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Mechanical properties of warm-mix asphalt concrete containing different additives and recycled asphalt as constituents applied in real production conditions

机译:包含不同添加剂和再生沥青成分的热拌沥青混凝土的机械性能在实际生产条件下应用

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This paper compares several warm-mix asphalt (WMA) blends and hot mix asphalt (HMA) in terms Of their resistance to permanent deformation (wheel-tracking tests), fatigue performance and stiffness modulus (four-point bending tests), and water sensitivity (indirect tensile strength ratio). The first stage of the study included the production of Marshall specimens in laboratory to evaluate stability and flow of the blends' specimens as well as their volumetric properties, aiming to select the most promising to apply in the field. WMA technologies involved the addition of four different products: a chemical surfactant, an organic wax, a chemical surfactant combined with cellulosic fibres and organic wax embedded in cellulosic fibres. One WMA blend incorporated 35% of reclaimed asphalt pavement (RAP). The second stage of the project involved the construction of trial sections in the field with plant-produced mixtures, laid and compacted with conventional equipment. Laboratory performance testing was carried out on specimens collected from the trial sections. The results showed that the level of mechanical performance of WMA was, globally, satisfactory and similar to the obtained for the HMA used as reference. Nevertheless, the warm-mix with surfactant additive revealed high sensitivity to temperature. The blend with RAP suffered some influence from the variation of binder quantity added by the RAP. The construction process in real production conditions proved to be feasible. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文比较了几种热混合沥青(WMA)和热混合沥青(HMA)的抗永久变形性(车轮跟踪测试),疲劳性能和刚度模量(四点弯曲测试)以及水敏感性(间接拉伸强度比)。研究的第一阶段包括在实验室中生产马歇尔(Marshall)标本,以评估共混物标本的稳定性和流动性及其体积特性,旨在选择最有希望应用于该领域的标本。 WMA技术涉及添加四种不同的产品:化学表面活性剂,有机蜡,与纤维素纤维结合的化学表面活性剂以及嵌入纤维素纤维中的有机蜡。一种WMA混合物掺入了35%的再生沥青路面(RAP)。该项目的第二阶段涉及在现场使用植物生产的混合物建造试验区,并用常规设备压实和压实。对从试验部分收集的样品进行了实验室性能测试。结果表明,WMA的机械性能水平总体上令人满意,并且与用作参考的HMA相似。然而,与表面活性剂添加剂的热混合显示出对温度的高度敏感性。 RAP的共混物受到RAP添加的粘结剂量变化的影响。实际生产条件下的施工过程被证明是可行的。 (C)2016 Elsevier Ltd.保留所有权利。

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