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Theoretical and experimental study on seismic performance of T-section metallic damper

机译:T型截面金属阻尼器抗震性能的理论与实验研究

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? 2023The poor stiffness and strength of traditional U-shaped dampers is an issue that is addressed in the present work by the development of a new form of T-section metallic damper, termed as the TSMD. Theoretical and experimental studies are carried out to evaluate the seismic performances of TSMD. Based on the principle of virtual work and Castigliano's second theorem, theoretical formulas of yield strength and initial stiffness of TSMD are derived and verified. Stiffness, strength and energy dissipation capacity of TSMD are significantly higher than those of the U-shaped damper with the same size of flange. A finite element model which can capture the cyclic responses and fracture failures of TSMD is established. Based on the numerical simulation and parametric study, the effects of geometrical dimensions and material properties on the seismic performances of TSMD are quantified. The mechanical characteristics of the damper are significantly affected by the web width, height, flange width, and thickness of the T-section of TSMD. Shape memory alloy-made TSMD shows stronger strength hardening and fracture resistance capacities than traditional steel-made TSMD and decreases damper residual displacement after cyclic loading. This study aims to provide valuable insights into the behavior and potential applications of the TSMD.
机译:?2023传统U型阻尼器的刚度和强度差是本工作通过开发一种新型T型截面金属阻尼器(称为TSMD)来解决的问题。开展理论和实验研究,评价了TSMD的抗震性能。基于虚功原理和卡斯蒂利亚诺第二定理,推导并验证了TSMD屈服强度和初始刚度的理论公式。TSMD的刚度、强度和耗能能力明显高于相同法兰尺寸的U型阻尼器。建立了能够捕捉TSMD循环响应和断裂破坏的有限元模型。在数值模拟和参数化研究的基础上,量化了几何尺寸和材料性能对TSMD抗震性能的影响。阻尼器的力学特性受TSMDT型截面的腹板宽度、高度、法兰宽度和厚度的显著影响。形状记忆合金制成的TSMD比传统的钢制TSMD具有更强的强度、硬化和抗断裂能力,并减少了循环加载后的阻尼器残余位移。本研究旨在为TSMD的行为和潜在应用提供有价值的见解。

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