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Damage-sensitive features from non-linear vibration response of reinforced concrete structures

机译:钢筋混凝土结构非线性振动响应的损伤敏感特征

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摘要

Reinforced concrete structures respond in non-linear manner under dynamic loads even at low levels of vibration. This causes softening in concrete which may result in the unstable vibration. By considering the non-linearity, the effects of amplitude of vibration on the modal characteristics can be used to extract damage-sensitive features. In this article, investigations carried out on the phenomena associated with non-linear vibration, which were observed during the vibration tests on damaged reinforced concrete structures, are discussed. For effectively identifying the non-linear damage features in reinforced concrete structures from the frequency spectral information, an appropriate vibration testing procedure is formulated in this study. Damage features are evaluated from the changes in vibration amplitude with frequency at different damage levels under various types of excitations and their force levels. Damage indicators based on basic signal statistics and non-linearity in vibration responses are evaluated. Using the phase-plane information obtained from various damage scenarios, non-linear damage indices have been formulated. Another significant non-linear damage feature has been identified by the occurrence of higher harmonics observed by analysing the spectral density functions obtained from the frequency domain decomposition. The results obtained from this study would pave the way for identifying the damage in heterogeneous and non-linear structures such as reinforced concrete.
机译:钢筋混凝土结构即使在低振动下也能在动态载荷下以非线性方式响应。这会导致混凝土软化,从而可能导致不稳定的振动。通过考虑非线性,振动振幅对模态特性的影响可用于提取对损伤敏感的特征。在本文中,讨论了对与非线性振动相关的现象的研究,这些现象是在受损钢筋混凝土结构的振动测试过程中观察到的。为了从频谱信息中有效识别钢筋混凝土结构中的非线性损伤特征,本研究制定了适当的振动测试程序。通过在各种类型的激励及其作用力水平下,在不同损伤水平下振动振幅随频率变化的变化来评估损伤特征。基于基本信号统计信息和振动响应中的非线性来评估损坏指标。使用从各种损伤情况获得的相平面信息,已制定了非线性损伤指数。通过分析从频域分解获得的频谱密度函数,观察到较高的谐波,从而确定了另一个重要的非线性损伤特征。这项研究获得的结果将为识别异质和非线性结构(如钢筋混凝土)中的损伤铺平道路。

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