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Enhancement of buckling capacity of steel plates strengthened with GFRP plates

机译:GFRP板增强钢板的屈曲能力

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摘要

The current study assesses the enhancement in the buckling capacity of steel plates through bonding glass fibre reinforced polymer (GFRP) plates. Despite their low modulus of elasticity, GFRP plates are relatively thick and, therefore, can be efficient in magnifying the buckling capacity of the retrofitted steel plates. In this application, a heavy duty adhesive system that was tested in a previous experimental programme is employed to bond the steel and the GFRP plates. The current study is conducted numerically using a nonlinear shell element model to simulate the steel and GFRP plates and a special contact element to simulate the flexibility of the adhesive medium. The failure modes in the adhesive and the GFRP plates, based on real strength values, as well as the instability of the entire system are considered. A buckling magnification factor relating the capacity of the retrofitted system to the capacity of the corresponding bare steel plate is evaluated. The study considers two types of boundary conditions as well as two types of in-plane compatibility between the steel and GFRP plates. The effect of geometric imperfection is also studied. Both elastic and inelastic stability analyses are considered in this investigation.
机译:当前的研究评估了通过粘结玻璃纤维增​​强聚合物(GFRP)板增强钢板的屈曲能力。尽管GFRP板的弹性模量低,但它相对较厚,因此可以有效地放大翻新钢板的屈曲能力。在此应用中,采用了在先前的实验程序中测试过的重型粘合剂系统,以将钢和GFRP板粘合在一起。当前的研究是使用非线性壳单元模型对钢和GFRP板进行模拟,以及使用特殊的接触单元来模拟粘合介质的柔韧性进行数值研究。基于实际强度值以及整个系统的不稳定性,考虑了粘合剂和GFRP板的失效模式。评估将改装系统的容量与相应裸钢板的容量相关的屈曲放大系数。该研究考虑了两种边界条件以及钢板和GFRP板之间的两种面内相容性。还研究了几何缺陷的影响。这项研究考虑了弹性和非弹性稳定性分析。

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