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Rutting analysis of modified asphalt concrete pavements

机译:改性沥青混凝土路面车辙分析

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The aim of this research was to model rutting of modified stone matrix asphalt concrete pavements. Four mixes were investigated, including two modified with different percentages of styrene-butadiene-styrene (4 and 6%), one modified with cellulose fibres and one unmodified mix. Dynamic creep tests were performed on specimens of each mix to obtain material parameters of the creep power law used for rutting modelling purposes. For each mix, a model was developed and then a finite-element method was used to estimate the rut depth of a pavement structure by incorporating realistic material properties for the base course, subbase course and subgrade beneath the asphalt concrete pavement surface. Results of applying static and repeated loads on modelled pavement show that the rut depth of static loading is greater than a repeated one. Moreover, a pavement made from asphalt concrete modified with 6% styrene-butadiene-styrene would have the least rut depth followed by the 4% mix, the unmodified mix and the cellulose fibre mix, respectively.
机译:这项研究的目的是对改性石基沥青混凝土路面的车辙进行建模。研究了四种混合物,包括两种用不同百分比的苯乙烯-丁二烯-苯乙烯改性的混合物(分别为4和6%),一种用纤维素纤维改性的混合物和一种未改性的混合物。对每种混合物的样品进行动态蠕变测试,以获得用于车辙建模目的的蠕变幂律的材料参数。对于每种混合料,都会开发一个模型,然后使用有限元方法通过结合沥青混凝土路面下面的基层,基层和路基的实际材料属性来估算路面结构的车辙深度。在模型路面上施加静态和重复荷载的结果表明,静态荷载的车辙深度大于重复荷载的车辙深度。而且,由用6%苯乙烯-丁二烯-苯乙烯改性的沥青混凝土制成的路面将具有最小的车辙深度,其后分别是4%的混合料,未改性的混合料和纤维素纤维混合料。

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