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Direct shear tests of glass fiber reinforced polymer connectors for use in precast concrete sandwich panels

机译:用于预制混凝土夹芯板的玻璃纤维增​​强聚合物连接器的直接剪切测试

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摘要

The precast concrete sandwich panel (PCSP) is a popular structural type used for prefabricated construction. In this study, three kinds of glass fiber reinforced polymer (GFRP) connector, including a flat plate, a corrugated plate, and a hexagonal tube connector, were investigated for potential use in PCSPs. In-plane direct shear tests were conducted to evaluate the performance of the connectors based on a typical push-out configuration (i.e., three concrete wythes linked with connectors and two rigid foam layers in between). Twenty-five specimens were tested, and the parameters investigated consisted of GFRP laminate thickness, projected length, and shear force direction. The shear force vs. relative slip relationships and failure modes of all types of connector were compared and are discussed in detail in this paper. Meanwhile, finite element (FE) analysis was conducted to reproduce the test results. All three types of GFRP connector exhibited a progressive failure manner in spite of the linear brittle nature of the FRP materials; the corrugated plate connector achieved higher deformability than the flat plate connector, particularly when the GFRP laminate thickness was small; and the hexagonal tube connector exhibited similar behavior along two orthogonal directions, making them well suited for use as two-way connectors. The developed FE model was able to well predict the peak shear load and stiffness of all types of connector based on comparisons with the test results.
机译:预制混凝土夹芯板(PCSP)是一种用于预制建筑的流行结构类型。在这项研究中,研究了三种玻璃纤维增​​强聚合物(GFRP)连接器(包括平板,波纹板和六角管连接器)在PCSP中的潜在用途。进行了面内直接剪切测试,以基于典型的推出构造(即,三个与连接器相连的混凝土Wythes和位于其之间的两个刚性泡沫层)评估连接器的性能。测试了25个样品,研究的参数包括GFRP层压板的厚度,投影长度和剪切力方向。比较了所有类型的连接器的剪力与相对滑移关系以及破坏模式,并在本文中进行了详细讨论。同时,进行了有限元(FE)分析以重现测试结果。尽管FRP材料具有线性脆性,但所有这三种类型的GFRP连接器均表现出渐进式破坏方式。波纹板连接器比平板连接器具有更高的可变形性,尤其是当GFRP层压板厚度较小时。六角管连接器在两个正交方向上表现出相似的行为,因此非常适合用作双向连接器。基于与测试结果的比较,开发的有限元模型能够很好地预测所有类型连接器的峰值剪切载荷和刚度。

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