轴载比下边界单元修改细部的特殊剪力墙抗震性能研究

Young-Soo Chun, Ji-Young Park
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摘要

在本文中,我们提出了实验结果,其目标是影响墙体结构性能的主要变量,以及由此产生的地震和滞后行为。Chun等人(2011)在之前的研究中提出用边界元素细节识别墙体的非线性滞回行为,为基于性能的设计的应用提供了基础。从试验结果来看,无论施加轴向力还是施加高性能钢筋,采用边界元细部的试样的裂纹和断裂模式都表现出相似的趋势。结果表明,根据该标准提出的设计方程,可以较准确地预测试件的最大强度。另外,在轴向力较大的情况下,有初始载荷和最大强度随变形能力减小而增大的趋势,需要考虑高轴向力导致的变形能力减小。对于承受如此大轴力的墙体,采用高性能钢筋是提高变形能力的有效方式。因此,采用高性能钢筋对塑性铰区域进行边界单元加固是可取的。关键词:特种剪力墙,轴向荷载比,高性能钢筋,抗震性能
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Seismic Performance of Special Shear Wall with Modified Details in Boundary Element Depending on Axial Load Ratio
ABSTRACT In this paper, we propose experimental results, which target the major variables that influence the structural performance of a wall, as well as the resulting seismic and hysteretic behavior. Results also provide the basis for the application of performance based design by identifying the nonlinear hysteretic behavior of the wall with boundary element details recently proposed in previous study by Chun et al(2011). From the experimental results, the crack and fracture patterns of a specimen, which adopt the proposed boundary element details, showed similar tendencies regardless of whether axial force or high performance steel bars is applied. Furthermore, results show that the maximum strength of the specimen can be predicted accurately based on the design equation proposed by the standard. In addition, with a higher axial force, there is a tendency that both the initial load and maximum strength increase as deformation capacity reduces, requiring consideration of the reduced deformation capacity due to a high axial force. For walls under such high axial forces, using high performance steel bars is a very effective manner of enhancing deformation capacity. Therefore, reinforcing the plastic hinge region with boundary elements using high performance steel bars is preferable.Key words : Special Shear Wall, Axial Load Ratio, High Performance Steel Bars, Seismic Performance
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