首页> 外文期刊>Journal of materials in civil engineering >Influence of Coarse-Aggregate Angularity on Asphalt Mixture Macroperformance: Skid Resistance, High-Temperature, and Compaction Performance
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Influence of Coarse-Aggregate Angularity on Asphalt Mixture Macroperformance: Skid Resistance, High-Temperature, and Compaction Performance

机译:粗骨料角对沥青混合料宏观性能的影响:防滑性,高温和压实性能

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摘要

Macroperformance, i.e., skid resistance, high-temperature, and compaction performance, are related to the functional performance, safety, and durability of asphalt pavement. Currently, the research on such influencing factors focuses on the properties of asphalt, gradation composition, pavement structure, and so forth, whereas the geometrical characteristics of coarse aggregate, especially its angularity, has not gained due attention from researchers. This paper investigated the effects of coarse-aggregate angularity on the skid resistance, high-temperature performance, and compaction performance of asphalt mixtures. Three-dimensional angularity (3DA) computed by X-ray computed tomography (XCT) was employed to characterize coarse-aggregate angularity. Texture depth (TD) and British pendulum number (BPN) were evaluated through the sand patch test and the British pendulum test (BPT), respectively. The dynamic stability and rutting depth of mixtures with different coarse-aggregate angularities were examined with the wheel tracking test. The variation in height of the specimen with different angularity asphalt mixtures during the compaction process was tested through the Superpave gyratory compactor (SGC). The dynamic modulus (|E*|) of the asphalt mixtures was analyzed with the asphalt mixture performance tester (AMPT) and the generation of master curves. The results showed that three-dimensional (3D) angularity is able to characterize the angularity of the coarse aggregate. A lower coarse-aggregate angularity leads to a smaller skid resistance of the asphalt mixture. The angularity greatly influences the high-temperature and compaction performance of asphalt mixtures. Higher angularity leads to better high-temperature stability but causes difficulty in compaction. The angularity has a significant influence on the E* values of SMA-16 asphalt mixture. The results revealed that the decrease in coarse-aggregate angularity translated into a decrease in |E*| values on average. This study provides support for further research into and application of macroscopic properties of asphalt mixtures.
机译:宏观性能,即防滑性,高温和压实性能,与沥青路面的功能性能,安全性和耐久性有关。目前,关于这种影响因素的研究集中在沥青的性质,等级组成,路面结构等方面,而粗骨料的几何特性,尤其是其棱角,并未引起研究人员的关注。本文研究了粗骨料角对沥青混合料的防滑性,高温性能和压实性能的影响。 X射线计算机断层扫描(XCT)计算的三维角度(3DA)用于表征粗骨料角度。分别通过砂斑试验和英式摆试验(BPT)评估了质地深度(TD)和英式摆数(BPN)。用砂轮跟踪试验研究了具有不同粗骨料角度的混合物的动力稳定性和车辙深度。通过Superpave旋转压实机(SGC)测试了压实过程中不同斜度沥青混合料的试样高度变化。使用沥青混合料性能测试仪(AMPT)分析沥青混合料的动态模量(| E * |)和主曲线的生成。结果表明,三维(3D)角度能够表征粗骨料的角度。较低的粗骨料角度会导致沥青混合物的防滑性较小。棱角极大地影响沥青混合物的高温和压实性能。较高的角度导致更好的高温稳定性,但导致压实困难。角度对SMA-16沥青混合料的 E * 值有很大影响。结果表明,粗骨料角的减小转化为| E * |的减小。平均价值。这项研究为进一步研究和应用沥青混合料的宏观性能提供了支持。

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