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Anti-seismic fabricated building steel structure
The invention belongs to the field of steel structures, and particularly relates to an anti-seismic fabricated building steel structure which comprises a steel plate body, a mounting frame is fixedly welded to one end of the steel plate body, a positioning block is fixedly welded to the other end of the steel plate body, a positioning groove is formed in the mounting frame, and the positioning block is connected into the positioning groove in a clamped mode. A first buffering and damping assembly and a second buffering and damping assembly are mounted in the mounting frame, a storage groove is formed in the positioning block, and a red coating is arranged in the storage groove, so that the problems that although an existing fabricated building steel structure has some anti-seismic functions, the existing fabricated building steel structure can only cope with building vibration in daily life, and the construction quality is poor are solved. Due to the fact that connection between traditional steel structures is mostly rigid connection, when the steel structures encounter an earthquake, the rigid connection between the steel structures is extremely prone to breakage, then a steel structure building collapses, and high-strength shock force generated by the earthquake cannot be evenly dispersed and subjected to high-strength buffering protection work.
本发明公开的属于钢结构领域,具体为一种抗震装配式建筑钢结构,包括钢板本体,所述钢板本体的一端焊接固定有安装框,所述钢板本体的另一端焊接固定有定位块,所述安装框内开设有定位槽,所述定位块卡合连接在定位槽内,所述安装框内安装有第一缓冲减震组件和第二缓冲减震组件,所述定位块内开设有存储槽,所述存储槽内设置有红色涂料,解决了现有的装配式建筑钢结构虽具有一些抗震功能,但只能应对日常生活中的建筑震动,且由于传统钢结构之间的连接大多为刚性连接,因此当其遇到地震时,钢结构之间的刚性连接极易发生断裂,进而导致钢结构建筑坍塌,不能够对地震产生的高强震动力进行均匀分散和高强缓冲防护工作。
Anti-seismic fabricated building steel structure
The invention belongs to the field of steel structures, and particularly relates to an anti-seismic fabricated building steel structure which comprises a steel plate body, a mounting frame is fixedly welded to one end of the steel plate body, a positioning block is fixedly welded to the other end of the steel plate body, a positioning groove is formed in the mounting frame, and the positioning block is connected into the positioning groove in a clamped mode. A first buffering and damping assembly and a second buffering and damping assembly are mounted in the mounting frame, a storage groove is formed in the positioning block, and a red coating is arranged in the storage groove, so that the problems that although an existing fabricated building steel structure has some anti-seismic functions, the existing fabricated building steel structure can only cope with building vibration in daily life, and the construction quality is poor are solved. Due to the fact that connection between traditional steel structures is mostly rigid connection, when the steel structures encounter an earthquake, the rigid connection between the steel structures is extremely prone to breakage, then a steel structure building collapses, and high-strength shock force generated by the earthquake cannot be evenly dispersed and subjected to high-strength buffering protection work.
本发明公开的属于钢结构领域,具体为一种抗震装配式建筑钢结构,包括钢板本体,所述钢板本体的一端焊接固定有安装框,所述钢板本体的另一端焊接固定有定位块,所述安装框内开设有定位槽,所述定位块卡合连接在定位槽内,所述安装框内安装有第一缓冲减震组件和第二缓冲减震组件,所述定位块内开设有存储槽,所述存储槽内设置有红色涂料,解决了现有的装配式建筑钢结构虽具有一些抗震功能,但只能应对日常生活中的建筑震动,且由于传统钢结构之间的连接大多为刚性连接,因此当其遇到地震时,钢结构之间的刚性连接极易发生断裂,进而导致钢结构建筑坍塌,不能够对地震产生的高强震动力进行均匀分散和高强缓冲防护工作。
Anti-seismic fabricated building steel structure
一种抗震装配式建筑钢结构
ZHANG YOUGUI (author)
2022-04-08
Patent
Electronic Resource
Chinese
Fabricated light steel building anti-seismic structure and anti-seismic system
European Patent Office | 2020
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