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首页> 外文期刊>International Journal of Damage Mechanics >Analytical Study of Finite Element Models for FRP Retrofitted Concrete Structure under Blast Loads
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Analytical Study of Finite Element Models for FRP Retrofitted Concrete Structure under Blast Loads

机译:爆炸荷载下玻璃钢翻新混凝土结构有限元模型的分析研究

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摘要

Fiber reinforced polymer (FRP) is one of the best retrofitting materials for blast resistance strengthening due to a number of advantages, such as excellent strength to self-weight ratio, large fatigue resistance capacity, etc. Presently, many different types of FRP models are used in blast analysis, but they are used randomly without fundamental scientific reasoning, thereby creating erroneous analytical results. Therefore, this study is carried out to assess and to compare a comprehensive finite element analytical model of FRP that can properly consider the properties of FRP as a retrofit material. After reviewing available FRP models currently used by researchers in the field, four analytical FRP models are selected to assess the behavior of FRP sheet and FRP retrofitted concrete structure; isotropic linear elastic shell element model (IES model), orthotropic linear elastic shell element without shear deformation model (OES model), orthotropic linear elastic shell element with shear deformation model (OESS model), and linear elastic beam element model (EB model). Using the selected FRP models, noise analysis of FRP sheet and FRP retrofitted concrete is carried out to confirm mesh sensitivity for convergence. In addition, finite element analysis of FRP retrofitted RC slab under blast load is performed to select the most appropriate FRP model and to validate the blast analysis technique. All of the analysis results for four selected FRP models are compared to verify and select the optimum model. Finally, a discussion about the study results with respect to code response criteria is presented.
机译:纤维增强聚合物(FRP)具有许多优点,例如出色的强度与自重比,大的抗疲劳能力等,是用于增强抗爆炸性的最佳翻新材料之一。目前,有许多不同类型的FRP模型用于爆炸分析,但未经基础科学推理就被随机使用,从而产生错误的分析结果。因此,本研究旨在评估和比较可适当考虑玻璃钢作为改型材料特性的玻璃钢综合有限元分析模型。在审查了当前该领域研究人员使用的可用FRP模型后,选择了四个分析性FRP模型来评估FRP板和FRP翻新混凝土结构的性能。各向同性线性弹性壳单元模型(IES模型),正交各向异性线性弹性壳单元(无剪切变形模型)(OES模型),正交各向异性线性弹性壳单元(具有剪切变形模型)(OESS模型)和线性弹性梁单元模型(EB模型)。使用选定的FRP模型,对FRP板和FRP翻新的混凝土进行了噪声分析,以确认网格敏感性以收敛。此外,在爆炸荷载下对FRP钢筋混凝土板进行了有限元分析,以选择最合适的FRP模型并验证爆炸分析技术。比较了四个所选FRP模型的所有分析结果,以验证和选择最佳模型。最后,讨论了有关代码响应标准的研究结果。

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