CN219408664U - Anti-shake traction device for power cable - Google Patents

Anti-shake traction device for power cable Download PDF

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Publication number
CN219408664U
CN219408664U CN202320794106.8U CN202320794106U CN219408664U CN 219408664 U CN219408664 U CN 219408664U CN 202320794106 U CN202320794106 U CN 202320794106U CN 219408664 U CN219408664 U CN 219408664U
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CN
China
Prior art keywords
cable
bottom plate
clamping mechanism
wire passing
plate
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Active
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CN202320794106.8U
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Chinese (zh)
Inventor
沈伟佳
郭克钢
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Shenzhen Deep Cable Technology Co ltd
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Shenzhen Deep Cable Technology Co ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W30/00Technologies for solid waste management
    • Y02W30/50Reuse, recycling or recovery technologies
    • Y02W30/82Recycling of waste of electrical or electronic equipment [WEEE]

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Abstract

The utility model relates to the technical field of power cables, in particular to an anti-shake traction device of a power cable, which comprises a bottom plate, wherein universal wheels are arranged at four corners of the bottom plate, a handle is arranged at the front end of the bottom plate, two support plates are arranged at the front end of the surface of the bottom plate, a winding roller is rotationally connected between the two support plates, one end of the winding roller is provided with a first motor, the rear end of the winding roller is provided with a guide mechanism, and the surface of the bottom plate is provided with a guide mechanism; according to the utility model, the guide mechanism is arranged, when the cable is wound, the cable firstly passes through the first clamping mechanism, then passes through the bottom of the wire passing wheel, then passes through the second clamping mechanism and is wound on the surface of the winding roller, when the cable is wound and unwound, the direction is opposite, and when the cable is wound and unwound, the cable is in a tightened state, so that the cable cannot be disturbed by the outside to generate shaking, and the guide mechanism can be adjusted according to the position of the cable, so that the cable can be always kept in a vertical plane and cannot generate friction.

