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External prestress steel strand reinforcing structure and method for grid structure
The invention relates to a grid structure external prestress steel strand reinforcing structure and method, and relates to the technical field of engineering steel frames, and the grid structure external prestress steel strand reinforcing structure comprises a steering supporting rod assembly, a prestress steel strand and a reinforcing support; the steering supporting rod assembly comprises a connecting rod and a steering supporting rod. The connecting rod is connected between the two steering supporting rods; the top ends of the steering supporting rods are connected to the net rack ball joints which are far away from the edge of the net rack structure and located on the lower layer, and the two steering supporting rods are arranged on the adjacent net rack ball joints on the same longitudinal frame. The reinforcing supports are located on the edges of the upper-layer grid structure on the two sides of the steering supporting rod assembly in the transverse direction and arranged on the supporting structure. The two ends of each prestressed steel strand are connected to the reinforcing supports on the two sides respectively, the middle sections of the two prestressed steel strands are connected with the bottom ends of the corresponding steering supporting rods, and the prestressed steel strands support the steering supporting rods and support and reinforce the grid structure through the steering supporting rods. The grid structure can be effectively reinforced, meanwhile, the cost is reduced, and resources are saved.
本申请涉及网架结构体外预应力钢绞线加固结构及方法,其涉及工程钢架技术领域,其包括:转向撑杆组件、预应力钢绞线和加固支座;转向撑杆组件包括连接杆和转向撑杆;连接杆连接在两个转向撑杆之间;转向撑杆的顶端连接在远离网架结构边缘且位于下层的网架球节点上,两个转向撑杆设置在同一个纵架上的相邻网架球节点上;加固支座位于转向撑杆组件横向上的两侧的上层网架结构边缘且设置在支撑结构上;预应力钢绞线的两端部分别连接在两侧的加固支座上,两条预应力钢绞线的中间段与对应的转向撑杆的底端相连接,预应力钢绞线支撑转向撑杆并通过转向撑杆对网架结构形成支撑加固作用。本申请能够在对网架结构形成有效加固的同时减少成本、节约资源。
External prestress steel strand reinforcing structure and method for grid structure
The invention relates to a grid structure external prestress steel strand reinforcing structure and method, and relates to the technical field of engineering steel frames, and the grid structure external prestress steel strand reinforcing structure comprises a steering supporting rod assembly, a prestress steel strand and a reinforcing support; the steering supporting rod assembly comprises a connecting rod and a steering supporting rod. The connecting rod is connected between the two steering supporting rods; the top ends of the steering supporting rods are connected to the net rack ball joints which are far away from the edge of the net rack structure and located on the lower layer, and the two steering supporting rods are arranged on the adjacent net rack ball joints on the same longitudinal frame. The reinforcing supports are located on the edges of the upper-layer grid structure on the two sides of the steering supporting rod assembly in the transverse direction and arranged on the supporting structure. The two ends of each prestressed steel strand are connected to the reinforcing supports on the two sides respectively, the middle sections of the two prestressed steel strands are connected with the bottom ends of the corresponding steering supporting rods, and the prestressed steel strands support the steering supporting rods and support and reinforce the grid structure through the steering supporting rods. The grid structure can be effectively reinforced, meanwhile, the cost is reduced, and resources are saved.
本申请涉及网架结构体外预应力钢绞线加固结构及方法,其涉及工程钢架技术领域,其包括:转向撑杆组件、预应力钢绞线和加固支座;转向撑杆组件包括连接杆和转向撑杆;连接杆连接在两个转向撑杆之间;转向撑杆的顶端连接在远离网架结构边缘且位于下层的网架球节点上,两个转向撑杆设置在同一个纵架上的相邻网架球节点上;加固支座位于转向撑杆组件横向上的两侧的上层网架结构边缘且设置在支撑结构上;预应力钢绞线的两端部分别连接在两侧的加固支座上,两条预应力钢绞线的中间段与对应的转向撑杆的底端相连接,预应力钢绞线支撑转向撑杆并通过转向撑杆对网架结构形成支撑加固作用。本申请能够在对网架结构形成有效加固的同时减少成本、节约资源。
External prestress steel strand reinforcing structure and method for grid structure
网架结构体外预应力钢绞线加固结构及方法
HU LIANGLIANG (Autor:in) / ZHAO QIMING (Autor:in) / LONG YONG (Autor:in) / HUANG CHUNLIN (Autor:in) / WANG RUIKOU (Autor:in) / ZHU LIQIANG (Autor:in) / YE LANGLANG (Autor:in) / ZENG LIANG (Autor:in) / WU XUEFENG (Autor:in) / WEI JUNCHAO (Autor:in)
13.02.2024
Patent
Elektronische Ressource
Chinesisch
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