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A Direct Shear Approach to Assess the Interface Bonding Performance

机译:直接剪切法评估界面粘合性能

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The objective of this study was to investigate the effects of various factors affecting bond strength between hot mix asphalt (HMA) overlay and underlying pavement layers in the field. The effect of interface bonding on short-term pavement performance was also evaluated. A list of candidate HMA field rehabilitation projects was identified across the United States, representing different traffic and environmental conditions. These projects included the rehabilitation of new, existing, and milled HMA pavements, and PCC pavements. Each field project involved at least one slow setting and one rapid setting non-tracking tack coat material, thereby creating one or more pairs of lack coats for comparison. The HMA overlay construction used different types of tack coat materials at various residual application rates. Specimens were cored from the evaluated test sections at different service times to determine the interface shear strength (ISS) according to AASHTO TP 114, "Standard Method of Test for Determining the Interlayer Shear Strength of Asphalt Pavement Layers. " Results of this study showed that ISS was largely dependent on the type of pavement surface (i.e., HMA vs. PCC) receiving tack coat, and pavement surface texture (i.e., milled vs. non-milled). In general, milled HMA surface yielded the highest ISS, followed by new HMA, existing HMA, and PCC surface types. Non-tracking rapid setting tack coats with stiff base asphalt cement exhibited the highest ISS compared to slow setting tack coats. With respect to the effect of service time, ISS increased with service time due to tack coat curing effect and densification of overlays. Laboratory measured ISS values correlated well with short-term cracking performance of field pavements. Results presented herein were part of NCHRP Project 9-40A on the "Field Implementation of the Louisiana Interface Shear Strength Test. "
机译:这项研究的目的是研究影响现场热拌沥青(HMA)铺面层与下层路面层之间粘结强度的各种因素的影响。还评估了界面粘结对短期路面性能的影响。在美国各地确定了代表HMA现场康复项目的候选清单,代表了不同的交通和环境条件。这些项目包括修复新的,现有的和磨碎的HMA路面以及PCC路面。每个现场项目都涉及至少一种慢凝和一种快速凝结的无痕粘性涂料,从而创建一对或多对不足涂料用于比较。 HMA覆盖层结构以不同的残留施用率使用了不同类型的粘性涂料。根据AASHTO TP 114“确定沥青路面层间层间剪切强度的标准测试方法”,在不同的使用时间下,从评估的测试部分中抽取样品作为中心,以确定界面剪切强度(ISS)。 ISS很大程度上取决于接受粘性涂层的路面类型(即HMA与PCC)和路面表面纹理(即,铣削与非铣削)。通常,铣削的HMA表面产生的ISS最高,其次是新的HMA,现有的HMA和PCC表面类型。与慢凝型粘性涂料相比,采用硬质基础沥青水泥的非履带速干型粘性涂料显示出最高的ISS。关于使用时间的影响,由于粘性涂层的固化效果和覆盖层的致密化,ISS随着使用时间的增加而增加。实验室测得的ISS值与田间路面的短期开裂性能密切相关。本文提供的结果是NCHRP项目9-40A中“路易斯安那州界面抗剪强度测试的现场实施”的一部分。

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