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Modeling cyclic inelastic in-plane flexural behavior of concrete filled sandwich steel panel walls

机译:夹心混凝土面板墙的循环非弹性面内弯曲行为建模

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摘要

Finite element analysis was first used to replicate the inelastic cyclic test response of previously tested concrete filled steel sandwich panel (CFSSP) walls, to determine the material and contact models best able to capture the wall's initial stiffness, the ultimate wall strength at each cycle, the web plate and HSS local buckling, and the pinching in the hysteresis loops. Results obtained show good agreement with all those aspects of response, while providing insights, guidance, and a validated model that will be of benefit in future studies of CFSSP-Walls. In a second part of this paper, the calibrated finite element model is used to provide insights and generate knowledge on some important aspects of wall behavior that is valuable for the design of CFSSP-Walls. Designers of CFSSP-Walls are typically provided little prescriptive guidance by design specifications and must instead rely, to a large extent, on findings from the recent research literature to ascertain that designs will perform as intended. For this new structural system, such insights into structural behavior are severely lacking. The findings here provide such insights on the distribution of wall-to-footing forces, shear force demands in critical tie bars, cumulative plastic strain value at failure due to low-cycle fatigue, the effect of hoop and shear stresses on uniaxial steel plate yielding, and the effect of interface friction on the force flow within boundary elements. These allow research to verify the adequacy of many of the assumptions used to determine the wall's plastic moment, which is typically considered to be the flexural strength of CFSSP-Walls. (C) 2017 Elsevier Ltd. All rights reserved.
机译:首先使用有限元分析来复制先前测试的混凝土夹心钢板(CFSSP)墙的非弹性循环测试响应,以确定最能捕获墙的初始刚度,每个循环的最终墙强度的材料和接触模型,腹板和HSS局部屈曲,并在磁滞回线中收缩。获得的结果显示出与所有这些响应方面的一致性,同时提供了见识,指导和经过验证的模型,这将对CFSSP-Walls的未来研究有所帮助。在本文的第二部分中,使用经过校准的有限元模型来提供洞察力并生成有关墙行为某些重要方面的知识,这对于CFSSP-Walls的设计非常有价值。 CFSSP-Walls的设计师通常很少获得设计规范的规定性指导,而必须很大程度上依赖于最新研究文献的发现来确定设计将按预期进行。对于这种新的结构系统,严重缺乏对结构行为的这种见识。此处的发现提供了以下方面的见解:壁脚对脚的力分布,关键拉杆中的剪力要求,由于低周疲劳而导致的破坏时的累积塑性应变值,环向和剪应力对单轴钢板屈服的影响,以及界面摩擦对边界单元内力流的影响。这些使研究能够验证用于确定墙的塑性力矩的许多假设的适当性,这些假设通常被认为是CFSSP-Walls的抗弯强度。 (C)2017 Elsevier Ltd.保留所有权利。

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