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Numerical modelling of preloaded RC beams strengthened with prestressed CFRP laminates

机译:预应力CFRP层压板预应力RC梁的数值模拟

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The paper presents the research on reinforced concrete beams strengthened with pre-tensioned CFRP laminates under self-weigh only and self-weight and external preload. In the first part the results of experimental campaign (Kotynia et al., 2013) are briefly described and discussed. Next a two-dimensional plane stress model of beams was developed on the basis of experimental observation. The model takes into account the nonlinear behaviour of concrete, steel bars and the concrete-to-laminate interface. A new uncoupled interface model was developed and programmed in order to properly describe the concrete-to-laminate connection for severely cracked structures. Numerical simulations performed for the calibrated material parameters exhibit very good convergence with the experimental results. The analysis confirmed suitability of the model to predict behaviour of RC members strengthened in flexure with CFRP materials in the whole range of loading. Moreover, in this part of the paper the numerically obtained effectiveness of active strengthening in relation to general passive methods of strengthening RC members in flexure was analysed. The calculations show that prestressing increases load bearing capacity in comparison with passively strengthened elements. The second part of the paper contains parametric study of the effect of concrete class, steel ratio, CFRP laminate width and stiffness, maximum concrete-to-laminate bond strength, loading configuration and preloading on load-deflection behaviour and load capacity of actively strengthened beams. The performed parametric study considerably broadened the scope of the experimentally investigated cases by Kotynia et al. (2013).
机译:本文介绍了在仅具有自重,自重和外部预载的情况下,用预应力CFRP层压板加固的钢筋混凝土梁的研究。在第一部分中,简要介绍了实验活动的结果(Kotynia等,2013)。接下来,在实验观察的基础上,建立了梁的二维平面应力模型。该模型考虑了混凝土,钢筋和混凝土与层压板的界面的非线性行为。开发并编程了一个新的非耦合界面模型,以正确描述严重裂缝结构的混凝土-层板连接。对标定材料参数进行的数值模拟与实验结果显示出很好的收敛性。分析证实了该模型适用于预测在整个载荷范围内使用CFRP材料加固的钢筋混凝土受弯构件的行为。此外,在本文的这一部分中,相对于在弯曲中加固RC构件的常规被动方法,在数值上分析了主动加固的有效性。计算表明,与被动加强的构件相比,预应力增加了承载能力。本文的第二部分包含对混凝土类别,钢比,CFRP层压板宽度和刚度,最大混凝土与层压板粘结强度,荷载配置和预载对主动加固梁的荷载-挠度特性和荷载能力的影响的参数研究。 。进行的参数研究大大拓宽了Kotynia等人进行的实验研究案例的范围。 (2013)。

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