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首页> 外文期刊>Journal of materials in civil engineering >Impact of Antistrip Additives on Pavement Performance Using Mechanistic-Empirical Pavement Design Guide
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Impact of Antistrip Additives on Pavement Performance Using Mechanistic-Empirical Pavement Design Guide

机译:使用机械-经验路面设计指南的抗剥离剂对路面性能的影响

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摘要

A comprehensive study was conducted to evaluate the impact of liquid and lime additives on the pavement performance of asphalt mixtures from five different sources around the United States. Three types of mixtures were evaluated from each source: untreated, liquid-treated, and lime-treated. The measured properties of the 15 mixtures included the dynamic modulus and their resistance to rutting and fatigue at the undamaged and moisture-damaged conditions. The measured performance properties of the mixtures were then used to conduct 20 years' worth of structural designs for actual projects selected from the five sources of mixtures. For each project, a total of three structural designs were established using the Mechanistic-Empirical Pavement Design Guide by changing the type of mix used in the hot mix asphalt (HMA) layer. The percent cost savings or additional costs were estimated relative to the cost of the HMA pavement with the untreated HMA mixtures. Overall, the use of lime additives in HMA mixtures consistently resulted in significant savings that was sometimes as high as 45%. The use of liquid antistrip additives in HMA mixtures resulted in savings between 13 and 32%, or an additional cost, in some cases as high as 50%. The additional cost for the liquid-treated mixes was observed for mixtures that were not considered to be moisture sensitive, as measured by retained tensile strength ratio.
机译:进行了一项综合研究,以评估液体和石灰添加剂对美国五种不同来源的沥青混合料的路面性能的影响。从每种来源评估了三种类型的混合物:未处理,液体处理和石灰处理。 15种混合物的测量特性包括动态模量以及它们在未损坏和潮湿条件下的耐车辙和疲劳的性能。然后,将所测量的混合物的性能特性用于对选自五个混合物来源的实际项目进行20年的结构设计。对于每个项目,使用《机械-经验式路面设计指南》通过更改热混合沥青(HMA)层中使用的混合料类型,总共建立了三个结构设计。相对于使用未经处理的HMA混合物的HMA路面的成本,估计节省的成本或额外成本的百分比。总体而言,在HMA混合物中始终使用石灰添加剂可节省大量成本,有时可节省高达45%。在HMA混合物中使用液体防剥离添加剂可节省13%到32%,或额外成本,在某些情况下可高达50%。对于通过保留的拉伸强度比测得的不被认为是对水分敏感的混合物,观察到了液体处理的混合物的额外成本。

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