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Enhancing anti-rutting performance of asphalt pavement by dispersing shear stresses within asphalt layers

机译:通过分散沥青层内的剪应力来增强沥青路面的抗车辙性能

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摘要

Rutting of asphalt pavement still has not been solved. The main objective of this paper was to propose nail-reinforced asphalt pavement capable of dispersing shear stresses within asphalt layers and enhancing anti-rutting performance and to recommend reasonable nail configurations for future practice. Reinforced slabs with different nail configurations were fabricated. Their anti-rutting performance was demonstrated by Hamburg wheel-tracking test and capacities of shear stress dispersion were verified by finite element method. Anti-rutting performance of nail-reinforced asphalt pavements with different nail configurations was simulated and reasonable nail configurations were recommended. The results showed that rut depth developed on the slabs reinforced with square-pattern nails after 20,000 load cycles was only 64.3% of that on the control slab, and it originated from that installed nails reduced shear stresses within asphalt layers efficiently. To enhance anti-rutting performance of asphalt pavement, nail configurations (nail length 4 cm, nail spacing 10 cm, square pattern) were preferred. The proposed nail-reinforced asphalt pavement was expected to be applied in heavy-duty freeways and urban intersections.
机译:沥青路面的车辙仍未解决。本文的主要目的是提出一种能在沥青层内分散剪切应力并增强抗车辙性能的钉增强沥青路面,并为以后的实践推荐合理的钉构造。制作了具有不同钉构造的增强板。通过汉堡车轮跟踪试验证明了它们的抗车辙性能,并通过有限元方法验证了其剪切应力分散能力。模拟了不同钉构型的钉增强沥青路面的抗车辙性能,并建议使用合理的钉构型。结果表明,方形花纹钉加固的板在20000次荷载循环后所产生的车辙深度仅为对照板的车辙深度的64.3%,这是由于安装的钉有效降低了沥青层内的剪应力。为了增强沥青路面的抗车辙性能,首选钉子配置(钉子长度> 4 cm,钉子间距<10 cm,正方形图案)。拟议中的钉增强沥青路面有望用于重型高速公路和城市交叉路口。

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