Study of Cyclic behaviour of Corroded HPC beams strengthened with GFRP laminates by Nonlinear finite element modelling and experimental investigations

Q3 Engineering 推进技术 Pub Date : 2023-12-03 DOI:10.52783/tjjpt.v44.i5.2737
Dr. Seshadri Sekhar N
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Abstract

Corrosion is a very big threat to the civil Engineering Structures especially on the coastal areas. Apart from the corrosion, the tidal forces on the structures act as the  cyclic loading  which in turn damage the structures by way of cyclic loading. There are two types of  cyclic loading, which are  constant amplitude and varying amplitude. In this experiment,  cyclic loading was taken  with Constant amplitude. Strengthening the corroded beams  on tension  face ie below the beams with GFRP  laminates improve the cyclic life of the beams. In this paper, the non linear finite element analysis (ANSYS) for the corroded high performance concrete beams under cyclic loading  to predict the cyclic life of the beams. The results were compared with the experimental results with regard to cyclic life and Maximum deflection. It is found that it is  reasonably agreeable. This indicates that the proposed FEMs can capture the cyclic behavior of the corroded HPC beams strengthened with GFRC laminates of 2 different thicknesses of  high accuracy.
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通过非线性有限元建模和实验调查研究用 GFRP 层压板加固的腐蚀 HPC 梁的循环行为
腐蚀是土木工程结构面临的一大威胁,特别是在沿海地区。除腐蚀作用外,潮汐力对结构也起到循环荷载的作用,并通过循环荷载对结构进行破坏。循环荷载有两种形式:恒幅加载和变幅加载。本试验采用恒幅循环加载。用玻璃钢对受拉面锈蚀的梁进行加固,提高了梁的循环寿命。本文采用非线性有限元分析(ANSYS)对锈蚀高性能混凝土梁在循环荷载作用下的循环寿命进行预测。计算结果与试验结果在循环寿命和最大挠度方面进行了比较。人们发现这是相当令人愉快的。这表明,所提出的有限元分析方法可以高精度地捕捉到两种不同厚度的GFRC层合板加固的腐蚀HPC梁的循环性能。
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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推进技术
推进技术 Engineering-Aerospace Engineering
CiteScore
1.40
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0.00%
发文量
6610
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