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Cracking Performance of Lower Asphalt Binder Coarse Hot Mix Asphalt Mixes

机译:低沥青粘合剂粗混合物沥青混合物的开裂性能

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Historically, asphalt mixtures in Minnesota have been produced to be fine-graded in nature. Recently, there are increasingly more coarse-graded mixtures being produced with relatively low asphalt binder content as compared to fine-graded mixtures. The performance of the coarser low asphalt content mixes is not known; therefore, the objective of this study is to determine if the coarse asphalt mixes with lower binder content are prone to a reduced service life and increased performance problems. The present study focused on 13 low asphalt binder content, coarse-gradation mixes from actual field projects constructed mostly in the last 1-5 years. The performance of the pavement sections was quantified using Minnesota Department of Transportation's (MnDOT) pavement management systems (PMS). Field cracking performance was compared to laboratory tests on core samples procured from the field sections. The field procured core samples were tested using the disk-shaped compact tension (DCT) fracture energy test and permeability measurements. The lab results were also analyzed with each pavement section's field performance. The results from the study will not only provide answers to this question but also provide estimates of the pavement performances for low binder content mixes. Final outcomes will help revise future asphalt mix specifications. The modifications will ensure that pavements provide the service for as designed time duration and have minimal performance problems that reduce the future rehabilitation and maintenance costs.
机译:从历史上看,明尼苏达州的沥青混合物已经生产出在自然界中进行微观评分。最近,与细分级混合物相比,越来越多地产生具有相对低的沥青粘合剂含量的粗分级混合物。较粗糙的低沥青含量混合物的性能尚不清楚;因此,本研究的目的是确定具有较低粘合剂含量的粗沥青混合是否容易产生降低的使用寿命和增加的性能问题。本研究重点关注13个低沥青粘合剂含量,从最近1 - 5年内大多构建的实际场项目的粗灰级混合物。使用明尼苏达州的交通部(MNDOT)路面管理系统(PMS)量化路面部分的性能。将场裂化性能与从场部采购的核心样品上的实验室测试进行比较。使用圆盘形紧凑张力(DCT)断裂能量测试和渗透率测量来测试采购现场采购的核心样品。每个路面部分的现场性能也分析了实验室结果。研究结果不仅提供了对该问题的答案,还提供了低粘合剂含量混合的路面性能的估计。最终结果将有助于修改未来的沥青混合规范。该修改将确保路面为设计的持续时间提供服务,并且具有最小的性能问题,可降低未来的康复和维护成本。

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