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Composite behaviour of fibre-reinforced concrete sandwich panels with FRP shear connectors

机译:带有FRP剪力连接器的纤维增强混凝土夹芯板的复合性能

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The flexural behaviour of a precast concrete sandwich panel constructed of high performance fibre reinforced concrete wythes and foam insulation, connected together with carbon fibre reinforced polymer grid connectors, is investigated in this paper. This study tests and analyses the thin concrete cladding system which omits conventional steel reinforcement, the use of which requires concrete cover to the reinforcement layer that typically dictates the minimum thickness of the concrete wythes. A total of four full height panels are constructed in a precast concrete facility and are tested by way of three point bending. To complement the experimental study, finite element analysis is used to better understand the bending behaviour beyond what was discerned from the results obtained through experimentation. The experimental results showed that the thin concrete sandwich panel is a plausible solution for precast cladding systems with ultimate moment capacities in excess of those required to meet design wind loads. Ductile behaviour was observed in all of the four tested panels as a result of the high dosage of small 24 mm coated glass fibres used in the mix design for the concrete wythes. The experimental results showed no evidence of the FRP grid connector providing any significant degree of composite action. Finite element analysis suggests that this is due to, one or a combination of, the insulation's stiffness being too low or because the tensile members in the grid connector being under an initial compressive strain and not fully engaged during initial loading.
机译:本文研究了由高性能纤维增强混凝土和泡沫绝缘体构成的预制混凝土夹芯板与碳纤维增强聚合物网格连接器连接时的挠曲性能。这项研究测试并分析了省略常规钢加固的薄混凝土覆层系统,使用该系统需要在加固层上覆盖混凝土,这通常决定了混凝土的最小厚度。在预制混凝土设备中总共构造了四个全高面板,并通过三点弯曲进行了测试。作为对实验研究的补充,有限元分析用于更好地理解弯曲行为,而不是通过实验获得的结果可以看出。实验结果表明,混凝土薄夹心板是预制覆层系统的可行解决方案,其极限弯矩能力超过了满足设计风荷载所需的极限弯矩能力。由于在混凝土Wythes的混合设计中使用了高剂量的24 mm小涂层玻璃纤维,因此在所有四个测试面板中均观察到了延展性。实验结果表明,没有证据表明FRP网格连接器具有明显的复合作用。有限元分析表明,这是由于绝缘体的刚度过低或其中之一,或者是由于网格连接器中的受拉构件处于初始压缩应变下并且在初始加载过程中未完全接合所致。

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