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A mechanistic-empirical model for predicting top-down fatigue cracking in an asphalt pavement overlay

机译:一种机械实验模型,用于预测沥青路面覆盖中的自上而下疲劳裂缝

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摘要

Climate, pavement structure, traffic and material properties were identified and incorporated into a new mechanistic-empirical model to predict top-down cracking in an asphalt pavement overlay. The shear strain at the edge of the tyre was determined as a critical pavement structural response for initiating top-down cracking. The horizontal failure strain, dynamic modulus and shear strain at the edge of the tyre were incorporated in the model for characterising the fatigue life of asphalt pavements. The model was calibrated and verified using the data collected nationwide and is recommended to supplement the current models in the mechanistic-empirical pavement design guide (MEPDG). To mitigate top-down cracking in the asphalt pavement overlay, it is recommended to design an asphalt mix with relatively a higher horizontal failure strain value to reduce the shear strain response along the edges of the tyre.
机译:鉴定气候,路面结构,交通和材料特性并将其纳入新的机制 - 经验模型,以预测沥青路面覆盖层的自上而下的开裂。轮胎边缘处的剪切应变被确定为用于启动自上而下裂缝的临界路面结构响应。在轮胎边缘处的水平破坏应变,动态模量和剪切应变掺入了沥青路面疲劳寿命的模型中。使用全国范围内收集的数据进行校准并验证该模型,并建议为机械 - 经验路面设计指南(MEPDG)中的当前模型进行补充。为了在沥青路面覆盖层中减轻自上而下的裂缝,建议设计具有相对较高水平的故障应变值的沥青混合,以减少轮胎边缘的剪切应变响应。

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