A platform for research: civil engineering, architecture and urbanism
Fiber resin restrained shear thickening fluid energy dissipation prefabricated wall
The invention relates to a fiber resin restrained shear thickening fluid energy dissipation prefabricated wall, and belongs to the technical field of structural engineering. Comprising a fiber resin restraint layer, core concrete, a multi-dimensional anti-collision device, a rotating space groove, shear thickening fluid, a rotating energy dissipater, a profile steel rotating shaft and a fiber resin restraint light buckling-restrained brace. The fiber resin restrained shear thickening fluid energy dissipation prefabricated wall is integrally prefabricated by multi-dimensional anti-impact devices on the two sides of the bottom of a wall body, core concrete in the middle of the wall body and a rotary energy dissipater on the top of the wall body. The fiber resin restrained shear thickening fluid energy dissipation prefabricated wall has the beneficial effects and advantages that arrangement of the energy dissipation prefabricated wall can be determined according to the requirements for structural rigidity and strength; steel bars do not need to be arranged in the energy consumption prefabricated wall, low-carbon and energy-saving field assembly type dry connection is achieved, wet operation is reduced, and vibration energy generated when rare earthquakes or wind loads occur is effectively weakened by adopting the combination of the energy consumption prefabricated wall and the light buckling-restrained brace.
本发明涉及一种纤维树脂约束剪切增稠液耗能预制墙,属于结构工程技术领域。包括纤维树脂约束层、核心混凝土、多维抗撞击装置、转动空间槽、剪切增稠液、转动耗能器、型钢转动轴、纤维树脂约束轻质防屈曲支撑;一种纤维树脂约束剪切增稠液耗能预制墙由墙体底部两侧的多维抗撞击装置、墙体中部的核心混凝土、墙体顶部的转动耗能器一体预制而成,本发明的有益效果和优点是可根据结构刚度与强度的需求确定耗能预制墙的布置,耗能预制墙内不需配置钢筋,低碳节能,现场装配式的干式连接,减少湿作业,采用耗能预制墙与轻质防屈曲支撑的组合,有效减弱罕遇地震或风荷载时的震动能量。
Fiber resin restrained shear thickening fluid energy dissipation prefabricated wall
The invention relates to a fiber resin restrained shear thickening fluid energy dissipation prefabricated wall, and belongs to the technical field of structural engineering. Comprising a fiber resin restraint layer, core concrete, a multi-dimensional anti-collision device, a rotating space groove, shear thickening fluid, a rotating energy dissipater, a profile steel rotating shaft and a fiber resin restraint light buckling-restrained brace. The fiber resin restrained shear thickening fluid energy dissipation prefabricated wall is integrally prefabricated by multi-dimensional anti-impact devices on the two sides of the bottom of a wall body, core concrete in the middle of the wall body and a rotary energy dissipater on the top of the wall body. The fiber resin restrained shear thickening fluid energy dissipation prefabricated wall has the beneficial effects and advantages that arrangement of the energy dissipation prefabricated wall can be determined according to the requirements for structural rigidity and strength; steel bars do not need to be arranged in the energy consumption prefabricated wall, low-carbon and energy-saving field assembly type dry connection is achieved, wet operation is reduced, and vibration energy generated when rare earthquakes or wind loads occur is effectively weakened by adopting the combination of the energy consumption prefabricated wall and the light buckling-restrained brace.
本发明涉及一种纤维树脂约束剪切增稠液耗能预制墙,属于结构工程技术领域。包括纤维树脂约束层、核心混凝土、多维抗撞击装置、转动空间槽、剪切增稠液、转动耗能器、型钢转动轴、纤维树脂约束轻质防屈曲支撑;一种纤维树脂约束剪切增稠液耗能预制墙由墙体底部两侧的多维抗撞击装置、墙体中部的核心混凝土、墙体顶部的转动耗能器一体预制而成,本发明的有益效果和优点是可根据结构刚度与强度的需求确定耗能预制墙的布置,耗能预制墙内不需配置钢筋,低碳节能,现场装配式的干式连接,减少湿作业,采用耗能预制墙与轻质防屈曲支撑的组合,有效减弱罕遇地震或风荷载时的震动能量。
Fiber resin restrained shear thickening fluid energy dissipation prefabricated wall
一种纤维树脂约束剪切增稠液耗能预制墙
CHEN XUANYI (author) / LI NING (author) / WANG YE (author)
2024-08-20
Patent
Electronic Resource
Chinese
Energy dissipation type prefabricated shear wall and construction method thereof
European Patent Office | 2021
|Multi-stage energy dissipation buckling-restrained steel plate wall
European Patent Office | 2022
|Structural Seismic Performance of Prefabricated Steel Plate Shear Wall with High Energy Dissipation
Springer Verlag | 2023
|