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Application of foam bitumen in cold recycling and hydrated lime in airport pavement strengthening

机译:泡沫沥青在冷再生中的应用及熟石灰在机场路面加固中的应用

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Due to the growth of commercial activities in port of Lengeh in south Iran, it was necessary to rehabilitate and upgrade the existing airport which is almost one hundred years old. Severe distresses that occurred in runway and other aircraft operational areas required that the bearing capacity of the existing pavements should be increased. Limited dimensions of the runway and other operational areas in the airport (i.e. runway, taxiway and apron) required these to be extended and widened.A full recycling program was planned including sub-grade and sub-base stabilization with lime in widening areas and base strengthening with foam bitumen and cement slurry in both existing and new constructed sections. The mix design for the foam bitumen cement bonded mix was performed using both Indirect Tensile (ITS) and Unconfined Compressive Strength (UCS) Testing. To avoid extra stiffening of foam-bitumen cement slurry stabilized layer that could lead to formation of fatigue cracking, Marshall Quotient was established to obtain the optimum cement content. The results showed that CBR values of the sub-grade and sub-base layers were increased appreciably by adding 4% hydrated lime powder, hence the local material was successfully used to construct these layers. In addition, foam-bitumen cement treated base layer was gained ITS and UCS strength values well above the specification requirement. Using the mentioned stabilization and recycling methods resulted in protection of the environment and savings in construction time and virgin materials.
机译:由于伊朗南部Lengeh港口商业活动的增长,有必要修复和升级已有近100年历史的现有机场。在跑道和其他飞机运行区域发生的严重事故要求增加现有人行道的承载能力。跑道和机场其他运营区域(例如,跑道,滑行道和停机坪)的尺寸有限,因此需要扩展和扩展。已计划进行全面的回收计划,包括在拓宽区域和基础上用石灰稳定路基和路基在现有的和新建的路段都使用泡沫沥青和水泥浆进行加固。使用间接拉伸(ITS)和无侧限抗压强度(UCS)测试对泡沫沥青水泥粘结的混合物进行混合设计。为了避免泡沫沥青水泥浆稳定层的额外硬化而导致疲劳裂纹的形成,建立了马歇尔商数以获得最佳水泥含量。结果表明,通过添加4%的熟石灰粉可以显着提高路基和基层的CBR值,因此成功地使用了本地材料来构造这些层。此外,泡沫沥青水泥处理的基础层获得的ITS和UCS强度值均远高于规格要求。使用上述稳定和再循环方法可以保护环境,并节省施工时间和原始材料。

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