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Extrusion type wave cylinder adjustable friction energy dissipation device used between building layers
The invention discloses an extrusion type wave cylinder 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 dissipater is fixed in friction force, the structural design requirement is difficult to meet, and due to structural deformation of the energy dissipater, the working capacity of the energy dissipater is lost are solved. The energy-dissipation and energy-dissipation device comprises an outer friction assembly, an inner friction assembly, an outer adjusting cover plate assembly, a front connecting plate, a rear connecting plate, two connecting columns and a plurality of middle extrusion energy-dissipation assemblies, the outer adjusting cover plate assembly is arranged on the outer side of the outer friction assembly in a sleeving mode, and the inner friction assembly is inserted into the outer friction assembly; the outer side face of the inner friction assembly and the inner side face of the outer friction assembly are both wavy curved surfaces, the wavy curved surfaces of the inner friction assembly and the wavy curved surfaces of the outer friction assembly are arranged in a staggered mode and can relatively slide in the length direction, and a plurality of middle extrusion energy dissipation assemblies are evenly distributed between the outer adjusting cover plate assembly and the outer friction assembly. The damping device is used for building interlayer damping.
一种用于建筑层间的挤压型波浪筒可调节摩擦消能器,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由于消能器结构变形导致其丧失工作能力的问题。本发明包括外摩擦组件、内摩擦组件、外调节盖板组件、前连接板、后连接板、两个连接柱和多个中间挤压耗能组件,外调节盖板组件套装在外摩擦组件的外侧,内摩擦组件插装在外摩擦组件内,内摩擦组件的外侧面和外摩擦组件的内侧面均为波浪状曲面,内摩擦组件的波浪状曲面与外摩擦组件的波浪状曲面交错设置且可沿长度方向上相对滑动,外调节盖板组件与外摩擦组件之间均布设有多个中间挤压耗能组件。本发明用于建筑层间减震。
Extrusion type wave cylinder adjustable friction energy dissipation device used between building layers
The invention discloses an extrusion type wave cylinder 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 dissipater is fixed in friction force, the structural design requirement is difficult to meet, and due to structural deformation of the energy dissipater, the working capacity of the energy dissipater is lost are solved. The energy-dissipation and energy-dissipation device comprises an outer friction assembly, an inner friction assembly, an outer adjusting cover plate assembly, a front connecting plate, a rear connecting plate, two connecting columns and a plurality of middle extrusion energy-dissipation assemblies, the outer adjusting cover plate assembly is arranged on the outer side of the outer friction assembly in a sleeving mode, and the inner friction assembly is inserted into the outer friction assembly; the outer side face of the inner friction assembly and the inner side face of the outer friction assembly are both wavy curved surfaces, the wavy curved surfaces of the inner friction assembly and the wavy curved surfaces of the outer friction assembly are arranged in a staggered mode and can relatively slide in the length direction, and a plurality of middle extrusion energy dissipation assemblies are evenly distributed between the outer adjusting cover plate assembly and the outer friction assembly. The damping device is used for building interlayer damping.
一种用于建筑层间的挤压型波浪筒可调节摩擦消能器,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由于消能器结构变形导致其丧失工作能力的问题。本发明包括外摩擦组件、内摩擦组件、外调节盖板组件、前连接板、后连接板、两个连接柱和多个中间挤压耗能组件,外调节盖板组件套装在外摩擦组件的外侧,内摩擦组件插装在外摩擦组件内,内摩擦组件的外侧面和外摩擦组件的内侧面均为波浪状曲面,内摩擦组件的波浪状曲面与外摩擦组件的波浪状曲面交错设置且可沿长度方向上相对滑动,外调节盖板组件与外摩擦组件之间均布设有多个中间挤压耗能组件。本发明用于建筑层间减震。
Extrusion type wave cylinder adjustable friction energy dissipation device used between building layers
一种用于建筑层间的挤压型波浪筒可调节摩擦消能器
SUN BAITAO (author) / SUN MENGHAN (author) / YANG MIAOMIAO (author) / JIANG XIN (author) / DU BEI (author) / CHEN HONGFU (author)
2024-11-15
Patent
Electronic Resource
Chinese
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