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Mesomechanical modeling of the thermo-viscoelastic,thermo-viscoplastic, and thermo-viscodamage response of asphalt concrete

机译:沥青混凝土热粘弹性,热粘塑性和热粘破坏响应的细观力学建模

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摘要

This paper focuses on the meso-scale computational modeling of the thermo-mechanical response of asphalt concrete mixes using for the first time a compres-sive coupled thermo-viscoelastic, thermo-viscoplastic, and thermo-viscodamage constitutive model. Asphalt concrete is represented by two-dimensional images of the microstruc-ture that consist of three phases: aggregate, matrix, and interfacial transmission zone (ITZ). The matrix and ITZ are considered as thermo-viscoelastic, thermo-viscoplastic, and thermo-viscodamaged materials, while the aggregate is considered to be elastic. The effects of variation in aggregate shape, distribution, volume fraction, ITZ strength, strain rate, and temperature on the degradation and micro-damage patterns in asphalt concrete are investigated under uniaxial tension, compression, and repeated creep-recovery loading conditions. It is concluded that the aggregate volume fraction and distribution significantly influence the micromechanical response of asphalt concrete. Additionally, the results indicate that the constitutive model presented in this paper can provide a computational tool for predicting the overall macroscopic behavior of asphalt concrete based on the distribution of the microstructure constituents and the properties of these constituents. As such, the results of this computational model can be used to guide the design of asphalt concrete mixtures.
机译:本文重点研究沥青混凝土混合料热机械响应的中尺度计算模型,这是首次使用热-粘弹性,热-粘塑性和热-粘弹性本构关系的强迫耦合模型。沥青混凝土由微观结构的二维图像表示,该图像由三个阶段组成:集料,基质和界面传输区(ITZ)。基质和ITZ被认为是热粘弹性,热粘塑性和热粘损坏的材料,而骨料被认为是弹性的。研究了骨料形状,分布,体积分数,ITZ强度,应变率和温度变化对沥青混凝土在单轴拉力,压缩和反复蠕变回复荷载条件下的降解和微损伤模式的影响。结论是,骨料的体积分数和分布显着影响沥青混凝土的微机械响应。此外,结果表明,本文提出的本构模型可以为基于微观结构成分的分布和这些成分的性质预测沥青混凝土整体宏观性能提供计算工具。这样,该计算模型的结果可用于指导沥青混凝土混合物的设计。

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