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Mechanics of a variable damping self-centering brace: Seismic performance and failure modes

机译:可变阻尼自定心支架的力学:地震性能和失效模式

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摘要

The force-deformation behavior, strain distribution and failure modes of a variable damping self-centering brace (VD-SCB) are theoretically analyzed, experimentally studied, and numerically simulated to guide its design. The working principle of the brace is explained by describing the working stages and the key feature points of the hysteretic curve. A large-scale brace specimen was tested under different sinusoidal excitations to analyze the recentering capability and energy dissipation. Results demonstrate that the VD-SCB exhibits a full quasi-flag-shaped hysteretic response, high ultimate bearing capacity, low activation force and residual deformation, and excellent recentering and energy dissipation capabilities. Calculation equations of the strain distribution in different parts of the brace are proposed and are compared with the experimental data and simulated results. The developments of two failure modes are compared. Under normal circumstances, the brace fails due to the yielding of the spring blocking plates, which are easily replaced to restore the normal operating conditions of the brace. A brief description of the design procedure of the brace is proposed for application.
机译:在理论上分析,实验研究和数值模拟,从理论上分析了可变阻尼自定心支架(VD-SCB)的力变形行为,应变分布和故障模式以引导其设计。通过描述滞后曲线的工作阶段和关键特征点来解释支架的工作原理。在不同的正弦激励下测试大规模的支撑样本,以分析确定的能力和能量耗散。结果表明,VD-SCB表现出全旗形滞后响应,高终极承载力,低激活力和剩余变形,以及优异的整理和能量耗散能力。提出了支架不同部分中应变分布的计算方程,并与实验数据和模拟结果进行比较。比较了两个故障模式的发展。在正常情况下,由于弹簧阻挡板的屈服,支架失败,这很容易被更换以恢复支架的正常操作条件。提出了一种简要说明括号的应用。

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