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首页> 外文期刊>Canadian Journal of Civil Engineering >Shear deformable super-convergent finite element for steel beams strengthened with glass-fiber reinforced polymer (GFRP) plate
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Shear deformable super-convergent finite element for steel beams strengthened with glass-fiber reinforced polymer (GFRP) plate

机译:用玻璃纤维增强聚合物(GFRP)板加强钢梁的剪切可变形超收敛有限元

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摘要

The present study investigates the flexural behaviour of steel beams strengthened by adhesively bonding a glass-fiber reinforced polymer (GFRP) plate to one of the flanges. The model captures shear deformation effects and partial interaction between the steel and GFRP owing to the relative flexibility of the adhesive. A general closed form solution is first developed for the governing coupled system of differential equations. The solution is then used to formulate mechanics-based shape functions and develop a finite element with superior convergence characteristics. The model is used to investigate the response of multi-span continuous beams, determine the strength gained by GFRP strengthening, and quantify shear deformation effects on the response of strengthened beams. A technique capturing partial interaction effects is devised to characterize the flexural strength of Class 3 strengthened beams. A classification limit for strengthened Class 3 sections is also proposed within the framework of the Canadian Standard CAN-CSAS16(2014).
机译:本研究研究了通过将玻璃纤维增​​强聚合物(GFRP)板粘合到一个凸缘来强化钢束的弯曲行为。由于粘合剂的相对柔韧性,该模型捕获钢和GFRP之间的剪切变形效果和部分相互作用。首先为差分方程的控制耦合系统开发一般的封闭式解决方案。然后,该解决方案用于配制基于机械的形状功能,并开发具有优异收敛特性的有限元件。该模型用于研究多跨度连续梁的响应,确定通过GFRP强化获得的强度,并对加强光束的响应量化剪切变形效应。设计了一种捕获部分相互作用效果的技术,以表征3类强化梁的弯曲强度。在加拿大标准CAN-CSAS16(2014)的框架内还提出了加强第3类部分的分类限额。

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