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Interface effects on the creep characteristics of asphalt concrete

机译:界面对沥青混凝土蠕变特性的影响

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摘要

A micromechanical creep model is presented to predict the creep behavior of asphalt concrete (AC) and investigate the effect of imperfect interface between asphalt mastic and aggregates on the viscoelastic properties of AC. The linear spring layer model is introduced to characterize the interface imperfection. Based on the modified Mori-Tanaka method, the micromechanical model is developed. To describe the viscoelastic properties of AC with imperfect interface, micromechanical creep compliance formulation is obtained by incorporating the elastic-viscoelastic correspondence principle. The present prediction is compared with available experimental data in the literature to verify the proposed method. It is found that the micromechanical creep model has the capability to predict the creep behavior of AC. Interface effects on the creep behavior of AC are explored using the developed model. It is concluded that the imperfect interface between asphalt mastic and aggregates has a significant influence on the overall mechanical behavior of AC, and that the interfacial damage should be controlled within a certain extent. (C) 2015 Elsevier Ltd. All rights reserved.
机译:提出了一种微机械蠕变模型来预测沥青混凝土(AC)的蠕变行为,并研究沥青胶泥和集料之间不完善的界面对AC粘弹性的影响。引入线性弹簧层模型来表征界面缺陷。基于改进的Mori-Tanaka方法,建立了微机械模型。为了描述具有不完善界面的AC的粘弹性,通过结合弹性-粘弹性对应原理,获得了微机械蠕变柔度公式。将当前的预测与文献中的可用实验数据进行比较,以验证所提出的方法。发现微机械蠕变模型具有预测AC蠕变行为的能力。使用开发的模型探索了界面对交流电蠕变行为的影响。得出的结论是,沥青胶泥与骨料之间不完善的界面对AC的整体力学性能有重要影响,应将界面损伤控制在一定范围内。 (C)2015 Elsevier Ltd.保留所有权利。

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