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Study of normal and shear material properties for viscoelastic model of asphalt mixture by discrete element method

机译:沥青混合料粘弹性模型的正剪材料特性离散元研究

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摘要

In this paper, the viscoelastic behavior of asphalt mixture was studied by using discrete element method. The dynamic properties of asphalt mixture were captured by implementing Burger's contact model. Different ways of taking into account of the normal and shear material properties of asphalt mixtures have been reviewed. Two models, Model I and Model II, with different design parameters were developed and compared. For Model I, Burger's model parameters in normal and shear direction were calibrated by using laboratory test results from Frequency Sweep Test performed in both normal and shear direction, respectively; while for Model II, the same calibrated parameters in the normal direction were used, but the values for the shear direction were chosen to be equal with the normal direction. The complex modulus of asphalt mixtures were predicted for both optimized models by conducting DE simulation under dynamic strain control loading. A sensitivity study was carried out, where the effects of different design parameters on the dynamic properties of asphalt mixture has been investigated, including the eight parameters of Burger's model and the friction coefficient. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文采用离散元法研究了沥青混合料的粘弹性。通过实现Burger's接触模型来捕获沥青混合料的动态特性。已经对考虑沥青混合料的正常和剪切材料特性的不同方法进行了综述。开发并比较了具有不同设计参数的两个模型,即模型I和模型II。对于模型I,分别使用在法向和剪切方向上执行的频率扫描测试的实验室测试结果来校准Burger在法向和剪切方向上的模型参数;对于Model II,在法线方向上使用了相同的校准参数,但是剪切方向的值选择为与法线方向相同。通过在动态应变控制载荷下进行DE模拟,可以预测两种优化模型的沥青混合料的复数模量。进行了敏感性研究,其中研究了不同设计参数对沥青混合料动力特性的影响,包括汉堡模型的八个参数和摩擦系数。 (C)2015 Elsevier Ltd.保留所有权利。

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