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Assessment of Existing Micro-mechanical Models for Asphalt Mastics Considering Viscoelastic Effects

机译:考虑粘弹性效应的现有沥青胶乳微观力学模型评估

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Micromechanical models have been directly used to predict the effective complex modulus of asphalt mastics from the mechanical properties of their constituents. Because the micromechanics models traditionally employed have been based on elastic theory, the viscoelastic effects of binders have not been considered. Moreover, due to the unique features of asphalt mastics such as high concentration and irregular shape of filler particles, some micromechanical models may not be suitable. A comprehensive investigation of four existing micromechanical methods is conducted considering viscoelastic effects. It is observed that the self-consistent model well predicts the experimental results without introducing any calibration; whereas the Mori-Tanaka model and the generalized self-consistent model, which have been widely used for asphalt materials, significantly underestimate the complex Young's modulus. Assuming binders to be incompressible and fillers to be rigid, the dilute model and the self-consistent model provide the same prediction, but they considerably overestimate the complex Young's modulus. The analyses suggest that these conventional assumptions are invalid for asphalt mastics at low temperatures and high frequencies. In addition, contradictory to the assumption of the previous elastic model, it is found that the phase angle of binders produces considerable effects on the absolute value of the complex modulus of mastics.
机译:微机械模型已直接用于根据其组成部分的机械性能预测沥青胶泥的有效复数模量。由于传统上采用的微力学模型是基于弹性理论的,因此未考虑粘合剂的粘弹性效应。而且,由于沥青胶泥的独特特征,例如高浓度和填料颗粒的不规则形状,某些微机械模型可能不适合。考虑粘弹性效应,对四种现有的微机械方法进行了全面研究。可以看出,自洽模型可以很好地预测实验结果,而无需进行任何校准。而广泛用于沥青材料的Mori-Tanaka模型和广义自洽模型大大低估了复数杨氏模量。假设粘合剂是不可压缩的,而填充剂是刚性的,则稀释模型和自洽模型提供了相同的预测,但是它们大大高估了复数的杨氏模量。分析表明,这些常规假设对于低温和高频下的沥青胶泥是无效的。另外,与先前的弹性模型的假设相反,发现粘合剂的相角对胶泥的复数模量的绝对值产生相当大的影响。

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