Behavior of Reinforced Concrete Beams Strengthened in Negative Moment Region Using CFRP Plates

Salah Abdel Gawad Aly
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Abstract

One possible method for strengthening deteriorated concrete structures is to externally bond composite material plates to the concrete. The use of Carbon Fiber Reinforced Polymer (CFRP) laminates as an effective and versatile technique for strengthening reinforced concrete (RC) structures has developed into a sizable industry in recent years. To implement such rehabilitation, the nature of the bond between the composite plate and the concrete must be understood. The behavior of reinforced concrete beams strengthened in the negative moment region using CFRP strips is presented in this paper. The experimental program included strengthening and testing five half-scale, reinforced, simply supported rectangular cross section beams with an overhanging (cantilever) portion. One of the tested specimens was tested without any strengthening and considered as the control specimen. The rest specimens were strengthened with CFRP strips using different technique and then tested until complete failure. The effect of strengthening technique on deflection, failure load, strain, failure mode, and ductility are discussed. In addition, and due to local stress concentration at the plate ends, the influence of different type of CFRP fixation at both ends for proper bonding of the strips, and the strengthening pattern on the behavior of beams was examined. The ratio of absorbed energy at failure to total energy, or energy ratio, was used as a measure of beam ductility. The results generally indicate that the flexural strength of the strengthened beams is increased. It is also noted that, in addition to the longitudinal CFRP plates, the fiber oriented in the vertical direction forming a C or U-shape around the beam cross section significantly reduce beam deflections and increase beam load carrying capacity. However, all the strengthened beams experienced semi brittle failure, mandating a higher factor of safety in design. The results also indicate that plating reduced crack size in the beams and somewhat reduced their ductility.
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CFRP板加固负弯矩区钢筋混凝土梁的性能
加固变质混凝土结构的一种可能方法是将复合材料板与混凝土外部粘结。碳纤维增强聚合物(CFRP)层压板作为一种有效且通用的加固钢筋混凝土(RC)结构的技术,近年来已发展成为一个相当大的产业。要实施这种修复,必须了解复合板与混凝土之间的粘结性质。本文介绍了碳纤维布加固负弯矩区钢筋混凝土梁的受力性能。实验方案包括加强和测试五个半比例,增强,简支矩形截面梁与悬垂(悬臂)部分。其中一个试件不做任何强化试验,作为对照试件。其余试件采用不同的加固方法进行加固,直至完全破坏。讨论了加固技术对挠度、破坏荷载、应变、破坏模式和延性的影响。此外,考虑到板端存在局部应力集中,考察了两端不同CFRP固定方式对梁性能的影响。破坏时吸收能量与总能量之比,即能量比,被用来衡量梁的延性。结果普遍表明,加固梁的抗弯强度有所提高。研究还发现,除纵向CFRP板外,沿垂直方向取向的纤维在梁截面周围形成C形或u形,可显著减小梁挠度,提高梁承载能力。然而,所有加固梁都经历了半脆性破坏,在设计中要求更高的安全系数。结果还表明,镀层减小了梁的裂纹尺寸,并在一定程度上降低了梁的延性。
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