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A comparative study of different methods to calculate degrees of composite action for insulated concrete sandwich panels

机译:不同方法计算绝缘混凝土夹芯板复合作用程度的比较研究

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摘要

Precast concrete sandwich wall panels consist of two outer wythes of precast concrete separated by a middle layer of insulation. In recent years, Fiber-Reinforced Polymer (FRP) shear connectors have been increasingly used since they have lower thermal conductivity compared to traditional steel shear connectors, which can significantly reduce thermal bridging. However, FRP shear connectors have lower stiffness, resulting in partial Degree of Composite Action (DCA), which is an important parameter to describe the structural behavior of the panels. Different methods have been proposed to calculate DCAs, including displacement method, strain method, and load method. This paper will compare and evaluate the effectiveness of these methods. A bending WA was conducted on a full size of 7 m x 3 m, precast, prestressed insulated concrete sandwich panel with FRP shear connectors. A non-linear Finite Element (FE) model is created, where good correlations can be achieved between the WA and FE results. The FE model is further employed to conduct a parametric study by varying the stiffness of the shear connectors. DCAs for different stiffnesses are calculated using the aforementioned three methods and the applicability and limitation of each method are investigated.
机译:预制混凝土三明治壁板由两个外部布料混凝土组成,由中间绝缘层隔开。近年来,纤维增强聚合物(FRP)剪切连接器已经越来越多地使用,因为与传统的钢剪切连接器相比,它们具有较低的导热性,这可以显着减少热桥接。然而,FRP剪切连接器具有较低的刚度,导致部分复合动作(DCA),这是描述面板结构行为的重要参数。已经提出了不同的方法来计算DCA,包括位移方法,应变法和负载方法。本文将比较和评估这些方法的有效性。使用FRP剪切连接器的全尺寸为7米×3米,预制,预应力的绝缘混凝土夹芯板进行弯曲WA。创建非线性有限元(FE)模型,其中在WA和Fe结果之间可以实现良好的相关性。通过改变剪切连接器的刚度,进一步采用Fe模型进行参数化研究。使用上述三种方法计算不同刚度的DCA,并研究了每种方法的适用性和限制。

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