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Experimental investigation and finite element analysis of flexural behavior of insulated concrete sandwich panels with FRP plate shear connectors

机译:FRP板剪力连接的保温混凝土夹芯板的抗弯性能试验研究与有限元分析

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摘要

Insulated concrete sandwich panels consist of two layers of concrete wythe separated by a foam insulation. The objective of this study is to develop an innovative fiber reinforced polymer (FRP) shear plate connector with specially designed anchoring schemes, and study its effects on the flexural behavior of insulated concrete sandwich panels, in terms of stiffness, strength, and applicability for roof/floor constructions, based on combined experimental investigation and Finite Element (FE) analysis. Three groups of 2743 x 610 x 254 mm(3) (9' x 2' x 10 '') concrete panels were constructed with continuous, segmental, and discrete FRP shear plate connectors, with two panels for each group. Additionally, two solid concrete panels were constructed as baselines. These specimens were tested under bending until failure. FE analysis was conducted on the panels. The accuracy of the FE model was proven through good correlations between test and FE results for two panels with continuous shear connectors, one solid panel and one panel with segmental shear connector. It can be concluded that the FRP plate can be used to transfer shear between the two concrete wythes, achieving a composite panel, which can meet ACI requirements for roof! floor applications. Different types of shear connectors, representing different degrees of composite action, affect both the strength and stiffness of the panels. This degree of composite action can be predicted with the FE model developed in this study. Continuous and segmental connectors perform much better than discrete connectors. The use of discrete shear connectors is not recommended. Unlike other proprietary FRP shear connectors, the FRP plate shear connectors developed in this study can be cut from commercially available FRP plates and are expected to be widely used for insulated concrete sandwich panels. (C) 2015 Elsevier Ltd. All rights reserved.
机译:隔热的混凝土夹心板由两层混凝土和一层泡沫隔离层组成。这项研究的目的是开发一种具有特殊设计的锚固方案的创新型纤维增强聚合物(FRP)剪力板连接器,并研究其对隔热混凝土夹芯板的挠曲性能的影响,包括刚度,强度和对屋顶的适用性/地板结构,基于组合的实验研究和有限元(FE)分析。三组2743 x 610 x 254 mm(3)(9'x 2'x 10英寸)混凝土面板由连续,分段和离散的FRP剪力板连接器组成,每组两块面板。另外,以两个实心混凝土面板为基准。这些样品在弯曲下测试直至破坏。在面板上进行了有限元分析。有限元模型的准确性通过测试和具有两个连续剪切连接器面板,一个实心面板和一个带有分段剪切连接器面板的FE结果之间的良好相关性得到证明。可以得出结论,FRP板可用于在两个混凝土Wythes之间传递剪切力,从而实现了可以满足ACI屋顶要求的复合板!地板应用。代表不同程度的复合作用的不同类型的剪切连接器会影响面板的强度和刚度。这种复合作用的程度可以通过本研究开发的有限元模型进行预测。连续和分段连接器的性能比离散连接器好得多。不建议使用离散剪切连接器。与其他专有的FRP剪切连接器不同,本研究开发的FRP板剪切连接器可以从市售FRP板上切割下来,并有望广泛用于绝缘混凝土夹芯板。 (C)2015 Elsevier Ltd.保留所有权利。

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