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Analytical study of beams strengthened by adhesively bonded reinforcement with variable properties using state space method

机译:状态空间法分析可变性能的粘结增强梁的分析研究。

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摘要

This paper uses the state space method to present an analytical solution for beams that are strengthened by externally bonded reinforcement with variable cross-sectional properties. The external reinforcement can be any elastic material, such as fiber-reinforced polymer (FRP) or steel (before yielding), and the variation of the cross-sectional properties of the externally bonded material can be stepped or continuous. Specific interest is directed to the interfacial shear stress and tensile stress of the externally bonded reinforcement, which are important to debonding analyses and the evaluation of strengthening effectiveness but were previously investigated only for externally bonded materials with uniform properties along the span. Solutions for beams under both concentrated and distributed loads are obtained, considering multiple spring supports. Numerical results are presented to evaluate the method and to investigate the interfacial stresses of beams externally bonded by FRP with different types of cross-sections. These results confirm the experimental observations that a tapered section can significantly reduce interfacial shear stress.
机译:本文使用状态空间方法来为通过具有可变截面特性的外部粘结钢筋进行加固的梁提供解析解决方案。外部增强材料可以是任何弹性材料,例如纤维增强聚合物(FRP)或钢(屈服之前),并且外部结合材料的横截面特性的变化可以是逐步的或连续的。特别关注的是外部粘结增强材料的界面剪切应力和拉伸应力,这对脱粘分析和增强效果评估很重要,但以前仅针对跨度均匀的外部粘结材料进行了研究。考虑到多个弹簧支撑,获得了在集中载荷和分布载荷下梁的解决方案。数值结果表明了该方法的有效性,并研究了不同横截面类型FRP外部粘结的梁的界面应力。这些结果证实了实验观察,即锥形截面可以显着减小界面剪切应力。

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