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Investigation of Performance of Asphalt Pavement with Fly-Ash Stabilized Cold In-Place Recycled Base Course

机译:粉煤灰稳定冷真实基地路线对沥青路面性能调查

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Class C fly ash is a coal combustion product from lignite or subbitumi-nous coal obtained as a result of the power generation process. In recent years, efforts have been made to incorporate self-cementing fly ash into cold in-place recycled (CIR) asphalt material to improve the structural capacity of asphalt pavement base layers. In this study, asphalt pavements in County Trunk Highway JK in Waukesha County, Wisconsin, were pulverized in place and mixed with fly ash and water to function as a base course. To evaluate the contribution of fly ash to the pavement's structural performance, nondestructive deflection tests were performed with a KUAB 2m-FWD falling weight deflectometer (FWD) on the outer wheelpath right after construction. The MICHBACK program was used to backcalculate the material properties of pavement layers from FWD measurements of deflection. The average moduli of the materials in the hot-mix asphalt layer, fly ash-stabilized base course, and sub-grade were backcalculated. The structural capacity and structural number were also obtained from FWD test data. The structural coefficient of 0.16 was obtained for the fly ash-stabilized base course in the highway. The results of FWD testing indicate that CIR stabilization with self-cementing fly ash is an economical method of recycling flexible pavements and eliminates the need for expensive new granular base courses for road reconstruction.
机译:C类粉煤灰是由于发电过程得到的褐煤或亚伯米煤的煤燃烧产物。近年来,已经努力将自粘的粉煤灰纳入冷 - 地就地再生(CIR)沥青材料,以提高沥青路面基层的结构能力。在这项研究中,威斯康星州沃克斯郡县县县县干线JK的沥青路面粉碎,与粉煤灰和水混合,以作为基础路线。为了评估粉煤灰对路面结构性能的贡献,在构建后的外驾驶路径上用Kuab 2M-FWD下降重量偏转仪(FWD)进行无损挠度试验。 MICHBACK程序用于将路面层的材料特性从FWD测量重新划分路面层的材料特性。重结划分了热混合沥青层,粉煤灰稳定基础路线和亚级材料的平均模态。从FWD测试数据中也获得了结构容量和结构数。在高速公路中为粉煤灰稳定的基础路线获得0.16的结构系数。 FWD测试的结果表明,带有自粘粉煤灰的CIR稳定性是回收柔性路面的经济方法,消除了对道路重建昂贵的新颗粒基础课程的需求。

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