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Investigation of Moisture Dissipation in Foam-Based Warm Mix Asphalt Using Synchrotron-Based X-Ray Microtomography

机译:基于同步加速器的X射线显微照相技术研究泡沫基沥青混合料中的水分消散

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Foam-based Warm Mix Asphalt (WMA) technologies decrease the viscosity of the asphalt so that it is workable during construction. However, after construction, viscosity increases rapidly as the foam disappears and temperature drops. During the process of dissipation of foam, depending on the environmental conditions, the moisture may not escape and may be trapped inside the mixture. This trapped moisture can cause detrimental failures by breaking the adhesive bonds between the aggregates and the asphalt binder (because of diffusion and freeze/thaw cycles). It is crucial to know how the moisture escapes from the asphalt mixture as the specimen cools down and foam disappears. In this research, dissipation of the moisture from foamed asphalt binders was directly measured and quantified by using a high-resolution synchrotron-based X-Ray Microtomography (XRM) system. Different foamed asphalt binders were instantly frozen by using liquid nitrogen at different times after the initial foaming. The 3D internal structure images of these specimens were acquired by using XRM available at the Argonne National Laboratory (ANL). These images were analyzed and the moisture dissipation processes in different types of asphalt binders were directly quantified. It was observed that the rate of moisture dissipation in high performance grade (PG) (stiff) binders was slower than that of low PG grade (soft) binders. It was also observed that the size distribution of moisture bubbles in the binders varied in different binders.
机译:基于泡沫的温拌沥青(WMA)技术降低了沥青的粘度,因此在施工过程中是可行的。但是,施工后,随着泡沫消失和温度下降,粘度迅速增加。在散发泡沫的过程中,根据环境条件的不同,水分可能不会逸出,可能会被截留在混合物中。这种截留的水分会破坏集料和沥青粘合剂之间的粘合力(由于扩散和冻结/融化循环),从而导致有害的破坏。当样品冷却下来且泡沫消失时,了解水分如何从沥青混合物中逸出至关重要。在这项研究中,使用高分辨率的基于同步加速器的X射线显微断层扫描(XRM)系统直接测量和定量了泡沫沥青粘合剂中水分的消散。在初始发泡后的不同时间,通过使用液氮将不同的发泡沥青粘合剂立即冻结。这些样品的3D内部结构图像是通过使用可在Argonne国家实验室(ANL)获得的XRM获得的。对这些图像进行了分析,并直接量化了不同类型的沥青粘合剂中的水分消散过程。观察到,高性能等级(PG)(硬)粘合剂的水分散发速率比低PG等级(软)粘合剂的水分消散速率慢。还观察到,粘合剂中水分气泡的尺寸分布在不同的粘合剂中变化。

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