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A Practical Dynamic Modulus Testing Protocol

机译:实用的动态模量测试协议

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The dynamic modulus test is widely accepted by pavement agencies as the critical parameter for the recently proposed mechanistic empirical design procedure and the candidate of the simple performance test to accompany the Superpave volumetric mix design process. However, the specified dynamic modulus test procedure is time-consuming and costly. State pavement agencies are seeking a more practical test protocol. This paper presents a method for identifying a practical dynamic modulus testing procedure. The currently well-adopted method of calculating the dynamic method is discussed and compared to the more fundamental dynamic modulus calculation method by using actual experimental data from two different asphalt mixtures. It was found that the NCHRP report proposed method produces higher modulus values, but the difference is less than 10%, as indicates that the simple peak to peak method can be used in the calculation without compromising accuracy. A comprehensive dynamic modulus test, which incorporates strain level, test temperature, and frequency, was performed on one asphalt mixture. Experimental data were analyzed with Mest at the 95 % level of confidence. The analysis results show no statistical difference between the dynamic modulus for the two studied strain levels and no permanent damage was found on tested specimens for all three test temperatures. Comparison of the master curves built by different temperature and frequency combinations illustrates redundancy in test temperature and frequency. A more practical dynamic modulus test procedure is proposed based upon the evaluation. This research shows that three test temperatures, 4.4°C, 21.1°C, and 37.8°C, and six frequencies, 25, 10, 5, 1, 0.5 and 0.1 Hz, plus one additional frequency of 0.01 Hz at 37.8°C are adequate to build a smooth master curve to satisfactorily characterize asphalt mixtures.
机译:动态模量测试已被路面机构广泛接受,作为最近提出的机械经验设计程序的关键参数,也是Superpave体积混合料设计过程中简单性能测试的候选者。但是,指定的动态模量测试程序既耗时又昂贵。州路面部门正在寻求更实用的测试方案。本文提出了一种确定实际动态模量测试程序的方法。讨论了当前被广泛采用的动态方法的计算方法,并将其与更基本的动态模量计算方法进行了比较,方法是使用两种不同沥青混合料的实际实验数据进行计算。结果发现,NCHRP报告提出的方法具有更高的模量值,但相差小于10%,这表明可以在不影响准确性的情况下使用简单的峰间方法。在一种沥青混合料上进行了综合动态模量测试,其中包括应变水平,测试温度和频率。使用Mest以95%的置信度分析实验数据。分析结果表明,在两个所研究的应变水平下,动态模量之间没有统计学差异,并且在所有三个测试温度下,在测试样品上均未发现永久损坏。由不同温度和频率组合建立的主曲线的比较说明了测试温度和频率的冗余。根据评估结果,提出了一种更实用的动态模量测试程序。这项研究表明,三个测试温度分别为4.4°C,21.1°C和37.8°C,六个频率分别为25、10、5、1、0.5和0.1 Hz,再加上一个在37.8°C的0.01 Hz频率。足以建立平滑的主曲线,以令人满意地表征沥青混合料。

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