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Seismic analysis and design of steel-plate concrete composite shear wall piers

机译:钢板混凝土复合剪力壁墩地震分析与设计

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摘要

This paper presents results of numerical studies on the in-plane monotonic response of steel-plate concrete (SC) composite shear wall piers. Results of finite element analysis of 98 SC wall piers are used to investigate the effects of wall aspect ratio, reinforcement ratio, slenderness ratio, axial load, yield strength of the steel faceplates, and uniaxial compressive strength of concrete on in-plane response, and to formulate (a) predictive equations to establish the trilinear lateral force versus lateral displacement response of SC wall piers up to peak strength, sufficient for seismic analysis of structures including SC wall piers and (b) a mechanics-based design equation for peak flexural strength, which addresses the interaction of co-existing shear and axial force. Design of Experiments is used to select the 98 piers. The baseline finite element model was formally validated using data from reversed cyclic, inelastic in-plane tests of four large-scale SC wall piers. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文介绍了钢板混凝土(SC)复合剪力壁墩面内单调响应的数值研究的结果。 98 SC壁墩的有限元分析结果用于研究墙面纵横比,加固率,细长比,钢板屈服强度,钢面板屈服强度的影响,以及混凝土在面内响应中的单轴抗压强度,以及制定(a)预测方程以建立SC壁桥墩的三轴横向力与峰值强度的横向位移响应,足以用于抗震结构的地震分析,包括SC壁墩和(b)基于机械的设计方程,用于峰值弯曲强度,它解决了共存剪切和轴向力的相互作用。实验设计用于选择98个码头。使用来自四个大型SC壁墩的反向循环,非弹性面内测试的数据正式验证基线有限元模型。 (c)2016 Elsevier有限公司保留所有权利。

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