Cable erecting mechanism

Through the coordination of the electro-hydraulic rod and the moving assembly, the meshing connection between the rotating gear and the meshing groove is used to achieve accurate adjustment of the cable position, which solves the problem of frequent movement of the existing cable mount mechanism and improves the efficiency and stability of the cable mount.

CN223156589UActive Publication Date: 2025-07-25YULINYUSHENMEITANYUSHUWAN COAL MINE CO LTD
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Patent Information

Application Number
CN202422241290.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-12
Publication Date
2025-07-25
Estimated Expiration
2034-09-12

AI Technical Summary

Technical Problem

When the existing cable mount mechanism has a deviation from the cable mount position, it is necessary to frequently move the entire mechanism to adjust the cable position, resulting in troublesome operation and inefficient efficiency.

Method used

The electric hydraulic rod and the moving assembly are used to cooperate with the cable winding motor. Through the meshing connection between the rotating gear and the meshing groove, the U-shaped frame drives the clamping plate to adjust the cable position, and combines the expansion and contraction of the electric hydraulic rod to achieve accurate alignment.

Benefits of technology

The cable position is adjusted without frequent movement of the entire cable mount mechanism, which improves the working efficiency and stability of cable mounts.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a cable erecting mechanism in the technical field of cable erecting, which comprises a bottom plate, moving wheels are mounted at four corners of the lower surface of the bottom plate, an electric hydraulic rod is connected to the bottom plate, a cross beam is mounted at the telescopic end of the electric hydraulic rod, two groups of fixing plates are connected to the lower surface of the cross beam, and a cable winding motor is mounted on the outer wall of the right fixing plate. A cable winding roller is arranged at the output end of the cable winding motor, a U-shaped frame is slidably connected to the top of the cross beam, a moving assembly is arranged between the U-shaped frame and the cross beam, a cable clamping unit is arranged at the top of the U-shaped frame and comprises a U-shaped frame, two sets of clamping plates are arranged on the inner wall of the U-shaped frame, and cables between the adjacent clamping plates can be driven to move left and right through the moving assembly. The cable erecting mechanism is simple in structure and convenient to use, the position of the cable can be freely adjusted when the clamped cable deviates from the erecting position in cooperation with stretching and retracting of the electric hydraulic rod, the cable can be aligned to the erecting position without frequently moving the position of the whole cable erecting mechanism, and the working efficiency of cable erecting is effectively improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of cable erection, in particular to a cable erection mechanism. Background Technique

[0002] Cable erection refers to the process of erecting cables in the air. During the cable erection process, a cable erection mechanism is required to ensure the stability and reliability of the cable. When the cable erection mechanism is in use, the cable needs to be moved to the erection position. However, most of the existing cable erection mechanisms are not convenient for adjusting the lateral position of the cable. When there is a deviation between the cable and the erection position, it is necessary for the staff to frequently move the entire cable erection mechanism to align the cable with the erection position, which is troublesome to operate and the work efficiency of cable erection is generally low. For this reason, we propose a cable erection mechanism. Content of the Utility Model

[0003] The purpose of the utility model is to provide a cable erection mechanism to solve the problems raised in the above background technique.

[0004] To achieve the above purpose, the utility model provides the following technical solutions:

[0005] A cable erection mechanism includes a bottom plate. Moving wheels are installed at the four corners of the lower surface of the bottom plate, and an electric hydraulic rod, a battery box and a controller are connected to the bottom plate. The telescopic end of the electric hydraulic rod is installed with a cross beam through a reinforcing rib. Two groups of fixing plates are connected to the lower surface of the cross beam. A cable winding motor is installed on the outer wall of the right fixing plate, and a cable winding roller is provided at the output end of the cable winding motor. A U-shaped frame is slidably connected to the top of the cross beam. The opening end of the U-shaped frame faces the upper surface of the cross beam. A moving component is provided between the U-shaped frame and the cross beam, and a wire clamping unit is provided at the top of the U-shaped frame. The wire clamping unit includes a U-shaped frame, and two groups of clamping plates are provided on the inner wall of the U-shaped frame.

[0006] Further: The moving component includes a reduction motor. The reduction motor is located on the front outer wall of the U-shaped frame, and the output end of the reduction motor is connected to a rotating rod. A rotating gear is sleeved on the rotating rod. A plurality of meshing grooves are formed on the upper surface of the cross beam, and the plurality of meshing grooves are meshed with the rotating gear.

[0007] Further: A T-shaped groove is formed at the rear end of the upper surface of the cross beam. A T-shaped block is slidably connected in the T-shaped groove, and a linkage rod is installed on the outer wall of the top end of the T-shaped block. The other end of the linkage rod is connected to the rear outer wall of the U-shaped frame.

[0008] Further: Two side walls of the U-shaped frame are both slidably connected with pull rods, and the bottom ends of the pull rods are connected to the outer sides of the clamping plates. A return spring is also sleeved on the pull rods, and the return spring is located between the inner wall of the U-shaped frame and the outer side of the clamping plate.

