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Power transmission tower reinforcing device and method based on angle steel reinforcing energy consumption
The invention provides a power transmission tower reinforcing device and method based on angle steel reinforcing energy consumption. The power transmission tower reinforcing device comprises a first clamp, a second clamp, a device positioning rod and reinforcing angle steel, wherein the first clamp and the second clamp are symmetrically arranged at two ends of the device positioning rod; each group of the first clamp and the second clamp at two ends of the device positioning rod are used for clamping two right-angle sides of the reinforcing angle steel and the main material to be reinforced; and the inner side of the reinforcing angle steel and the inner side of the to-be-reinforced main material are oppositely arranged. According to the method, raw materials of the power transmission tower do not need to be punched on site, and a problem that when the to-be-reinforced power transmission tower is located in a remote place, construction difficulty is large due to the fact that it is difficult to obtain construction electricity is effectively solved; meanwhile, an original stress component does not need to be temporarily disassembled, and a problem that after complex stress redistribution is generated in a local area, the power transmission tower is in a dangerous state in the reinforcing process is solved.
本公开提出了一种基于角钢补强耗能的输电塔加固装置及方法,包括第一夹具、第二夹具、装置定位杆和加固角钢;所述装置定位杆两端对称的设置有所述第一夹具和所述第二夹具;所述装置定位杆两端的每组所述第一夹具和所述第二夹具,用于夹持所述加固角钢和待加固主材的两个直角边;所述加固角钢的内侧和所述待加固主材的内侧相对设置;本公开无需现场对输电塔的原材料打孔,有效避免了待加固的输电塔位于地处偏远时,因施工用电的获取存在很大的困难,而导致的施工难度较大的问题;同时,本公开无需对原有的受力构件进行临时拆卸,避免局部区域产生复杂的应力重分布后,导致输电铁塔在加固过程中处于危险状态的问题。
Power transmission tower reinforcing device and method based on angle steel reinforcing energy consumption
The invention provides a power transmission tower reinforcing device and method based on angle steel reinforcing energy consumption. The power transmission tower reinforcing device comprises a first clamp, a second clamp, a device positioning rod and reinforcing angle steel, wherein the first clamp and the second clamp are symmetrically arranged at two ends of the device positioning rod; each group of the first clamp and the second clamp at two ends of the device positioning rod are used for clamping two right-angle sides of the reinforcing angle steel and the main material to be reinforced; and the inner side of the reinforcing angle steel and the inner side of the to-be-reinforced main material are oppositely arranged. According to the method, raw materials of the power transmission tower do not need to be punched on site, and a problem that when the to-be-reinforced power transmission tower is located in a remote place, construction difficulty is large due to the fact that it is difficult to obtain construction electricity is effectively solved; meanwhile, an original stress component does not need to be temporarily disassembled, and a problem that after complex stress redistribution is generated in a local area, the power transmission tower is in a dangerous state in the reinforcing process is solved.
本公开提出了一种基于角钢补强耗能的输电塔加固装置及方法,包括第一夹具、第二夹具、装置定位杆和加固角钢;所述装置定位杆两端对称的设置有所述第一夹具和所述第二夹具;所述装置定位杆两端的每组所述第一夹具和所述第二夹具,用于夹持所述加固角钢和待加固主材的两个直角边;所述加固角钢的内侧和所述待加固主材的内侧相对设置;本公开无需现场对输电塔的原材料打孔,有效避免了待加固的输电塔位于地处偏远时,因施工用电的获取存在很大的困难,而导致的施工难度较大的问题;同时,本公开无需对原有的受力构件进行临时拆卸,避免局部区域产生复杂的应力重分布后,导致输电铁塔在加固过程中处于危险状态的问题。
Power transmission tower reinforcing device and method based on angle steel reinforcing energy consumption
一种基于角钢补强耗能的输电塔加固装置及方法
ZHANG LIANG (Autor:in) / TANG YAKE (Autor:in) / TIAN LI (Autor:in) / YANG MENG (Autor:in) / CHEN CHEN (Autor:in) / LIU JUNCAI (Autor:in) / PEI HAOWEI (Autor:in) / NIU KAI (Autor:in) / GUO WEI (Autor:in) / WEI RONGSHENG (Autor:in)
15.02.2022
Patent
Elektronische Ressource
Chinesisch
IPC:
E04G
SCAFFOLDING
,
Baugerüste
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