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Sand Mix Interlayer Retarding Reflective Cracking in Asphalt Concrete Overlay

机译:在沥青混凝土覆盖层中砂混合层间延迟反射裂缝

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This study evaluated the performance effectivenss of sand mix interlayer in controlling reflective cracking in asphalt concrete (AC) overlaid existing jointed concrete pavement (JCP) using a three-dimentional finite element (FE) model. A cohesive zone model was incorporated into the FE model to characterize the fracture behavior of the AC overlay under transient vehicular loading. A limit state load approach was used to determine the resistance of the AC overlay to reflective cracking in terms of normalized axle load of an overload equivalent to an 80-kN single-axle load. The study concluded that the sand mix interlayer enhanced the fracture resistance of the AC overlay due to its relatively high fracture energy. A macro-crack level of reflective cracking was initiated in the wearing course in the AC overlay earlier than in the leveling binder, so-called crack jumping. The softer the sand mix, the tougher it may be, but it may cause shear rutting in the AC overlay. As the bearing capacity of the JCP becomes lower, more fractured area was developed in the AC overlay and the performance effectiveness of the sand mix interlayer was better.
机译:本研究评估砂的性能effectivenss混合层间反射控制在沥青混凝土开裂(AC)叠加现有使用三三维有限元(FE)模型接合混凝土路面(JCP)。甲内聚力模型被编入有限元模型来表征在瞬态车辆装载的AC叠加层的断裂行为。甲极限状态负载方法被用于确定AC覆盖层的电阻与反射在过载等效的归一化的轴重方面裂化至80千牛单轴负载。该研究的结论是,砂混合中间层增强了AC覆盖层的耐缺损性,由于其相对高的断裂能。反射裂缝的宏观裂纹水平在早于在练级粘结剂交流叠加当然穿着发起的,所谓的破解跳跃。较软的沙子混合,强硬的可能,但它可能会引起剪切车辙在AC覆盖。作为JCP的承载能力变得更低,更骨折区域在AC叠加和沙子混合夹层较好的业绩效果的开发。

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