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Disc spring soft steel energy dissipation and shock absorption device with self-resetting function
The invention provides a disc spring soft steel energy dissipation and shock absorption device with a self-resetting function. The disc spring soft steel energy dissipation and shock absorption devicecomprises a rectangular frame, a loading control piece, a soft steel energy dissipation device and a plurality of recoverable disc spring sets which are arranged in the rectangular frame, distributedon the two sides of the soft steel energy dissipation device and arranged on the loading control piece in a sleeving manner; the soft steel energy dissipation device comprises a connecting end, the connecting end is arranged on the portion, in the rectangular frame, of the loading control piece in a sleeving manner, energy dissipation soft steel is fixed to the upper end and the lower end of theconnecting end respectively, and the energy dissipation soft steel is of a hollow closed structure; and the end, away from the connecting end, of the energy dissipation soft steel is fixedly connectedwith the rectangular frame through a clamping bolt. The disc spring soft steel energy dissipation and shock absorption device comprises a self-resetting system and an energy consumption system, can reduce residual deformation of the structure under the small shock condition, and can improve the comfort of the structure under the action of wind vibration; and the disc spring soft steel energy dissipation and shock absorption device can be used for reinforcing various types of supporting structures and joint positions of existing bridges and frame structures.
本发明提供一种具有自复位功能的碟簧软钢耗能减震装置,包括矩形框架、加载控件、软钢耗能装置和设置在所述矩形框架内并分布在所述软钢耗能装置两侧且套在所述加载控件上的多个可恢复碟簧组;所述软钢耗能装置包括连接端,所述连接端套在所述加载控件在所述矩形框架内的部分上,所述连接端的上下两端分别固定有耗能软钢,所述耗能软钢为一个空芯的闭合结构,所述耗能软钢远离所述连接端的一端与所述矩形框架通过夹紧螺栓固定连接。本发明包含自复位和耗能双重系统,小震条件下可降低结构残余变形并可增加风振作用下结构的舒适度,本发明可用于各种形式的支撑结构,以及已有桥梁、框架结构节点位置的加固。
Disc spring soft steel energy dissipation and shock absorption device with self-resetting function
The invention provides a disc spring soft steel energy dissipation and shock absorption device with a self-resetting function. The disc spring soft steel energy dissipation and shock absorption devicecomprises a rectangular frame, a loading control piece, a soft steel energy dissipation device and a plurality of recoverable disc spring sets which are arranged in the rectangular frame, distributedon the two sides of the soft steel energy dissipation device and arranged on the loading control piece in a sleeving manner; the soft steel energy dissipation device comprises a connecting end, the connecting end is arranged on the portion, in the rectangular frame, of the loading control piece in a sleeving manner, energy dissipation soft steel is fixed to the upper end and the lower end of theconnecting end respectively, and the energy dissipation soft steel is of a hollow closed structure; and the end, away from the connecting end, of the energy dissipation soft steel is fixedly connectedwith the rectangular frame through a clamping bolt. The disc spring soft steel energy dissipation and shock absorption device comprises a self-resetting system and an energy consumption system, can reduce residual deformation of the structure under the small shock condition, and can improve the comfort of the structure under the action of wind vibration; and the disc spring soft steel energy dissipation and shock absorption device can be used for reinforcing various types of supporting structures and joint positions of existing bridges and frame structures.
本发明提供一种具有自复位功能的碟簧软钢耗能减震装置,包括矩形框架、加载控件、软钢耗能装置和设置在所述矩形框架内并分布在所述软钢耗能装置两侧且套在所述加载控件上的多个可恢复碟簧组;所述软钢耗能装置包括连接端,所述连接端套在所述加载控件在所述矩形框架内的部分上,所述连接端的上下两端分别固定有耗能软钢,所述耗能软钢为一个空芯的闭合结构,所述耗能软钢远离所述连接端的一端与所述矩形框架通过夹紧螺栓固定连接。本发明包含自复位和耗能双重系统,小震条件下可降低结构残余变形并可增加风振作用下结构的舒适度,本发明可用于各种形式的支撑结构,以及已有桥梁、框架结构节点位置的加固。
Disc spring soft steel energy dissipation and shock absorption device with self-resetting function
一种具有自复位功能的碟簧软钢耗能减震装置
WANG DEBIN (Autor:in) / FAN GUOXI (Autor:in) / ZHANG HAO (Autor:in) / WANG SHIPENG (Autor:in)
03.11.2020
Patent
Elektronische Ressource
Chinesisch
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