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Storage Stability of Bituminous Binders Reinforced with Nano-Additives

机译:用纳米添加剂加固沥青粘合剂的储存稳定性

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摘要

The experimental investigation presented in this paper focused on storage stability of bituminous binders containing nano-sized additives. Several blends were prepared in the laboratory by combining three base bitumens with two different types of nanoclays and one type of carbon nanotubes at various dosages, A technique based on the combination of simple shear mixing and sonication was proposed to achieve adequate dispersion of nano-particles in bitumen. Capability of materials to withstand segregation phenomena was evaluated by means of viscosity measurements performed on samples derived from simulative laboratory storage tests. Results obtained in the study revealed that high-temperature stability of nano-reinforced binders is dependent upon physico-chemical properties of base components, thus highlighting the key role played in such a context by interaction mechanisms that take place between nano-additives and dispersing bituminous medium.
机译:本文提出的实验研究侧重于含有纳米大小添加剂的沥青粘合剂的储存稳定性。通过将三种碱基沥青组合在实验室中制备几种混合物,并在各种剂量下组合三种不同类型的纳米粘土和一种类型的碳纳米管,提出了一种基于简单剪切混合和超声处理的组合的技术,以实现纳米颗粒的足够分散在沥青中。通过对来自模拟实验室储存试验的样本进行的样品进行粘度测量来评估以抵抗分离现象的材料能力。在该研究中获得的结果表明,纳米增强粘合剂的高温稳定性取决于基础组分的物理化学性质,从而突出了在纳米添加剂和分散沥青之间发生的相互作用机制在这种情况下发挥的关键作用中等的。

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