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Compression type double-stage barrel type adjustable friction energy dissipation device used between building layers
The invention discloses a compression type double-stage barrel type adjustable friction energy dissipater 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 dissipation device is fixed in friction force, the structural design requirement is difficult to meet, and the manufacturing cost is high are solved. The device comprises a friction outer sleeve assembly, an inner friction assembly, a front-end elastic energy dissipation assembly, a rear-end elastic energy dissipation assembly and two connecting columns, the two connecting columns are fixedly connected between building layers in a central symmetry mode, and the rear-end elastic energy dissipation assembly and the inner friction assembly are coaxially arranged and slidably connected; the front end elastic energy dissipation assembly is arranged at the front end of the inner friction assembly in a sleeving mode and connected with the inner friction assembly in a sliding mode, the friction outer sleeve assembly is arranged on the outer side of the inner friction assembly in a sleeving mode and connected with the inner friction assembly in a sliding mode, and the front end of the friction outer sleeve assembly is fixedly connected with the front end elastic energy dissipation assembly. The rear end of the friction outer sleeve assembly is fixedly connected with the rear end elastic energy dissipation assembly. The damping device is used for building interlayer damping.
一种用于建筑层间的压缩型双阶段筒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造价成本高昂的问题。本发明包括摩擦外套筒组件、内摩擦组件、前端弹性耗能组件、后端弹性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,后端弹性耗能组件与内摩擦组件同轴设置且与内摩擦组件滑动连接,前端弹性耗能组件套装在内摩擦组件的前端且与内摩擦组件滑动连接,摩擦外套筒组件套装在内摩擦组件的外侧且与内摩擦组件滑动连接,摩擦外套筒组件的前端与前端弹性耗能组件固接,摩擦外套筒组件的后端与后端弹性耗能组件固接。本发明用于建筑层间减震。
Compression type double-stage barrel type adjustable friction energy dissipation device used between building layers
The invention discloses a compression type double-stage barrel type adjustable friction energy dissipater 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 dissipation device is fixed in friction force, the structural design requirement is difficult to meet, and the manufacturing cost is high are solved. The device comprises a friction outer sleeve assembly, an inner friction assembly, a front-end elastic energy dissipation assembly, a rear-end elastic energy dissipation assembly and two connecting columns, the two connecting columns are fixedly connected between building layers in a central symmetry mode, and the rear-end elastic energy dissipation assembly and the inner friction assembly are coaxially arranged and slidably connected; the front end elastic energy dissipation assembly is arranged at the front end of the inner friction assembly in a sleeving mode and connected with the inner friction assembly in a sliding mode, the friction outer sleeve assembly is arranged on the outer side of the inner friction assembly in a sleeving mode and connected with the inner friction assembly in a sliding mode, and the front end of the friction outer sleeve assembly is fixedly connected with the front end elastic energy dissipation assembly. The rear end of the friction outer sleeve assembly is fixedly connected with the rear end elastic energy dissipation assembly. The damping device is used for building interlayer damping.
一种用于建筑层间的压缩型双阶段筒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造价成本高昂的问题。本发明包括摩擦外套筒组件、内摩擦组件、前端弹性耗能组件、后端弹性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,后端弹性耗能组件与内摩擦组件同轴设置且与内摩擦组件滑动连接,前端弹性耗能组件套装在内摩擦组件的前端且与内摩擦组件滑动连接,摩擦外套筒组件套装在内摩擦组件的外侧且与内摩擦组件滑动连接,摩擦外套筒组件的前端与前端弹性耗能组件固接,摩擦外套筒组件的后端与后端弹性耗能组件固接。本发明用于建筑层间减震。
Compression type double-stage barrel type adjustable friction energy dissipation device used between building layers
一种用于建筑层间的压缩型双阶段筒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) / CHEN XIANGZHAO (Autor:in)
15.10.2024
Patent
Elektronische Ressource
Chinesisch
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