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Effect of induced deformation on NDT pavement evaluation

机译:诱导变形对无损检测路面评价的影响

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Abstract: Three nondestructive testing techniques were used in this study to evaluate pavement layer properties. These techniques included deflection and seismic methods. In the deflection methods, measurable surface deformations were induced using falling weight deflectometer and Dynaflect tests. These two tests utilized different schemes of dynamic loading applications to produce deflection basins from which the pavement layer properties were back calculated. Pavement properties from seismic methods were obtained from the analysis of surface waves due to transient load applications. In this study the seismic pavement analyzer (SPA) was used to determine pavement moduli values. Although the same assumptions for linear elastic behavior of pavement properties are usually assumed in all the three methods, obtained moduli values from these techniques did not conform to each other. Commonly, pavement deflection from SPA is not considered when analyzing layer properties. To narrow the gap between the obtained results, however, time-history records and frequency response functions were used to determine surface deflections from the three methods. Deflection measurements correlated with the obtained moduli values. Using these correlations, moduli values at any pavement deflection levels could be evaluated, especially at levels produced by traffic loads.!17
机译:摘要:本研究使用了三种无损检测技术来评估路面层的性能。这些技术包括偏转和地震方法。在挠度方法中,使用落锤挠度计和Dynaflect测试引起可测量的表面变形。这两个测试利用动态载荷应用的不同方案来生成挠度盆,并从中计算出路面层的性质。地震方法产生的路面特性是通过分析瞬态荷载作用下的表面波获得的。在这项研究中,地震路面分析仪(SPA)用于确定路面模量值。尽管在所有这三种方法中通常都假定路面特性的线性弹性行为相同,但是从这些技术获得的模量值彼此不一致。通常,在分析图层属性时不考虑SPA引起的路面偏斜。为了缩小获得的结果之间的差距,但是,使用了时程记录和频率响应函数来从这三种方法确定表面挠度。挠度测量值与获得的模量值相关。使用这些相关性,可以评估在任何路面挠度水平上的模量值,尤其是在交通负荷产生的水平下!17

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