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Density profile of hot mix asphalt layer during compaction with various types of rollers and lift thickness

机译:使用各种类型的压路机和举升厚度压实期间热拌沥青层的密度分布

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摘要

The effects of different compactors and lift thickness on hot mix asphalt (HMA) have been persistently discussed among asphalt experts. In many cases, pavements paved with the high-in-place air voids permit water to penetrate the permeable pavement causing an increased tendency for pavement deformation. The thin lifts have had problems achieving high density, which leads to high-in-place air voids. The present paper is aimed at evaluating the effects of different compactors, an 11-ton steel drum compactor and a 15-ton pneumatic tyre roller, on the HMA mat with different ratios of thickness to nominal maximum aggregate size (t/NMAS). In order to achieve this aim, seven field sections with a total 36 locations with distinct HMA mixes, thicknesses and rolling patterns were built. Each of the sections was approximately 40 m long and 3.5 m wide. The section was constructed with t/NMAS ratio varying from 2.0 at the beginning to 5.0 at the end of the section. The air temperature during construction varied from 26 degrees C to 35 degrees C. More so, for comparison purposes, the simulated HMA mat temperatures using MultiCool 3.0 software and their respective measured temperature were also taken. The results indicate that the optimum number of passes to achieve maximum density is four passes. This could be achieved by merely using the steel roller with vibratory mode. However, the introduction of rubber tyre roller during the intermediate rolling initially reduced the density by one to two percent but started to increase after several passes. (C) 2016 Elsevier Ltd. All rights reserved.
机译:沥青专家一直在讨论各种压实机和举升厚度对热拌沥青(HMA)的影响。在许多情况下,铺有高位置空隙的路面使水渗入可渗透的路面,从而增加了路面变形的趋势。稀薄的举升机在实现高密度方面存在问题,这会导致高位气孔。本文旨在评估不同的压实机,11吨的钢桶压实机和15吨的充气轮胎压路机对HMA垫的厚度与标称最大集料尺寸(t / NMAS)的比率不同的效果。为了达到这个目的,建立了七个现场区域,总共36个位置,具有不同的HMA混合,厚度和轧制样式。每个部分大约长40 m,宽3.5 m。该部分的t / NMAS比从开始时的2.0到结束时的5.0不等。施工期间的空气温度在26摄氏度至35摄氏度之间变化。此外,出于比较目的,还使用MultiCool 3.0软件获取了模拟的HMA垫温度及其各自的测量温度。结果表明,达到最大密度的最佳通过次数为四次。这可以通过仅使用具有振动模式的钢辊来实现。但是,在中间轧制过程中引入橡胶轮胎辊最初使密度降低了1%至2%,但经过数次通过后开始增加。 (C)2016 Elsevier Ltd.保留所有权利。

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