A high-voltage wire erecting device
By designing a high-voltage power line installation device with support and adjustment components, the problem of cable damage due to the inability to adjust the angle during transmission is solved, thus achieving safe and reliable cable transmission and extending the service life of the cable.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANDONG HUANNENG DESIGN INST
- Filing Date
- 2025-06-24
- Publication Date
- 2026-06-12
AI Technical Summary
Existing high-voltage power line erection equipment cannot adjust the angle according to the direction of cable movement, causing the cable to bend sharply under tension during transmission, resulting in wear and tear and shortening its service life, and may even lead to safety accidents.
A high-voltage power line installation device was designed, comprising a support component and an adjustment component. The movement direction and angle of the cable are adjusted by a transmission component and a servo motor-driven limit wheel. The limit component prevents the cable from becoming tangled. The height of the support component is adjustable to adapt to different environments.
It effectively prevents cable wear due to excessive tension during transmission, extends cable life, reduces costs, and improves the safety and applicability of installation.
Smart Images

Figure CN224355740U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of cable laying technology, specifically a high-voltage power line laying device. Background Technology
[0002] Electric wires are conductors that transmit electrical energy. They are classified as bare wires, electromagnetic wires, and insulated wires. Bare wires have no insulation layer and include copper and aluminum flat wires, overhead stranded wires, and various profiles. High-voltage power lines are ubiquitous in daily life, and due to their high degree of danger, we need to pay extra attention to them. When erecting high-voltage power lines, specialized erecting equipment is required. The direction of cable erection needs to be adjusted according to the actual situation. However, the equipment currently used for transmitting cables cannot adjust the angle according to the direction of cable movement, causing the cable to bend sharply under tension during transmission, resulting in significant wear and tear on the cable, shortening its service life, and even causing safety accidents. Utility Model Content
[0003] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a high-voltage power line erector to solve the problems mentioned in the background art.
[0004] The technical solution adopted by this utility model to solve its technical problem is: a high-voltage power line erector, including a support component for supporting and transporting cables and an adjustment component for adjusting the direction of cable movement. The support component includes a base, a lifting component, a transmission component, a support seat, a first limiting wheel, and a second limiting wheel. The bottom of the lifting component is connected to the base, and the top of the lifting component is connected to the support seat. A transmission component capable of driving the lifting component to adjust its height is provided on the outside of the lifting component. A first limiting wheel is provided on one side of the support seat, and a second limiting wheel is provided on the other side of the support seat. The adjustment component includes a rotating component and a transmission component. The rotating component is located on one side of the support seat and connected to the second limiting wheel, and the transmission component is located on the other side of the support seat and connected to the first limiting wheel.
[0005] Furthermore, the adjustment assembly also includes a limiting component, which includes a fixing frame, a ring, and a ball bearing. The fixing frame is installed on the outside of the support base, the ring is installed on the outside of the fixing frame, and the ball bearing is installed inside the ring through a ball bearing seat.
[0006] Furthermore, the lifting component includes a fixed column and a movable column. The lower end of the fixed column is connected to the base, the movable column is inserted into the fixed column, and the upper end of the movable column is connected to the support base.
[0007] Furthermore, the transmission component includes a stepper motor, a transmission gear, and a toothed plate. The stepper motor is located on the side wall of the fixed column, the transmission gear is located at the output end of the stepper motor, and the toothed plate is located on the outer side wall of the moving column. The transmission gear meshes with the toothed plate for transmission.
[0008] Furthermore, the rotating component includes a first servo motor, a worm gear, a worm wheel, and a connecting rod. The first servo motor is located on the outside of the support base, the worm gear is located at the output end of the first servo motor, the worm wheel is rotatably mounted on the outside of the support base and meshes with the worm gear, and the connecting rod is located on the outside of the worm wheel.
[0009] Furthermore, the transmission component includes a connecting gear, a second servo motor, and a fixed base. The second servo motor is connected to the support base via the fixed base, and the connecting gear is connected to the output shaft of the second servo motor. The connecting gear drives the first limit wheel to rotate.
[0010] Furthermore, there are two of each of the first limiting wheel and the connecting gear. The two limiting wheels are connected to the corresponding connecting gears, and one of the connecting gears is connected to the output shaft of the second servo motor. The two connecting gears are meshed together.
[0011] The beneficial effects of this utility model are:
[0012] This utility model of a high-voltage power line erector has an adjustment component on the upper part of the support assembly. The rotating part of the adjustment component drives the second limit wheel to swing, and the transmission part of the adjustment component drives the first limit wheel to rotate, thereby realizing the adjustment of the cable movement direction and angle. This prevents the cable from being worn due to excessive tension during transmission, extends the cable's service life, and reduces costs.
