装配式内置预压碟簧U形钢板自复位耗能支撑滞回性能试验研究

Experimental study on hysteresis performance of prefabricated self-centering energy dissipation brace assembled with U-shaped steel plates and pre-compressive disc springs

  • 摘要: 为了满足结构在地震作用下的功能可恢复性,针对纯耗能阻尼器具有较大残余变形的问题,本文发展了一种装配式内置预压碟簧U形钢板自复位耗能支撑(U-SCEB),该支撑由预压组合碟簧自复位系统和U形钢板阻尼器耗能系统并联组成。相较于现有的组合碟簧自复位耗能支撑,U-SCEB具有更好的变形能力且可实现现场完全装配,震后可方便更换损坏的U形板。阐述了U-SCEB的构造与工作机理,并建立了其恢复力模型。通过拟静力往复加载试验研究了组合碟簧的自复位能力和U形钢板的耗能能力,进一步对U-SCEB开展拟静力试验研究其滞回性能。建立了该支撑的实体有限元模型,通过数值模拟探讨了不同设计参数对U-SCEB滞回性能的影响规律。研究结果表明:该自复位耗能支撑的构造简单且自复位机理清晰,可实现现场装配,各部件均可更换,恢复力模型呈双旗帜特征;在循环往复拉压荷载作用下,支撑的破坏主要表现为U形钢板的平直段与弯曲段连接处出现塑性破坏,滞回曲线表现出良好的耗能能力和自复位能力,同时具有较强的变形能力;为了实现支撑优良的自复位能力,组合碟簧的预压力需大于或等于U形钢板的最大承载力。

     

    Abstract: To realize the resilience of structure under earthquake and solve the problem of large residual deformation of energy dissipation dampers, a prefabricated self-centering energy dissipation brace assembled with U-shaped steel plates and pre-compressive disc springs (U-SCEB) has been developed. This innovative brace comprises a pre-compressive disc spring self-centering system and a U-shaped steel plate energy dissipation system, assembled in parallel. Compared to previous self-centering energy dissipation braces with combined disc springs, the U-SCEB has better deformation capacity and can be fully assembled on-site, facilitating the replacement of damaged U-plates after an earthquake. The configuration and working principle of the U-SCEB were described, and its restoring force model was established. The self-centering capability of the combined disc springs and the energy dissipation capability of the U-shaped steel plates were investigated by the quasi-static cyclic loading test, and the hysteretic behavior of the U-SCEB was further studied by the quasi-static loading test. Finally, the finite element model of the brace was established, and the influence of different design parameters on the hysteretic performance of the U-SCEB was analyzed. The results show that the configuration of the brace is simple, and the self-centering principle is clear. The brace can be assembled on-site, and the components are replaceable. The restoring force model of the brace presents a typical flag shape. Under the quasi-static cyclic loading, damage to the brace is mainly manifested as plastic damage at the connection between the flat and bent sections of the U-shaped steel plate, and the hysteresis curve exhibits stable energy dissipation, excellent self-centering ability, and significant deformation capacity. To ensure the excellent self-centering capacity of the brace, the pre-compressive force of the disc springs should be larger than or equal to the peak strength of the U-shaped steel plates.

     

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