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Preliminary In-Situ Evaluation of an Innovative Semi-Flexible Pavement Wearing Course Mixture Using Fast Falling Weight Deflectometer

机译:使用快速下落的重量偏转仪对创新的半柔性路面穿着层混合物进行的现场评估

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摘要

In the last forty, years semi-flexible pavements have been successfully employed, especially in those areas subjected to heavy and slow-moving loads. They usually comprise a wearing course of Grouted Macadam, a composite pavement material that provides significant advantages in comparison to both concrete and asphalt pavements. On the other hand, the laying process of this material is a two-stage operation, and the realization complexity leads to long realization times and high initial costs. Therefore, the use of semi-flexible pavements has been limited to some fields of application and areas. Recently, an innovative material has been developed to be used as an alternative to Grouted Macadam for semi-flexible pavement wearing course realization. This material should provide similar or even superior characteristics compared to traditional Grouted Macadam. This will reduce semi-flexible pavement construction time and avoid the need for dividing the laying process. This paper presents an experimental program involving the use of FastFWD, as an APT device, to evaluate in-situ properties and performance of this material. The achieved results regarding the validation of this new material by means of FastFWD appear promising both in terms of the material’s properties and resistance to dynamic load repetitions.
机译:在过去的四十年中,半柔性路面已成功使用,特别是在承受重载和缓慢移动载荷的区域。它们通常包括水泥碎石路面的磨损过程,这是一种复合路面材料,与混凝土和沥青路面相比,具有明显的优势。另一方面,这种材料的铺设过程是一个两阶段的操作,实现的复杂性导致实现时间长和初始成本高。因此,半柔性路面的使用已限于某些应用领域和领域。最近,已经开发出一种创新的材料来替代碎浆碎石来实现半柔性路面的磨损过程。与传统的碎碎碎石相比,这种材料应提供相似甚至更好的特性。这将减少半柔性路面的施工时间,并避免了划分铺设过程的需要。本文提出了一个实验程序,涉及使用FastFWD作为APT设备来评估这种材料的原位特性和性能。在通过FastFWD验证这种新材料方面取得的成果看来,在材料的性能和抗动态载荷重复性方面都很有希望。

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