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未改性和聚合物改性沥青结合料在加速老化试验箱中老化时微观结构的演变

Evolution of the microstructure of unmodified and polymer modified asphalt binders with aging in an accelerated weathering tester.

作者信息

Menapace Ilaria, Masad Eyad

机构信息

Mechanical Engineering Program, Texas A&M University at Qatar, Doha, Qatar.

出版信息

J Microsc. 2016 Sep;263(3):341-56. doi: 10.1111/jmi.12405. Epub 2016 Apr 5.

Abstract

This paper presents findings on the evolution of the surface microstructure of two asphalt binders, one unmodified and one polymer modified, directly exposed to aging agents with increasing durations. The aging is performed using an accelerated weathering tester, where ultraviolet radiation, oxygen and an increased temperature are applied to the asphalt binder surface. Ultraviolet and dark cycles, which simulated the succession of day and night, alternated during the aging process, and also the temperature varied, which corresponded to typical summer day and night temperatures registered in the state of Qatar. Direct aging of an exposed binder surface is more effective in showing microstructural modifications than previously applied protocols, which involved the heat treatment of binders previously aged with standardized methods. With the new protocol, any molecular rearrangements in the binder surface after aging induced by the heat treatment is prevented. Optical photos show the rippling and degradation of the binder surface due to aging. Microstructure images obtained by means of atomic force microscopy show gradual alteration of the surface due to aging. The original relatively flat microstructure was substituted with a profoundly different microstructure, which significantly protrudes from the surface, and is characterized by various shapes, such as rods, round structures and finally 'flower' or 'leaf' structures.

摘要

本文介绍了两种沥青结合料表面微观结构的演变情况,一种是未改性的,另一种是聚合物改性的,它们直接暴露于老化剂中,老化时间不断增加。老化过程使用加速老化试验箱进行,向沥青结合料表面施加紫外线、氧气并提高温度。在老化过程中,模拟昼夜交替的紫外线和黑暗周期交替进行,温度也发生变化,这与卡塔尔国记录的典型夏季昼夜温度相对应。与之前采用的涉及对先前用标准化方法老化的结合料进行热处理的方案相比,直接对暴露的结合料表面进行老化能更有效地显示微观结构的变化。采用新方案可防止热处理后老化引起的结合料表面任何分子重排。光学照片显示了老化导致的结合料表面起皱和降解。通过原子力显微镜获得的微观结构图像显示,老化使表面逐渐发生变化。原来相对平坦的微观结构被一种截然不同的微观结构所取代,这种微观结构从表面显著突出,具有各种形状,如棒状、圆形结构,最后是“花”或“叶”状结构。

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