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Microstructure modeling of rate-dependent fracture behavior in bituminous paving mixtures

机译:沥青混合料中速率相关断裂行为的微观结构建模

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This paper presents a computational microstructure model to predict the fracture-related behavior of heterogeneous and viscoelastic bituminous paving mixtures. In addition to the consideration of the complex geometric characteristics and viscoelastic behavior of the mixture, this study implements a rate-dependent cohesive zone model into the mainframe of ABAQUS in the form of a customized user element (UEL) subroutine. This enables model fracture as a gradual and rate-dependent phenomenon in which the initiation and propagation of discrete cracks take place in the mixture microstructure. In order to validate the model, experimental programs are developed for model inputs and outputs, and microstructural simulations of a two-phase mixture specimen are conducted. Model simulation results agree well with test results. The results presented in this paper imply that a computational microstructure model such as the one herein can be an efficient tool to estimate the effects of small-scale design variables on overall mixture performance with significant savings in experimental costs and time.
机译:本文提出了一种计算微观结构模型,以预测异质和粘弹性沥青铺路混合物的断裂相关行为。除了考虑混合物的复杂几何特征和粘弹性行为外,本研究还以定制用户元素(UEL)子程序的形式在ABAQUS主机中实现了速率相关的粘聚区模型。这使得模型断裂成为一种渐进的和速率相关的现象,其中离散裂纹的萌生和扩展发生在混合物的微观结构中。为了验证模型,开发了用于模型输入和输出的实验程序,并对两相混合物试样进行了微结构模拟。模型仿真结果与测试结果吻合良好。本文中提出的结果表明,诸如本文所述的计算微观结构模型可以是一种有效的工具,用于评估小规模设计变量对整体混合物性能的影响,同时可以显着节省实验成本和时间。

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