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Effect of CFRP plate length strengthening continuous steel beam

机译:CFRP板长加固连续钢梁的作用。

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This paper focused on behavior of beam strengthened with CFRP plate and effect of strengthening length. The simply supported steel beam tested in previous work was modeled using ANSYS finite element software, The same parameters as the experimental data were used to model the steel beam in FEA. Characteristic points on the load-deflection response curve predicted using finite element analysis (FEA) were compared to experimental data. The comparison shows that the ANSYS finite element program is capable of modeling and predicting the actual deformation behavior for steel beam. The FE model simulated in this study used to build continuous steel beam and strengthening it by using different length of CFRP plate as a ratio of beam length. The FE analysis result shows that the length of CFRP plate when reach (40% and 60%) of span length and total beam length in sagging and hogging regions respectively, the increased of ultimate strength of beam become growth slowly.
机译:本文重点研究了CFRP板加固梁的性能以及加固长度的影响。使用ANSYS有限元软件对先前工作中测试的简单支撑钢梁进行建模,并使用与实验数据相同的参数对FEA中的钢梁进行建模。使用有限元分析(FEA)预测的载荷-挠度响应曲线上的特征点与实验数据进行了比较。比较表明,ANSYS有限元程序能够建模和预测钢梁的实际变形行为。本研究中模拟的有限元模型用于建立连续钢梁,并通过使用不同长度的CFRP板作为梁长度的比率来对其进行加固。有限元分析结果表明,在下垂区域和下陷区域分别达到跨距长度和总梁长度的40%和60%时,CFRP板的长度使梁的极限强度的增长缓慢增长。

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