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Measured dynamic properties for FRP footbridges and their critical comparison against structures made of conventional construction materials

机译:用于FRP Faplebridges的动态特性及其对传统建筑材料制成的结构的关键比较

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This paper reports new experimental data for dynamic properties (i.e. modal mass, natural frequency and damping ratio) of eight FRP composite footbridges in Europe, which helps to resolve the weakness in knowledge and understanding of dynamic properties of FRP footbridges. In addition, dynamic properties are reviewed with the results of six other FRP footbridges and 124 non-FRP footbridges built after 1991. A comprehensive comparison of these 138 sets of dynamic properties shows that FRP footbridges possess similar fundamental frequencies at the same span, but usually higher damping ratios (mean of 2.5% c.f. mean of 1.0% for steel, concrete and steel-concrete composite). Additionally, natural frequencies and damping ratios identified from free decays measured on FRP footbridges are response amplitude dependent. Comparing the accelerance peaks of FRP and conventional footbridges revealed that the FRP footbridges are, on average, around 3.5 times more responsive to resonant excitation than the conventional bridges having the same bridge length, deck width and mode shape due to their significantly lower modal mass.
机译:本文介绍了欧洲八个FRP复合织物的动态特性(即模态质量,自然频率和阻尼比)的新实验数据,有助于解决FRP足桥的动态特性的知识和理解的弱点。此外,通过六种其他FRP脚底码和124架非FRP绑架的结果进行了审查动态属性,这是1991年之后建造的124套的动态特性。FRP Faplebridges在同一跨度具有类似的基本频率,但通常钢,混凝土和钢混凝土复合材料较高的阻尼比(平均值为<1.0%的平均值<1.0%)。另外,在FRP脚架上测量的自由衰减识别的固有频率和阻尼比是响应幅度。比较FRP和传统脚架的加速峰揭示了FRP脚架平均响应于谐振激发比具有相同桥梁长度,甲板宽度和模式形状的传统桥的谐振激发的响应速度约为3.5倍。

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