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Development of insulated FRP-confined Precast Concrete Sandwich panel with side and top confining plates and dry bond

机译:隔热,FRP约束的预制混凝土夹心板的侧面和顶部约束板以及干粘结的开发

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Traditional insulated concrete sandwich panels are composed of two concrete wythes separated by a layer of foam insulation, where the wythes are connected by various types of shear connectors. Due to the flexibility of the shear connectors, sandwich panels assume partial degree of composite action, and the strength is typically lower than that of solid panels. Traditionally, more shear connectors or stiffer shear connector are used to improve the performance of the sandwich panels. However, this is a limit using this method. This study proposes a new method to use confined concrete, since it was reported that compressive strength and effective ultimate compressive strain for confined concrete are much higher than un-confined concrete. In particular, this study will develop an insulated FRP-confined Precast Concrete Sandwich (FPCS) panel, where external FRP plates provide a confining effect to improve the performance of FPCS panels. In addition, the external FRP plates can act as water barrier to protect the concrete and meet other requirements, thereby eliminating additional roofing materials. A comprehensive research program has been conducted to study the effect of wet bond vs. dry bond between the FRP and concrete, and top FRP confining plates vs. top and side FRP confining plates, based on extensive tests on scaled and full-scale FPCS panels. This paper studies the panels with side and top FRP confining plates, and dry bond between the FRP and concrete. Bending tests on scaled and full-scale panels were conducted. It can be concluded that the FPCS panels were comparable to solid panels, which can be used for floor and roof constructions. (C) 2016 Elsevier Ltd. All rights reserved.
机译:传统的隔热混凝土夹芯板由两层混凝土wythes组成,一层泡沫绝缘层隔开,这些wythes通过各种类型的剪切连接器进行连接。由于剪切连接器的柔韧性,夹心板承担了部分复合作用,并且强度通常低于实心板。传统上,更多的剪切连接器或更硬的剪切连接器用于改善夹心板的性能。但是,这是使用此方法的限制。这项研究提出了一种使用承压混凝土的新方法,因为据报道,承压混凝土的抗压强度和有效极限压缩应变远高于未承压混凝土。特别是,本研究将开发一种隔热的FRP密实的预制混凝土夹心板(FPCS),其中外部FRP板可起到限制作用,以改善FPCS板的性能。此外,外部FRP板可以充当防水层,以保护混凝土并满足其他要求,从而消除了其他屋面材料。基于对全尺寸和全尺寸FPCS面板的广泛测试,已进行了一项综合研究计划,以研究FRP与混凝土,顶部FRP密封板与顶部和侧面FRP密封板之间的湿粘结与干粘结的影响。本文研究了带有侧边和顶部FRP约束板的面板,以及FRP与混凝土之间的干粘结。在比例和全尺寸面板上进行了弯曲测试。可以得出结论,FPCS面板与实心面板相当,后者可以用于地板和屋顶结构。 (C)2016 Elsevier Ltd.保留所有权利。

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