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Laboratory and field evaluation of recycled unbound layers with cement for use in asphalt pavement rehabilitation

机译:在沥青路面修复中使用的水泥再生未粘结层的实验室和现场评估

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The use of recycling techniques in the rehabilitation of old pavements has become an important tool for pavement engineering practices. The reduced costs and the scarce natural resources are the main reason for which the development and improvement of recycling processes have been studied by many researchers around the world. The main objective of this paper is to investigate the structural responses of an asphalt pavement after using deep recycling techniques of granular layers with an addition of cement for the rehabilitation of asphalt pavements. Laboratory analysis using resilient modulus, indirect tensile strength (ITS), and unconfined compressive strength (UCS) tests were performed for mixes with 5 and 6 % of cement content, two compaction energies and three curing periods. In the field, two sections using 250 and 300 mm thicknesses of a recycled base layer were constructed with 5.0 % of cement addition. An evaluation of these experimental test tracks was conducted by performing deflections and by mechanical characterization of samples extracted from the test site at different ages. The results indicated differences in UCS and ITS values for the laboratory mixes. Field specimens from the 300 mm-section presented higher stiffness than the 250 mm. Studies have shown that the resilient moduli determined from nondestructive test based on backcalculation procedures are similar from those determined in the laboratory through modulus of elasticity tests.
机译:在旧路面的修复中使用回收技术已成为路面工程实践的重要工具。降低的成本和稀缺的自然资源是全世界许多研究人员研究开发和改善回收工艺的主要原因。本文的主要目的是研究使用颗粒层的深层回收技术并添加水泥来修复沥青路面后的沥青路面结构响应。使用弹性模量,间接抗张强度(ITS)和无侧限抗压强度(UCS)试验对含5%和6%水泥含量,两种压实能和三个固化周期的混合物进行了实验室分析。在现场,用5.0%的水泥添加量构造了两个部分,分别使用250和300 mm厚度的再生基础层。对这些实验测试轨迹的评估是通过偏转和通过对不同年龄从测试位置提取的样品进行机械表征来进行的。结果表明实验室混合物的UCS和ITS值存在差异。 300毫米截面的野外标本比250毫米具有更高的刚度。研究表明,基于反计算程序从无损测试中确定的弹性模量与实验室中通过弹性模量测试确定的弹性模量相似。

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