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Effective Width of Insulated Sandwich Panels with Interior Flexible FRP Shear Connectors Considering Partial Degree of Composite Action

机译:内部柔性FRP剪切连接器的绝缘夹层面板的有效宽度考虑综合动作的部分柔性FRP剪切连接器

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Insulated sandwich panels consist of two layers of wythe separated by a foam insulation. In recent years, fiber-reinforced polymer (FRP) materials have begun to be incorporated as shear connectors, because they have a lower thermal conductivity than steel and can significantly reduce thermal bridging. Until now, no effective guidelines exist for the design of these panels. Generally, they are treated as rectangular beams, which is not reasonable because the longitudinal stress over the wythe section is nonuniform resulting from the in-plane shear flexibility of the wythe, which is called the shear lag effect. The effective flange width has been used to describe the shear lag effect for a deck-on-girder composite beam system, reducing a three-dimensional behavior of the composite beam system to the analysis of a T-beam section with a reduced width of deck. This paper extends the concept of effective flange width to insulated concrete sandwich panels. A shear lag model is first developed to study the sandwich panel system, in which partial degree of composite action (DCA) owing to a flexible FRP shear connector is considered. The analytical model is then verified through close correlations between finite-element and analytical results for a concrete sandwich panel with FRP shear connectors. Finally, a parametric study was conducted using the analytical model. (C) 2017 American Society of Civil Engineers.
机译:绝缘三明治面板由两层Wythe由泡沫绝缘层分开。近年来,纤维增强聚合物(FRP)材料已经开始掺入剪切连接器,因为它们具有比钢的导热率较低,并且可以显着减少热桥接。到目前为止,这些面板的设计没有有效的指导。通常,它们被视为矩形梁,这是不合理的,因为Wy的纵向应力是由Wythe的面内剪切柔韧性产生的,这被称为剪切滞后效果。有效法兰宽度已用于描述甲板上梁复合梁系统的剪切滞后效果,降低了复合梁系统的三维行为,以减少甲板宽度的T梁部分的分析。本文将有效法兰宽度的概念扩展到绝缘混凝土三明治面板。首先开发剪切滞后模型以研究夹层面板系统,其中考虑了由于柔性FRP剪切连接器而偏的复合动作(DCA)的部分程度。然后通过使用FRP剪切连接器的混凝土夹芯板之间的有限元和分析结果之间的密切相关性来验证分析模型。最后,使用分析模型进行参数研究。 (c)2017美国土木工程师协会。

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