大空隙透水半刚性基层材料的设计和实验室调查研究

Xu Li, Zeyu Xiao, Zhenguo Zhao, Junfeng Sun, Shiyuan Liu
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摘要

目的探索经济合理的半刚性透水基层配合比,解决坡面雨水冲刷路面基层造成的问题,改善其排水功能,提高路基路面的水稳定性和使用寿命,促进半刚性透水基层材料在寒冷地区沥青路面施工中的应用。设计/方法/途径本研究设计了三种半刚性基层材料,对其力学强度和排水性能进行了测试,并分析了空隙率对其性能指标的影响及相关性。研究结果发现,增加水泥含量可提高强度,但降低了空隙率和透水系数。无砂材料的透水性能优于致密材料;当水泥含量为 7% 时,两种无砂材料的性能基本相同。总的来说,介于无砂型和致密型之间的骨架空隙(含砂)型级配更适合作为透水半刚性基层材料,其级配相对连续,水泥含量?4.5%,强度?1.5 MPa,透水系数?原创性/价值研究大空隙透水半刚性基层材料,有助于解决寒冷地区沥青路面基层的水破坏和冻融破坏问题,保证沥青路面的舒适性和耐久性,同时具有良好的经济效益和社会效益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on the design and laboratory investigation of permeable semi-rigid base material with large air voids
PurposeTo explore the economical and reasonable semi-rigid permeable base layer ratio, solve the problems caused by rainwater washing over the pavement base layer on the slope, improve its drainage function, improve the water stability and service life of the roadbed pavement and promote the application of semi-rigid permeable base layer materials in the construction of asphalt pavement in cold regions.Design/methodology/approachIn this study, three semi-rigid base course materials were designed, the mechanical strength and drainage properties were tested and the effect and correlation of air voids on their performance indexes were analyzed.FindingsIt was found that increasing the cement content increased the strength but reduced the air voids and water permeability coefficient. The permeability performance of the sandless material was superior to the dense; the performance of the two sandless materials was basically the same when the cement content was 7%. Overall, the skeleton void (sand-containing) type gradation between the sandless and dense types is more suitable as permeable semi-rigid base material; its gradation is relatively continuous, with cement content? 4.5%, strength? 1.5 MPa, water permeability coefficient? 0.8 cm/s and voids of 18–20%.Originality/valueThe study of permeable semi-rigid base material with large air voids could help to solve the problems of water damage and freeze-thaw damage of the base layer of asphalt pavements in cold regions and ensure the comfort and durability of asphalt pavements while having good economic and social benefits.
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