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Experimental and Numerical Investigation of Novel I-Shaped GFRP Connectors for Insulated Precast Concrete Sandwich Wall Panels

机译:用于绝缘预制混凝土三明治墙板的新型I形GFRP连接器的实验性和数值研究

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Insulated precast concrete sandwich wall panels (IPCSWPs) are widely used in the thermal resistance systems of buildings. This paper proposes a novel I-shaped glass fiber-reinforced plastic connector for IPCSWPs. The connector is anchored in the concrete panels with steel rebar passing through reserved holes at the ends of the connector. Featuring large stiffness, bearing capacity, and low thermal conductivity, this type of connector is expected to benefit passive houses with thick insulation layers. Quasi-static in-plane shear tests were conducted to assess the performance of the connector. The relationship between failure modes, load-bearing capacity, and key parameters, such as insulation thickness and shear directions of the connector, were investigated through testing of 16 individual specimens. In addition, finite element analysis of the specimens was established using ABAQUS to simulate the tests. The results of finite element analysis were predominantly consistent with the results of the experiments. Parametric studies are conducted to supplement the tests. To enable the engineering applications of the connector, a series of formulas for the estimation of stiffness and bearing capacity of the connector were derived through theoretical analysis of testing and finite element analysis results.
机译:绝缘预制混凝土三明治墙板(IPCSWPS)广泛应用于建筑物的热阻系统。本文提出了一种用于IPCSWP的新型I形玻璃纤维增​​强塑料连接器。连接器锚固在具有通过连接器末端的保留孔的钢钢筋中的混凝土板中。这种类型的连接器具有较大的刚度,承载力和低导热率,预计这种连接器将使被动房屋具有厚厚的绝缘层。进行了准静态的面内剪切测试以评估连接器的性能。通过测试16个单独的样本,研究了故障模式,承载能力和连接器的绝缘厚度和剪切方向之间的关系,如绝缘厚度和剪切方向。此外,使用ABAQUS建立了标本的有限元分析来模拟测试。有限元分析的结果主要与实验结果一致。进行参数研究以补充测试。为了使连接器的工程应用,通过对测试和有限元分析结果的理论分析来推导出估计连接器的刚度和承载力的一系列公式。

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