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首页> 外文期刊>Journal of Reinforced Plastics and Composites >Cyclic performance of reinforced concrete T-beams strengthened in shear with fiber-reinforced polymer composites: Sheets versus laminates
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Cyclic performance of reinforced concrete T-beams strengthened in shear with fiber-reinforced polymer composites: Sheets versus laminates

机译:纤维增强聚合物复合材料在剪切作用下增强的钢筋混凝土T型梁的循环性能:薄板与层压板

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摘要

Much existing reinforced concrete (RC) civil infrastructure worldwide is in need of shear strengthening and rehabilitation. The use of externally bonded (EB) carbon fiber-reinforced polymer (CFRP) sheets and laminates to strengthen deficient RC beams in shear is now an acceptable and cost-effective practice, particularly under static loads. However, due to its complexity, the cyclic (fatigue) behavior and performance of shear-strengthened beams is not fully documented. Recently, use of CFRP continuous sheets wrapped over the shear length for fatigue upgrade has been studied. This technique may present drawbacks related to surface preparation and FRP debonding. Therefore, when possible, prefabricated CFRP L-shaped laminates can be a cost-effective alternative because they require less surface preparation and do not peel off easily. The objective of this paper was to present the results of an experimental investigation that compared cyclic (fatigue) and static (post-fatigue) behavior of two EB CFRP techniques (sheets vs. laminates) for shear retrofit of RC T-beams. In total, six laboratory tests on full-size 4520-mm-long beams were conducted. The specimens were subjected to fatigue loading of up to 6 million load cycles at a rate of 3Hz. Specimens that sustained 6 million cycles were then tested monotonically up to failure. The variables examined in the paper were: (1) the EB CFRP strengthening scheme, and (2) the presence and ratio (spacing) of internal shear reinforcement. The test results confirmed the effectiveness of using EB CFRP shear-strengthening methods under cyclic loading. They also revealed that the fatigue performance of RC T-beams strengthened with L-shaped laminates is significantly superior in extending fatigue life compared to corresponding T-beams strengthened with U-wrapped sheets. This was quantified in terms of deflection response (47% increase due to fatigue loading for specimens with L-shaped laminates compared to 90% for specimens with U-wrapped sheets), and the level of increase in steel-stirrups strain range (9-42% vs. 62-114%) and in EB CFRP (36-97% vs. 58-163%).
机译:全球许多现有的钢筋混凝土(RC)民用基础设施都需要进行剪切加固和修复。现在,使用外部粘结(EB)碳纤维增强聚合物(CFRP)板和层压板来增强剪切力不足的RC梁是一种可以接受且具有成本效益的做法,尤其是在静态载荷下。但是,由于其复杂性,未充分记录抗剪增强梁的循环(疲劳)行为和性能。近来,已经研究了将CFRP连续片材包裹在剪切长度上以提高疲劳强度。此技术可能会出现与表面处理和FRP脱胶相关的缺陷。因此,在可能的情况下,预制CFRP L形层压板可能是一种经济高效的替代产品,因为它们需要较少的表面准备并且不容易剥离。本文的目的是提出一项实验研究的结果,该研究比较了两种RC CF梁的EB CFRP技术(薄片与层压材料)的循环(疲劳)和静态(疲劳)行为。总共对全长4520毫米长的光束进行了六次实验室测试。样品以3Hz的速率承受了高达600万个载荷循环的疲劳载荷。然后单调测试了持续600万次循环的样品,直至失效。本文研究的变量为:(1)EB CFRP加固方案,以及(2)内部抗剪加固的存在和比例(间距)。测试结果证实了在循环荷载下使用EB CFRP剪切增强方法的有效性。他们还发现,与用U形包裹的薄板加固的相应T型梁相比,用L形层压板加固的RC T型梁的疲劳性能在延长疲劳寿命方面显着优越。这可以通过挠度响应(L型层压板的疲劳载荷增加47%,而U形薄片的样品则为90%)和钢箍筋应变范围的增加水平进行量化(9-分别为42%和62-114%)和EB CFRP(36-97%和58-163%)。

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