Description

Anti-shake traction device for power cable
Technical Field
The utility model relates to the technical field of power cables, in particular to an anti-shake traction device for a power cable.
Background
The cable is a rope-like cable formed by twisting several or several groups of wires (at least two wires in each group), each group of wires are mutually insulated and are often twisted around a center, the whole outer surface is covered with a highly insulating covering layer, the cable is erected in the air or is installed underground or under the water for telecommunication or power transmission, the cable is often used in power construction, the cable is often wound on a cable wheel, and the cable needs to be drawn and unwound when the cable is laid.
When the traction machine is used, the cable can shake due to external conditions such as wind blowing when the cable is pulled, the shake can be transmitted to equipment, and when the cable is pulled to be longer, the shake can be increased; in the prior art, as disclosed in application number 2022224087717, an anti-shake stable traction machine for a power cable specifically comprises a bottom plate, a buffer plate, a supporting rod, a wind-up roll, a fixed block, an adjusting rod and a pressing plate; through being equipped with the area of contact between buffer board multiplicable cable and the buffer board, reduce cable wear, utilize the stress axle to roll at the surface of fixed axle simultaneously, played the effect of the stress point of conveniently increasing the cable, utilize buffer spring can cushion connecting block, fixed axle and stress axle's atress simultaneously.
However, when the cable is wound and unwound, the cable is uniformly wound on the surface of the winding roller, so that the cable can transversely move, friction is generated on the stress shaft when the cable transversely moves in the application disclosed in the application number 2022224087717, and the possibility of abrasion of the cable is increased.
Disclosure of Invention
The utility model aims to provide an anti-shake traction device for a power cable, which is used for solving the problems in the background technology.
The aim of the utility model can be achieved by the following technical scheme:
the utility model provides a power cable anti-shake draw gear, includes the bottom plate, the four corners of bottom plate all is provided with the universal wheel, and the front end of bottom plate is provided with the handle, and the surface front end of bottom plate is provided with two backup pads, rotates between two backup pads and links to each other there is the wind-up roll, and the one end of wind-up roll is provided with first motor, and the rear end of wind-up roll and the surface of bottom plate are provided with guiding mechanism, and guiding mechanism slides with the bottom plate and links to each other.
Further, guiding mechanism includes first fixture and second fixture, and second fixture's structure is the same with first fixture, is provided with between first fixture and the second fixture and crosses line mechanism, and one side of crossing line mechanism is provided with first connecting rod, and crosses line mechanism and first fixture through first connecting rod fixedly link to each other, and the opposite side of crossing line mechanism is provided with the second connecting rod, and crosses line mechanism and second fixture through the second connecting rod fixedly link to each other.
Further, first fixture includes first fixed block, and the top of first fixed block is provided with first fixed plate, and first fixed plate internal rotation links to each other has the leading wheel, and the top of first fixed plate is provided with the riser, and the riser internal rotation links to each other has the squeeze roll, and the squeeze roll links to each other with the leading wheel, and the bottom of first fixed block is provided with first spacing slider, and first spout with first spacing slider matched with is seted up on the surface of bottom plate.
Further, the movable groove has been seted up on the surface of riser, is provided with the slide bar in the movable groove, and the both sides of squeeze roller are provided with the lift slider, and lift slider links to each other with the slide bar slip, and the bottom plate of lift slider and the surface cover of slide bar are equipped with reset spring, and lift slider passes through reset spring and links to each other with the riser.
Further, the wire passing mechanism comprises a second fixed block, a second fixed plate is arranged at the top of the second fixed block, a wire passing wheel is connected in a rotating mode in the second fixed plate, a second limiting sliding block is arranged at the bottom of the second fixed block, and a second sliding groove matched with the second limiting sliding block is formed in the surface of the bottom plate.
Further, the second chute is internally and rotatably connected with a screw rod, one end of the screw rod is provided with a second motor, and the second limit sliding block is connected with screw threads of the screw rod.
The utility model has the beneficial effects that:
according to the utility model, the guide mechanism is arranged, when the cable is wound, the cable firstly passes through the first clamping mechanism, then passes through the bottom of the wire passing wheel, and then passes through the second clamping mechanism, and is wound on the surface of the winding roller.
Drawings
In order to more clearly illustrate the embodiments of the present utility model or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described, and it will be obvious to those skilled in the art that other drawings can be obtained according to these drawings without inventive effort;
FIG. 1 is a schematic view of the overall structure of the present utility model;
FIG. 2 is a schematic view of the guide mechanism of the present utility model;
FIG. 3 is a schematic view of the structure of the riser of the present utility model;
fig. 4 is a schematic structural view of the threading mechanism of the present utility model.
