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Rapid correction and reinforcement method for inclination of power transmission pole
The invention discloses a power transmission pole inclination rapid correction and reinforcement method, and belongs to the technical field of power transmission pole inclination correction and reinforcement. The problem that an existing method is poor in feasibility is solved, the balance weight bottom plate is fixed to the ground at the bottom end of the power transmission pole, the steel wire lifting rope is hung at the upper end of the power transmission pole through the crane, and the inclination angle of the power transmission pole is balanced through the balance weight; the clamping block is installed in the middle of the power transmission pole through a crane, and the electric traction equipment is started to drive the steel wire traction rope to pull the clamping block and the power transmission pole towards the inclined back face end; the numerical value of the inclination monitoring sensor is observed, after the normal vertical angle of the power transmission pole is met, a power source of the electric traction equipment is cut off, soil around the power transmission pole is filled and leveled, and therefore the inclination correcting and reinforcing process of the power transmission pole is completed; therefore, the efficiency of correcting and reinforcing the inclination of the existing power transmission pole is improved, the danger caused by manual stay wire correction is avoided, and the feasibility of the rapid correcting and reinforcing method for the inclination of the existing power transmission pole is optimized.
本发明公开了一种输电线杆倾斜快速修正加固方法,属于输电线杆倾斜修正加固技术领域。本发明解决了现有方法可行性欠佳的问题,通过将配重底板固定于输电线杆底端的地面上,通过吊机将钢丝吊绳挂在输电线杆上端,利用配重块制衡输电线杆的倾斜角度;再通过吊机将卡块安装于输电线杆中部,启动电动牵引设备带动钢丝牵引绳向倾斜背面端拉动卡块及输电线杆;观测倾斜监测传感器的数值,符合输电线杆正常垂直角度后,切断电动牵引设备的电源,并对输电线杆周边土壤进行填充踏平,由此完成输电线杆倾斜修正加固流程;从而提高了现有输电线杆倾斜修正加固的效率,避免人工拉线修正所具有的危险性,优化了现有输电线杆倾斜快速修正加固方法的可行性。
Rapid correction and reinforcement method for inclination of power transmission pole
The invention discloses a power transmission pole inclination rapid correction and reinforcement method, and belongs to the technical field of power transmission pole inclination correction and reinforcement. The problem that an existing method is poor in feasibility is solved, the balance weight bottom plate is fixed to the ground at the bottom end of the power transmission pole, the steel wire lifting rope is hung at the upper end of the power transmission pole through the crane, and the inclination angle of the power transmission pole is balanced through the balance weight; the clamping block is installed in the middle of the power transmission pole through a crane, and the electric traction equipment is started to drive the steel wire traction rope to pull the clamping block and the power transmission pole towards the inclined back face end; the numerical value of the inclination monitoring sensor is observed, after the normal vertical angle of the power transmission pole is met, a power source of the electric traction equipment is cut off, soil around the power transmission pole is filled and leveled, and therefore the inclination correcting and reinforcing process of the power transmission pole is completed; therefore, the efficiency of correcting and reinforcing the inclination of the existing power transmission pole is improved, the danger caused by manual stay wire correction is avoided, and the feasibility of the rapid correcting and reinforcing method for the inclination of the existing power transmission pole is optimized.
本发明公开了一种输电线杆倾斜快速修正加固方法,属于输电线杆倾斜修正加固技术领域。本发明解决了现有方法可行性欠佳的问题,通过将配重底板固定于输电线杆底端的地面上,通过吊机将钢丝吊绳挂在输电线杆上端,利用配重块制衡输电线杆的倾斜角度;再通过吊机将卡块安装于输电线杆中部,启动电动牵引设备带动钢丝牵引绳向倾斜背面端拉动卡块及输电线杆;观测倾斜监测传感器的数值,符合输电线杆正常垂直角度后,切断电动牵引设备的电源,并对输电线杆周边土壤进行填充踏平,由此完成输电线杆倾斜修正加固流程;从而提高了现有输电线杆倾斜修正加固的效率,避免人工拉线修正所具有的危险性,优化了现有输电线杆倾斜快速修正加固方法的可行性。
Rapid correction and reinforcement method for inclination of power transmission pole
一种输电线杆倾斜快速修正加固方法
MENG FANBIN (Autor:in) / ZHENG GANG (Autor:in) / NAN YU (Autor:in) / HAO JING (Autor:in) / YU YONGZHE (Autor:in) / HAI YUE (Autor:in) / GUO ERLEI (Autor:in) / XU WANKUN (Autor:in)
19.03.2024
Patent
Elektronische Ressource
Chinesisch
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