[0013] Because the support assembly has a transmission component on its outer side, the moving column can be raised and lowered through the transmission component, thereby adjusting the height of the support assembly to meet the needs of cable transmission at different heights, making it highly adaptable. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0015] Figure 2 This is a schematic diagram of the installation structure of the lifting and transmission components in the support assembly;
[0016] Figure 3 A schematic diagram of the structure of the adjustment component;
[0017] Figure 4 This is a schematic diagram of the limiting component.
[0018] In the picture:
[0019] 100 Support components, 101 Including base,
[0020] 102 lifting component, 102a fixed column, 102b moving column,
[0021] 103 Transmission components, 103a Stepper motor, 103b Transmission gears, 103c Gear plate,
[0022] 104 Support base, 105 First limit wheel, 106 Second limit wheel
[0023] 200 adjustment components
[0024] 201 rotating component, 201a first servo motor, 201b worm gear, 201c worm wheel, and 201d connecting rod.
[0025] 202 Transmission component, 202a Connecting gear, 202b Second servo motor, 202c Mounting base,
[0026] 203 limiting component, 203a fixing bracket, 203b ring, 203c ball bearing. Detailed Implementation
[0027] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0028] Please see Figures 1 to 3 This utility model provides a technical solution: a high-voltage power line erector, including a support assembly 100 for supporting and transporting cables and an adjustment assembly 200 for adjusting the direction of cable movement. The support assembly 100 includes a base 101, a lifting member 102, a transmission member 103, a support seat 104, a first limiting wheel 105, and a second limiting wheel 106. The bottom of the lifting member 102 is connected to the base 101, and the top of the lifting member 102 is connected to the support seat 104. The outer side of the lifting member is provided with a transmission member 103 that can drive the lifting member to adjust its height. One side of the support seat 104 is provided with a first limiting wheel 105, and the other side of the support seat is provided with a second limiting wheel 106. The cable is transmitted through the first limiting wheel 105 and the second limiting wheel 106, and the direction of cable movement is adjusted simultaneously. The height of the lifting member 102 is controlled by the transmission member 103, thereby adjusting the height of the cable.
[0029] The adjustment assembly 200 includes a rotating component 201 and a transmission component 202. The rotating component 201 is located on one side of the support base 104 and is connected to the second limiting wheel 106. The transmission component 202 is located on the other side of the support base and is connected to the first limiting wheel 105.
[0030] The adjustment component 200 also includes a limiting member 203, such as Figure 4As shown, the limiting component 203 includes a fixing frame 203a, a ring 203b, and a ball bearing 203c. The fixing frame 203a is mounted on the outside of the support base 104, the ring 203b is mounted on the outside of the fixing frame 203a, and the ball bearing 203c is mounted inside the ring 203b via a ball bearing seat. The angle of the second limiting wheel 106 is adjusted by the rotating component 201, thereby adjusting the angle of the cable. The first limiting wheel 105 is rotated by the transmission component 202 to transmit the cable. The limiting component 203 limits the cable, preventing the cable from becoming tangled during transmission and affecting the transmission effect.
[0031] The lifting component 102 includes a fixed column 102a and a movable column 102b. The lower end of the fixed column is connected to the base, the movable column is inserted into the fixed column, and the upper end of the movable column is connected to the support base. The movable column 102b slides within the fixed column 102a, allowing for height adjustment.
[0032] The transmission component 103 includes a stepper motor 103a, a transmission gear 103b, and a toothed plate 103c. The stepper motor is located on the side wall of the fixed column, the transmission gear is located at the output end of the stepper motor, and the toothed plate is located on the outer side wall of the moving column. The transmission gear meshes with the toothed plate for transmission. The stepper motor 103a drives the transmission gear 103b to rotate, and the transmission gear 103b meshes with the toothed plate 103c, causing the moving column 102b to move within the fixed column 102a, thereby adjusting the height of the moving column 102b.
[0033] The rotating component 201 includes a first servo motor 201a, a worm gear 201b, a worm wheel 201c, and a connecting rod 201d. The first servo motor 201a is located on the outside of the support base 104. The worm gear 201b is located at the output end of the first servo motor 201a. The worm wheel 201c is rotatably mounted on the outside of the support base 104 and meshes with the worm gear 201b. The connecting rod 201d is located on the outside of the worm wheel 201c. The first servo motor 201a drives the worm gear 201b to rotate, which in turn drives the worm wheel 201c to rotate. The worm wheel 201c then drives the connecting rod 201d to rotate, thus adjusting the angle of the connecting rod 201d.
[0034] Specifically, there are two second limit wheels 106, which are rotatably mounted on the outside of the connecting rod 201d.
