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Reinforcing device for electric power tower
The invention relates to a reinforcing device for an electric power tower, two reinforcing assemblies are symmetrically arranged on the two sides of the electric power tower respectively, limiting blocks a are integrally in an arc shape, clamping blocks are longitudinally and fixedly arranged at the two ends of each limiting block a, and limiting connection between the two limiting blocks a is achieved by locking the clamping blocks through limiting bolts; the inner side face of the limiting block a makes close contact with the outer surface of the power tower, the outer side face of the limiting block a is provided with a connecting block, a support a is arranged below the connecting block, the fixed bottom plate is located below the limiting block a, the lower surface of the fixed bottom plate is provided with a conical block, and the upper surface of the fixed bottom plate is provided with a balancing weight and a support b. An arc-shaped groove is formed in the side, close to the power tower, of the fixed bottom plate, an arc-shaped limiting block b is arranged in the arc-shaped groove, the inner side face of the limiting block b makes close contact with the outer surface of the power tower, and an adjusting rod and a telescopic rod are transversely and fixedly arranged between the outer side face of the limiting block b and the inner wall of the arc-shaped groove; the reinforcing structure has the advantages of stable and reliable overall design and good reinforcing and using effects.
本发明涉及一种电力杆塔用加固装置,两个加固组件分别对称设置于电力杆塔的两侧,其中限位块a整体呈弧形,其两端均纵向固定设有卡块,并通过限位螺栓对卡块的锁紧,实现两个限位块a之间的限位连接;且限位块a的内侧面与电力杆塔的外表面紧密接触,外侧面设有连接块,连接块的下方设有支座a,固定底板位于限位块a的下方,其下表面设有锥形块,上表面设有配重块和支座b,支座b和支座a之间铰接有倾斜支杆,固定底板靠近电力杆塔的一侧设有弧形槽,弧形槽的内部设有弧形的限位块b,限位块b内侧面与电力杆塔的外表面紧密接触,外侧面与弧形槽的内壁之间横向固定设有调节杆和伸缩杆;本发明具有整体设计稳定可靠且加固使用效果好的优点。
Reinforcing device for electric power tower
The invention relates to a reinforcing device for an electric power tower, two reinforcing assemblies are symmetrically arranged on the two sides of the electric power tower respectively, limiting blocks a are integrally in an arc shape, clamping blocks are longitudinally and fixedly arranged at the two ends of each limiting block a, and limiting connection between the two limiting blocks a is achieved by locking the clamping blocks through limiting bolts; the inner side face of the limiting block a makes close contact with the outer surface of the power tower, the outer side face of the limiting block a is provided with a connecting block, a support a is arranged below the connecting block, the fixed bottom plate is located below the limiting block a, the lower surface of the fixed bottom plate is provided with a conical block, and the upper surface of the fixed bottom plate is provided with a balancing weight and a support b. An arc-shaped groove is formed in the side, close to the power tower, of the fixed bottom plate, an arc-shaped limiting block b is arranged in the arc-shaped groove, the inner side face of the limiting block b makes close contact with the outer surface of the power tower, and an adjusting rod and a telescopic rod are transversely and fixedly arranged between the outer side face of the limiting block b and the inner wall of the arc-shaped groove; the reinforcing structure has the advantages of stable and reliable overall design and good reinforcing and using effects.
本发明涉及一种电力杆塔用加固装置,两个加固组件分别对称设置于电力杆塔的两侧,其中限位块a整体呈弧形,其两端均纵向固定设有卡块,并通过限位螺栓对卡块的锁紧,实现两个限位块a之间的限位连接;且限位块a的内侧面与电力杆塔的外表面紧密接触,外侧面设有连接块,连接块的下方设有支座a,固定底板位于限位块a的下方,其下表面设有锥形块,上表面设有配重块和支座b,支座b和支座a之间铰接有倾斜支杆,固定底板靠近电力杆塔的一侧设有弧形槽,弧形槽的内部设有弧形的限位块b,限位块b内侧面与电力杆塔的外表面紧密接触,外侧面与弧形槽的内壁之间横向固定设有调节杆和伸缩杆;本发明具有整体设计稳定可靠且加固使用效果好的优点。
Reinforcing device for electric power tower
一种电力杆塔用加固装置
FENG YIXIANG (Autor:in) / CHEN HAILI (Autor:in) / CHEN WENMING (Autor:in) / YU JINHANG (Autor:in) / LIU ZHIJIE (Autor:in) / LI BING (Autor:in) / HAN TINGTING (Autor:in)
03.10.2023
Patent
Elektronische Ressource
Chinesisch
Power transmission tower angle steel reinforcing device and power transmission tower
Europäisches Patentamt | 2024
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