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Semi-rigid pavement performance and construction techniques for semiarid areas

机译:半干旱地区的半刚性路面性能和施工技术

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This article explains a field study about the service properties of semi-rigid pavements attained in a climatic area that can be considered semiarid/arid, located in the west of Spain. A semirigid pavement includes a soil-cement (SC) base (or subbase) and a stabilised subgrade. Taking as a reference the works in two motorways of recent construction such as the A-66 and A-58, the criteria are presented that favoured the choice of the semi-rigid solution for its pavement and the specific techniques used for its building as well as its performance after having been opened to the traffic for 7-8 years. It has to be noted, however, that the treated layers, especially the SC base, need to be protected by a specific thickness of bituminous layers in order to achieve a homogeneous distribution of the traffic loads and provide protection against water, as well as to absorb part of the thermal cracks that will inevitably appear. Nevertheless, in the considered weather conditions, the use of pre-cracking techniques is necessary in order to maximise cement content and obtain higher bearing capacity. The SC course, resting on a quality subgrade, is responsible to a great extent for the pavement final stiffness, being able to reduce the deformability of the subgrade itself to over 40%. The results reached with the International Roughness Index regularity rate on the treated subbases are presented as well, displaying its evolution with regard to the pavement construction phases and remarking on the recommended strategies for its improvement.
机译:本文介绍了关于在西班牙西部气候区域(可以视为半干旱/干旱)获得的半刚性路面服务特性的现场研究。半刚性路面包括土壤水泥(SC)基层(或路基)和稳定的路基。以最近建造的两条高速公路(例如A-66和A-58)中的工程为参考,提出的标准有利于选择其路面的半刚性解决方案以及用于其建造的特定技术在开放使用7-8年后的性能。但是,必须注意的是,处理过的层,特别是SC层,需要用特定厚度的沥青层保护,以实现交通负荷的均匀分布并提供防水保护,以及吸收不可避免地会出现的部分热裂纹。然而,在考虑到的天气条件下,必须使用预裂技术以最大化水泥含量并获得更高的承载能力。铺设在优质路基上的SC层在很大程度上负责人行道的最终刚度,能够将路基本身的可变形性降低至40%以上。还介绍了在处理过的路基上使用国际粗糙度指数规律性率得出的结果,显示了其在人行道施工阶段方面的演变,并指出了建议的改善策略。

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