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Optimum content of nano-silica to ensure proper performance of an asphalt binder

机译:纳米二氧化硅的最佳含量,以确保沥青粘合剂的适当性能

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There is a growing need to improve the performance properties of asphalt binders in order to minimise the occurrence of failure mechanisms such as permanent deformation, fatigue, adhesiveness and moisture damage. Nano-structured materials have taken a scientific-industrial boom as asphalt modifiers due to their mechanical, thermal and electrical properties, among others. The chemistry of the nano-material, and thus their inherent physical properties, ends up with each one having specific effects on the asphalt and variable blending forms depending on their nature. This paper evaluates the effect of the incorporation of nano-silica (nano-SiO2) into a PG64-22 binder at various contents from 0.5% to 6.0%. Nano-SiO2 is widely used in the painting industry to improve adhesion of the paint to walls and provides an impermeable coat. Morphological, rheological and thermal analysis techniques were used to quantify the effect of asphalt binder modification. Such techniques were differential scanning calorimetry, thermogravimetric analysis, as well as Fourier transform infrared spectroscopy and atomic force microscopy. Selection of the optimum modifier content was mainly based on dynamic shear rheometry asphalt fatigue and rutting tests and work of adhesion analysis.
机译:越来越需要改善沥青粘合剂的性能特性,以便最小化发生永久变形,疲劳,粘合性和水分损伤的失效机制的发生。由于其机械,热和电性能等,纳米结构材料已将科学工业繁荣作为沥青改性剂。纳米材料的化学物质,因此其固有的物理性质最终占据沥青和可变混合形式的每个具有特定效果的每一个。本文评估纳米二氧化硅(Nano-SiO 2)掺入PG64-22粘合剂中的效果,在各种内容物为0.5%至6.0%。纳米SiO2广泛用于涂装行业,以改善涂料与墙壁的粘附性,并提供不渗透的涂层。使用形态学,流变和热分析技术来量化沥青粘合剂改性的作用。这种技术是差分扫描量热法,热重分析,以及傅里叶变换红外光谱和原子力显微镜。选择最佳改性剂含量主要基于动态剪切流变仪沥青抗疲劳和粘附分析的车辙试验和工作。

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