CN216785327U - Electric power construction kinking device - Google Patents

Electric power construction kinking device Download PDF

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Publication number
CN216785327U
CN216785327U CN202123256657.9U CN202123256657U CN216785327U CN 216785327 U CN216785327 U CN 216785327U CN 202123256657 U CN202123256657 U CN 202123256657U CN 216785327 U CN216785327 U CN 216785327U
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China
Prior art keywords
plate
fixing
electric power
power construction
mounting panel
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CN202123256657.9U
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Chinese (zh)
Inventor
黄远杰
林淑玲
邱钊炜
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Fujian Runming Construction Co ltd
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Fujian Runming Construction Co ltd
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Priority to CN202123256657.9U priority Critical patent/CN216785327U/en
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Abstract

The application discloses an electric power construction winding device, which relates to the technical field of electric power construction and improves the safety of a cable reel during use, and comprises a support, a transverse plate and a first arc-shaped groove, wherein the support comprises a first stand column and a second stand column which are vertically arranged on a bottom plate; a second arc-shaped groove is formed in one side, close to the transverse plate, of the mounting plate; when the mounting plate slides to abut against the transverse plate in the direction close to the transverse plate, the first arc-shaped groove and the second arc-shaped groove form a rotating hole matched with the rotating shaft, and a fixing assembly used for fixing the mounting plate when the mounting plate abuts against the transverse plate is arranged between the transverse plate and the mounting plate. The problem that the axis of rotation takes place the drunkenness can effectively be improved to this application to improve the security in the cable drum use.

