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Micromechanical model for asphalt mixture coupling inter-particle effect and imperfect interface

机译:沥青混合料颗粒间效应与不完美界面耦合的微力学模型

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摘要

Inter-particle effect and imperfect interface are the two major challenges during the micromechanical modeling of asphalt mixture due to its complex heterogeneity. This paper presents the development and validation of a micromechanical model regarding this concern. The linear spring model is adopted to simulate the imperfect interface between asphalt mortar and aggregates, and the replacement procedure is established to incorporate the imperfect interface effect into the Ju-Chen (J-C) model to coupling inter-particle effect and imperfect interface. The proposed model is used to predict the dynamic modulus of asphalt mixture and analyze the influence of inter-particle effect and imperfect interface. The results show that the predictions decrease with the interface parameter m(r)/m(theta) but increase with parameter Y(g). The imperfect interfacial bonding weakens the overall property of asphalt mixture and the weaken effect for composites with stronger inter-particle effect is more significant. (C) 2017 Elsevier Ltd. All rights reserved.
机译:由于沥青混合料的复杂异质性,微粒间效应和不完善的界面是沥青混合料微机械建模过程中的两个主要挑战。本文介绍了有关此问题的微机械模型的开发和验证。采用线性弹簧模型模拟沥青砂浆与骨料之间的不完美界面,并建立了置换程序,将不完美界面效应纳入聚陈(J-C)模型,以耦合颗粒间效应和不完美界面。该模型用于预测沥青混合料的动态模量,并分析颗粒间效应和不完美界面的影响。结果表明,预测随着界面参数m(r)/ m(theta)的减少而增加,而随着参数Y(g)的增加。不完善的界面结合会削弱沥青混合料的整体性能,而具有更强颗粒间作用的复合材料的削弱作用更为显着。 (C)2017 Elsevier Ltd.保留所有权利。

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