中水平应变沿深度的分布;增加Rm可以降低交流层的最大拉伸应变,但作用有限;交流层的最大拉伸应变并不一定出现在底部,而是随着Rm的增大逐渐向中间升高。Rm可以显著降低交流层的底部应变,当Rm大于等于1时,底部应变与最大应变之间存在一定的差异,且随着Rm的增大,差异会增大。Rm可以改变交流层中性轴的深度,在足够大的Rm下,第二个中性轴将出现在交流层的底部。交流层的平均垂直压应变随Rm的增大而显著增大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of Modulus of Base Layer on The Strain Distribution for Asphalt Pavement
In order to investigate the influence of modulus of the base layer on the strain distribution for asphalt pavement, the modulus ratio of the base layer and the AC layer (Rm) is introduced as a controlled variable when keeping modulus of the AC layer as a constant in this paper. Then, a three-layered pavement structure is selected as an analytical model, which consists of an AC layer with the constant modulus and a base layer with the variable modulus covering the subgrade. A three dimensional (3D) finite element model was established to estimate the strains along the horizontal and vertical direction in the AC layer under different Rm. The results show that Rm will change the distribution of the horizontal strains along the depth in the AC layer; the increase of Rm could reduce the maximum tensile strain in the AC layer, but its effect is limited; the maximum tensile strain in the AC layer does not necessarily occur at the bottom, but gradually rises to the middle with the increase of Rm. Rm could significantly decline the bottom strain in the AC layer, and there is a certain difference between the bottom and the maximum strain when Rm is greater than or equal to one, which will enlarge with increasing Rm. Rm could change the depth of the neutral axis in the AC layer, and the second neutral axis will appear at the bottom of the AC layer under a sufficiently large Rm. The average vertical compressive strain in the AC layer will significantly enlarge with the increase of Rm.
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