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首页> 外文期刊>International journal of structural stability and dynamics >EXPERIMENTAL STUDY ON BUCKLING RESISTANCE TECHNIQUE OF STEEL MEMBERS STRENGTHENED USING FRP
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EXPERIMENTAL STUDY ON BUCKLING RESISTANCE TECHNIQUE OF STEEL MEMBERS STRENGTHENED USING FRP

机译:FRP加固钢构件抗屈曲技术的试验研究

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摘要

Fiber-reinforced polymer (FRP) strengthening technique to improve buckling resistance of steel members is presented in concept and experimental demonstration. The conceptual design of this method is introduced through the preliminary experiments on three specimens. Then, another 14 specimens are tested under axially compressive loading, by which the compressive behavior and the strengthening effects are investigated considering different design parameters and configuration, including the slenderness ratio, the confinement detail, the filled materials and the end connection. The strengthening effects are analyzed by the comparison of both theoretical and test results, which show that the overall buckling failure of steel members can be prevented by FRP strengthening and the ultimate loading capacity and deformation capacity of steel members are enhanced considerably. The maximum load-bearing capacity of strengthened members is 2.86 times of the non-strengthened ones, and the failure maintains a ductile behavior. In addition, the load-bearing capacity of the members strengthened in this way is compared with the Euler loads of the original steel member and the composite member.
机译:概念和实验演示中介绍了纤维增强聚合物(FRP)增强技术,以提高钢构件的抗屈曲性。通过对三个样本的初步实验,介绍了该方法的概念设计。然后,在轴向压缩载荷下对另外14个试件进行了测试,考虑了不同的设计参数和构造,包括细长比,限制细节,填充材料和端部连接,研究了其压缩行为和加固效果。通过理论和试验结果的比较分析了加固效果,结果表明,通过FRP加固可以防止钢构件整体屈曲破坏,并极大地提高了钢构件的极限承载力和变形能力。加强构件的最大承载能力是非加强构件的2.86倍,并且破坏保持了延性。另外,将以这种方式增强的构件的承载能力与原始钢构件和复合构件的欧拉载荷进行比较。

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