[0009] Further: Anti-slip pads are provided on the inner sides of the two groups of clamping plates.

[0010] Further: A hand push rod is installed on the left side of the upper surface of the bottom plate, and an anti-slip rubber sleeve is sleeved on the hand-held end of the hand push rod.

[0011] Compared with the prior art, the beneficial effects of the present utility model are:

[0012] Through the operation of the reduction motor, the present utility model can drive the rotation of the rotating gear on the rotating rod. Since the rotating gear is in meshing connection with multiple meshing grooves, and after the U-shaped frame is slidably limited by the linkage rod, the T-shaped block and the T-shaped groove, the U-shaped frame can drive the cable between adjacent clamping plates to move left and right. Cooperating with the telescopic movement of the electric hydraulic rod, when there is a deviation between the clamped cable and the erected position, the position of the cable can be freely adjusted, and it is not necessary to frequently move the position of the entire cable erection mechanism to align the cable with the erected position, effectively improving the work efficiency of cable erection. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 is a schematic structural diagram of the present utility model;

[0014] Figure 2 is a schematic structural diagram of the clamping unit of the present utility model;

[0015] Figure 3 is a schematic cross-sectional view of the side connection structure between the cross beam and the U-shaped frame of the present utility model.

[0016] In the figure: 1. Bottom plate; 2. Moving wheel; 3. Hand push rod; 6. Electric hydraulic rod; 7. Cross beam; 8. U-shaped frame; 9. Cable clamping unit; 900. U-shaped frame; 901. Pull rod; 902. Clamping plate; 903. Return spring; 904. Anti-slip pad; 10. Fixed plate; 11. Cable winding motor; 12. Cable winding roller; 13. Rotating rod; 14. Rotating gear; 15. Meshing groove; 16. T-shaped groove; 17. T-shaped block; 18. Linkage rod; 19. Reduction motor. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0017] The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.

[0018] Embodiment 1:

[0019] Please refer to Figures 1 - 3, the present utility model provides a technical solution: a cable erection mechanism, including a bottom plate 1, moving wheels 2 are installed at the four corners of the lower surface of the bottom plate 1, and an electric hydraulic rod 6, a battery box and a controller are connected to the bottom plate 1. The telescopic end of the electric hydraulic rod 6 is installed with a cross beam 7 through a reinforcing rib. Two groups of fixing plates 10 are connected to the lower surface of the cross beam 7. A cable winding motor 11 is installed on the outer wall of the right fixing plate 10, and a cable winding roller 12 is provided at the output end of the cable winding motor 11. A U-shaped frame 8 is slidably connected to the top of the cross beam 7. The opening end of the U-shaped frame 8 faces the upper surface of the cross beam 7. A moving component is provided between the U-shaped frame 8 and the cross beam 7, and a wire clamping unit 9 is provided at the top of the U-shaped frame 8. The wire clamping unit 9 includes a U-shaped frame 900, and two groups of clamping plates 902 are provided on the inner wall of the U-shaped frame 900.

[0020] There is a battery pack in the battery box on the bottom plate 1. The electrical ends of each electrical device are electrically connected to the electrical end of the battery pack and the controller. By rolling the four groups of moving wheels 2, the cable erection mechanism is moved to the erection position. The cable is sleeved on the cable winding roller 12, and the other end of the cable is placed between adjacent clamping plates 902. The adjacent clamping plates 902 fix the cable. By the operation of the cable winding motor 11, the cable winding roller 12 can be driven to rotate, and the cable can be released. By the operation of the moving component, the U-shaped frame 8 can slide on the cross beam 7, and the U-shaped frame 8 can drive the cable between adjacent clamping plates 902 to move left and right. Cooperating with the telescopic movement of the electric hydraulic rod 6, when there is a deviation between the clamped cable and the erection position, the position of the cable can be freely adjusted, and the entire cable erection mechanism does not need to be frequently moved to align the cable with the erection position, effectively improving the work efficiency of cable erection.

[0021] Among them, preferably, the moving component includes a reduction motor 19. The reduction motor 19 is located on the front outer wall of the U-shaped frame 8, and the output end of the reduction motor 19 is connected with a rotating rod 13. A rotating gear 14 is sleeved on the rotating rod 13. A plurality of meshing grooves 15 are formed on the upper surface of the cross beam 7, and the plurality of meshing grooves 15 are meshed with the rotating gear 14; the operation of the reduction motor 19 can drive the rotating gear 14 fixedly connected to the rotating rod 13 to rotate. Since the rotating gear 14 is meshed with the plurality of meshing grooves 15 formed on the cross beam 7, and after the U-shaped frame 8 is slidably limited by the linkage rod 18, the T-shaped block 17 and the T-shaped groove 16, the U-shaped frame 8 can drive the cable between adjacent clamping plates 902 to move left and right.

