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Strengthening of Low-Strength Concrete Columns with Fibre Reinforced Polymers. Full-Scale Tests

机译:用纤维增强聚合物加固低强度混凝土柱。全规模测试

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Confinement of columns with externally bonded fibre reinforced polymers (FRP) sheets is an easy and effective way of enhancing the load carrying and strain capacity of reinforced concrete (RC) columns. Many experimental studies have been conducted on cylindrical small-scale un-reinforced concrete specimens externally confined with FRP. It is widely accepted that confinement of square or rectangular columns is less efficient than the confinement of circular columns. The theoretical models for rectangular sections are mostly based on approaches for circular columns modified by a shape factor, but the different models do not give similar results. This paper presents an experimental program on large-scale square and rectangular RC columns externally strengthened with carbon FRP sheets and subjected to axial load. The main variables were the side-aspect ratio of the cross-section, the radius of curvature of the corners and the amount of FRP reinforcement. The results show that the FRP confinement can increase the strength and strain capacity of rectangular concrete columns with low strength concrete. The FRP hoop ultimate strain was much lower than the material ultimate tensile strain obtained from flat coupon tests and the strain efficiency factor achieved in the tests was less than the value usually recommended by design guides.
机译:具有外粘合纤维增强聚合物(FRP)板的柱子的限制是增强钢筋混凝土(RC)柱的负荷承载和应变能力的简单有效的方法。在外部局限于FRP的圆柱形小型未钢筋混凝土样本上进行了许多实验研究。众所周知,广场或矩形柱的限制比圆柱的限制效率低。矩形部分的理论模型主要基于由形状因子修改的圆柱的方法,但不同的模型不给出类似的结果。本文介绍了用碳FRP板材外部加强的大型方形和矩形RC柱上的实验程序,并经受轴向载荷。主要变量是横截面的侧宽比,拐角的曲率半径和FRP加固量。结果表明,FRP限制可以提高低强度混凝土矩形混凝土柱的强度和应变能力。 FRP环箍终极应变远低于从扁平优惠券测试获得的材料极限拉伸应变,并且在测试中实现的应变效率因子小于设计指南通常建议的值。

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