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Active fillers’ effect on in situ performances of foam bitumen recycled mixtures

机译:活性填料对泡沫沥青再生混合物的现场性能的影响

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摘要

Cold recycling is one of the most employed rehabilitation techniques for asphalt pavements and it is becoming more and more important as reducing emissions becomes a priority in the reduction of the greenhouse effect. The main advantages of asphalt cold recycling techniques are the use of reclaimed materials and the fact that there is no need of aggregate heating to make the mixtures. This paper describes the evolution with time of in-situ performances of different foam bitumen-stabilised mixtures made with different active fillers (cement and lime), monitored during the first year from construction. Results are part of a more extensive research programme aimed to investigate the effects of using lime as an active filler in cold-recycled mixtures. Mixtures have been laid down on a specifically designed trial section in Italy, close to Florence. Short-term bearing capacity, immediately after construction, has been evaluated using a light weight deflectometer while to evaluate the mid-term performances falling weight deflectometer (FWD) tests have been performed after 24 hours, 14 days, 28 days and 9 months from construction. During these 9 months the test road was not opened to traffic, so the mixtures experienced almost no traffic (only construction traffic loads). This fact allowed to have the curing process without any influences other than the temperature: it means same curing conditions for all mixtures. Subsequent FWD tests are still ongoing to evaluate the evolution over time of pavement bearing capacity due to traffic. Results obtained positively support the use of lime as an active filler in the foam bitumen-stabilised material and allow to underline the effect of different active fillers in the material behaviour, even if all the mixtures underline excellent performances under traffic loading. FWD tests are scheduled to be repeated every 6 months in order to monitor the stiffness evolution of the mixtures and evaluate the nature of traffic damage.
机译:冷再生是沥青路面最常用的修复技术之一,随着减少排放成为减少温室效应的优先考虑,冷再生变得越来越重要。沥青冷再生技术的主要优点是使用了再生材料,并且不需要集料加热来制造混合物。本文介绍了在施工的第一年中监测到的由不同活性填料(水泥和石灰)制成的不同泡沫沥青稳定混合物的随时间变化的现场性能。研究结果是更广泛的研究计划的一部分,该计划旨在研究在再生冷混合物中使用石灰作为活性填料的效果。在意大利佛罗伦萨附近的一个专门设计的试验区铺设了混合物。施工后立即使用轻型挠度计评估了短期承载力,同时评估了中期性能,在施工24小时,14天,28天和9个月后进行了落重挠度计(FWD)测试。在这9个月中,测试路没有开放通行,因此混合料几乎没有交通(仅建筑交通负荷)。这一事实使固化过程不受温度以外的任何影响:这意味着所有混合物的固化条件相同。随后的FWD测试仍在进行中,以评估由于交通而导致的路面承载力随时间的变化。所获得的结果积极地支持了在泡沫沥青稳定材料中使用石灰作为活性填料,并强调了不同活性填料在材料性能中的作用,即使所有混合物都强调了在交通负荷下的优异性能。 FWD测试计划每6个月重复一次,以监控混合物的刚度变化并评估交通损害的性质。

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