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Performance Characterization of Recycled-Asphalt Pavement with Stabilized Rubber-Modified Asphalt Using Balanced Mix Design Method

机译:使用平衡混合设计方法对稳定橡胶改性沥青进行再生沥青路面的性能特征

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The rejuvenator is typically utilized to partially recover the mechanical properties of reclaimed-asphalt pavement (RAP). Although the rejuvenator works effectively in softening the highly aged recycled asphalt and improving workability, the rutting and cracking performance of recycled materials cannot be well guaranteed. In this paper, the potential of generating an asphalt mixture incorporating RAP with both strong rutting resistance and improved cracking resistance is evaluated. Rubber, rejuvenator, and their combination are utilized, respectively, to modify recycled asphalt from field cores, and their basic rheological properties are evaluated. Both Marshall mix design and balanced mix design methods are conducted to design recycled-asphalt mixtures with proper material properties. The effects of RAP content and asphalt content on the performance of recycled-asphalt mixtures are also quantified. Results show that rubber modification can increase rutting resistance and low-temperature resistance of recycled-asphalt binder. Although the application usage of rejuvenator is able to soften the recycled-asphalt binder and decrease viscosity, whereas the inclusion of rubber particles can further increase the resistance to fatigue and rutting of recycled-asphalt binders. It is also found that both the rubber modification and rejuvenator can improve binder's ability to resist low-temperature cracks. Additionally, the Marshall and balanced mix design methods indicate that increased RAP content always leads to increased rutting stability and decreased fatigue crack resistance, whereas moisture resistance and low-temperature resistance are not clearly affected. The addition of rejuvenator can also improve the low-temperature performance and fatigue resistance of recycled-asphalt mixtures and lessen the high-temperature performance, whereas it does not change its moisture resistance property.
机译:Rejuvenator通常用于部分地回收回收 - 沥青路面的机械性能(RAP)。虽然再融化器有效地软化了高度老化的再生沥青,但提高了可加工性,但再生材料的垃圾和开裂性能不能得到很好的保证。本文评估了产生含有强大的车辙抗性和改善的裂化抗性的沥青混合物的潜力。分别利用橡胶,再涂剂及其组合来改变来自田间核的再循环沥青,并评估其基本流变性能。进行马歇尔混合设计和平衡的混合设计方法,以设计具有适当材料特性的再循环 - 沥青混合物。还量化了清除含量和沥青含量对再生 - 沥青混合物性能的影响。结果表明,橡胶改性可提高再生沥青粘合剂的车辙抗性和低温性。尽管恢复剂的应用使用能够软化再生 - 沥青粘合剂并降低粘度,但橡胶颗粒可以进一步增加疲劳和再生沥青粘合剂的抗疲劳和车辙的抗性。还发现,橡胶改性和再融化器都可以提高粘合剂抵抗低温裂缝的能力。此外,Marshall和平衡混合设计方法表明,增加的RAP含量始终导致增加车辙稳定性并降低疲劳抗裂性,而耐湿性和低温性不会显然受到清晰。加入恢复剂还可以提高再循环 - 沥青混合物的低温性能和疲劳性,并减少高温性能,而它不会改变其防潮性。

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