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Experimental and numerical assessment of the effectiveness of FRP-based strengthening configurations for dapped-end RC beams

机译:端部钢筋混凝土梁基于FRP的加固配置效果的实验和数值评估

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摘要

This paper presents experimental and numerical assessments of the effectiveness of strengthening dapped-end reinforced concrete beams using externally bonded carbon fiber reinforced polymers (CFRPs). The research was prompted by a real application, in which the dapped-ends of several precast/prestressed concrete beams developed diagonal cracks due to errors during assembly. Hence, the dapped-ends were strengthened on-site using CFRP plates to limit further crack opening. In the empirical phase of the study, four similar specimens were tested: one unstrengthened reference specimen, two strengthened with high-strength CFRP plates, and one with high-modulus CFRP sheets. The specimens strengthened with plates had slightly higher load carrying capacity than the reference element, but failed by debonding, while the specimens strengthened with sheets showed no increase of capacity and failed by the fibers rupturing. Nonlinear finite element analysis of the specimens under the test conditions indicated that: (a) debonding is more likely to occur at the inner end of dapped-ends and (b) the capacity could have been increased by up to 20% if the plates had been mechanically anchored.
机译:本文介绍了使用外部粘结碳纤维增强聚合物(CFRP)加固端部端部钢筋混凝土梁的有效性的实验和数值评估。这项研究是在实际应用的推动下进行的,在该应用中,数个预制/预应力混凝土梁的悬空端由于装配过程中的误差而产生了对角裂缝。因此,使用CFRP板在现场加固了端部,以限制进一步的裂缝开裂。在研究的实验阶段,测试了四个类似的样本:一个未加强的参考样本,两个用高强度CFRP板加强,以及一个用高模量CFRP板。用板加固的样品的承载能力比参考元件稍高,但由于脱粘而失效,而用板加固的样品的承载能力没有提高,并且由于纤维断裂而失效。在测试条件下对样品进行的非线性有限元分析表明:(a)搭接端的内端更有可能发生脱胶,并且(b)如果板具有以下特征,则容量可能增加了20%机械锚定。

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