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Stretching type double-stage cross-shaped adjustable friction energy dissipation device used between building layers
The invention discloses a stretching type double-stage cross-shaped adjustable friction energy dissipation device used between building layers, and relates to the technical field of building energy dissipation and shock absorption. The problems that an existing friction type energy dissipater is fixed in friction force, the structural design requirement is difficult to meet, and an internal friction plate is prone to dislocation and clamping are solved. The energy dissipation device comprises an outer friction assembly, an inner friction assembly, a front end stretching energy dissipation assembly, a rear end stretching energy dissipation assembly and two connecting columns, the two connecting columns are fixedly connected between building layers in a central symmetry mode, the inner friction assembly is horizontally hinged to one connecting column, and the outer friction assembly is horizontally hinged to the other connecting column; the outer friction assembly is arranged on the outer side of the inner friction assembly and is in sliding connection with the inner friction assembly, the front end stretching energy dissipation assembly is fixedly connected to the front end of the outer friction assembly and is in sliding connection with the inner friction assembly, and the rear end stretching energy dissipation assembly is fixedly connected to the rear end of the inner friction assembly and is in sliding connection with the outer friction assembly. The damping device is used for building interlayer damping.
用于建筑层间的拉伸型双阶段十字式可调节摩擦消能器,它涉及建筑消能减震技术领域。本发明为解决现有摩擦型消能器摩擦力固定,较难满足结构设计需求且内部摩擦片易发生错位卡死的问题。本发明包括外摩擦组件、内摩擦组件、前端拉伸耗能组件、后端拉伸耗能组件和两个连接柱,两个连接柱呈中心对称固接在建筑层间,内摩擦组件水平铰接在一个连接柱上,外摩擦组件水平铰接在另一个连接柱上,外摩擦组件设置在内摩擦组件的外侧且与内摩擦组件滑动连接,前端拉伸耗能组件固接在外摩擦组件的前端且与内摩擦组件滑动连接,后端拉伸耗能组件固接在内摩擦组件的后端且与外摩擦组件滑动连接。本发明用于建筑层间减震。
Stretching type double-stage cross-shaped adjustable friction energy dissipation device used between building layers
The invention discloses a stretching type double-stage cross-shaped adjustable friction energy dissipation device used between building layers, and relates to the technical field of building energy dissipation and shock absorption. The problems that an existing friction type energy dissipater is fixed in friction force, the structural design requirement is difficult to meet, and an internal friction plate is prone to dislocation and clamping are solved. The energy dissipation device comprises an outer friction assembly, an inner friction assembly, a front end stretching energy dissipation assembly, a rear end stretching energy dissipation assembly and two connecting columns, the two connecting columns are fixedly connected between building layers in a central symmetry mode, the inner friction assembly is horizontally hinged to one connecting column, and the outer friction assembly is horizontally hinged to the other connecting column; the outer friction assembly is arranged on the outer side of the inner friction assembly and is in sliding connection with the inner friction assembly, the front end stretching energy dissipation assembly is fixedly connected to the front end of the outer friction assembly and is in sliding connection with the inner friction assembly, and the rear end stretching energy dissipation assembly is fixedly connected to the rear end of the inner friction assembly and is in sliding connection with the outer friction assembly. The damping device is used for building interlayer damping.
用于建筑层间的拉伸型双阶段十字式可调节摩擦消能器,它涉及建筑消能减震技术领域。本发明为解决现有摩擦型消能器摩擦力固定,较难满足结构设计需求且内部摩擦片易发生错位卡死的问题。本发明包括外摩擦组件、内摩擦组件、前端拉伸耗能组件、后端拉伸耗能组件和两个连接柱,两个连接柱呈中心对称固接在建筑层间,内摩擦组件水平铰接在一个连接柱上,外摩擦组件水平铰接在另一个连接柱上,外摩擦组件设置在内摩擦组件的外侧且与内摩擦组件滑动连接,前端拉伸耗能组件固接在外摩擦组件的前端且与内摩擦组件滑动连接,后端拉伸耗能组件固接在内摩擦组件的后端且与外摩擦组件滑动连接。本发明用于建筑层间减震。
Stretching type double-stage cross-shaped adjustable friction energy dissipation device used between building layers
用于建筑层间的拉伸型双阶段十字式可调节摩擦消能器
SUN BAITAO (Autor:in) / SUN MENGHAN (Autor:in) / YANG MIAOMIAO (Autor:in) / JIANG XIN (Autor:in) / DU BEI (Autor:in) / ZHANG GUIXIN (Autor:in)
05.11.2024
Patent
Elektronische Ressource
Chinesisch
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