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首页> 外文期刊>Journal of Cleaner Production >Suitability of PoroElastic Road Surface (PERS) for urban roads in cold regions: Mechanical and functional performance assessment
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Suitability of PoroElastic Road Surface (PERS) for urban roads in cold regions: Mechanical and functional performance assessment

机译:多孔弹性路面(PERS)在寒冷地区的城市道路的适用性:机械和功能性能评估

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摘要

Reuse of scrap tires has become a challenge with the ever-growing traffic volume and usage of vehicles in recent years. Poroelastic Road Surface (PERS) is a novel type of pavement surface, which recycles tire rubber into low-noise pavements. This study aims to explore the suitability of PERS for urban roads in cold regions. Both laboratory tests and numerical simulations were conducted to characterize the mechanical and functional performances of PERS using a conventional porous asphalt (PA) as reference. The results indicated that the tensile strength reserve, which is the difference between the average tensile strength and the cooling-related tensile stress at a certain temperature, of PERS is higher than that of the PA at low temperature, while the ultimate tensile strain of the PERS is much larger than PA. The sound absorption coefficients of PERS have higher and wider peak compared with PA, indicating better noise absorption performance. The pavement with PA surface is more prone to surface cracks due to large tensile stresses at some specific offset locations from the loads, which do not exist in PERS. The deformation of the ice layer on top the PERS layer is larger than that on top of the PA layer at the same temperature, and the maximum horizontal strain of the PERS layer is larger than that of the PA. These findings prove the suitability of PERS for urban roads in cold regions, which can lead to significant economic and social benefits. (C) 2017 Elsevier Ltd. All rights reserved.
机译:近年来,随着交通量和车辆使用量的不断增长,废旧轮胎的使用已成为一项挑战。多孔弹性路面(PERS)是一种新型的路面,可将轮胎橡胶回收成低噪音的路面。本研究旨在探讨PERS在寒冷地区的城市道路的适用性。使用常规多孔沥青(PA)作为参考,进行了实验室测试和数值模拟,以表征PERS的机械和功能性能。结果表明,在一定温度下,PERS的抗拉强度储备(即平均抗拉强度与冷却相关的拉应力之差)高于低温下的PA,而其极限拉伸应变PERS比PA大得多。与PA相比,PERS的吸声系数具有更高和更宽的峰值,表明更好的噪声吸收性能。带有PA表面的路面由于在某些特定的偏离载荷的位置处具有较大的张应力,因此更倾向于产生表面裂纹,而这在PERS中不存在。在相同温度下,PERS层顶部的冰层的变形大于PA层顶部的冰层的变形,并且PERS层的最大水平应变大于PA的最大水平应变。这些发现证明了PERS在寒冷地区的城市道路上的适用性,这可以带来巨大的经济和社会效益。 (C)2017 Elsevier Ltd.保留所有权利。

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