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Modifying laboratory mixture design to improve field compaction

机译:修改实验室混合物设计以提高现场压实度

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摘要

Field data collected in Indiana suggest that if asphalt mixtures were designed to be more compactable in the field, they could be compacted to a field density equivalent to the laboratory mixture design density, potentially increasing pavement durability. The objective of this research was to modify the mixture design in order to increase in-place mixture density without sacrificing permanent deformation characteristics. Three 100-gyration mixtures were used, each meeting applicable specifications and designed according to AASHTO M323. For each mixture, additional designs were completed using 30, 50, and 70 gyrations. Optimum binder content for these mixtures was chosen at 5% air voids, rather than 4%, and the effective binder content was held constant. Results indicate that the mixture produced using 30, 50, and 70 gyrations had equal or better permanent deformation characteristics than the original 100-gyration mixtures. A trial field project confirmed that mixtures designed at 5% air voids could be compacted to this level, showing that the approach is feasible from a construction viewpoint.
机译:印第安纳州收集的田间数据表明,如果沥青混合料在现场设计得更致密,则可以将其压实到相当于实验室混合物设计密度的田间密度,从而可能提高路面的耐久性。这项研究的目的是修改混合物设计,以便在不牺牲永久变形特性的情况下增加原位混合物密度。使用了三种100转的混合物,每种混合物均符合适用的规格并根据AASHTO M323设计。对于每种混合物,使用30、50和70回转来完成其他设计。对于这些混合物,最佳粘合剂含量应选择为5%的空气空隙而不是4%,并且有效粘合剂的含量应保持恒定。结果表明,使用30、50和70回转产生的混合物具有与原始100回转混合物相同或更好的永久变形特性。一项现场试验项目证实,设计成空隙率为5%的混合物可以压实到这一水平,表明从施工角度来看,该方法是可行的。

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