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FINITE ELEMENT ANALYSIS OF CFRP STRENGTHENED STEEL HOLLOW SECTIONS UNDER TENSION

机译:CFRP加固钢空心截面受拉的有限元分析。

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This paper presents a nonlinear finite element (FE) model for the analysis of very high strength (VHS) steel hollow sections wrapped by high modulus carbon fibre reinforced polymer (CFRP) sheets. The bond strength of CFRP wrapped VHS circular steel hollow section under tension is investigated using the FE model. The three dimensional FE model by Nonlinear static analysis has been carried out by Strand 7 finite element software. The model is validated by the experimental data obtained from Fawzia et al. A detail parametric study has been performed to examine the effect of number of CFRP layers, different diameters of VHS steel tube and different bond lengths of CFRP sheet. The analytical model developed by Fawzia et al. has been used to determine the load carrying capacity of different diameters of CFRP strengthened VHS steel tube by using the capacity from each layer of CFRP sheet. The results from FE model have found in reasonable agreement with the analytical model developed by Fawzia et al. This validation was necessary because the analytical model by Fawzia et al was developed by using only one diameter of VHS steel tube and fixed (five) number of CFRP layers. It can be concluded that the developed analytical model is valid for CFRP strengthened VHS steel tubes with diameter range of 38mm to 100mm and CFRP layer range of 3 to 5 layers. Based on the results it can also be concluded that the effective bond length is consistent for different diameters of steel tubes and different layers of CFRP. Three layers of CFRP is considered most effective wrapping scheme due to the cost effectiveness. Finally the distribution of longitudinal and hoop stress has been determined by the finite element model for different diameters of CFRP strengthened VHS steel tube.
机译:本文提出了一种非线性有限元(FE)模型,用于分析由高模量碳纤维增强聚合物(CFRP)板包裹的超高强度(VHS)钢空心截面。使用有限元模型研究了CFRP包裹的VHS圆钢空心截面在拉伸下的粘结强度。利用Strand 7有限元软件进行了非线性静力分析的三维有限元模型。通过从Fawzia等人获得的实验数据验证了该模型。已经进行了详细的参数研究,以检查CFRP层数,VHS钢管的不同直径以及CFRP板的不同粘结长度的影响。 Fawzia等人开发的分析模型。通过使用每层CFRP板的承载力,已被用来确定不同直径的CFRP增强VHS钢管的承载能力。有限元模型的结果与Fawzia等人开发的分析模型有合理的一致性。之所以需要进行验证,是因为Fawzia等人的分析模型是通过仅使用一个直径的VHS钢管和固定(五)层CFRP层开发的。可以得出结论,所开发的分析模型对于直径范围为38mm至100mm且CFRP层厚度为3至5层的CFRP增强VHS钢管是有效的。根据结果​​,还可以得出结论,对于不同直径的钢管和不同的CFRP层,有效粘结长度是一致的。由于成本效益,三层CFRP被认为是最有效的包装方案。最后,通过有限元模型确定了不同直径的CFRP加固VHS钢管的纵向和环向应力分布。

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