CN217417696U - Cable winding device - Google Patents

Cable winding device Download PDF

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Publication number
CN217417696U
CN217417696U CN202220469904.9U CN202220469904U CN217417696U CN 217417696 U CN217417696 U CN 217417696U CN 202220469904 U CN202220469904 U CN 202220469904U CN 217417696 U CN217417696 U CN 217417696U
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China
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winding
cable
inner sleeve
lifting mechanism
driving device
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CN202220469904.9U
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Chinese (zh)
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黄钰琨
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Dongguan Ruisheng Wire & Cable Co ltd
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Dongguan Ruisheng Wire & Cable Co ltd
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Abstract

The utility model discloses a cable winding device, which comprises a workbench, a winding device and a driving device; the winding device comprises a rotating platform and a winding group, the rotating platform is fixedly connected with the driving device, and an initial fixing mechanism and a feeding channel are correspondingly arranged on two sides of the winding group respectively; the winding group comprises at least two groups of winding mechanisms arranged on the rotating platform, each winding mechanism is provided with a first lifting mechanism, a winding cavity is formed between the winding mechanisms of the groups under the action of the driving device, and the initial fixing mechanism, the winding cavity and the feeding channel sequentially form a cable arranging cavity. The utility model discloses the cooperation sets up multiunit wire winding mechanism, is convenient for adjust wire winding chamber adaptation in the cable bundle design endotheca of different specifications, and then is used for the not unidimensional cable of rolling, and is equipped with first elevating system, realizes that every rolling round cable then orders about the corresponding rolling height of coiling device lift, avoids appearing overline, indiscriminate line, winding or phenomenons such as knoing, improves orderliness and clean and tidy nature that the cable arrangement was accomodate.

