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Numerical Simulation of Crack Propagation in Flexible Asphalt Pavements Based on Cohesive Zone Model Developed from Asphalt Mixtures

机译:基于沥青混合料粘结区域模型的柔性沥青路面裂缝扩展数值模拟

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摘要

To give engineers involved in planning and designing of asphalt pavements a more accurate prediction of crack initiation and propagation, theory-based models need to be developed to connect the loading conditions and fracture mechanisms present in laboratory tests and under traffic loading. The aim of this study is to develop a technical basis for the simulation of fracture behavior of asphalt pavements. The cohesive zone model (CZM) approach was applied in the commercial FE software ABAQUS to analyze crack propagation in asphalt layers. The CZM developed from the asphalt mixtures in this study can be used to simulate the fracture behavior of pavements and further optimize both the structure and the materials. The investigations demonstrated that the remaining service life of asphalt pavements under cyclic load after the initial onset of macro-cracks can be predicted. The developed CZM can, therefore, usefully supplement conventional design methods by improving the accuracy of the predicted stress states and by increasing the quality, efficiency, and safety of mechanical design methods by using this more realistic modeling approach.
机译:为了使参与沥青路面规划和设计的工程师能够更准确地预测裂纹的萌生和扩展,需要开发基于理论的模型来连接实验室测试和交通荷载下的荷载条件和断裂机理。这项研究的目的是为模拟沥青路面的断裂行为提供技术基础。在商业有限元软件ABAQUS中采用了粘聚区模型(CZM)方法来分析沥青层中的裂纹扩展。由这项研究中的沥青混合料开发的CZM可用于模拟路面的断裂行为,并进一步优化结构和材料。研究表明,宏观裂纹初次出现后,循环荷载下沥青路面的剩余使用寿命可以预测。因此,开发的CZM可以通过提高预测应力状态的准确性,并通过使用这种更实际的建模方法来提高机械设计方法的质量,效率和安全性,从而有效地补充传统的设计方法。

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