就地复合冷再生路面设计参数及工艺参数
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Design Parameters for Cold InPlace Reclaimed Composite Pavement
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    摘要:

    就地复合冷再生层技术是在现场将部分旧沥青层与基层一同再生后,形成既具有一定柔性又具较大刚性的新型路面层结构的一种技术.结合渝涪高速公路沥青路面病害处治工程,研究了就地复合冷再生层的结构厚度和组合、材料参数和工艺参数以及受力分析,并取得了成功的应用经验.研究结果认为:1)在复合铣刨和再生沥青面层和水泥稳定上基层条件下,为了确保就地复合冷再生层的压实质量,其厚度应控制在26 cm以内比较适宜;2)复合冷再生层的空隙率应控制小于12%;3)复合冷再生层上应设置一层防水层,而且新铺沥青混凝土厚度应不小于9 cm;

    Abstract:

    The cold inplace reclaimed composite base technique is a technique that the partially old asphalt pavement and the partially old base was milled together then reclaimed inplace as a new base with flexible and rigid property. Taking the treatment project for failed asphalt pavement of Yuhu Expressway in Chongqing as a case study, the structure thickness and the structure composition, the material parameters, the technological parameters were studied and mechanic behavior was discussed for the cold inplace reclaimed composite base. It is found that (1)based on milling and reclaiming asphalt concrete with upbase stabilized by cement together, a suitable compacted thickness should be controlled within the 26cm to ensure the compaction quality for the cold inplace reclaimed composite base,;(2)the void contents for the cold reclaimed composite base would be restricted at low than 12%;(3)a waterproof layer should be set and the thickness of new asphalt concrete should be paved to be more than 9cm on the cold inplace reclaimed composite base;(4)the principal technical performances are recommended using the Marshall Flow(to be controlled in the range of the 3~5 mm)、soaked split strength(to be large than 0.45 MPa)、the freezethaw split strength ratio(to be large than50%) and the bend strain( to be large than 1 800 με) as the controlled index of the cold reclaimed composite base. And the dynamic stability(to be large than 2000 times/mm)only is used as a secondary technical performance.

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樊统江,赵磊.就地复合冷再生路面设计参数及工艺参数[J].土木与环境工程学报(中英文),2010,32(4):49-57. FAN Tongjiang, ZHAO Lei. Design Parameters for Cold InPlace Reclaimed Composite Pavement[J]. JOURNAL OF CIVIL AND ENVIRONMENTAL ENGINEERING,2010,32(4):49-57.10.11835/j. issn.1674-4764.2010.04.010

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  • 收稿日期:2009-12-23
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