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Analysis of the Dynamic Response in Blast-Loaded CFRP-Strengthened Metallic Beams

机译:爆炸荷载下CFRP加固金属梁的动力响应分析

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Carbon fiber-reinforced polymer composites (CFRPs) are good candidates in enhancing the blast resistant performance of vulnerable public buildings and in reinforcing old buildings. The use of CFRP in retrofitting and strengthening applications is traditionally associated with concrete structures. Nevertheless, more recently, there has been a remarkable aspiration in strengthening metallic structures and components using CFRP. This paper presents a relatively simple analytical solution for the deformation and ultimate strength calculation of hybrid metal-CFRP beams when subjected to pulse loading, with a particular focus on blast loading. The analytical model is based on a full interaction between the metal and the FRP and is capable of producing reasonable results in a dynamic loading scenario. A nonlinear finite element (FE) model is also developed to reveal the full dynamic behavior of the CFRP-epoxy-steel hybrid beam, considering the detailed effects, that is, large strains, high strain rates in metal, and different failure modes of the hybrid beam. Experimental results confirm the analytical and the FE results and show a strong correlation.
机译:碳纤维增强聚合物复合材料(CFRP)是增强脆弱公共建筑的抗爆性能和加固旧建筑的良好选择。传统上,CFRP在翻新和加固应用中与混凝土结构相关联。然而,近来,在使用CFRP加强金属结构和部件方面有令人瞩目的愿望。本文针对脉冲荷载作用下的混合金属-CFRP梁的变形和极限强度计算提供了一个相对简单的解析解决方案,尤其是爆炸荷载。该分析模型基于金属与FRP之间的充分相互作用,并且能够在动态载荷情况下产生合理的结果。考虑到详细的影响,即大应变,金属中的高应变率以及不同的破坏模式,还开发了非线性有限元(FE)模型来揭示CFRP-环氧树脂-钢混合梁的完整动力特性。混合梁。实验结果证实了分析结果和有限元分析结果并显示出很强的相关性。

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