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Viscoelastic characterization of cold recycled bituminous mixtures

机译:冷再生沥青混合物的粘弹性表征

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This study demonstrates the time (loading frequency), temperature and stress dependent behavior of the cold recycled mixtures treated with foamed bitumen. The behavior of these Foamed Bitumen treated Mixes (FBMs) was evaluated in terms of the dynamic modulus which is a critical input for many pavement design methods including AASHTO and Austroads. Tests were performed at multiple temperatures and loading frequencies that typically encounter in pavement structures. Two FBMs; one with 1% cement and other without cement were prepared using the gyratory compactor and dynamic modulus tests were performed at three different temperatures (5, 20 and 40 degrees C), five different loading frequencies (0.01, 0.1, 1, 5 and 10 Hz) and different deviatoric stresses ranging from 50 kPa to 300 kPa. The test results suggest that the FBM response depends on stress level along with frequency and temperature even at lower stress levels unlike in Hot Mix Asphalt (HMA) which tends to show stress independent behavior at lower stress levels. The dynamic modulus of FBMs increased with increase in deviotric stress indicating the stress hardening behavior of these mixes.The study also proposed an approach to construct stress dependent master curves so that all the parameters such as temperature, loading frequency and stress level that influence the stress-strain behavior of FBMs into a single model. Stress-dependent master curves were constructed by shifting the laboratory data both horizontally and vertically conferring to the time-temperature superposition principle to create a single master curve from which the viscoelastic response of the FBM mixtures can be obtained. It was found that the proposed stress dependent model predicted the dynamic modulus of FBMs to good accuracy. (C) 2018 Elsevier Ltd. All rights reserved.
机译:这项研究证明了泡沫沥青处理的冷再生混合物的时间(加载频率),温度和应力依赖性。这些泡沫沥青处理过的混合物(FBM)的性能是根据动态模量评估的,这是许多路面设计方法(包括AASHTO和Austroads)的关键输入。测试是在路面结构通常遇到的多种温度和载荷频率下进行的。两个FBMs;使用旋转压实机制备一种含1%水泥的水泥,另一种不含水泥的水泥,并在三种不同的温度(5、20和40摄氏度),五种不同的加载频率(0.01、0.1、1、5和10 Hz)下进行动态模量测试)和50 kPa至300 kPa的不同偏应力。测试结果表明,即使在较低的应力水平下,FBM响应也取决于应力水平以及频率和温度,这与热混合沥青(HMA)不同,在较低的应力水平下,热混合沥青往往表现出与应力无关的行为。 FBMs的动态模量随应力的增加而增加,表明这些混合物的应力硬化行为。 -将FBMs的行为应变到单个模型中。应力相关的主曲线是通过将实验室数据水平和垂直移动以符合时间-温度叠加原理而构建的,从而创建一条主曲线,可以从中获得FBM混合物的粘弹性响应。发现所提出的应力依赖性模型预测了FBM的动态模量具有良好的精度。 (C)2018 Elsevier Ltd.保留所有权利。

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