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Analytical procedure for the design of PFRP-RC hybrid beams including shear interaction effects

机译:PFRP-RC混合梁设计的分析程序,包括剪力相互作用效应

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摘要

Hybrid beams made of pultruded fiber-reinforced polymer (PFRP) shapes connected to reinforced concrete (RC) slabs are regarded as novel cost-effective and structurally-efficient elements. The current study addresses the need for a robust analytical procedure for the design of such members considering the structural implications of shear interaction effects. The discussed analytical procedure is based on the Timoshenko beam theory and on the elastic interlayer slip model extended from steel-concrete and timber-concrete composite beams, and presents the necessary mathematical tools for evaluating deflections, flexural capacities and stress distributions of hybrid beams. Partial interaction effects are quantified by using a proposed dimensionless parameter that depends mainly on the connection's stiffness. The analytical equations were validated successfully against available experimental data and conclusions indicate that the simplified model for partial interaction is viable and should be used even for specimens with full interlayer shear capacity. (C) 2015 Elsevier Ltd. All rights reserved.
机译:由拉挤纤维增强聚合物(PFRP)形状制成的混合梁连接到钢筋混凝土(RC)板被认为是新型的经济高效且结构高效的构件。当前的研究满足了考虑剪力相互作用效应的结构影响,需要一种可靠的分析程序来设计此类构件。讨论的分析程序基于Timoshenko梁理论和基于钢-混凝土和木-混凝土组合梁的弹性层间滑移模型,并提供了评估混合梁的挠度,挠曲能力和应力分布的必要数学工具。通过使用提议的无量纲参数来量化部分交互作用,该参数主要取决于连接的刚度。相对于现有的实验数据,已成功验证了解析方程,结论表明,简化的局部相互作用模型是可行的,甚至应用于具有完全层间剪切能力的标本。 (C)2015 Elsevier Ltd.保留所有权利。

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