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Precast/Prestressed Concrete Sandwich Panels for Thermally Efficient Floor/Roof Applications

机译:适用于高效地板/屋顶应用的预制/预应力混凝土夹芯板

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Precast concrete floor systems represent a major component of the cost and weight of precast concrete buildings. Hollow-core (HC) planking is considered the most common precast concrete floor system for residential and commercial buildings because of their economy, light weight, structural capacity, and ease of production and erection. However, the high thermal conductivity of HC planks hinders their use in radiant heated floor and roof applications where thermal insulation is needed. This paper presents the development of a precast/prestressed concrete sandwich floor panel that consists of an internal wythe of insulation and two external wythes of concrete similar to those used in sandwich wall panels. The main difference between the sandwich floor and wall panels is the design of shear connectors between concrete wythes to achieve full composite action under ultimate loads while simultaneously having an adequate creep resistance under sustained loads and acceptable deflection under live loads. Truss-shaped glass fiber-reinforced polymer ties, known as NU ties, were used as shear connectors because of their structural and thermal efficiency. The proposed floor panels have comparable weight and capacity to HC planks while being more thermally efficient and can easily be fabricated in standard casting beds with typical equipment, thus eliminating the high initial investment required for HC production. This paper presents the design, detailing, production, and testing of three 7.9-m-long (26-ft-long), 1.22-m-wide (4-ft-wide), and 200-mm-thick (8-in.-thick) specimens with 50-mm-thick (2-in.-thick) composite topping. The three specimens represent two different panel designs. One specimen has solid concrete ends and was designed for a total superimposed service load of 9.6 kPa (200 psf), whereas two specimens are fully insulated and designed for a total superimposed service load of 4.8 kPa (100 psf). The performance of the three specimens under flexure and shear loadings indicated that the proposed sandwich floor panels can achieve full composite action and have satisfactory structural performance and acceptable deflection characteristics.
机译:预制混凝土楼板系统是预制混凝土建筑物成本和重量的主要组成部分。中空(HC)木板由于其经济,轻巧,结构紧凑,易于生产和安装的优点,被认为是住宅和商业建筑中最常见的预制混凝土地板系统。但是,HC木板的高导热性阻碍了它们在需要隔热的辐射加热地板和屋顶应用中的使用。本文介绍了预制/预应力混凝土夹心楼板的开发情况,该楼板由内部保温材料和两个外部混凝土外丝组成,类似于夹心墙板中使用的材料。夹心地板和墙面板之间的主要区别在于混凝土Wythes之间的剪切连接器设计,以在极限载荷下实现完全的复合作用,同时在持续载荷下具有足够的抗蠕变性,在活荷载下具有可接受的挠度。桁架形状的玻璃纤维增​​强聚合物扎带(称为NU扎带)由于其结构和热效率而被用作剪切连接器。所提出的地板具有与HC木板相当的重量和容量,同时具有更高的热效率,并且可以使用典型的设备轻松地在标准浇铸床上制造,从而消除了HC生产所需的高额初始投资。本文介绍了三种7.9米长(26英尺长),1.22米宽(4英尺宽)和200毫米厚(8英寸)的设计,详图,生产和测试。厚(50毫米)(2英寸厚)复合材料的样品。这三个样本代表两种不同的面板设计。一个标本具有实心混凝土端部,设计用于9.6 kPa(200 psf)的总叠加服务负载,而两个标本已完全绝缘,设计合计4.8 kPa(100 psf)的总叠加服务负载。这三个样品在弯曲和剪切载荷下的性能表明,所提出的夹心地板可以实现完全的复合作用,并具有令人满意的结构性能和可接受的挠曲特性。

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