Reference numerals in the drawings are as follows:
1. a bottom plate; 11. a first chute; 12. a second chute; 2. a universal wheel; 3. a support plate; 4. a wind-up roll; 5. a first motor; 6. a handle; 7. a guide mechanism; 71. a first clamping mechanism; 711. a first fixed block; 712. a first fixing plate; 713. a guide wheel; 714. a vertical plate; 7141. a movable groove; 7142. a slide bar; 7143. a lifting slide block; 7144. a return spring; 715. a squeeze roll; 716. the first limiting slide block; 72. a second clamping mechanism; 73. a wire passing mechanism; 731. a second fixed block; 732. a second fixing plate; 733. a wire passing wheel; 734. the second limit sliding block; 735. a screw rod; 736. a second motor; 74. a first link; 75. and a second link.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-4, an anti-shake traction device for a power cable comprises a base plate 1, universal wheels 2 are arranged at four corners of the base plate 1, a handle 6 is arranged at the front end of the base plate 1, a worker can grip the handle 6 to pull the traction device to move, two support plates 3 are arranged at the front end of the surface of the base plate 1, a winding roller 4 is rotatably connected between the two support plates 3, a first motor 5 is arranged at one end of the winding roller 4, the cable is required to be wound at the beginning, and therefore the winding roller 4 can be driven to rotate through the first motor 5, the cable is wound, a guide mechanism 7 is arranged at the rear end of the winding roller 4 and on the surface of the base plate 1, the guide mechanism 7 is slidably connected with the base plate 1, no matter whether the cable is wound or unwound, the cable is limited by the guide mechanism 7, and the guide mechanism 7 is used for limiting the cable to prevent the cable from shaking.
The guiding mechanism 7 comprises a first clamping mechanism 71 and a second clamping mechanism 72, the structure of the second clamping mechanism 72 is the same as that of the first clamping mechanism 71, a wire passing mechanism 73 is arranged between the first clamping mechanism 71 and the second clamping mechanism 72, a first connecting rod 74 is arranged on one side of the wire passing mechanism 73, the wire passing mechanism 73 is fixedly connected with the first clamping mechanism 71 through the first connecting rod 74, a second connecting rod 75 is arranged on the other side of the wire passing mechanism 73, the wire passing mechanism 73 is fixedly connected with the second clamping mechanism 72 through the second connecting rod 75, when the cable is wound, the cable sequentially passes through the first clamping mechanism 71, the wire passing mechanism 73 and the second clamping mechanism 72, when the cable is wound, the order is reversed, the cable can be tightened by using the three devices, the cable is prevented from being jittered due to external factors, the three devices can slide on the surface of the bottom plate 1 according to the position of the cable, the cable is kept always in the same vertical plane, and friction of the cable is reduced.
The first clamping mechanism 71 comprises a first fixing block 711, a first fixing plate 712 is arranged at the top of the first fixing block 711, a guide wheel 713 is rotationally connected to the first fixing plate 712, a vertical plate 714 is arranged at the top of the first fixing plate 712, a squeeze roller 715 is rotationally connected to the vertical plate 714, the squeeze roller 715 is connected with the guide wheel 713, a first limit slide block 716 is arranged at the bottom of the first fixing block 711, a first slide groove 11 matched with the first limit slide block 716 is formed in the surface of the bottom plate 1, and a cable passes through between the guide wheel 713 and the squeeze roller 715, wherein the squeeze roller 715 is used for limiting the cable.
The surface of the vertical plate 714 is provided with a movable groove 7141, a sliding rod 7142 is arranged in the movable groove 7141, two sides of the squeeze roller 715 are provided with lifting sliding blocks 7143, the lifting sliding blocks 7143 are connected with the sliding rod 7142 in a sliding mode, the surface of the bottom plate 1 of the lifting sliding blocks 7143 and the surface of the sliding rod 7142 are sleeved with a reset spring 7144, the lifting sliding blocks 7143 are connected with the vertical plate 714 through the reset spring 7144, the reset spring 7144 is always in a stretching state, and therefore the squeeze roller 715 is clung downwards to the surface of a cable under the action of the stretching force of the reset spring 7144 and the gravity of the squeeze roller 715 to limit the cable.
The wire passing mechanism 73 comprises a second fixing block 731, a second fixing plate 732 is arranged at the top of the second fixing block 731, a wire passing wheel 733 is connected in a rotating manner in the second fixing plate 732, a second limit sliding block 734 is arranged at the bottom of the second fixing block 731, a second sliding groove 12 matched with the second limit sliding block 734 is formed in the surface of the bottom plate 1, and a cable passes through the bottom of the wire passing wheel 733 and is used for tightening the cable.
The second chute 12 is rotationally connected with a lead screw 735, one end of the lead screw 735 is provided with a second motor 736, the rear end of the second motor 736 is fixed in the first chute 11 through a mounting frame, and the second limit sliding block 734 is in threaded connection with the lead screw 735.
The foregoing has shown and described the basic principles, principal features and advantages of the utility model. It will be understood by those skilled in the art that the present utility model is not limited to the embodiments described above, and that the above embodiments and descriptions are merely illustrative of the principles of the present utility model, and various changes and modifications may be made without departing from the spirit and scope of the utility model, which is defined in the appended claims.

