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首页> 外文期刊>Composite Structures >Static and dynamic behaviour of a hybrid PFRP-aluminium space truss girder: Experimental and numerical study
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Static and dynamic behaviour of a hybrid PFRP-aluminium space truss girder: Experimental and numerical study

机译:杂交PFRP铝空间桁架桁梁的静态和动态行为:实验和数值研究

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摘要

A novel hybrid pultruded fiber reinforced polymer (FRP)-aluminum space truss system was proposed, aiming to be used as pedestrian bridge or platform in marine areas. A large-scale space truss girder substructure was assembled, and the full-scale static and dynamic tests were separately conducted. The girder's static behaviour was analysed using three-point bending test, and the girder shows satisfactory bending stiffness contributed by the structural form of space truss. To reveal the girder's dynamic properties, the output-only modal identification method was used. Some unfavorable dynamic properties such as low natural frequency and the torsion mode as the first order mode shape were observed, which is mainly caused by the unique material properties and structural form. Thereafter, a strategy of adding diagonal bracing at the bottom chord plane to improve dynamic performance was proposed. To accurately predicting the static and dynamic properties, the fine line elements (FLE) model simulating all components' stiffness of the truss member were built. The simple-link-system (SLS) model was used for comparison. Based on FLE model, parametric analysis was conducted to reveal influences of key parameters. Finally, an efficient design strategy was proposed for this novel hybrid system with combined use of SLS and FLE model.
机译:提出了一种新型杂交针族纤维增强聚合物(FRP) - 铝空间桁架系统,旨在用作海洋地区的行人桥或平台。组装了大规模空间桁架梁子结构,并分别进行全规模的静态和动态测试。使用三点弯曲试验分析了梁的静态行为,并且梁显示了令人满意的弯曲刚度,这些弯曲刚度因空间桁架的结构形式贡献。为了揭示梁的动态特性,使用输出的模态识别方法。观察到一些不利的动态性质,例如低固有频率和扭转模式,作为第一阶模式形状,主要由独特的材料特性和结构形式引起。此后,提出了一种在底部和弦平面上添加对角线支撑以提高动态性能的策略。为了准确地预测静态和动态特性,构建了模拟桁架成员刚度的所有组件的细线元素(FLE)模型。简单链接系统(SLS)模型用于比较。基于FLE模型,进行参数分析以揭示关键参数的影响。最后,提出了一种具有联合使用SLS和FLE模型的新型混合系统的高效设计策略。

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