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Hybrid RC-steel members under bending and shear: Experimental investigation and design model

机译:钢筋混凝土受弯剪组合构件的试验研究与设计模型

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摘要

This paper presents an experimental campaign and a design method for concrete-steel hybrid walls with several embedded steel profiles. In the first part of the paper, an extensive experimental investigation on the static behavior of hybrid walls subjected to combined shear and bending is presented. Six full-scale hybrid walls with different types of the structural steel-concrete connection and reinforcement detailing were tested. The experimental results indicated that the load bearing capacity of the hybrid specimens considerably grows, as a result of the encased steel profiles. It was found that specimens with shear connectors (i.e. headed studs, stiffeners) are more ductile in terms of displacement ductility than the ones without connectors. Next, a design model for hybrid elements (walls and columns) subjected to combined axial force, bending and shear is proposed. This model is based principally on the design rules of Eurocode 2 and Eurocode 4. Particular attention is paid to longitudinal and transversal shear resistances. A strut-and-tie model is developed to evaluate the transverse shear resistance taking into account the contribution of the steel profiles. Furthermore, an analytical method is proposed for the prediction of the longitudinal shear stress at the concrete-steel profile interface which allows to design adequate shear connection between the steel profile and concrete. Finally, to assess the validity of the developed design model a comparison between the experimental results and design predictions is presented.
机译:本文提出了一种具有几种嵌入式钢型材的混凝土-钢混合墙的实验方案和设计方法。在本文的第一部分中,对混合剪力和弯曲共同作用的混合墙的静态行为进行了广泛的实验研究。测试了六种具有不同类型的钢-混凝土连接和钢筋细节的全尺寸混合墙。实验结果表明,由于包裹了钢型材,混合试样的承载能力大大提高。发现具有剪切连接器(即带头螺柱,加劲肋)的试样在位移延展性方面比没有连接器的标本更具延展性。接下来,提出了一种在轴向力,弯曲力和剪切力共同作用下的混合单元(墙和柱)的设计模型。该模型主要基于欧洲规范2和欧洲规范4的设计规则。特别注意纵向和横向抗剪强度。考虑到钢型材的影响,开发了一种拉杆-拉杆模型来评估横向抗剪强度。此外,提出了一种预测混凝土-钢型材界面处的纵向剪应力的分析方法,该方法允许在钢型材和混凝土之间设计足够的剪力连接。最后,为了评估开发的设计模型的有效性,提出了实验结果与设计预测之间的比较。

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