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Structural behaviour of steel-concrete-steel sandwich composite wall subjected to compression and end moment

机译:钢-混凝土-钢夹芯复合墙在受压和弯矩作用下的结构特性

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Steel-concrete-steel (SCS) sandwich wall infilled with ultra-lightweight cement composite has been developed and proposed for applications in offshore and building constructions. A new form of j-hook connector is introduced to connect the external plates to improve the composite action between the steel face plates and cement composite core to form an integrated unit which is capable of resisting extreme loads. This research experimentally investigates the structural behaviour of SCS sandwich composite wall based on a series of combined compression and uniaxial bending tests on short SCS sandwich composite wall with interlocking J-hook connectors. From the tests, it is found that the SCS sandwich wall exhibits good ductility behaviour with a bending failure mode. Nonlinear finite element (FE) model is also developed to simulate the mechanical behaviour of sandwich wall in terms of ultimate strength and loaddeflection curves. Analytical studies show that the N-M interaction model based on Eurocode 4 may over-predict the combined resistance of the SCS sandwich walls subjected to eccentric compression. Therefore, a new approach is proposed to evaluate the resistance of sandwich wall. The axial force versus moment capacity interaction diagrams of sandwich wall are calculated. The validation against the test and FE results shows a reasonable and conservative estimation on the combined resistance of SCS sandwich wall. (C) 2015 Elsevier Ltd. All rights reserved.
机译:已经开发出了填充超轻水泥复合材料的钢-混凝土-钢(SCS)夹心墙,并已提议将其用于海上和建筑施工。引入了一种新形式的J型钩连接器来连接外部板,以改善钢面板和水泥复合芯之间的复合作用,从而形成能够抵抗极端载荷的集成单元。本研究通过一系列带互锁J型钩连接器的短SCS夹心复合墙组合压缩和单轴弯曲试验,对SCS夹心复合墙的结构性能进行了实验研究。从测试中发现,SCS夹心墙在弯曲破坏模式下表现出良好的延展性。还开发了非线性有限元(FE)模型,以根据极限强度和载荷挠度曲线模拟夹心墙的力学行为。分析研究表明,基于Eurocode 4的N-M相互作用模型可能会过度预测承受偏心压缩的SCS夹心墙的组合阻力。因此,提出了一种新的方法来评估夹层墙的抗力。计算了夹心墙的轴向力与弯矩承载力相互作用图。对测试和有限元结果的验证表明,对SCS夹心墙的组合阻力进行了合理而保守的估计。 (C)2015 Elsevier Ltd.保留所有权利。

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