Description

Cable winding device
Technical Field
The utility model relates to a cable wire technical field, concretely relates to cable winding device.
Background
In cable wire production technology, cable wire product adopts the wire reel to carry out the rolling generally and accomodates, in order to realize the cable bundle of the different specifications of rolling, need to change the wire reel of corresponding specification, but because current wire reel and winding device are supporting the setting, if the cable bundle of the different specifications of rolling, then need set up many winding devices, the device is with high costs, and the cable rolling pulling direction and the height of this kind of winding device are fixed unchangeable, when the rolling wire winding, the cable is extremely easily striden line from top to bottom, indiscriminate line and influence rolling effect and efficiency, and order about the wire reel because of the rolling pulling force is too big towards the opposite direction rotation of wire winding easily, and then lead to the cable winding not hard up, winding problem.
SUMMERY OF THE UTILITY MODEL
In order to overcome the technical problem, the utility model discloses a cable winding device.
The utility model discloses a realize that the technical scheme that above-mentioned purpose adopted is:
a cable winding device comprises a workbench, a winding device and a driving device, wherein the winding device and the driving device are respectively arranged above and below the workbench;
the winding device comprises a rotating platform and a winding group, the rotating platform is fixedly connected with the driving device, and an initial fixing mechanism and a feeding channel are correspondingly arranged on two sides of the winding group respectively;
the winding group including at least two sets of set up in winding mechanism on the revolving stage, each winding mechanism is provided with a elevating system a plurality of groups under drive arrangement's effect form the wire winding chamber between the winding mechanism, originated fixed establishment, wire winding chamber and feedstock channel form cable arrangement chamber in proper order.
In the cable winding device, the winding mechanism includes a winding table and a positioning column longitudinally penetrating through the winding table, the positioning column is fixedly connected with the first lifting mechanism, and a cable harness shaping inner sleeve is sleeved between adjacent positioning columns.
According to the cable winding device, the cable limiting bulges are arranged at the edges of the cable bundle shaping inner sleeves, and the arranging wire accommodating cavities are formed between the cable limiting bulges and the winding table.
In the cable winding device, the peripheral surface of the cable bundle shaping inner sleeve is annularly provided with the plurality of cable placing grooves at intervals.
In the cable winding device, the top end of the positioning column is provided with the inner sleeve mounting protrusion corresponding to the cable bundle sizing inner sleeve.
In the cable winding device, the winding table is internally provided with the mechanism placing cavity for installing the first lifting mechanism, and the mechanism placing cavity is communicated with the inner sleeve avoiding groove corresponding to the cable harness shaping inner sleeve.
In the cable winding device, the initial fixing mechanism comprises a wire fixing component and a second lifting mechanism, and the second lifting mechanism is arranged on the rotating table;
the thread fixing assembly comprises an initial thread fixing clamping block and an opening and closing mechanism, the opening and closing mechanism is arranged on the second lifting mechanism and connected with the initial thread fixing clamping block, and the initial thread fixing clamping block corresponds to the arrangement thread accommodating cavity.
In the cable winding device, the workbench is provided with the induction sensor, the rotary table is provided with the induction part corresponding to the induction sensor, and the induction sensor is electrically connected with the first lifting mechanism and the second lifting mechanism respectively.
In the above cable winding device, the driving device includes a transmission shaft and a motor, the transmission shaft is fixedly connected to the rotary table, a first transmission wheel and a second transmission wheel are respectively sleeved on the transmission shaft and a driving shaft of the motor, and a synchronous belt is sleeved on the first transmission wheel and the second transmission wheel.
In the cable winding device, the motor is controlled by the controller to rotate and turn.
The beneficial effects of the utility model are that: the utility model is provided with the winding device and the driving device in a matching way, so as to realize the rapid and directional winding of the cable; the winding device is provided with a plurality of groups of winding mechanisms, so that the winding cavity can be adjusted to adapt to cable harness shaping inner sleeves with different specifications conveniently, and the winding device can be used for winding cable harnesses with different sizes; secondly, the cables are directionally arranged along the specific cable arranging cavity, so that the phenomenon that the winding position is influenced due to the fact that the cables are inclined or stressed unevenly is avoided, and further the cables are deformed, worn or wound and loosened due to extrusion stress.
Drawings
The present invention will be further described with reference to the accompanying drawings and examples.
Fig. 1 is a schematic perspective view of the structure of the present invention.
Detailed Description
The present invention is further described below with reference to specific embodiments, so that the technical solution of the present invention is easier to understand and master, rather than to limit the present invention.
Example (b): referring to fig. 1, the cable winding device provided in this embodiment includes a workbench, and a winding device and a driving device respectively disposed above and below the workbench;
the winding device comprises a rotating platform 1 and a winding group, the rotating platform 1 is fixedly connected with the driving device, and an initial fixing mechanism and a feeding channel are correspondingly arranged on two sides of the winding group respectively;
winding group including at least two sets up in winding mechanism on the revolving stage 1, each winding mechanism is provided with a elevating system 4 a plurality of groups under drive arrangement's effect form the wire winding chamber between the winding mechanism, originated fixed establishment, wire winding chamber and feedstock channel form cable arrangement chamber in proper order.
Specifically, the winding device and the driving device are arranged in a matched mode, so that the cable can be wound quickly and directionally; the winding device is provided with a plurality of groups of winding mechanisms, so that the winding cavities can be conveniently adjusted to be matched with the cable harness shaping inner sleeves 3 with different specifications, and further the cable harnesses with different sizes can be wound, the application range is wide, and the first lifting mechanism 4 is matched to drive the winding device to lift the corresponding winding height when winding a circle of cable, so that the phenomena of vertical line crossing, line disorder, winding or knotting and the like are avoided, and the orderliness and tidiness of cable arrangement and storage are effectively improved; secondly, the cables are directionally arranged along the specific cable arranging cavity, so that the phenomenon that the winding position is influenced due to the fact that the cables are inclined or stressed unevenly is avoided, and further the cables are deformed, worn or wound and loosened due to extrusion stress.
