用有限元法评价frp加固钢筋混凝土框架的防火性能

R. Salehi, A. Akbarpour, Armaghan Shalbaftabar
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引用次数: 1

摘要

钢筋混凝土(RC)结构可能面临极端荷载条件。有时,结构不仅承受地震等极端载荷,而且还可能遭受火灾。因此,对最常见的钢筋混凝土结构进行研究是必要的。本研究考虑在ABAQUS有限元软件中对试验RC框架进行验证。RC框架在地震和火灾两种荷载条件下,评估结构在极端条件下的抗震性能。FRP技术也考虑评估抗震性能,如承载能力,延性,能量吸收和刚度。在这方面,采用了两种不同的方法,包括加强和包裹。在本研究中,改造和加固的模式是本研究的新颖之处。实际上,使用钢筋,BFRP筋和板材的效果进行了评估。研究了钢-BFRP筋与不同BFRP片材发散和收敛角度组合的新方法。在绘制荷载-位移图的基础上,对钢筋混凝土框架的抗震参数进行了比较,提出了优化方法和优化模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fire Evaluation of RC Frames Strengthened with FRPs Using Finite Element Method
Reinforced Concrete (RC) structures may confront with extreme loading conditions. Sometimes, structures are not only under extreme loading such as earthquakes but also, they may be subjected to fire. Therefore, investigation of reinforced concrete structures which are the most common ones is essential. In this study, experimental RC frame is considered to validate in ABAQUS finite element software. RC frame is subjected to both earthquake and fire loading condition to assess the seismic behavior of structure under extreme conditions. FRP techniques is also consider evaluating the seismic behavior such as load capacity, ductility, energy absorption and stiffness. In this regard, two different approaches including reinforcing and wrapping are employed. In this research, the pattern of retrofitting and reinforcing are the novelty of this work. In fact, the effect of using steel bars, BFRP bars and sheets are evaluated. The new method for combination of steel-BFRP bars and different BFRP sheet’s angle as divergence and convergence are investigated. After carrying out the load-displacement diagrams, the seismic parameters of RC frames are compared and the optimized method and model is presented.
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