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Chip Seals for Asphalt Concrete Pavements: A Proposed Emulsion Residue Specification and Existing Pavement Texture Evaluation

机译:沥青混凝土路面的碎石密封件:建议的乳液残留物规范和现有的路面纹理评估

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摘要

Chip seals are a pavement surface treatment used for maintaining asphalt concrete pavements. National Cooperative Highway Research Program (NCHRP) Project 14-17 was performed to produce a national Chip Seal Manual which would consolidate the best chip seal engineering practices. A subcontract to NCHRP Project 14-17 performed at Texas A&M University was the basis for this thesis. It included the following tasks: investigation of a testing and grading system for grading asphalt binder residues from chip seal emulsions; and investigation of texture measurement methods for assessing existing pavement macrotexture before a chip seal is placed. The performance graded (PG) asphalt binder specification, which was developed to characterize asphalt binder properties related to the performance of hot mix asphalt concrete in pavements, cannot be directly applied to asphalt binders or emulsion residues for use in chip seals. Therefore, the surface performance graded (SPG) specification was developed using the same equipment as the PG system but with some procedural modifications and different limiting values for the test parameters. NCHRP Project 14-17 utilized the PG and SPG systems to grade base asphalt binders and recovered emulsion residues. Two emulsion residue recovery methods were compared: hot oven evaporation with nitrogen blanket and stirred can with nitrogen purge. The PG and SPG grades were found to be similar for the two emulsion residue recovery methods but slightly different from the base asphalt binder. A strawman specification for emulsion residues in chip seals was recommended for use with the stirred can recovery method. In chip seal construction, macrotexture of the existing pavement affects the rate at which chip seal emulsion must be applied. In this project, existing pavement macrotextures were measured at three chip seal projects immediately before construction using both the sand patch test and the circular track meter, CT Meter. The CT Meter was found to quickly and effectively measure pavement macrotexture. The CT Meter measurements correlated well with the sand patch test measurements. Finally, this project investigated the utility of measuring pavement macrotexture in the laboratory using the aggregate imaging system (AIMS) on pavement cores and on small samples cut from fabricated slabs. Statistical analyses showed good correlation between the mean profile depth, MPD, calculated from AIMS measurements on pavement cores and small samples, based on analysis using 50 mm (2 inch) segment lengths, and the MPD measured on the pavement or on the large fabricated slabs with the CTMeter. These results supported the use of AIMS to measure pavement macrotexture using small samples in the laboratory.
机译:切屑密封是一种用于维护沥青混凝土路面的路面表面处理。执行了国家公路合作研究计划(NCHRP)项目14-17,以编制国家芯片密封手册,该手册将巩固最佳芯片密封工程实践。德克萨斯农工大学NCHRP项目14-17的分包合同是本文的基础。它包括以下任务:研究一种用于对碎石密封乳液中的沥青粘合剂残留物进行分级的测试和分级系统;进行纹理测量方法的研究,以评估在放置芯片密封之前评估现有路面的宏观纹理。性能分级(PG)沥青粘合剂规范是为了表征与热拌沥青混凝土在路面中的性能有关的沥青粘合剂性能而开发的,不能直接应用于用于沥青密封的沥青粘合剂或乳液残留物。因此,使用与PG系统相同的设备开发了表面性能分级(SPG)规范,但对程序参数进行了一些程序修改和不同限制值。 NCHRP项目14-17利用PG和SPG系统对基础沥青粘合剂和回收的乳液残留物进行分级。比较了两种乳液残留物回收方法:带氮气层的热炉蒸发和带氮气吹扫的搅拌罐。发现这两种乳液残留物回收方法的PG和SPG等级相似,但与基础沥青粘合剂略有不同。建议使用稻草人规格的芯片密封中的乳液残留物与搅拌罐回收方法一起使用。在碎屑密封结构中,现有路面的宏观纹理会影响必须施加碎屑密封乳液的速率。在该项目中,在施工前即刻使用砂斑试验和圆形轨道仪CT Meter对三个碎石密封项目中的现有路面宏观纹理进行了测量。发现CT计可以快速有效地测量路面宏观纹理。 CT测量仪的测量值与沙斑测试测量值具有很好的相关性。最后,该项目研究了在路面核心和从人造板切下的小样本上使用聚合成像系统(AIMS)在实验室中测量路面宏观纹理的实用性。统计分析表明,基于使用50毫米(2英寸)链段长度的分析,根据路面核心和小样品的AIMS测量得出的平均轮廓深度MPD与在人行道或大型预制板上测量的MPD之间具有良好的相关性与CTMeter。这些结果支持使用AIMS在实验室中使用少量样品测量路面宏观纹理。

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    Hoyt Denise;

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  • 年度 2012
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