Description

Electric power construction kinking device
Technical Field
The application relates to the technical field of electric power construction, in particular to a winding device for electric power construction.
Background
In the process of electric power construction, a cable needs to be wound by a winding device such as a cable reel and the like so as to realize the winding and unwinding of the cable.
A power construction kinking device among the correlation technique, include the cable drum and be used for erectting two cable support of cable drum, the cable drum is located between two cable support, cable drum center of rotation department is provided with the rotation axis, be equipped with on the cable support and be used for supplying the axis of rotation to take the semi-circular groove of leaning on.
In the process of implementing the above technology, the inventors found that: in the winding process, workers need to rotate the cable drum to complete the winding operation, however, in the rotating process, if the rotating speed is too high, the rotating shaft is easy to shift in the semi-arc-shaped groove, and even the cable drum may roll off from the cable support, so that the use safety is poor, and a space for improving the cable drum is provided.
SUMMERY OF THE UTILITY MODEL
In order to improve the security when the cable drum uses, this application provides an electric power construction kinking device.
The application provides an electric power construction kinking device adopts following technical scheme:
a winding device for electric power construction comprises a cable reel, wherein a rotating shaft is arranged at the rotating center of the cable reel; the support comprises a first upright column and a second upright column which are vertically arranged on the bottom plate, and further comprises a transverse plate arranged between the first upright column and the second upright column, wherein a first arc-shaped groove for the leaning of a rotating shaft is formed in the transverse plate, a mounting plate positioned above the transverse plate is arranged on the first upright column in a lifting mode, and the mounting plate can slide towards the direction close to or far away from the transverse plate; a second arc-shaped groove is formed in one side, close to the transverse plate, of the mounting plate; work as the mounting panel orientation is close to the diaphragm direction and slides to when offseting with the diaphragm, first arc wall forms the rotation hole with the pivot axle looks adaptation with second arc wall, be provided with between diaphragm and the mounting panel when mounting panel offsets with the diaphragm for the fixed subassembly of fixed mounting panel.
Through adopting above-mentioned technical scheme, during the installation cable drum, with the axis of rotation take over in first arc wall, slide the mounting panel orientation to the mounting panel and offset with the diaphragm near the diaphragm direction after that, first arc wall forms the rotation hole with second arc wall formation this moment, with the help of fixed subassembly at last, to the fixed of mounting panel for the difficult drunkenness that takes place of cable drum when using, security when using with the improvement cable drum.
Optionally, the fixing assembly includes a fixing rod rotatably disposed on one side of the two transverse plates, the fixing assembly further includes a fixing seat disposed on the mounting plate, a fixing groove matched with the fixing rod is formed in the fixing seat, and the fixing rod can rotate towards the direction close to the fixing seat and is clamped into the fixing groove; the fixing assembly further comprises an eccentric wheel rotatably arranged at one end, far away from the rotating center, of the fixing rod, and when the fixing rod is rotated to be clamped into the fixing groove, the eccentric wheel can be rotated to be tightly abutted to the fixing seat.
Through adopting above-mentioned technical scheme, when the mounting panel offseted with the diaphragm, rotate the dead lever orientation near the fixing base direction to the dead lever card income fixed slot in, rotate the eccentric wheel after that for the eccentric wheel offsets tightly with fixed cluster periphery side, can accomplish the fixed to the mounting panel.
Optionally, the one end that the second arc wall was kept away from to the mounting panel is provided with the slip post perpendicularly, offer the groove that slides that is used for supplying slip post sliding connection on the first stand.
Through adopting above-mentioned technical scheme, through the setting of the post that slides, can realize the sliding connection of mounting panel.
Optionally, set up the hole of stepping down that communicates with the groove of sliding on the first stand, work as the post of sliding is when keeping away from the bottom plate direction and upwards sliding to the mounting panel and stepping down the hole and be in relative position towards keeping away from the bottom plate direction, and the mounting panel can rotate to the mounting panel and offset with the hole wall of stepping down towards keeping away from the bottom plate direction.
