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首页> 外文期刊>Journal of materials in civil engineering >Influence of Confinement Pressure and Rest Periods on Measurement of Dynamic Modulus of Bituminous Mixtures
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Influence of Confinement Pressure and Rest Periods on Measurement of Dynamic Modulus of Bituminous Mixtures

机译:限制压力和休息时间对沥青混合物动态模量测量的影响

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摘要

In the AASHTO T-378 protocol for computing dynamic modulus and phase angle, the bituminous mixture sample is subjected to a continuous loading from high frequency to low frequency. The postprocessing method involves fitting a regression equation to the stress and the strain data. The influence of confinement pressure and rest period between the frequencies on the overall mechanical response of the material within the context of the current test method needs detailed investigation, and this paper discusses some of the interesting aspects. Two dense graded bituminous mixtures (unmodified and polymer-modified) are subjected to repeated haversine compression loading at six different temperatures (5°C-55°C) and ten test frequencies (25-0.01 Hz). The tests are conducted with and without confinement pressure and rest period. The analysis of the data revealed that confinement pressure strongly influenced the dynamic modulus and phase angle in the temperature range of 35°C-55°C and frequencies in the range of 0.01-2 Hz. The influence of the rest period on dynamic modulus and phase angle is observed to be negligible. For all the loading conditions, the dynamic modulus master curve is constructed using the sigmoidal model, and the phase angle master curve is constructed following a free shifting procedure. The results show that for the dynamic modulus master curve, the root mean square error is considerable for the tests conducted with confinement conditions. Finally, the collected data that fulfilled the Kramers-Kronig relationship is used for generating a master curve for dynamic modulus and phase angle in the temperature range of 5°C-35°C.
机译:在用于计算动态模量和相位角的AASHTO T-378协议中,将烟火混合物样品从高频到低频的连续负载进行。后处理方法包括将回归方程拟合到应力和应变数据。限制压力和休息时间在当前测试方法的背景下对材料的整体机械响应之间的影响需要详细的调查,本文讨论了一些有趣的方面。在六种不同的温度(5℃-55℃)和10个测试频率(25-0.01Hz)下,对两种致密的分级沥青混合物(未改性和聚合物改性)进行重复的空间压缩负载。测试是在没有限制压力和休息期的情况下进行的。对数据的分析表明,限制压力强烈影响了35℃-55℃的温度范围内的动态模量和相位角,频率为0.01-2 Hz。观察到休息时间对动态模量和相位角的影响是可忽略不计的。对于所有装载条件,使用矩形模型构造动态模数主曲线,并且相角主曲线在自由移位程序之后构造。结果表明,对于动态模数主曲线,根均方误差对于用限制条件进行的测试是相当大的。最后,满足Kramers-Kronig关系的收集数据用于在5°C-35°C的温度范围内产生用于动态模量和相位角的主曲线。

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