Preferably, the winding mechanism comprises a winding table and positioning columns 2 longitudinally penetrating through the winding table, the positioning columns 2 are fixedly connected with the first lifting mechanism 4, and a cable harness shaping inner sleeve 3 is sleeved between adjacent positioning columns 2; the cable bundle shaping inner sleeve 3 is used for placing supporting cables when the cables are wound, prevents the cables from being wound and pressed to be worn, and can replace the cable bundle shaping inner sleeve 3 with corresponding specifications according to actual use requirements so as to improve the applicability of the device.
Furthermore, a cable limiting bulge is arranged at the edge of the cable bundle shaping inner sleeve 3, and a tidying wire accommodating cavity is formed between the cable limiting bulge and the winding table; specifically, the cable limiting protrusion is used for limiting the cable rolling position range and further optimizing the cable rolling order; in the winding process, the first lifting mechanism 4 drives the cable bundle shaping inner sleeve 3 to lift corresponding winding height, so that the cable accurately enters the arranging wire accommodating cavity, and the cable is wound neatly and compactly; wherein, the rolling height is the diameter of the cable.
Further, the peripheral face of cable bundle design endotheca 3 is equipped with a plurality of cables according to the interval distance ring and places the recess, the cable is placed the recess and is further injectd the cable rolling position, avoids appearing crossing the line from top to bottom, indiscriminate line, winding or phenomenon such as knot, optimizes cable wire winding rolling effect.
Specifically, the top end of the positioning column 2 is provided with an inner sleeve mounting protrusion corresponding to the cable harness shaping inner sleeve 3, so that the cable harness shaping inner sleeve 3 can be conveniently positioned and mounted.
Preferably, a mechanism placing cavity for mounting the first lifting mechanism 4 is arranged in the winding table, and an inner sleeve avoiding groove is formed in the mechanism placing cavity and corresponds to the cable harness shaping inner sleeve 3; the inner sleeve avoiding groove is used for avoiding when the cable bundle shaping inner sleeve 3 ascends and descends, the rolling orderliness is further normalized, and the cable rolling efficiency is prevented from being hindered.
Further, the initial fixing mechanism comprises a wire fixing component 5 and a second lifting mechanism 6, and the second lifting mechanism 6 is arranged on the rotating platform 1;
the thread fixing assembly 5 comprises an initial thread fixing clamping block and an opening and closing mechanism, the opening and closing mechanism is arranged on the second lifting mechanism 6 and connected with the initial thread fixing clamping block, and the initial thread fixing clamping block is arranged corresponding to the arranging thread containing cavity; the opening and closing mechanism drives the initial wire fixing clamping block to fix the head end of the cable, and then when the driving device drives the cable to rotate, the cable is wound on the cable bundle shaping inner sleeve 3 under the action of specific tension, so that the cable is uniformly stressed and is orderly arranged.
Furthermore, an induction sensor 8 is arranged on the workbench, an induction part is arranged on the rotary table 1 corresponding to the induction sensor 8, and the induction sensor 8 is electrically connected with the first lifting mechanism 4 and the second lifting mechanism 6 respectively; specifically, when drive arrangement drive revolving stage 1 is rotatory, induction sensor 8 is once inducted the response piece, first elevating system 4, second elevating system 6 order about respectively winding mechanism, solidus subassembly 5 go up and down corresponding rolling height to ensure that the cable accurately winds up in the arrangement is received in the line chamber, improves the orderliness and the precision of rolling.
Preferably, the driving device comprises a transmission shaft and a motor 7, the transmission shaft is fixedly connected with the rotating platform 1, a first transmission wheel and a second transmission wheel are respectively sleeved on the transmission shaft and a driving shaft of the motor 7, and a synchronous belt is sleeved on the first transmission wheel and the second transmission wheel; further, the motor 7 is controlled by the controller to rotate and turn; the motor 7 drives the rotating platform 1 to rotate at a constant speed through a synchronous belt, so that the winding stability of the device is improved.
When the utility model works, the cable to be coiled is placed in the feed channel, the head end of the cable is clamped in the initial fixing mechanism, and the first lifting mechanism 4 drives the winding mechanism to be in the lowest position; the driving device drives the rotating platform 1 to rotate, the cable is wound in the cable placing groove, and along with each rotation of the rotating platform 1 for one circle, the first lifting mechanism 4 and the second lifting mechanism 6 drive the winding mechanism and the wire fixing component 5 to rise by a winding height respectively, and the winding is continued until the winding operation is completed.
The utility model is provided with the winding device and the driving device in a matching way, so as to realize the rapid and directional winding of the cable; the winding device is provided with a plurality of groups of winding mechanisms, so that the winding cavity can be conveniently adjusted to be matched with the cable harness shaping inner sleeves with different specifications and further used for winding cable harnesses with different sizes, the application range is wide, and the winding device is driven to lift a corresponding winding height by winding a circle of cable, so that the phenomena of vertical line crossing, line disorder, winding or knotting and the like are avoided, and the orderliness and tidiness of cable arrangement and storage are effectively improved; secondly, the cables are directionally arranged along the specific cable arranging cavity, so that the phenomenon that the winding position is influenced due to the fact that the cables are inclined or stressed unevenly is avoided, and further the cables are deformed, worn or wound and loosened due to extrusion stress.
The above description is only for the preferred embodiment of the present invention, and is not intended to limit the present invention in any way. The technical solution of the present invention can be used by anyone skilled in the art to make many possible variations and modifications, or to modify equivalent embodiments, using the technical means and contents disclosed above, without departing from the scope of the technical solution of the present invention. Therefore, the technical solution of the present invention is not to be separated from the content of the present invention, and the equivalent changes made according to the shape, structure and principle of the present invention should be covered by the protection scope of the present invention.

