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In-situ assessment of the stress-dependent stiffness of unbound aggregate bases: application in inverted base pavements

机译:未结合骨料基础的应力相关刚度的原位评估:在倒置基础路面中的应用

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摘要

Unbound aggregate bases are the primary structural components in many flexible pavements. The response of the unbound aggregate base is critical to the overall performance of the pavement, particularly in inverted base pavements given the proximity of the base to the traffic loads. The behaviour of granular materials such as unbound aggregate bases is inherently nonlinear and anisotropic. An experimental methodology is developed to assess the in-situ stress-dependent small-strain stiffness of unbound aggregate bases under controlled load using wave propagation techniques. CODA wave analysis is used to detect small changes in travel time. The methodology is applied in two distinct case histories of inverted base pavements. Results show that field-compacted granular bases exhibit higher stiffness, lower stress sensitivity and more pronounced anisotropy than laboratory-compacted specimens. The discrepancy in stiffness observed among the two field case histories is primarily attributed to traffic preconditioning sustained by the older pavement. Additional results show that the effect of suction on the stiffness of coarse-grained granular bases is insignificant.
机译:未结合的骨料基础是许多柔性路面的主要结构组成部分。未结合的骨料基层的响应对于人行道的整体性能至关重要,尤其是在基层与交通负荷接近的情况下,在倒立的人行道中。粒状材料(例如未结合的骨料基料)的行为本质上是非线性和各向异性的。开发了一种实验方法来评估使用波浪传播技术在受控载荷下未结合骨料基础的原位应力相关小应变刚度。 CODA波分析用于检测传播时间的细微变化。该方法适用于两种不同的倒立路面历史案例。结果表明,与实验室压实的标本相比,现场压实的粒状基体具有更高的刚度,更低的应力敏感性和更明显的各向异性。在两个现场案例历史中观察到的刚度差异主要归因于较旧路面的交通预处理。其他结果表明,吸力对粗粒颗粒状底材的刚度影响不明显。

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