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A smeared crack analysis of reinforced concrete T-beams strengthened with GFRP composites

机译:GFRP复合材料加固钢筋混凝土T型梁抹平裂缝分析

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The strengthening of reinforced concrete structures with laminates of fibre reinforced polymeric (FRP) matrix has received considerable attention, although there still is lack of information on the more adequate modelling of the interface between FRP composites and concrete. An experimental programme is described and was designed to:(ⅰ) characterise glass FRP-to-concrete interface by shear tests;(ⅱ) analyse reinforced concrete T-beams with external GFRP plates. Double shear tests were carried out based on 15 cm cubes with GFRP bonded to two opposite faces. The concrete T-beams were 3.0 m long and 0.28 m high and were loaded till rupture in 4-point bending tests. The external reinforcement system showed great strength increment in relation to the non retrofitted T-beam, confirming to be an effective approach to the flexural strengthening of RC beams. The computational analysis was based on a three dimensional smeared crack model. In total, 22 computational analyses were made. Models with and without interface FE associated with Mohr-Coulomb failure criterion for the FRP-to-concrete interface were defined and different strength types of concrete were considered. The rigid interface does not predict the rupture of the T-beam with precision;however, the results obtained for low concrete strengths revealed that rigid interfaces can be assumed when conjugated with the fixed crack approach. Consequently, a slightly stiffer response of the beam is obtained. The maximum bond stresses obtained from Finite Element Analysis (FEA) revealed that the models with rigid interfaces developed lower bond stresses due to the lack of relative displacements between both materials. The effects of assuming either fixed or rotated crack approaches were also compared. The rotated crack conjugated to a fine mesh in the vicinity of the GFRP-to-concrete stress led to a very good estimation of the bond stresses along the interface. The prediction of the T-beam rupture was also estimated with better results when the rotated crack was used in the model. In general, the FEA predicted with very good results the de-bonding of the GFRP-to-concrete interface of T-beams externally bonded with GFRP composites.
机译:尽管仍然缺乏有关FRP复合材料与混凝土之间界面的更充分建模的信息,但使用纤维增强聚合物(FRP)基质层压材料来增强钢筋混凝土结构已经引起了相当大的关注。描述并设计了一个实验程序以:(ⅰ)通过剪切试验表征玻璃FRP与混凝土的界面;(ⅱ)用外部GFRP板分析钢筋混凝土T型梁。基于15 cm的立方体进行了双剪切测试,将GFRP粘结在两个相对的面上。混凝土T型梁长3.0 m,高0.28 m,在四点弯曲试验中一直受力直至破裂。外部加固系统相对于非改型T形梁显示出很大的强度增加,这是对RC梁抗弯加固的有效方法。计算分析基于三维涂片裂纹模型。总共进行了22次计算分析。定义了具有和不具有与FRP到混凝土界面的Mohr-Coulomb破坏准则相关的界面FE的模型,并考虑了混凝土的不同强度类型。刚性界面不能精确地预测T形梁的破裂;但是,由于混凝土强度低而获得的结果表明,与固定裂缝方法结合时可以假定为刚性界面。因此,可获得光束的刚度稍大的响应。从有限元分析(FEA)获得的最大粘结应力表明,由于两种材料之间缺乏相对位移,具有刚性界面的模型产生了较低的粘结应力。还比较了采用固定或旋转裂纹方法的效果。在GFRP到混凝土应力附近结合到细小网格上的旋转裂纹导致对沿界面的粘结应力进行了很好的估计。当在模型中使用旋转裂纹时,也可以更好地估计T形梁断裂的预测。通常,FEA预测以很好的结果将外部与GFRP复合材料粘结在一起的T型梁的GFRP与混凝土界面剥离。

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