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Interfacial behavior and debonding failures of full-scale CFRP-strengthened H-section steel beams

机译:满幅CFRP加固H型钢梁的界面行为和剥离破坏

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Strengthening existing steel beams with externally bonded carbon fiber-reinforced polymer (CFRP) plate has attracted many interests in the research community. Debonding of the CFRP plate is the dominant failure mode in a flexurally strengthened steel beam, and the debonding failure is controlled by the interfacial responses between the CFRP plate and the substrate steel beam. Although some experimental investigations have been conducted on CFRP-strengthened steel beams, limited test results on the interfacial stress and strain responses especially in full-scale steel beams, are available to verify the numerical modeling. This paper presents an experimental study on the flexural behavior of full-scale CFRP-strengthened H-section steel beams. The effects of different bond lengths of CFRP plates and the presence of steel stiffeners are investigated. The test results in terms of the failure modes, load-deflection responses, CFRP strains, interfacial shear stress distributions are reported in detail. A three-dimensional finite element model is proposed to predict the flexural performance of full-scale CFRP-strengthened steel beams, and it is then validated extensively by the test results.
机译:用外部粘结的碳纤维增强聚合物(CFRP)板加固现有的钢梁引起了研究界的许多兴趣。 CFRP板的剥离是弯曲加固钢梁的主要失效模式,而剥离失败则由CFRP板与基底钢梁之间的界面响应控制。尽管已经对CFRP加固的钢梁进行了一些实验研究,但是关于界面应力和应变响应的有限测试结果,尤其是在全尺寸钢梁中,仍然可以用来验证数值模型。本文对全尺寸CFRP加固的H型钢梁的抗弯性能进行了实验研究。研究了CFRP板不同粘结长度和钢加强筋存在的影响。详细报告了失效模式,载荷-挠度响应,CFRP应变,界面剪切应力分布等方面的测试结果。提出了三维有限元模型来预测全尺寸CFRP加固钢梁的抗弯性能,然后通过测试结果对其进行了广泛验证。

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