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Experimental tests and analytical model of concrete-GFRP hybrid beams under flexure

机译:GFRP混凝土组合梁受弯试验及分析模型

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Recently, the use of GFRP pultruded profiles increased in the structures domain especially in the construction of sandwiched slabs and footbridges. However under heavy loads, the risk of using these profiles increases due to their high deformability and instability as a result of their weak stiffness and orthotropic nature. A solution proposes the assembly of these profiles with concrete slabs to create stiffer hybrid elements. The connection of these two elements is established either by steel studs ( bolting) or bonding technique. These two techniques have their advantages and disadvantages regarding the mechanical behavior and in-situ implementation. This paper presents experimental results of interface characterization and bending behavior of six hybrid beams, designed and constructed using both connection techniques. Analytical methods are also developed to analyze the behavior of these structures. Comparisons between theory and measurements show acceptable differences mainly due to the sensitivity of the GFRP moduli and the non- linearity of concrete elements. (C) 2017 Elsevier Ltd. All rights reserved.
机译:最近,在结构领域,尤其是在夹层板和人行天桥的建造中,GFRP拉挤型材的使用有所增加。但是,在重载下,由于其刚度和正交性较弱而具有较高的可变形性和不稳定性,因此使用这些型材的风险会增加。一种解决方案是将这些型材与混凝土板组装在一起,以创建更坚固的混合元件。通过钢螺柱(螺栓连接)或粘合技术可以建立这两个元素的连接。这两种技术在机械性能和原位实现方面各有利弊。本文介绍了使用两种连接技术设计和构造的六个混合梁的界面表征和弯曲行为的实验结果。还开发了分析方法来分析这些结构的行为。理论和测量结果之间的比较表明,可接受的差异主要是由于GFRP模量的敏感性和混凝土元素的非线性所致。 (C)2017 Elsevier Ltd.保留所有权利。

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