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公称最大集料粒径和集料级配对多孔沥青混凝土孔隙特性的影响

Influence of Nominal Maximum Aggregate Size and Aggregate Gradation on Pore Characteristics of Porous Asphalt Concrete.

作者信息

Huang Wenke, Cai Xu, Li Xiang, Cui Wentian, Wu Kuanghuai

机构信息

School of Civil Engineering, Guangzhou University, Guangzhou 510006, China.

School of Civil Engineering, Chongqing Jiaotong University, Chongqing 400074, China.

出版信息

Materials (Basel). 2020 Mar 17;13(6):1355. doi: 10.3390/ma13061355.

Abstract

Porous asphalt concrete (PAC) has been used to improve the traffic conditions in rainy weather due to its high porosity. Aggregate size and gradation have great impact on the connected pore structure, which ultimately affects the permeability of porous asphalt concrete. In this paper, the topological properties of connective pores including pore area, pore circularity, equivalent pore diameter, and void network of porous asphalt concrete with different nominal maximum aggregate sizes and gradations were analyzed using x-ray computer tomography scans and the image processing technique. It was observed that the maximum aggregate sizes will not have significant effect on the percentage of connected pores to total pores for porous asphalt concrete. Furthermore, the percentage of connected pores to total pores is related to the air void content, but for PAC-13 with 20% target air void content or above, the connectivity does not seem to have a sharp increase. Additionally, porous asphalt concrete with a smaller nominal particle size or lower target air void content seems to generate a more concentrated distribution of . Moreover, pore circularities for porous asphalt concrete with a maximum aggregate size of 10 mm or above are independent of maximum aggregate sizes. Air void contents ranging from 16% to 21% do not have a significant effect on the voids' circularity. Furthermore, the branching nodes in porous asphalt concrete with a smaller nominal maximum aggregate size or lower target air void content have a more uniform spatial distribution. However, the percentage of cross-linked number to total node raises as the nominal maximum aggregate size or target air void content increases.

摘要

多孔沥青混凝土(PAC)因其高孔隙率而被用于改善雨天的交通状况。集料尺寸和级配对连通孔隙结构有很大影响,最终影响多孔沥青混凝土的渗透性。本文利用X射线计算机断层扫描和图像处理技术,分析了不同公称最大集料尺寸和级配的多孔沥青混凝土连通孔隙的拓扑特性,包括孔隙面积、孔隙圆度、等效孔径和孔隙网络。研究发现,最大集料尺寸对多孔沥青混凝土连通孔隙占总孔隙的百分比没有显著影响。此外,连通孔隙占总孔隙的百分比与空隙率有关,但对于目标空隙率为20%及以上的PAC-13,连通性似乎没有急剧增加。此外,公称粒径较小或目标空隙率较低的多孔沥青混凝土似乎产生更集中的分布。而且,最大集料尺寸为10mm及以上的多孔沥青混凝土的孔隙圆度与最大集料尺寸无关。16%至21%的空隙率对孔隙圆度没有显著影响。此外,公称最大集料尺寸较小或目标空隙率较低的多孔沥青混凝土中的分支节点具有更均匀的空间分布。然而,随着公称最大集料尺寸或目标空隙率的增加,交联节点数占总节点数的百分比会升高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e5a3/7143813/7ffe237a4059/materials-13-01355-g001.jpg

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