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A micromechanical based three-dimensional DEM approach to characterize the complex modulus of asphalt mixtures

机译:基于微机械的三维DEM方法表征沥青混合料的复数模量

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摘要

Asphalt mixture is a typical paniculate system whose mechanical performance can be modeled based on the particle interactions (contacts) at microscale. Once calibrated microscopically, the model can be used to predict the macroscopic properties based on the same contact mechanisms. The effect of individual component on the performance of the mixture can also be captured by the calibrated micromechanical model. In this paper, a three-dimensional DEM approach is developed to model the complex modulus of asphalt mixtures. Complex modulus is a crucial viscoelastic material property which describes the stress and strain responses of asphalt mixtures and has been incorporated into the DARWin-ME mechanistic empirical pavement design program to guide pavement design. The model is found to be successful in predicting both the dynamic modulus and the phase angle of a conventional dense graded asphalt mixture over wide ranges of temperatures and frequencies. The nonlinear behavior of the phase angle at high temperature is also captured. The effect of the key model parameters on the dynamic modulus and the phase angle are evaluated which contributes to the fundamental understanding of the material mechanical properties and provides meaningful guidance for the design and modeling of asphalt mixtures.
机译:沥青混合料是一种典型的颗粒体系,其机械性能可以基于微观尺度上的颗粒相互作用(接触)进行建模。一旦进行了微观校准,该模型可用于基于相同的接触机制来预测宏观性能。单个成分对混合物性能的影响也可以通过校准的微机械模型来捕获。在本文中,开发了三维DEM方法来模拟沥青混合料的复数模量。复数模量是一种重要的粘弹性材料特性,它描述了沥青混合物的应力和应变响应,并且已被纳入DARWin-ME机械化经验性路面设计程序中,以指导路面设计。发现该模型可成功预测宽温度和频率范围内常规致密渐变沥青混合料的动态模量和相角。还记录了高温下相角的非线性行为。评估了关键模型参数对动态模量和相角的影响,这有助于对材料力学性能的基本了解,并为沥青混合料的设计和建模提供有意义的指导。

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