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Influence of interfacial zone between asphalt mastic and aggregate on the elastic behavior of asphalt concrete

机译:沥青胶泥与骨料的界面区对沥青混凝土弹性性能的影响

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摘要

The interfacial zone between asphalt mastic and aggregate has a significant influence on the macro-mechanical properties and failure mechanisms of asphalt concrete (AC). To investigate the effect of interfacial zone, a 3D two layer built-in micromechanical model is established first, and the interface spring layer is considered to simulate the interfacial zone. Then, the effective elastic modulus and shear modulus of single-phase composite materials with the specific aggregate size are derived. A stepping-scheme is adopted to further obtain the effective elastic properties of multi-phase composite materials. The developed closed-form equations are used to predict the elastic behavior of asphalt concrete, and are able to take into account material characteristic of asphalt mastic and aggregate, the aggregate size and its volume fraction, the interface property, and air voids. Tests on four types of AC are conducted to verify the proposed approach. Finally, the influence of interfacial zone on the elastic behavior of AC is discussed. The developed method can also be used to research other multi-phase particle reinforced composites.
机译:沥青胶泥与骨料之间的界面区域对沥青混凝土(AC)的宏观力学性能和破坏机理具有重要影响。为了研究界面区域的影响,首先建立了一个3D两层内置微机械模型,并考虑了界面弹簧层来模拟界面区域。然后,得出具有特定聚集体尺寸的单相复合材料的有效弹性模量和剪切模量。采用分步方案进一步获得多相复合材料的有效弹性。所开发的闭合形式方程用于预测沥青混凝土的弹性性能,并且能够考虑沥青胶泥和集料的材料特性,集料尺寸及其体积分数,界面性质和气孔。对四种类型的交流电进行了测试,以验证所提出的方法。最后,讨论了界面区域对交流弹性的影响。所开发的方法还可以用于研究其他多相颗粒增强复合材料。

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