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In situ modulus reduction characteristics of stabilized pavement foundations by multichannel analysis of surface waves and falling weight deflectometer tests

机译:通过表面波的多通道分析和落锤挠度计测试的稳定路面基础原位模量降低特性

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Nondestructive testing methods have been increasingly used to evaluate in situ layered stiffness of pavement systems. However, different testing methods could yield considerable different results, which can bring confusions and difficulties to road agencies when conducting mechanistic-based designs or setting specifications for constructions. This study compares a newly improved multichannel analysis of surface waves (MASW) method and the falling weight deflectometer (FWD) test for estimating in situ moduli of various mechanically and chemically stabilized unpaved road sections, which will serve as foundations for future surface upgrade. The comparisons showed that the trends of MASW moduli generally agree with those of the FWD test for the sections without a geosynthetic layer, but the MASW moduli are much higher than the FWD moduli for the aggregate layers. The discrepancies between the two tests were found to be greatly influenced by the different testing strain levels, which were estimated using the KEN LAYER analysis. By combining the MASW and FWD moduli and calculated testing strain levels, in situ modulus reduction characteristics of the various stabilized aggregate layers can also be determined, which provides a better understanding of the in situ mechanistic performances of the different stabilization methods under different traffic loading conditions. (C) 2018 Elsevier Ltd. All rights reserved.
机译:无损检测方法已越来越多地用于评估路面系统的原位分层刚度。但是,不同的测试方法可能会产生相当不同的结果,这在进行基于机械的设计或确定施工规范时会给道路代理带来困惑和困难。这项研究比较了一种新近改进的表面波多通道分析(MASW)方法和落锤挠度计(FWD)测试,以估算各种机械和化学稳定的未铺装路段的原位模量,这将为将来的表面升级奠定基础。比较表明,对于没有土工合成层的部分,MASW模量的趋势通常与FWD测试的趋势一致,但是MASW模量比骨料层的FWD模量高得多。发现两个测试之间的差异受不同测试应变水平的影响很大,这些测试应变水平使用KEN LAYER分析进行了估算。通过结合MASW和FWD模量以及计算的测试应变水平,还可以确定各种稳定集料层的原位模量降低特性,从而更好地了解不同交通荷载条件下不同稳定方法的原位力学性能。 。 (C)2018 Elsevier Ltd.保留所有权利。

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