Through adopting above-mentioned technical scheme, rotate the mounting panel to offset with the hole pore wall of stepping down for in-process of putting up the axis of rotation, the cable drum is difficult for bumping with the mounting panel, reduces to take up the degree of difficulty of axis of rotation.
Optionally, the sliding column is of a round bar structure, and a guide angle is arranged at one end, close to the sliding column, of the mounting plate.
Through adopting above-mentioned technical scheme, through the setting of lead angle, can make things convenient for the mounting panel to rotate.
Optionally, a top plate is arranged between the two first stand columns, a braking hole is formed in the top plate, an upright rod penetrates through the braking hole in a sliding manner, and a braking plate used for abutting against the cable reel is arranged at one end, close to the bottom plate, of the upright rod; and the top plate is provided with a driving component for controlling the vertical rod to slide towards the direction close to or far away from the cable reel.
Through adopting above-mentioned technical scheme, when the stall cable drum, with the help of drive assembly drive riser orientation near the cable drum direction slip to offset with the cable drum, can improve when the stall cable drum, the cable drum is because self inertia continues to rotate, leads to the lax problem of cable.
Optionally, the driving assembly includes a gear, a rack engaged with the gear, and a driving motor for driving the gear to rotate, the driving motor is fixedly connected to the top plate, and the rack is fixedly connected to one side of the vertical rod parallel to the sliding direction.
Through adopting above-mentioned technical scheme, start driving motor, driving motor's output shaft drives gear revolve, orders about then and drives the pole setting orientation with gear engagement's rack and slide near the cable drum direction, and it offsets with the cable drum to reach the braking vane.
Optionally, one side of the brake plate, which is close to the top plate, is provided with a guide rod, and the top plate is provided with a guide hole for the guide rod to penetrate through in a sliding manner.
Through adopting above-mentioned technical scheme, through the setting of guide bar, can improve the stability of brake block in-process that slides.
In summary, the present application includes at least one of the following benefits:
1. the problem that the rotating shaft moves can be effectively solved, and therefore the safety of the cable reel in the using process is improved;
2. through the setting of the post that slides, can realize the sliding connection of mounting panel.
Drawings
FIG. 1 is a schematic view of the overall structure of the present embodiment;
FIG. 2 is an enlarged schematic view at A in FIG. 1 of the present embodiment;
fig. 3 is a schematic structural view of the mounting plate of the present embodiment.
Description of reference numerals:
1. a cable reel; 2. a base plate; 3. a rotating shaft; 4. a support; 41. a transverse plate; 411. a first arc-shaped slot; 42. a first upright post; 421. a sliding groove; 422. a hole of abdication; 43. a second upright post; 5. mounting a plate; 51. guiding an angle; 52. a second arc-shaped slot; 6. rotating the hole; 7. a fixing assembly; 71. fixing the rod; 72. a fixed seat; 721. fixing grooves; 73. an eccentric wheel; 731. a rotating tank; 8. a drive assembly; 81. a gear; 82. a rack; 83. a drive motor; 9. sliding the column; 10. a top plate; 101. a guide hole; 102. a brake hole; 11. a guide bar; 12. a brake plate; 13. erecting a rod; 14. a hinged seat; 15. an operating handle; 16. a handwheel.
Detailed Description
The present application is described in further detail below with reference to the attached drawings.
The embodiment of the application discloses electric power construction kinking device. Referring to fig. 1, the winding device comprises a cable reel 1, a rotating shaft 3 is integrally formed at the rotating center of the cable reel 1, and the rotating shaft 3 extends along the axial direction of the cable reel 1. In order to facilitate the rotation of the cable reel 1 by the staff, a hand wheel 16 is bonded at one of the rotation shafts 3.
Referring to fig. 1 and 2, the winding device further comprises a bottom plate 2, and the bottom plate 2 is of a square structure. Both sides of the bottom plate 2 in the length direction are fixedly connected with a bracket 4. Specifically, the bracket 4 includes a first upright 42 and a second upright 43 vertically welded to the base plate 2, the first upright 42 and the second upright 43 are parallel to each other, and both the first upright 42 and the second upright 43 are of a square structure. The bracket 4 further comprises a transverse plate 41 welded and fixed between the first upright post 42 and the second upright post 43, the transverse plate 41 is provided with a first arc-shaped slot 411, and the first arc-shaped slot 411 is of a semicircular structure.
Referring to fig. 1 and 2, the length of the first upright column 42 is greater than that of the second upright column 43, the mounting plate 5 is arranged on the first upright column 42 in a lifting manner, and the mounting plate 5 is positioned above the transverse plate 41. The mounting plate 5 has a second arc-shaped slot 52 on a side thereof close to the transverse plate 41, and when the mounting plate 5 slides towards a direction close to the transverse plate 41 to abut against the transverse plate 41, the first arc-shaped slot 411 and the second arc-shaped slot 52 form a rotation hole 6, and the rotation hole 6 is matched with the rotation shaft 3.
