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~1H-NMR Relaxation and Application Study of Evaporatable Water in Foamed Asphalt

机译:泡沫沥青中蒸发水的〜1H-NMR弛豫及应用研究

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The use of foam-based warm mix asphalt (WMA) technology decreases the viscosity of asphalt and makes it more workable during the construction. Conventional hot mix asphalt (HMA) is typically produced at temperatures from 140°C~160°C, while WMA is produced at 100°C~140°C. However, after the construction, the viscosity increases rapidly as the foam disappears and the temperature drops. During the process of foam dissipation, the moisture may be trapped inside the mixture, causing detrimental failures by breaking the adhesive bond between the aggregates and asphalt binder (because of diffusion and freeze/thaw cycles). Therefore, it is crucial to know how the moisture escapes from the asphalt mixture as the specimen cools down and the foam disappears. In this research, the dissipation of moisture from foamed asphalt binders is directly measured and quantified by using 1H nuclear magnetic resonance (1H NMR) system. The results show that as the curing time increases, the viscosity of asphalt decreases and the curing temperature increases. Moreover, this paper demonstrates that 1H NMR is a practicable and valuable test method, which also is simple, rapid and nondestructive. In conclusion, curing time, viscosity of asphalt and curing temperature are the key factors that impact the water content in asphalt.
机译:使用泡沫的温混合沥青(WMA)技术的使用降低了沥青的粘度,使其在施工过程中更加可行。常规的热混合物沥青(HMA)通常在140℃〜160℃的温度下生产,而WMA在100℃〜140℃下产生。然而,在施工之后,随着泡沫消失并且温度下降,粘度迅速增加。在泡沫耗散过程中,水分可以捕获在混合物内,通过破坏聚集体和沥青粘合剂之间的粘合剂(由于扩散和冷冻/解冻循环)来引起有害的故障。因此,知道水分如何从沥青混合物中逸出,因为样品冷却,泡沫消失了,这是至关重要的。在该研究中,通过使用1H核磁共振(1H NMR)系统直接测量和定量来自泡沫沥青粘合剂的水分的耗散。结果表明,随着固化时间的增加,沥青的粘度降低,固化温度升高。此外,本文表明,1H NMR是一种可行的和有价值的测试方法,其也很简单,快速和无损。总之,固化时间,沥青和固化温度的粘度是影响沥青中水含量的关键因素。

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