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Microstructural viscoplastic continuum model for permanent deformation in asphalt pavements

机译:沥青路面永久变形的微观结构粘塑性连续体模型

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摘要

Permanent deformation is one of the major distresses in asphalt pavements. It is caused mainly by high traffic loads associated with high field temperatures. An anisotropic viscoplastic continuum damage model is developed in this study to describe permanent deformation of asphalt pavements. The model is based on Perzyna's formulation with Drucker-Prager yield function modified to account for material anisotropy and microstructure damage. The material anisotropy is captured through microstructural analysis of aggregate distribution on two-dimensional sections of hot mix asphalt. A damage parameter is included in the model to quantify the nucleation of cracks and growth of air voids and cracks. A parametric study was conducted to demonstrate the sensitivity of the model to strain rate, aggregate distribution, and microstructure damage. Triaxial strength and static creep measurements obtained from the Federal Highway Administration Accelerated Loading Facility were used to determine the model parameters.
机译:永久变形是沥青路面的主要困扰之一。这主要是由与高现场温度相关的高交通负荷引起的。在这项研究中建立了各向异性的粘塑性连续介质损伤模型,以描述沥青路面的永久变形。该模型基于Perzyna的公式,并修改了Drucker-Prager屈服函数以解决材料各向异性和微观结构破坏的问题。通过对热混合沥青二维截面上的骨料分布进行微观结构分析,可以捕获材料的各向异性。模型中包含一个损伤参数,以量化裂纹的形核以及气孔和裂纹的增长。进行了参数研究,以证明模型对应变率,聚集体分布和微结构破坏的敏感性。从联邦公路管理局的加速荷载设施获得的三轴强度和静态蠕变测量值用于确定模型参数。

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