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Investigations on RC Beams Retrofitted with UHSCC Overlay under Fatigue Loading

机译:疲劳荷载下UHSCC覆盖层加固RC梁的研究

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摘要

The present study aims to investigate the use of Ultra High Strength Cementious Composite (UHSCC) overlay strips for strengthening of pre-damaged RC beams. Fatigue loading was conducted in the study, one control beam was tested up to failure. Preloading of 80-90% in terms of number of cycles to failure was applied keeping stress ratio as 0.2 and frequency as 3Hz. Constant amplitude loading spectrum with different maxima minima but keeping stress ratio same was applied to control beam to examine any changes in structural behavior such as deflection and stiffness degradation of beams. The beams used were made of RCC with dimension 1500x100x200mm. The strengthened beams were tested to extract the parameters such as cycles for failure, load, deflection, crack initiation and failure phenomenon. It was observed that the beams retrofitted with UHSCC overlay strips performed efficiently in terms of number cycles to failure in comparison with conventional RCC beams under fatigue loading. Preloaded fatigue beam (FB1) had 17.6% higher load carrying capacity as compared to the control beam. Similarly preloaded fatigue beam (FB2) had 11.7% higher load carrying capacity as compared to the control beam. Acoustic Emission technique is a novel Non-destructive testing method which is used to identify the crack propagation and physical behavior of the beam at selected locations during the onset of loading, which gives a precise idea of the crack initiation and crack propagation under different loading condition.
机译:本研究旨在研究使用超高强度胶凝复合材料(UHSCC)覆盖条来增强预损坏的RC梁。在研究中进行了疲劳加载,测试了一个控制梁直至失效。施加了80-90%的预加载,以达到破坏的循环次数,并保持应力比为0.2,频率为3Hz。将具有不同最大值和最小值但保持相同应力比的恒定振幅载荷谱应用于控制梁,以检查结构行为的任何变化,例如梁的挠度和刚度退化。所使用的梁由尺寸为1500x100x200mm的RCC制成。测试了加固梁,以提取诸如破坏,载荷,挠度,裂纹萌生和破坏现象的循环等参数。观察到,在疲劳载荷下,与传统的RCC梁相比,用UHSCC覆盖条改装的梁在失效的次数循环方面表现出色。与控制梁相比,预载疲劳梁(FB1)的承载能力提高了17.6%。类似地,与控制梁相比,预载疲劳梁(FB2)的承载能力高11.7%。声发射技术是一种新颖的非破坏性测试方法,可用于识别载荷开始过程中梁在选定位置的裂纹扩展和物理行为,从而准确了解不同载荷条件下的裂纹萌生和裂纹扩展。

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