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Seismic performance of beam to column connections with T-shaped slit dampers

机译:梁与T形狭缝阻尼器柱连接的地震性能

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In this paper, a new steel yielding damper in the beam-to-column connections relying on the combination of slit damper and T-stub called T-SSD is proposed, with an aim to increase energy dissipation capacity and stiffness as well as to reduce seismic damage on the structure. Different patterns of connections are considered in the analysis. Nonlinear finite element method is employed to deal with realistic modeling of the specimens and to capture all the main seismic behavioral aspects including the strength, the stiffness, the energy dissipation, ductility, von-Mises stress and equivalent plastic strain distributions of models. A parametric study on the geometry of slit dampers is also performed to determine the best geometrical configurations in terms of mechanical performance. According to the results, the models with T-SSD systems possess satisfactory hysteretic performances. Yielding and local buckling of the T-SSDs under seismic events serve as the primary source of energy dissipation, while the other structural components remain essentially elastic. Strength and energy dissipation capacities were essentially improved by changing the slits configuration. The T-SSD connections can supply the highest initial stiffness, bearing capacity, ductility, and energy dissipation increases by 63%, 94%, 80%, and 35%, respectively, with respect to the T-stub connection. The presence of shear tab in connections could typically result in increased initial stiffness by as much as 25% in comparison with counterpart without shear tab. Theoretical equations estimate the initial stiffness and bearing capacity of the connections 15% more than and 50% less than those of the numerical results, respectively.
机译:在本文中,提出了一种依赖于狭窄的狭缝阻尼器和T-SSD的T-STUB组合的横柱连接中的新型钢的屈服阻尼器,旨在提高能量耗散能力和刚度以及减少结构损坏。在分析中考虑了不同的连接模式。非线性有限元方法用于处理标本的现实建模,并捕获包括强度,刚度,能量耗散,延展性,vonmmes应激和模型等同塑性应变分布的所有主要地震行为方面。还执行关于狭缝阻尼器几何形状的参数研究,以确定机械性能方面的最佳几何配置。根据结果​​,具有T-SSD系统的模型具有令人满意的滞后性能。在地震事件下的T-SSD屈服和局部屈曲用作耗能的主要来源,而其他结构部件仍然是弹性的。通过改变狭缝配置,基本上改善了强度和能量耗散能力。 T-SSD连接可提供最高的初始刚度,承载力,延展性和能量耗散,分别相对于T-Stub连接分别增加63%,94%,80%和35%。与没有剪切片的对应物相比,连接中的剪切片的存在通常会导致初始刚度增加多达25%。理论方程分别估计连接的初始刚度和承载能力分别超过数值结果的15%少于50%。

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