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Experimental Study on Shear Strengthening of RC Deep Beams with Large Openings Using CFRP

机译:CFRP大开口RC深梁抗剪试验研究。

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摘要

This research deals with the experimental study on the behaviour of reinforced concrete (RC) deep beamsudwith large circular openings and openings strengthened using externally bonded Carbon Fiber Reinforced Polymerud(CFRP) composites in shear. The structural behavior including the load deflection behaviour, crack pattern, failure mode as well as strengthening configuration was investigated. A total of three (3) specimens of beams with design strength of 35 MPa were tested to failure under 4-points loading. The beam specimens included a solid RC deep beam as a control beam and two RC deep beams with large circular openings to determine the behaviour of un-strengthened and strengthened beams using CFRP wrap. The beams had a cross section of 120 mm x 600 mm and a length of 2400mm. The openings were placed at the support on both sides of the shear span, at a distance 300 mm from the edge of the beam. The circular opening was designed to a standard of 0.45h which is considered as large circular opening with a diameter of 270 mm. Shear span-to-depth ratio (a/h) was 0.83 in which the distance between the loading point and the support was 500 mm. One of the test parameters presented in this paper was surface strengthening method. RC deep beam with the presence of large circular openings in the shear zone experienced substantial strength loss with a reduction of 51% as compared to the original structural capacity of the control beam. Comparing with the control beam,surface strengthening method could only manage to re-gain the beam capacity up to 56%.
机译:这项研究涉及钢筋混凝土(RC)深梁 ud的大圆形开口和外粘结碳纤维增强聚合物 ud(CFRP)复合材料在剪切作用下加固的开口的试验研究。研究了结构的行为,包括荷载挠度行为,裂纹模式,破坏模式以及加强结构。在四点荷载下,总共测试了三(3)个设计强度为35 MPa的梁的试件是否断裂。梁样品包括一个实心RC深梁作为控制梁,以及两个带有大圆形开口的RC深梁,以便使用CFRP缠绕确定未加强和加强的梁的性能。横梁的横截面为120 mm x 600 mm,长度为2400mm。将开口放置在剪切跨度两侧的支撑处,与梁的边缘相距300 mm。圆形开口的设计标准为0.45h,这被认为是直径为270 mm的大型圆形开口。剪切跨度与深度之比(a / h)为0.83,其中加载点与支撑之间的距离为500 mm。本文提出的测试参数之一是表面强化方法。 RC深梁在剪切区域中有较大的圆形开口,相比于控制梁的原始结构承载力,其强度损失显着,降低了51%。与控制梁相比,表面加固方法只能重新获得高达56%的梁容量。

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