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High-altitude steel structure corridor splicing structure
The invention discloses a high-altitude steel structure corridor splicing structure which comprises a first telescopic frame, a second telescopic frame and a connecting rod. The first telescopic frame and the second telescopic frame are arranged, and upper supporting steel and lower supporting steel of the first telescopic frame and the second telescopic frame are connected through a connecting rod assembly. By arranging a vertical supporting rod assembly and a limiting transverse rod, limiting blocks are arranged at the front end of the limiting transverse rod, the two limiting blocks are attached to the left side and the right side of the vertical supporting rod assembly, and movement of the limiting transverse rod is limited through the vertical supporting rod assembly; and then movement of the connecting rod assemblies is limited, the supporting and stabilizing effect between the upper supporting steel and the lower supporting steel is improved, the effect of improving the stability of the corridor splicing structure is achieved, mounting is convenient, the distance between the upper supporting steel and the lower supporting steel is adjusted by replacing the vertical supporting rod assemblies of different lengths, and the practicability is high. And the application range of the corridor splicing structure is widened.
本发明公开了一种高空钢结构连廊拼装结构,包括第一伸缩架、第二伸缩架和连接杆通过设置了第一伸缩架和第二伸缩架,第一伸缩架和第二伸缩架的上支撑钢和下支撑钢之间通过连杆组件进行连接,使上支撑钢和下支撑钢之间可进行收缩,通过设置了竖向支撑杆组件和限位横杆,限位横杆的前端设置有限位块,两个限位块与竖向支撑杆组件的左右两侧进行贴合,通过竖向支撑杆组件对限位横杆的移动进行限制,进而对连杆组件的移动进行限制,增加对上支撑钢和下支撑钢之间的支撑稳固效果,达到增加连廊拼装结构稳固效果,且安装方便,通过更换不同长度的竖向支撑杆组件,对上支撑钢和下支撑钢的间距进行调节,增加该连廊拼装结构的适用范围。
High-altitude steel structure corridor splicing structure
The invention discloses a high-altitude steel structure corridor splicing structure which comprises a first telescopic frame, a second telescopic frame and a connecting rod. The first telescopic frame and the second telescopic frame are arranged, and upper supporting steel and lower supporting steel of the first telescopic frame and the second telescopic frame are connected through a connecting rod assembly. By arranging a vertical supporting rod assembly and a limiting transverse rod, limiting blocks are arranged at the front end of the limiting transverse rod, the two limiting blocks are attached to the left side and the right side of the vertical supporting rod assembly, and movement of the limiting transverse rod is limited through the vertical supporting rod assembly; and then movement of the connecting rod assemblies is limited, the supporting and stabilizing effect between the upper supporting steel and the lower supporting steel is improved, the effect of improving the stability of the corridor splicing structure is achieved, mounting is convenient, the distance between the upper supporting steel and the lower supporting steel is adjusted by replacing the vertical supporting rod assemblies of different lengths, and the practicability is high. And the application range of the corridor splicing structure is widened.
本发明公开了一种高空钢结构连廊拼装结构,包括第一伸缩架、第二伸缩架和连接杆通过设置了第一伸缩架和第二伸缩架,第一伸缩架和第二伸缩架的上支撑钢和下支撑钢之间通过连杆组件进行连接,使上支撑钢和下支撑钢之间可进行收缩,通过设置了竖向支撑杆组件和限位横杆,限位横杆的前端设置有限位块,两个限位块与竖向支撑杆组件的左右两侧进行贴合,通过竖向支撑杆组件对限位横杆的移动进行限制,进而对连杆组件的移动进行限制,增加对上支撑钢和下支撑钢之间的支撑稳固效果,达到增加连廊拼装结构稳固效果,且安装方便,通过更换不同长度的竖向支撑杆组件,对上支撑钢和下支撑钢的间距进行调节,增加该连廊拼装结构的适用范围。
High-altitude steel structure corridor splicing structure
一种高空钢结构连廊拼装结构
WANG CHUANJIANG (author) / YANG JING (author) / MA YUPENG (author) / LIU YANG (author)
2024-10-08
Patent
Electronic Resource
Chinese
IPC:
E04B
Allgemeine Baukonstruktionen
,
GENERAL BUILDING CONSTRUCTIONS
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