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考虑多种环境影响的沥青混合料疲劳寿命

Asphalt Mixtures Fatigue Life Considering Various Environmental Impacts.

作者信息

Mączka Eryk, Mackiewicz Piotr

机构信息

Faculty of Civil Engineering, Wrocław University of Science and Technology, 50-370 Wrocław, Poland.

出版信息

Materials (Basel). 2023 Jan 20;16(3):966. doi: 10.3390/ma16030966.

Abstract

The pavement structure during the colder seasons (winter) or in regions located above sea level is commonly affected and deteriorated by many environmental factors. Two prominent factors are water and frost (weather) or road salt (maintenance). According to the article's literature review, there are only a few studies related to water and frost or road salt impact on mineral asphalt mixes considering fatigue. Most of the tests were performed on mixes containing common road asphalt or only one binder content level was investigated. There are no articles that investigate this problem comprehensively including new asphalt, its content levels, or production technology. Based on the literature review, the main problem regarding degradation impact on mixtures fatigue life was stated. The investigation was performed using two proprietary experimental methods allowing approximates in situ conditions regarding environmental impacts. A dynamic four-point bending fatigue test was applied to evaluate degradation considering fatigue. The investigation was performed using four coarse-graded asphalt mixtures (asphalt concrete AC 22) which differed in binder type (35/50 WMA, 35/50, 25/55-60, and 25/55-80 HIMA), content level (4.24%, 4.03%, 3.82%), and production technology (hot and warm). Regarding the results obtained, the authors proposed a degradation ratio regarding fatigue life variability. Based on the obtained results and ratio used, it was found that both interactions caused a significant fatigue life decrease-in the worst case, over tens of percent. Furthermore, it was found that asphalt mixture resistance to environmental factors depends on binder type, its content level, air void content, and discussed impact. Moreover, asphalt mixtures' susceptibility to degradation (fatigue) is extreme at lower binder content levels and accelerates due to air void content increase. In the article, it was also stated that the highest resistance was reached by a mixture with highly modified asphalt (25/55-80 HIMA). It was also found that the SBS polymer dosage increase in the asphalt matrix enhances asphalt mixture resistance to environmental impacts. The least resistant to the environmental degradation mixture was WMA (35/50 WMA).

摘要

在较寒冷的季节(冬季)或海拔较高的地区,路面结构通常会受到许多环境因素的影响并出现劣化。两个突出的因素是水和霜冻(天气)或道路盐(养护)。根据文章的文献综述,考虑到疲劳,仅有少数关于水和霜冻或道路盐对矿物沥青混合料影响的研究。大多数试验是在含有普通道路沥青的混合料上进行的,或者仅研究了一种结合料含量水平。没有文章全面研究这个问题,包括新型沥青、其含量水平或生产技术。基于文献综述,阐述了关于劣化对混合料疲劳寿命影响的主要问题。使用两种专有的实验方法进行了研究,这两种方法能够近似模拟环境影响的现场条件。采用动态四点弯曲疲劳试验来评估考虑疲劳的劣化情况。研究使用了四种粗级配沥青混合料(沥青混凝土AC 22),它们在结合料类型(35/50温拌沥青、35/50、25/55 - 60和25/55 - 80高模量沥青)、含量水平(4.24%、4.03%、3.82%)和生产技术(热拌和温拌)方面存在差异。关于所得结果,作者提出了关于疲劳寿命变异性的劣化率。基于所得结果和使用的比率,发现两种相互作用都会导致疲劳寿命显著降低——在最坏的情况下,超过百分之几十。此外,发现沥青混合料对环境因素的抵抗力取决于结合料类型、其含量水平、空隙率以及所讨论的影响。而且,沥青混合料在较低结合料含量水平下对劣化(疲劳)的敏感性极高,并且会因空隙率增加而加速。文章中还指出,具有高度改性沥青(2

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/54d8/9917674/d328d0a6befa/materials-16-00966-g001.jpg

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