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Structural behavior of hybrid FRP composite I-beam

机译:混合FRP复合工字梁的结构性能

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This paper presents the structural behavior of an innovative hybrid Fiber Reinforced Polymers (FRP) beam consisting of carbon/glass fibers and vinyl-ester resin. The advanced feature of this hybridization is the optimum use of carbon and glass fibers in the flanges to maximize structural performance while reducing the overall cost by using only glass fibers in the web section. A series of beam tests were conducted under four-point bending varying ratio of flange to web width (b_f/b_w) and volume content of carbon and glass fiber in the flanges. Experimental investigations revealed that the ratio of flange to web width of hybrid FRP I-shaped beams plays an important role in their structural behavior. Small flange beams (b_f/b_w = 0.43) showed stable and linear behavior under bending moment and failed in a brittle manner by delamination of the compressive flange at the interfacial layers while wide flange beams (b_f/b_w = 1.13) exhibited unstable and nonlinear behavior in the buckling and post-buckling region leading to delamination failure of the compressive flange. The experimental and analytical results discussed in this paper emphasize on the best composition of carbon and glass fibers for the optimum design of such hybrid beams. It is found that the maximum strength of hybrid FRP beams can be obtained with the volume content of carbon fiber to be 25-33%. Furthermore, the results of this study show the potential of applying hybrid FRP beams for bridge components.
机译:本文介绍了由碳/玻璃纤维和乙烯基酯树脂组成的创新混合纤维增强聚合物(FRP)梁的结构性能。这种杂交技术的先进特征是在法兰中最佳地使用了碳纤维和玻璃纤维,从而在最大程度提高结构性能的同时,通过在腹板部分仅使用玻璃纤维来降低总体成本。在法兰与腹板宽度(b_f / b_w)的四点弯曲变化比率以及法兰中碳和玻璃纤维的体积含量的四点弯曲条件下进行了一系列的梁测试。实验研究表明,混合FRP I型梁的翼缘与腹板宽度之比在其结构行为中起着重要作用。小翼缘梁(b_f / b_w = 0.43)在弯矩下表现出稳定且线性的行为,并且由于在界面层处压缩翼缘的分层而脆性破坏,而宽翼缘梁(b_f / b_w = 1.13)表现出不稳定和非线性的行为在屈曲和后屈曲区域中,导致压缩凸缘的分层失败。本文讨论的实验和分析结果着重于碳纤维和玻璃纤维的最佳组成,以优化此类混合梁的设计。发现在碳纤维的体积含量为25-33%的情况下,可以获得混合FRP梁的最大强度。此外,这项研究的结果表明,将混合FRP梁应用于桥梁构件的潜力。

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