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Performance evaluation of semi-flexible permeable pavements under cyclic loads

机译:循环荷载下半柔性透水路面的性能评估

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Traditional permeable pavements are constructed with rigid aggregates and have low load-bearing capacity. The crack development due to loads and unpredicted ground movements reduces their service life. The widespread cracks on the surface of conventional asphalt accelerate the pavement structure deterioration and reduce the overall service life. In this research, the end-of-life tyre products shredded to tyre-derived aggregates (TDAs) were utilised along with crushed rock (CR) in different fractions of a porous structure to enhance the flexibility of permeable pavement whilst maintaining the minimum load-bearing capacity for use in footpath and low-volume roads. The transitional behaviour from a semi-rigid structure owing to the rigidity of CR aggregates to a more flexible structure for mixtures at higher TDA content was investigated. The impact of rigid-rigid and flexible-rigid inter-particular contacts at low and high stress levels is investigated. The plastic and recoverable deformations of the flexible-rigid blends under monotonic and repeated loadings are compared. Also, the impact of polyurethane binder content on improving the mixtures flexural strength is investigated. The lightly bonded flexible-rigid mixtures are a viable replacements for traditional porous pavements to improve the load-bearing mechanism and increase the flexibility of pavement.
机译:传统的渗透性路面由刚性集料构成,承载能力低。由于载荷和意外的地面运动而产生的裂纹会缩短其使用寿命。常规沥青表面上广泛的裂缝加速了路面结构的恶化,并降低了整体使用寿命。在这项研究中,将切碎成轮胎聚集体(TDA)的报废轮胎产品与碎石(CR)一起用于不同部分的多孔结构中,以增强渗透性路面的柔韧性,同时保持最小的载荷。用于人行道和低流量道路的承载能力。研究了由于CR骨料的刚性而导致的半刚性结构到较高TDA含量的混合物的柔性结构的过渡行为。研究了在低应力和高应力水平下刚性-刚性和柔性-刚性的特殊接触的影响。比较了单调和反复加载下刚柔共混物的塑性变形和可恢复变形。另外,研究了聚氨酯粘合剂含量对改善混合物的挠曲强度的影响。轻粘结的柔性-刚性混合物是传统多孔路面的可行替代品,以改善承载机理并增加路面的柔韧性。

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