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Evaluation of the relationship between the fatigue performance of FAM and AC mixtures based on volumetric characteristics and on the S-VECD theory

机译:基于体积特征和S-VECD理论的FAM和AC混合物疲劳性能与S-VECD理论的关系评价

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摘要

This study investigates the fatigue performance behavior of Asphalt Concrete (AC) mixtures and their corresponding Fine Aggregate Matrix (FAM) mixtures based on the simplified viscoelastic continuum damage (S-VECD) mechanics theory. For that, uniaxial loading tests were performed for the linear viscoelastic and the fatigue characterization of AC and FAM mixtures and also for the construction of the damage characteristic curves (C vs. S), from which the failure criterion parameter, G(R), was determined. Then, the fatigue factor of the mixture (FFM) was determined for strains of 100 mu epsilon e and 200 mu epsilon, which are typical critical values observed at the bottom part of asphalt concrete layers in the field. Three fundamentally different approaches were employed to compare the strains of FAMs that resulted in an equivalent fatigue life for the corresponding ACs by the determination of a FAM/AC strain ratio. The results showed that the mixture with the lowest amount of FAM presented the highest strain ratio. The relationship between the FAM/AC strain ratio and the FAM content present in the AC was identified as a key material characteristic that needs to be carefully determined to optimize the AC volumetric and mechanical properties. The deeper understanding of that relationship may facilitate the development and application of advanced multiscale models that attempt to predict the cumbersome behavior of the AC composites based on the inner characteristics and interactions among their constituents. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本研究研究了沥青混凝土(AC)混合物及其相应的细聚集基质(FAM)混合物的疲劳性能行为及其基于简化的粘弹性连续体损伤(S-VECD)力学理论。为此,对AC和FAM混合物的线性粘弹性和疲劳表征进行单轴加载试验,并且还用于构建损坏特征曲线(C与S),从中构建故障标准参数G(R),确定了。然后,测定混合物(FFM)的疲劳因子,用于100μmεe和200μmε的菌株,其是在该领域的沥青混凝土层的底部观察到的典型临界值。采用三种从根本上不同的方法比较了通过测定FAM / AC应变比导致相应的ACS等效疲劳寿命的FAMS菌株。结果表明,具有最低量的FAM的混合物呈现出最高的应变比。 AC中存在的FAM / Ac应变比与FAM含量的关系被鉴定为需要仔细确定的关键材料特性以优化AC体积和机械性能。对该关系的更深入的了解,可以促进先进的多尺度模型的开发和应用,该模型试图根据其成分之间的内部特征和相互作用来预测AC复合材料的繁琐行为。 (c)2020 elestvier有限公司保留所有权利。

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