[0035] Two second limit wheels 106 are mounted side by side on the connecting rod 201d.
[0036] The transmission component 202 includes a connecting gear 202a, a second servo motor 202b, and a fixed base 202c. The second servo motor is connected to the support base through the fixed base. The connecting gear is connected to the output shaft of the second servo motor. The connecting gear drives the first limit wheel to rotate.
[0037] The first limiting wheel 105 and the connecting gear 202a are both provided in twos. The two limiting wheels are respectively connected to the corresponding connecting gears. One of the connecting gears is connected to the output shaft of the second servo motor. The two connecting gears are meshed together.
[0038] The second servo motor 202b drives the connecting gear 202a to rotate, and the connecting gear 202a drives the first limit wheel 105 to rotate.
[0039] Specifically, the transmission component 202 also includes a fixing base 202c, which is fixedly installed on the outside of the support base 104, and the second servo motor 202b is fixedly installed on the outside of the fixing base 202c. The fixing base 202c supports and fixes the second servo motor 202b.
[0040] In use, the cable is sequentially passed between the two first limiting wheels 105, the inner ring of the circular ring 203b, and the two second limiting wheels 106. The second servo motor 202b drives the connecting gear 202a to rotate, which in turn drives the first limiting wheels 105 to rotate, thus transmitting the cable through the first limiting wheels 105. When it is necessary to change the direction of the cable's movement, the first servo motor 201a drives the worm gear 201b to rotate, which in turn drives the worm wheel 201c to rotate. The worm wheel 201c then drives the connecting rod 201d to rotate, adjusting the angle of the connecting rod 201d. The connecting rod 201d then moves the two second limiting wheels 106, thereby adjusting the cable on the second limiting wheels 106 to the appropriate angle.
[0041] The above description is merely an illustration of some principles of this utility model. This specification is not intended to limit this utility model to the specific structure and applicable scope shown. Therefore, all possible modifications and equivalents that may be used fall within the scope of the patent application of this utility model.
[0042] Except for the technical features described in the specification, all other technical features are known to those skilled in the art.
Claims
1. A high-voltage power line erecting device, characterized in that, The device includes a support assembly for supporting and transporting cables and an adjustment assembly for adjusting the direction of cable movement. The support assembly includes a base, a lifting component, a transmission component, a support seat, a first limit wheel, and a second limit wheel. The bottom of the lifting component is connected to the base, and the top of the lifting component is connected to the support seat. A transmission component capable of adjusting the height of the lifting component is provided on the outer side of the lifting component. A first limit wheel is provided on one side of the support seat, and a second limit wheel is provided on the other side of the support seat. The adjustment assembly includes a rotating component and a transmission component. The rotating component is located on one side of the support seat and connected to the second limit wheel, and the transmission component is located on the other side of the support seat and connected to the first limit wheel.
2. The high-voltage power line erecting device according to claim 1, characterized in that, The adjustment assembly further includes a limiting component, which includes a fixing frame, a ring, and a ball bearing. The fixing frame is installed on the outside of the support base, the ring is installed on the outside of the fixing frame, and the ball bearing is installed inside the ring through a ball bearing seat.
3. A high-voltage power line erecting device according to claim 1 or 2, characterized in that, The lifting component includes a fixed column and a movable column. The lower end of the fixed column is connected to the base, the movable column is inserted into the fixed column, and the upper end of the movable column is connected to the support base.
4. A high-voltage power line erecting device according to claim 1 or 2, characterized in that, The transmission component includes a stepper motor, a transmission gear, and a toothed plate. The stepper motor is located on the side wall of the fixed column, the transmission gear is located at the output end of the stepper motor, and the toothed plate is located on the outer side wall of the moving column. The transmission gear meshes with the toothed plate for transmission.
5. A high-voltage power line erecting device according to claim 1 or 2, characterized in that, The rotating component includes a first servo motor, a worm gear, a worm wheel, and a connecting rod. The first servo motor is located on the outside of the support base, the worm gear is located at the output end of the first servo motor, the worm wheel is rotatably mounted on the outside of the support base and meshes with the worm gear, and the connecting rod is located on the outside of the worm wheel.
6. A high-voltage power line erecting device according to claim 1 or 2, characterized in that, The transmission component includes a connecting gear, a second servo motor, and a fixed base. The second servo motor is connected to the support base through the fixed base. The connecting gear is connected to the output shaft of the second servo motor, and the connecting gear drives the first limit wheel to rotate.
7. A high-voltage power line erecting device according to claim 6, characterized in that, The first limiting wheel and the connecting gear are provided in twos. The two limiting wheels are respectively connected to the corresponding connecting gears. One of the connecting gears is connected to the output shaft of the second servo motor. The two connecting gears are meshed together.