Claims (6)

1. The utility model provides a power cable anti-shake draw gear, includes bottom plate (1), its characterized in that, the four corners of bottom plate (1) all is provided with universal wheel (2), and the front end of bottom plate (1) is provided with handle (6), and the surface front end of bottom plate (1) is provided with two backup pads (3), rotates between two backup pads (3) and links to each other there is wind-up roll (4), and the one end of wind-up roll (4) is provided with first motor (5), and the rear end of wind-up roll (4) and the surface of bottom plate (1) are provided with guiding mechanism (7), and guiding mechanism (7) and bottom plate (1) slip link to each other.
2. The power cable anti-shake traction apparatus according to claim 1, wherein the guiding mechanism (7) comprises a first clamping mechanism (71) and a second clamping mechanism (72), the structure of the second clamping mechanism (72) is the same as that of the first clamping mechanism (71), a wire passing mechanism (73) is arranged between the first clamping mechanism (71) and the second clamping mechanism (72), a first connecting rod (74) is arranged on one side of the wire passing mechanism (73), the wire passing mechanism (73) is fixedly connected with the first clamping mechanism (71) through the first connecting rod (74), a second connecting rod (75) is arranged on the other side of the wire passing mechanism (73), and the wire passing mechanism (73) is fixedly connected with the second clamping mechanism (72) through the second connecting rod (75).
3. The power cable anti-shake traction device according to claim 2, wherein the first clamping mechanism (71) comprises a first fixing block (711), a first fixing plate (712) is arranged at the top of the first fixing block (711), a guide wheel (713) is connected in a rotating manner to the first fixing plate (712), a vertical plate (714) is arranged at the top of the first fixing plate (712), a squeeze roller (715) is connected in a rotating manner to the vertical plate (714), the squeeze roller (715) is connected with the guide wheel (713), a first limit slide block (716) is arranged at the bottom of the first fixing block (711), and a first slide groove (11) matched with the first limit slide block (716) is formed in the surface of the bottom plate (1).
4. The power cable anti-shake traction device according to claim 3, wherein a movable groove (7141) is formed in the surface of the vertical plate (714), a sliding rod (7142) is arranged in the movable groove (7141), lifting sliding blocks (7143) are arranged on two sides of the extrusion roller (715), the lifting sliding blocks (7143) are connected with the sliding rod (7142) in a sliding mode, a reset spring (7144) is sleeved on the surface of the bottom plate (1) of the lifting sliding block (7143) and the surface of the sliding rod (7142), and the lifting sliding blocks (7143) are connected with the vertical plate (714) through the reset spring (7144).
5. The power cable anti-shake traction device according to claim 2, wherein the wire passing mechanism (73) comprises a second fixing block (731), a second fixing plate (732) is arranged at the top of the second fixing block (731), a wire passing wheel (733) is connected in a rotating manner to the second fixing plate (732), a second limit sliding block (734) is arranged at the bottom of the second fixing block (731), and a second sliding groove (12) matched with the second limit sliding block (734) is formed in the surface of the bottom plate (1).
6. The power cable anti-shake traction device according to claim 5, wherein a screw (735) is rotatably connected to the second chute (12), a second motor (736) is disposed at one end of the screw (735), and a second limit slider (734) is screwed to the screw (735).
CN202320794106.8U 2023-04-06 2023-04-06 Anti-shake traction device for power cable Active CN219408664U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320794106.8U CN219408664U (en) 2023-04-06 2023-04-06 Anti-shake traction device for power cable

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320794106.8U CN219408664U (en) 2023-04-06 2023-04-06 Anti-shake traction device for power cable

Publications (1)

Publication Number Publication Date
CN219408664U true CN219408664U (en) 2023-07-25

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ID=87208264

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320794106.8U Active CN219408664U (en) 2023-04-06 2023-04-06 Anti-shake traction device for power cable

Country Status (1)

Country Link
CN (1) CN219408664U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117003050A (en) * 2023-08-31 2023-11-07 国网新源集团有限公司 A cable traction device used in the construction of pumped storage power stations
CN117864863A (en) * 2023-12-15 2024-04-12 武汉钢铁江北集团金属制品有限公司 A wire taking-up device for producing prestressed steel strand

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117003050A (en) * 2023-08-31 2023-11-07 国网新源集团有限公司 A cable traction device used in the construction of pumped storage power stations
CN117864863A (en) * 2023-12-15 2024-04-12 武汉钢铁江北集团金属制品有限公司 A wire taking-up device for producing prestressed steel strand

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