Progressive deterioration of reinforced concrete structures: effect on dynamic properties of flexural members

IF 1.7 4区 材料科学 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY
Q. Khan, Muhammad Farhan, A. Raza
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Abstract

PurposeThe main purpose of this study is to examine the damage behavior of flexural members under different loading conditions. The finite element model is proposed for the prediction of modal parameters, damage assessment and damage detection of flexural members. Moreover, the analysis of flexural members has been done for the sensor arrangement to accurately predict the damage parameters without the laborious work of experimentation in the laboratory.Design/methodology/approachBeam-like structures are structures that are subjected to flexural loadings that are involved in almost every type of civil engineering construction like buildings, bridges, etc. Experimental Modal Analysis (EMA) is a popular technique to detect damages in structures without requiring tough and complex methods. Experimental work conducted in this study concludes that a structure experiences high changes in modal properties once when cracking occurs and then at the stage where cracks start at the critical neutral axis. Moreover, among the various modal parameters of the flexural members, natural frequency and mode shapes are the viable parameters for the damage detection.FindingsFor torsional mode, drop in natural frequency is high for higher damages as compared to low levels. This is because of the opening and closing of cracks in modal testing. When damage occurs in the structure, there is a reduction in the magnitude of the FRF plot. The measure of this drop can also lead to damage assessment in addition to damage detection. The natural frequency of the system is the most reliable modal parameter in detecting damages. However, for damage localization, the next step after damage assessment, mode shapes can be more helpful as compared to all other parameters.Originality/valueEffect on Dynamic Properties of Flexural Members during the Progressive Deterioration of Reinforced Concrete Structures is studied.
钢筋混凝土结构的渐进退化:对受弯构件动力性能的影响
目的研究受弯构件在不同荷载作用下的损伤行为。提出了用于受弯构件模态参数预测、损伤评估和损伤检测的有限元模型。此外,还对受弯构件进行了分析,使传感器的布置能够准确地预测损伤参数,而无需在实验室进行繁琐的实验工作。设计/方法/方法类梁结构是受弯曲载荷的结构,几乎涉及所有类型的土木工程建设,如建筑物,桥梁等。实验模态分析(EMA)是一种流行的检测结构损伤的技术,不需要复杂的方法。在本研究中进行的实验工作得出结论,当裂缝发生时,结构的模态特性会发生很大的变化,然后在临界中性轴开始裂缝的阶段。此外,在受弯构件的各种模态参数中,固有频率和模态振型是可行的损伤检测参数。研究结果:对于扭转模态,相对于低水平的固有频率下降,更高的损伤会导致更高的固有频率下降。这是由于模态试验中裂纹的打开和关闭。当结构发生损伤时,频响图的幅度减小。除了伤害检测之外,这种掉落的测量也可以导致伤害评估。系统固有频率是检测损伤最可靠的模态参数。然而,对于损伤定位,损伤评估后的下一步,模态振型比其他参数更有帮助。研究了钢筋混凝土结构逐渐劣化过程中受弯构件动力性能的独创性/价值效应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.70
自引率
5.00%
发文量
60
期刊介绍: Multidiscipline Modeling in Materials and Structures is published by Emerald Group Publishing Limited from 2010
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