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Linear viscoelastic behaviour of thermosetting epoxy asphalt concrete - Experiments and modeling

机译:热固性环氧沥青混凝土的线性粘弹性行为-实验与模型

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This paper presents an investigation into the linear viscoelastic behaviour and rheological model for epoxy asphalt concrete (EAC). The complex modulus test was used to characterize the linear viscoelastic properties including dynamic modulus and phase angle. Strain sweeps were performed to determine the linearity limits of EAC at various temperatures and frequencies. Complex modulus tests were conducted at strain level well inside the linear region at temperatures of 5, 20, 30, 40, and 60 ℃ and frequencies of 0.1, 0.5, 1,5, 10, and 25 Hz for each temperature. Master curves of dynamic modulus and phase angle were developed based on time-temperature superposition principle, respectively. Effects of air void content and binder content on the master curves of dynamic modulus and phase angle of EAC were evaluated. The linear viscoelastic behaviour of EAC over the range of frequencies was modeled by Huet-Sayegh rheological model. Results show that EAC exhibits typical linear viscoelastic behaviour at low strain magnitude. The linearity limits are temperature and frequency dependent. A strain magnitude of 150 (×10~(-6)) can be accepted as the linearity limit of EAC at various temperatures and frequencies. EAC shows considerable susceptibility to air void content and binder content. The increasing air void contents result in lower dynamic modulus and higher phase angles. EAC with binder content of 6.5% has the lowest phase angle master curve. The results also show that there is good agreement between the measured complex modulus values and results of analytical calculations obtained from the Huet-Sayegh model. Hence, the Huet-Sayegh model can be successfully used in describing the linear viscoelastic behaviour of EAC over a wide range of frequencies.
机译:本文对环氧沥青混凝土(EAC)的线性粘弹性行为和流变模型进行了研究。复模量测试用于表征线性粘弹性,包括动态模量和相角。进行应变扫描以确定在各种温度和频率下EAC的线性极限。在线性区域内的应变水平以及温度分别为5、20、30、40和60℃,每个温度分别为0.1、0.5、1,5、10和25 Hz的频率下进行复数模量测试。分别根据时间-温度叠加原理绘制了动态模量和相角的主曲线。评估了气孔含量和粘结剂含量对EAC动态模量和相角主曲线的影响。用Huet-Sayegh流变模型模拟了EAC在频率范围内的线性粘弹性行为。结果表明,EAC在低应变强度下表现出典型的线性粘弹性行为。线性极限取决于温度和频率。在各种温度和频率下,EAC的线性极限可以接受150(×10〜(-6))的应变。 EAC对空气含量和粘合剂含量表现出很大的敏感性。空气含量的增加导致较低的动态模量和较高的相角。粘合剂含量为6.5%的EAC具有最低的相角主曲线。结果还表明,测得的复数模量值与从Huet-Sayegh模型获得的分析计算结果之间有很好的一致性。因此,Huet-Sayegh模型可以成功地用于描述EAC在较宽频率范围内的线性粘弹性行为。

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