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Rapid evaluation of alkali-silica reactivity of aggregates using a nonlinear resonance spectroscopy technique

机译:使用非线性共振光谱技术快速评估骨料的碱-硅反应性

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摘要

A new nonlinear acoustic technique — Nonlinear Impact Resonance Acoustic Spectroscopy (NIRAS) — is developed and used to characterize the alkali-reactivity of different aggregates. Cementitious materials such as mortar and concrete exhibit a hysteretic and nonlinear elastic behavior in their constitutive relations. This hysteretic nonlinearity is associated with interfacial debonding between the different constituents, and it changes with the progress of damage such as that induced by the alkali-silica reaction (ASR). One of the consequences of the hysteretic nonlinear property of these materials is the decrease in resonance frequencies, with increased excitation amplitude. This shift in the resonance frequency as a function of the material nonlinearity parameter can be used to directly characterize the damage state of the material. This research tracks the variation of the nonlinearity parameter during a standard accelerated mortar bar test (AMBT) to assess the potential for alkali-reactivity of aggregates. The results show that the NIRAS technique is more sensitive than conventional linear acoustic methods and is capable of accurately characterizing the reactivity of the aggregates examined. Furthermore, the results show advantages over standard expansion measurements for differentiating various aggregates having similar levels of reactivity, particularly at early test ages. These changes in the nonlinearity parameter are benchmarked against results from a petrographic analysis. Thus, the proposed NIRAS is a promising technique for the rapid identification of alkali-reactive aggregates.
机译:开发了一种新的非线性声学技术-非线性冲击共振声学光谱法(NIRAS),并将其用于表征不同聚集体的碱反应性。诸如砂浆和混凝土的胶结材料在它们的本构关系中表现出滞后和非线性弹性行为。这种磁滞非线性与不同成分之间的界面剥离有关,并且随着诸如碱-硅反应(ASR)引起的破坏的进展而变化。这些材料的滞后非线性特性的后果之一是谐振频率降低,激励幅度增大。共振频率随材料非线性参数变化的变化可用于直接表征材料的损坏状态。这项研究跟踪了标准加速砂浆棒试验(AMBT)期间非线性参数的变化,以评估骨料的碱反应性。结果表明,NIRAS技术比常规线性声学方法更灵敏,并且能够准确地表征所检查聚集体的反应性。此外,结果显示出优于标准膨胀率测量的优势,可用于区分具有相似反应性水平的各种聚集体,特别是在早期测试年龄时。非线性参数的这些变化以岩石学分析的结果为基准。因此,提出的NIRAS是一种快速鉴定碱反应性聚集体的有前途的技术。

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