Referring to fig. 2, the fixing assemblies 7 are disposed between the transverse plate 41 and the mounting plate 5, and the fixing assemblies 7 correspond to the brackets 4 one by one. Two diaphragm 41 keep away from one side mutually and all have welded articulated seat 14, and fixed subassembly 7 is including rotating the dead lever 71 that sets up in articulated seat 14, and dead lever 71 realizes the rotation connection in articulated seat 14 through the articulated mode of axle. The fixing assembly 7 further includes a fixing seat 72 welded to the mounting plate 5, and the fixing seat 72 is provided with a fixing groove 721. When the fixing lever 71 is rotated toward the direction approaching the fixing seat 72, the fixing lever 71 can be rotated to be caught in the fixing groove 721.
Referring to fig. 2, the fixing assembly 7 further includes an eccentric 73 rotatably provided at an end of the fixing lever 71 away from the rotation center by a shaft. The eccentric wheel 73 is provided with a rotating groove 731, and the rotating groove 731 provides a rotating space for the fixing rod 71. Anti-slip threads are uniformly distributed on the outer periphery of the eccentric wheel 73, and an operating handle 15 is integrally formed on the eccentric wheel 73.
When the fixing rod 71 rotates to be clamped into the fixing groove 721, the worker rotates the eccentric wheel 73 by means of the operating handle 15, so that the eccentric wheel 73 rotates to be tightly abutted against the fixing seat 72, and then the fixing of the mounting plate 5 is completed, so that the rotating shaft 3 is fixed in the rotating hole 6.
Referring to fig. 1 and 3, a sliding column 9 is vertically welded to one end of the mounting plate 5 away from the second arc-shaped slot 52, and the sliding column 9 is in a round rod structure. The first upright post 42 is provided with a sliding groove 421, the sliding groove 421 extends along the height direction of the first upright post 42, and the sliding post 9 is slidably connected in the sliding groove 421.
Referring to fig. 1 and 3, a chamfer 51 is formed at one end of the mounting plate 5 close to the sliding column 9. The first upright post 42 is provided with a yielding hole 422, and the yielding hole 422 is communicated with the sliding groove 421. When the post 9 that slides is faced away from 2 direction upsliding of bottom plate and is shifted to mounting panel 5 and the hole 422 that steps down and be in relative position, rotate mounting panel 5 orientation away from 2 directions of bottom plate until mounting panel 5 offsets with the hole 422 pore wall that steps down, can realize fixing mounting panel 5.
Referring to fig. 1, in order to improve the problem that the cable drum 1 continues to rotate due to inertia when the rotation of the cable drum 1 is stopped, the cable is loosened. The top plate 10 is welded between the two first upright posts 42, the brake hole 102 is formed in the top plate 10, the upright rod 13 penetrates through the brake hole 102 in a sliding mode, the brake plate 12 is welded at one end, close to the bottom plate 2, of the upright rod 13, and the brake plate 12 is of an arc-shaped structure.
Referring to fig. 1, a drive assembly 8 is provided on a top plate 10. The driving assembly 8 includes a gear 81, a rack 82 engaged with the gear 81, and a driving motor 83. The driving motor 83 is fixed on the top plate 10 by a threaded connection mode, and an output shaft of the driving motor 83 extends into an inner ring of the gear 81 and is welded and fixed with the gear 81. The rack 82 is welded and fixed on one side of the upright 13 parallel to the sliding direction.
Referring to fig. 1, a guide rod 11 is welded to one side of the braking plate 12 close to the top plate 10, and the guide rod 11 is of a round rod structure. In this embodiment, the number of the guide rods 11 is two, and the two guide rods 11 are symmetrically distributed on the braking plate 12 with the vertical rod 13 as a symmetry axis. The top plate 10 is provided with a guide hole 101, and the guide rod 11 is slidably inserted into the guide hole 101.
The implementation principle of the electric power construction kinking device of the embodiment of the application is as follows:
when the cable reel 1 is installed, the rotating shaft 3 is abutted to the first arc-shaped groove 411, then the mounting plate 5 is rotated to the mounting plate 5 to be parallel to the transverse plate 41 in the direction close to the bottom plate 2, then the mounting plate 5 is downwardly moved to be abutted to the transverse plate 41, at the moment, the first arc-shaped groove 411 and the second arc-shaped groove 52 form a rotating hole 6, then the fixing rod 71 is rotated to be clamped into the fixing groove 721 in the direction close to the fixing seat 72, and finally the eccentric wheel 73 is rotated to be abutted to the fixing seat 72, so that the installation of the cable reel 1 can be completed.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (8)

