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Micromechanical contribution for the prediction of the viscoelastic properties of high rate recycled asphalt and influence of the level blending

机译:预测高速率再生沥青粘弹性的微机械贡献及水平混合的影响

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摘要

This research deals with an experimental and micromechanical study of high rate recycled asphalt with 70% of RAP. Rheological measurements of shear complex modulus of virgin, RAP and blended binders were performed at different temperatures and frequencies. Then, a micromechanical model based on the generalized self-consistent scheme (GSCS) was suggested for the prediction of the effective mechanical properties of the recycled asphalt. The GSCS-based approach aims to homogenize the heterogeneous material taking into account the intergranular porosity, on the one hand, and the possible interactions between its phases on the other one. The suggested method was compared to a step-by-step (successive) homogenization approach and literature data in elastic case were used for this purpose. The results have shown that the GSCS-based approach presents a good agreement with the data especially for higher volume fractions of aggregates. Furthermore, the significant influence of the blend homogeneity level on the estimation of the effective mechanical properties of the recycled asphalt was highlighted.
机译:这项研究涉及具有70%RAP的高速率再生沥青的实验和微机械研究。在不同的温度和频率下对原始,RAP和共混粘合剂的剪切复数模量进行流变学测量。然后,提出了基于广义自洽方案(GSCS)的微机械模型,用于预测再生沥青的有效力学性能。基于GSCS的方法的目的是一方面将颗粒间的孔隙度考虑在内,另一方面将其相之间的可能相互作用考虑在内,以使异质材料均质化。将建议的方法与逐步(连续)均质化方法进行比较,并使用弹性情况下的文献数据来实现此目的。结果表明,基于GSCS的方法与数据具有很好的一致性,尤其是对于较大体积分数的骨料。此外,突出了共混物均匀度水平对再生沥青有效机械性能的估计的重大影响。

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