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Influence of Post Compaction on the Moisture Sensitive Resilient Modulus of Unbound Granular Materials

机译:后粘连对未结合粒状材料的水分敏感弹性模量的影响

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The impact of moisture on the resilient modulus (Mr) of unbound granular materials (UGMs) was investigated based on repeated load triaxial (RLT) tests and considering the effect of post compaction (PC) from cyclic loading. Results showed that although Mr decreases with increased moisture, it may appear to increase with increased moisture if the PC process is aided by moisture for a relatively large number of load applications. When limited PC was involved, the parameter of the k-6 model decreased with increased moisture while the parameter k2 was unaffected. On the other hand, when significant amount of PC took place, fa increased with increased moisture. The mechanistic-empirical pavement design guide (MEPDG) model worked well to capture the influence of moisture on the stiffness when Mr decreased with increased moisture. However, it did not work when Mr increased with increased moisture due to the PC effect. On the other hand, an alternative approach expressing and fa as functions of moisture worked well for both situations. Generally, this study suggested that the effect of PC should be considered in modelling the impact of moisture on Mr for better accuracy.
机译:基于反复载荷三轴(RLT)试验,研究了湿度对未结合粒状材料(UGMS)的弹性模量(UGMS)的影响,并考虑了压实后(PC)与循环载荷的影响。结果表明,虽然MR随着水分增加而降低,但如果PC工艺通过用于相对大量的负载应用的水分辅助,则可能随着水分增加而增加。当涉及有限的PC时,K-6模型的参数随着水分增加而降低,而参数K2不受影响。另一方面,当大量的PC发生时,FA增加了水分增加。机械经验性路面设计指南(MEPDG)模型很好地捕捉水分对刚度时的刚度的影响,当MR增加时含水量增加。然而,当MR由于PC效应而增加时,MR增加了。另一方面,表达和FA作为水分功能的替代方法适用于两种情况。一般来说,这项研究表明,应考虑PC的效果在为更好的准确性造型中模拟水分的影响。

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