Claims (10)

1. A cable winding device is characterized by comprising a workbench, a winding device and a driving device, wherein the winding device and the driving device are respectively arranged above and below the workbench;
the winding device comprises a rotating platform and a winding group, the rotating platform is fixedly connected with the driving device, and an initial fixing mechanism and a feeding channel are correspondingly arranged on two sides of the winding group respectively;
winding group including at least two sets of set up in winding mechanism on the revolving stage, each winding mechanism is provided with a elevating system a plurality of groups under drive arrangement's the effect form the wire winding chamber between the winding mechanism, originated fixed establishment, wire winding chamber and feedstock channel form cable arrangement chamber in proper order.
2. The cable winder according to claim 1, wherein the winding mechanism includes a winding table and positioning posts longitudinally penetrating the winding table, the positioning posts are fixedly connected to the first lifting mechanism, and a cable harness shaping inner sleeve is sleeved between adjacent positioning posts.
3. The cable winder according to claim 2, wherein the cable harness shaping inner sleeve is provided with a cable limiting protrusion at the edge thereof, and a tidying wire accommodating cavity is formed between the cable limiting protrusion and the winding table.
4. The cable winder as claimed in claim 3, wherein the outer peripheral surface of the bundle-forming inner sleeve is annularly provided with a plurality of cable-receiving grooves at intervals.
5. The cable winder according to claim 4, wherein the top end of the positioning post is provided with an inner sleeve mounting protrusion corresponding to the cable harness shaping inner sleeve.
6. The cable winder according to claim 5, wherein a mechanism accommodating cavity is formed in the winding table for accommodating the first lifting mechanism, and an inner sleeve evasion groove is formed in the mechanism accommodating cavity and corresponds to the cable harness shaping inner sleeve.
7. The cable winder of claim 6, wherein the initial fixing mechanism comprises a wire fixing assembly and a second lifting mechanism, and the second lifting mechanism is arranged on the rotating table;
the thread fixing assembly comprises an initial thread fixing clamping block and an opening and closing mechanism, the opening and closing mechanism is arranged on the second lifting mechanism and connected with the initial thread fixing clamping block, and the initial thread fixing clamping block corresponds to the arrangement thread accommodating cavity.
8. The cable winding device according to claim 7, wherein an inductive sensor is disposed on the worktable, an inductive element is disposed on the rotary table corresponding to the inductive sensor, and the inductive sensor is electrically connected to the first lifting mechanism and the second lifting mechanism, respectively.
9. The cable winding device according to claim 8, wherein the driving device comprises a transmission shaft and a motor, the transmission shaft is fixedly connected to the rotary table, a first transmission wheel and a second transmission wheel are respectively sleeved on the transmission shaft and a driving shaft of the motor, and a synchronous belt is sleeved on the first transmission wheel and the second transmission wheel.
10. The cable winder of claim 9, wherein the motor is controlled by the controller for speed and direction.
CN202220469904.9U 2022-03-04 2022-03-04 Cable winding device Active CN217417696U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220469904.9U CN217417696U (en) 2022-03-04 2022-03-04 Cable winding device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220469904.9U CN217417696U (en) 2022-03-04 2022-03-04 Cable winding device

Publications (1)

Publication Number Publication Date
CN217417696U true CN217417696U (en) 2022-09-13

Family

ID=83178748

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220469904.9U Active CN217417696U (en) 2022-03-04 2022-03-04 Cable winding device

Country Status (1)

Country Link
CN (1) CN217417696U (en)

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