[0022] Preferably, a T-shaped groove 16 is formed at the rear end of the upper surface of the cross beam 7. A T-shaped block 17 is slidably connected in the T-shaped groove 16, and a linkage rod 18 is installed on the outer wall of the top end of the T-shaped block 17. The other end of the linkage rod 18 is connected to the rear outer wall of the U-shaped frame 8; both ends of the linkage rod 18 are fixedly connected to the T-shaped block 17 and the U-shaped frame 8 respectively. After being slidably limited by the T-shaped block 17 and the T-shaped groove 16, it is avoided that the U-shaped frame 8 disengages from the upper surface of the cross beam 7 when moving on the cross beam 7.

[0023] Preferably, draw rods 901 are slidably connected to both side walls of the U-shaped frame 900, and the bottom ends of the draw rods 901 are connected to the outer sides of the clamping plates 902. A return spring 903 is also sleeved on the draw rods 901, and the return spring 903 is located between the inner wall of the U-shaped frame 900 and the outer side of the clamping plate 902. When clamping the cable, both groups of draw rods 901 are pulled outwards, and at this time the return spring 903 is compressed. Then the cable is placed between the adjacent clamping plates 902, and finally the draw rods 901 are released. The compressed return spring 903 can automatically return to its original position, and the adjacent clamping plates 902 approach each other to realize clamping and fixing of the cable.

[0024] Preferably, anti-slip pads 904 are provided on the inner sides of both groups of clamping plates 902; the anti-slip pads 904 play an anti-slip role, avoiding loosening of the clamped cable and improving the stability of cable clamping.

[0025] Embodiment 2:

[0026] Refer to Figure 1 , the difference between this embodiment and the first embodiment is that a hand push rod 3 is installed on the left side of the upper surface of the bottom plate 1, and an anti-slip rubber sleeve is sleeved on the hand-held end of the hand push rod 3; the hand push rod 3 facilitates the movement of the entire cable erection mechanism, and the anti-slip rubber sleeve plays an anti-slip role, avoiding slipping off when holding the hand push rod 3.

[0027] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A cable erection mechanism, comprising a bottom plate (1), characterized in that: The lower surfaces of the four corners of the bottom plate (1) are all equipped with moving wheels (2), and an electric hydraulic rod (6), a battery box and a controller are connected to the bottom plate (1). The telescopic end of the electric hydraulic rod (6) is equipped with a cross beam (7) through a reinforcing rib. The lower surface of the cross beam (7) is connected with two groups of fixing plates (10). A cable winding motor (11) is installed on the outer wall of the right fixing plate (10), and a cable winding roller (12) is arranged at the output end of the cable winding motor (11). The top of the cross beam (7) is slidably connected with a U-shaped frame (8). The opening end of the U-shaped frame (8) faces the upper surface of the cross beam (7). A moving component is arranged between the U-shaped frame (8) and the cross beam (7), and a wire clamping unit (9) is arranged at the top of the U-shaped frame (8). The wire clamping unit (9) includes a U-shaped frame (900), and two groups of clamping plates (902) are arranged on the inner wall of the U-shaped frame (900).

2. The cable erection mechanism according to claim 1, characterized in that: The moving component includes a reduction motor (19). The reduction motor (19) is located on the front outer wall of the U-shaped frame (8), and the output end of the reduction motor (19) is connected with a rotating rod (13). A rotating gear (14) is sleeved on the rotating rod (13).

3. A cable erection mechanism according to claim 2, characterized in that: A plurality of meshing grooves (15) are formed on the upper surface of the cross beam (7), and the plurality of meshing grooves (15) are meshed with the rotating gear (14).

4. A cable erection mechanism according to claim 1, characterized in that: A T-shaped groove (16) is formed at the rear end of the upper surface of the cross beam (7). A T-shaped block (17) is slidably connected in the T-shaped groove (16), and a linkage rod (18) is installed on the outer wall of the top end of the T-shaped block (17). The other end of the linkage rod (18) is connected with the rear outer wall of the U-shaped frame (8).

5. A cable erection mechanism according to claim 1, characterized in that: Two side walls of the U-shaped frame (900) are both slidably connected with a pull rod (901), and the bottom end of the pull rod (901) is connected with the outer side surface of the clamping plate (902). A return spring (903) is also sleeved on the pull rod (901). The return spring (903) is located between the inner wall of the U-shaped frame (900) and the outer side surface of the clamping plate (902).

6. The cable erection mechanism according to claim 1, characterized in that: Anti-slip pads (904) are arranged on the inner side surfaces of the two groups of clamping plates (902).

7. A cable erection mechanism according to claim 1, characterized in that: A hand push rod (3) is installed on the left side of the upper surface of the bottom plate (1), and an anti-slip rubber sleeve is sleeved on the hand-held end of the hand push rod (3).