Investigation of the Usability of Foamed Bituminous Mixtures as Bituminous Base Course

Kemal Muhammet Erten, S. Terzi, H. Akbulut
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Abstract

Materials recycled with foam bitumen are promising materials for pavements economically and environmentally. However, there are different opinions in the literature about how these materials are positioned in the pavement. It is clear that their performances will not be suitable for the wearing course, but that they are used for the plant mixture base course because they contain bitumen, and that these materials will be neglected in the evaluation of these materials. In the study, 4 different foam bituminous mixes prepared with a recycled pavement material and a standard bituminous base course mix were compared in terms of the resilient modulus obtained from the uniaxial indirect tensile resilient modulus test. Gradation is the same for three of the mixtures, two of them use cement as a mineral binder, but 70/100 grade bitumen in one of these two productions and 50/70 grade bitumen in the other. In the third mixture, 70/100 grade bitumen and hydrated lime (HL)+fly ash (FA) were used. In the final mixture, 70/100 grade bitumen and cement were used as mineral binders, but gradation was changed. In addition, permanent deformation control for the final production was carried out with a triaxial cyclic compression test. It was concluded that all these variables affect the results, but the resilience modulus values obtained for all were quite close to those obtained from the bituminous base sample. Considering that the foamed bituminous mixtures will be thicker than the bituminous base course in practice, it is considered structurally appropriate to use this layer instead of the bituminous base course.
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泡沫沥青混合料作为沥青基层可用性的研究
泡沫沥青再生材料是一种经济环保、前景广阔的路面材料。然而,关于这些材料如何在路面上定位,文献中有不同的观点。很明显,它们的性能将不适合磨损层,但由于它们含有沥青而用于植物混合基材层,并且这些材料在评估这些材料时将被忽略。本研究对再生路面材料与标准沥青基层混合料制备的4种不同泡沫沥青混合料的单轴间接拉伸弹性模量试验结果进行了比较。三种混合物的级配相同,其中两种使用水泥作为矿物粘合剂,但其中一种使用70/100级沥青,另一种使用50/70级沥青。第三种混合料采用70/100级沥青和水合石灰+粉煤灰。在最终的混合料中,使用70/100级沥青和水泥作为矿物粘结剂,但改变了级配。此外,通过三轴循环压缩试验对最终产品进行了永久变形控制。结果表明,所有这些变量都对结果有影响,但所有变量的弹性模量值与沥青基样品的弹性模量值非常接近。考虑到泡沫沥青混合料在实际使用中会比沥青基层更厚,因此在结构上使用泡沫沥青混合料代替沥青基层是合适的。
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发文量
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审稿时长
10 weeks
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