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Strip model for steel plate shear walls with beam-connected web plates

机译:带梁连接腹板的钢板剪力墙的条形模型

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摘要

Steel plate shear walls comprise web plates connected to beams and columns, also referred to as vertical and horizontal boundary elements, respectively. When loaded laterally, web plates induce high flexural and axial demands in the columns due to the development of an inclined tension field. An alternative lateral force-resisting system is proposed in which the steel plate shear wall web plates are attached only to the beams to avoid high flexural demands in the columns resulting from the inclined tension. In this study, beam-connected web plate behavior is characterized using validated finite element models, a simplified strip model is proposed to simulate hysteretic web plate behavior, and equations for the inclination angle of the partial tension field and compressive strength of strips are presented. A comparison between the finite element model, the current strip model from the literature, and the new proposed strip model is provided. Results indicate that the proposed model successfully estimates beam and column demands, base shear capacity, and energy dissipation capacity of the beam-connected web plate for a wide range of web plate aspect ratios and height-to-thickness ratios. (C) 2017 Elsevier Ltd. All rights reserved.
机译:钢板剪力墙包括连接到梁和柱的腹板,分别也称为垂直和水平边界单元。当侧向加载时,由于倾斜张力场的发展,腹板会在立柱中引起较高的弯曲和轴向需求。提出了另一种抗侧向力的系统,其中,将钢板剪力墙腹板仅附接到梁上,以避免由于倾斜张力而导致柱中的高挠曲需求。在这项研究中,使用经过验证的有限元模型对梁连接腹板的行为进行了表征,提出了一种简化的带状模型来模拟滞后腹板的行为,并给出了部分张力场的倾角和带的抗压强度的方程。提供了有限元模型,现有文献中的带状模型与新提出的带状模型之间的比较。结果表明,对于宽范围的腹板宽高比和高厚比,该模型成功地估计了梁连接的腹板的梁和柱需求,基础抗剪承载力和能量耗散能力。 (C)2017 Elsevier Ltd.保留所有权利。

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