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不同成型方法和级配的沥青混合料内部空隙特征研究

王聪   

  1. 大连海事大学
  • 收稿日期:2012-09-13 修回日期:2013-01-05 发布日期:2013-06-20
  • 通讯作者: 王聪

Air Voids Distribution of Asphalt Mixtures in Different Compaction Methods and Aggregate Gradations

Cong Wang   

  • Received:2012-09-13 Revised:2013-01-05 Published:2013-06-20
  • Contact: Cong Wang

摘要: 为弄清不同级配沥青混合料的空隙空间分布规律以及试件成型方法对其的影响,采用X-ray CT技术和数字图像处理技术研究两种成型条件下三种级配沥青混合料试件的内部空隙特征,并通过统计分析提出数学模型对其进行表征。结果表明,沥青混合料的空隙空间分布规律受试件成型方法及级配类型的影响较大。不同级配条件下,马歇尔试件内部空隙率分布沿着高度方向总体呈现对称形状,而静压试件内部空隙率分布则为“一端大,一端小”的形状,马歇尔试件的平均空隙率与目标空隙率差异较小,而静压试件的平均空隙率是目标空隙率1.4倍以上;相同级配条件下,与马歇尔试件相比,静压试件的空隙空间分布离散性、平均空隙率和平均空隙数量均较大,但平均空隙等效直径相差较小;采用两参数数学模型能够较好地表征成型方法和集料级配对沥青混合料内部空隙空间分布规律的影响。

关键词: 道路工程, 空隙, X-ray CT, 沥青混合料, 成型方法

Abstract: To analyze the effect of compaction methods and aggregate gradations on air voids distribution in asphalt mixtures, the air voids distribution of three gradations of aggregate was characterized using x-ray computed technology and digital image processing technology. Furthermore, a mathematic model was made an attempt to present for describing the air voids distribution in internal structure of asphalt mixtures by means of statistical analysis. The results show that the gradation of aggregate and compaction methods had considerable influence on air voids distribution in the specimens, and that was found to be symmetrical along the depth of Marshall specimen, whereby distribution of air voids in the static compacted specimen is nonsymmetrical along the depth, and the number of air voids on top part of a specimen was bigger than at bottom part. The target volume of air voids and mean of air voids of Marshall specimen had little difference, the mean volume of air voids is more than 1.4 times beyond target volume of air voids of static compacted specimen. The number of air voids was more bigger and the fluctuations along the depth was more remarkable, the air voids size was almost consistent in static compacted specimens compared with the Marshall specimens in uniform gradation of aggregate. The statistical analysis performed validated the applicability of a two parameters mathematics model for characterizing air voids distribution of asphalt mixture, and the model could quantify the effect of compaction methods and gradation of aggregate on air voids.

Key words: Road engineering, Air voids, X-ray CT, Asphalt mixture, Compaction methods

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