1. The utility model provides an electric power construction kinking device which characterized in that: the cable drum comprises a cable drum (1), wherein a rotating shaft (3) is arranged at the rotating center of the cable drum (1); the support is characterized by further comprising a bottom plate (2), wherein supports (4) are arranged on two opposite sides of the bottom plate (2), each support (4) comprises a first stand column (42) and a second stand column (43) which are vertically arranged on the bottom plate (2), the support (4) further comprises a transverse plate (41) which is arranged between the first stand column (42) and the second stand column (43), a first arc-shaped groove (411) for the rotation shaft (3) to lean against is formed in the transverse plate (41), a mounting plate (5) which is located above the transverse plate (41) is arranged in a lifting mode of the first stand column (42), and the mounting plate (5) can slide towards the direction close to or far away from the transverse plate (41); a second arc-shaped groove (52) is formed in one side, close to the transverse plate (41), of the mounting plate (5); work as mounting panel (5) are close to diaphragm (41) direction slip to when offseting with diaphragm (41), first arc wall (411) and second arc wall (52) form with rotation axis (3) looks adaptation rotation hole (6), be provided with between diaphragm (41) and mounting panel (5) when mounting panel (5) offset with diaphragm (41), be used for fixed subassembly (7) of fixed mounting panel (5).
2. The electric power construction winding device as claimed in claim 1, wherein: the fixing assembly (7) comprises fixing rods (71) rotatably arranged on one side, far away from the two transverse plates (41), of the transverse plate, the fixing assembly (7) further comprises a fixing seat (72) arranged on the mounting plate (5), a fixing groove (721) matched with the fixing rods (71) is formed in the fixing seat (72), and the fixing rods (71) can rotate towards the direction close to the fixing seat (72) to be clamped into the fixing grooves (721); the fixing assembly (7) further comprises an eccentric wheel (73) rotatably arranged at one end, far away from the rotating center, of the fixing rod (71), and when the fixing rod (71) rotates to be clamped into the fixing groove (721), the eccentric wheel (73) can rotate to be abutted against the fixing seat (72).
3. The electric power construction winding device as claimed in claim 1, wherein: the one end that second arc wall (52) were kept away from in mounting panel (5) is provided with slip post (9) perpendicularly, offer on first stand (42) and be used for supplying slip post (9) sliding connection's slip groove (421).
4. The electric power construction winding device as claimed in claim 3, wherein: offer hole of stepping down (422) that is linked together with groove of sliding (421) on first stand (42), work as when bottom plate (2) direction was upwards slided to mounting panel (5) and hole of stepping down (422) is in the relative position towards keeping away from in sliding post (9), mounting panel (5) can rotate to mounting panel (5) and offset with hole of stepping down (422) pore wall towards keeping away from bottom plate (2) direction.
5. The electric power construction winding device as claimed in claim 3, wherein: the sliding column (9) is of a round rod structure, and one end of the mounting plate (5) close to the sliding column (9) is provided with a guide angle (51).
6. The electric power construction winding device as claimed in claim 1, wherein: a top plate (10) is arranged between the two first upright columns (42), a brake hole (102) is formed in the top plate (10), an upright rod (13) penetrates through the brake hole (102) in a sliding manner, and a brake plate (12) which is used for abutting against the cable reel (1) is arranged at one end, close to the bottom plate (2), of the upright rod (13); and the top plate (10) is provided with a driving component (8) for controlling the vertical rod (13) to slide towards the direction close to or far away from the cable reel (1).
7. The electric power construction winding device as claimed in claim 6, wherein: drive assembly (8) include gear (81), with rack (82) of gear (81) meshing and be used for drive gear (81) pivoted driving motor (83), driving motor (83) fixed connection is on roof (10), rack (82) fixed connection is in pole setting (13) one side that is on a parallel with the glide direction.
8. The electric power construction winding device as claimed in claim 7, wherein: one side of the brake plate (12) close to the top plate (10) is provided with a guide rod (11), and the top plate (10) is provided with a guide hole (101) for the guide rod (11) to slide and penetrate.
CN202123256657.9U 2021-12-22 2021-12-22 Electric power construction kinking device Active CN216785327U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202123256657.9U CN216785327U (en) 2021-12-22 2021-12-22 Electric power construction kinking device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202123256657.9U CN216785327U (en) 2021-12-22 2021-12-22 Electric power construction kinking device

Publications (1)

Publication Number Publication Date
CN216785327U true CN216785327U (en) 2022-06-21

Family

ID=82009988

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202123256657.9U Active CN216785327U (en) 2021-12-22 2021-12-22 Electric power construction kinking device

Country Status (1)

Country Link
CN (1) CN216785327U (en)

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