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Influence of different bonding and wrapping techniques on performance of beams strengthened in shear using CFRP reinforcement

机译:不同的粘结和缠绕工艺对CFRP加固抗剪梁的性能的影响

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摘要

Promising results have been obtained from flexural strengthening of concrete elements using the grooving method in its special form of externally bonded reinforcement in grooves (EBRIG) to postpone CFRP debonding and load carrying capacity enhancement. Drawing upon these results, the present study aims to investigate the influence of the EBRIG and EBR methods used for shear strengthening of structural members when used with different techniques of installing CFRP sheets to provide sufficient bonding between CFRP sheets and the concrete substrate. For the purposes of this study, seven concrete beam specimens, 120 x 160 x 1400 mm in size, were cast and subjected to the 4-point loading test. External shear anchorages were provided for each span of the beams separately, therefore, each specimen was tested in two rounds and a total of 14 tests were performed. One specimen was used as the control beam without any strengthening and six were strengthened using either the EBR or the EBRIG methods. Results showed that, compared to control specimen without CFRP strengthening the EBRIG and EBR method combined with full wrapping technique led to a load carrying capacity enhancement up to an average percentage about 148% and 141%, and moreover, as a significant result the failure mechanism was observed to change from a brittle shear failure by utilizing EBR method to the desirable flexural mode by utilizing EBRIG method. (c) 2016 Elsevier Ltd. All rights reserved.
机译:使用开槽方法对混凝土构件进行抗弯加固以其特殊形式的沟槽外部粘结增强(EBRIG),推迟了CFRP的脱粘和承载能力的提高,已取得了可喜的结果。利用这些结果,本研究旨在研究当使用不同的安装CFRP板的技术来提供CFRP板与混凝土基材之间的充分粘合力时,EBRIG和EBR方法对结构构件的剪切增强的影响。为了本研究的目的,浇铸了七个尺寸为120 x 160 x 1400 mm的混凝土梁样本,并进行了4点载荷测试。分别为梁的每个跨度提供了外部剪力锚固,因此,每个试样进行了两轮测试,共进行了14次测试。一个标本用作控制梁而没有任何加强,而六个则使用EBR或EBRIG方法进行了加强。结果表明,与没有CFRP的对照样品相比,EBRIG和EBR方法与完全包裹技术相结合可提高平均承载能力约148%和141%的承载能力,此外,其显着结果是破坏机理观察到从利用EBR方法的脆性剪切破坏到利用EBRIG方法的理想弯曲模式的变化。 (c)2016 Elsevier Ltd.保留所有权利。

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