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Analytical Modelling of Jointed Precast Concrete Beam-to-Column Connections with Different Damping Systems

机译:不同阻尼系统的节理预制预制梁到柱连接的分析模型

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摘要

Jointed precast concrete systems typically have low inherent damping and are thus particularly suitable for applying supplemental damping systems. Analytical modelling is utilised to characterise jointed beam-to-column rocking connections, using a rate-dependent tri-linear compound version of the well-known Menegotto-Pinto rule. The analytical model is verified against near full-scale experimental results. The beam-column connections are constructed utilising Damage Avoidance Design (DAD) principles with unbonded post-tensioned tendons. High force-to-volume extrusion-based energy dissipaters are externally fitted to provide supplemental energy dissipation and modify joint hysteretic performance. Multiple joint configurations are analysed, with supplemental damping systems modified to investigate the effect of damping forces on joint hysteresis. Particular attention is given to the re-centring limit. Good agreement between the analytical models and experimental results is demonstrated, with discussion of possible improvements. Overall, system damping behaviour is significantly improved by adding the extrusion based damping system.
机译:联合预制混凝土系统通常具有较低的固有阻尼,因此特别适合于应用补充阻尼系统。分析模型被用来表征梁到柱的节理连接,使用了著名的Menegotto-Pinto规则的速率相关的三线性复合形式。该分析模型针对近乎完整的实验结果进行了验证。梁柱连接采用避免损伤设计(DAD)原理和无粘结的后张预应力筋构造而成。外部安装了高推力体积挤压型消能器,以提供补充性消能并改变接头的滞后性能。分析了多个接头的配置,并修改了辅助阻尼系统以研究阻尼力对接头滞后的影响。特别注意重心限制。演示了分析模型与实验结果之间的良好一致性,并讨论了可能的改进。总体而言,通过添加基于挤压的阻尼系统,系统阻尼性能得到了显着改善。

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