CN213707318U - Take optical cable storage device of dancing wheel - Google Patents
Take optical cable storage device of dancing wheel Download PDFInfo
- Publication number
- CN213707318U CN213707318U CN202022687028.0U CN202022687028U CN213707318U CN 213707318 U CN213707318 U CN 213707318U CN 202022687028 U CN202022687028 U CN 202022687028U CN 213707318 U CN213707318 U CN 213707318U
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- wheel
- wire
- tensioning
- optical cable
- dancing
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Abstract
The utility model relates to a store up the traditional thread binding putting, concretely relates to take optical cable of dance wheel to store up traditional thread binding putting. The wire storage device is composed of a tensioning guide mechanism and a winding mechanism, wherein the winding mechanism is arranged on one side of the tensioning guide mechanism, and a wire storage disc is arranged on the winding mechanism. The cable storage device can provide a tension force when the optical cable is wound through the tensioning guide mechanism, so that the optical cable can be wound and compacted on the cable storage disc, the tension force can be adjusted by matching the tensioning cylinder with the balancing weight, the tension force is further adapted to the surface tension of the optical cable, different optical cables cannot be broken and can be wound and compacted in the winding and coiling process, and the cable storage device has high universality; the optical cable can be wound neatly through the cable guide device, and the unit cable storage amount can be effectively increased by matching with the tensioning guide mechanism; the problems that an existing wire storage device is not compact in winding, scattered and disordered in winding and poor in universality are solved.
Description
Technical Field
The utility model relates to a store up the traditional thread binding putting, concretely relates to take optical cable of dance wheel to store up traditional thread binding putting.
Background
Including the wire drawing at optical cable production process, the optic fibre is colored, the optic fibre second cover, stranding and suit sheath, the wire drawing, the optic fibre is colored, the optic fibre second cover, stranding and suit sheath all need to use the wire storage device, so that store, shift and transport the optical cable of production, the optical cable after the stranding passes through the wire storage device and twines the lapping after, shift to suit sheath station and unreel again and through indulging package device, suit sheaths such as extrusion molding device, the optical cable that the suit sheath was accomplished passes through the wire storage device rolling again and just can take out. However, the existing cable storage device is not compact in winding due to structural reasons, and the winding is scattered and disordered in the winding process, so that the cable storage device is not attractive, less in unit cable storage amount, poor in universality and not easy to adjust the tension according to the surface tension of the optical cable, and therefore the improvement of the cable storage device is needed.
Disclosure of Invention
The utility model aims at: the optical cable wire storage device with the dancing wheel can adjust the tension force, and can be wound compactly and tidily, so that the unit wire storage amount can be effectively increased.
The technical scheme of the utility model is that:
the utility model provides a take optical cable wire storage device of dancing wheel, it comprises tensioning guiding mechanism and winding mechanism, its characterized in that: one side of the tensioning guide mechanism is provided with a winding mechanism, and a wire storage disc is arranged on the winding mechanism.
The tensioning guide mechanism comprises a support frame, a wire feeding wheel, a dancing wheel, a tensioning main wheel and a tensioning auxiliary wheel, wherein the wire feeding wheel is movably mounted on the support frame, the dancing wheel is movably mounted on the support frame on one side of the wire feeding wheel through a rotating shaft and a support rod, the tensioning main wheel is movably mounted on the support frame between the dancing wheel and the wire feeding wheel, and the tensioning auxiliary wheel is movably mounted on the support frame above the tensioning main wheel.
The tensioning main wheel is hinged with the support frame through a connecting rod, a tensioning cylinder is movably mounted on the support frame above the connecting rod, and the end of a piston rod of the tensioning cylinder is hinged with the connecting rod; the connecting rod is hoisted with a balancing weight through a pull rope, and the pull rope is connected with the supporting frame through a pulley.
The dancing wheel, the tensioning main wheel and the tensioning auxiliary wheel are respectively provided with a wire guide groove, wherein the tensioning main wheel is provided with a plurality of wire guide grooves in a parallel manner.
The support frame on have a bracing piece through pivot movable mounting, the bracing piece passes through round pin axle and dance wheel swing joint.
Contacts are uniformly distributed on the dancing wheel in a circular ring shape; the supporting rod is provided with a counting probe which penetrates through the supporting rod to be in intermittent contact connection with the contact.
The winding mechanism is composed of an assembly plate, a winding motor and a wire guide, the assembly plate is L-shaped, the winding motor is arranged on the assembly plate, and the wire guide is arranged on the end face of the assembly plate above the winding motor; the output shaft of the winding motor is connected with the wire storage disc in a plug-in mounting mode through a sliding key.
The wire guide device comprises a wire electric cylinder, a mounting plate, a wire guide wheel and a wire guide baffle plate, wherein the mounting plate is arranged on the wire electric cylinder, the wire guide wheel is mounted at the end of the mounting plate through a pin shaft, and the wire guide baffle plate is arranged on the mounting plate and spaced from the wire guide wheel; the wire guide is fixedly connected with the assembly plate through a wire electric cylinder.
The wire guiding wheel is provided with a wire guiding groove.
The beneficial effects of the utility model reside in that:
the optical cable storage device with the dancing wheel can provide a tensioning force when the optical cable is wound through the tensioning guide mechanism, so that the optical cable can be wound and compacted on the cable storage disc, the tensioning force can be adjusted by matching the tensioning cylinder with the counterweight block, the tensioning force is further adapted to the surface tension of the optical cable, different optical cables cannot be broken and can be wound and compacted in the winding and coiling process, and the optical cable storage device has high universality; the optical cable can be wound neatly through the cable guide device, and the unit cable storage amount can be effectively increased by matching with the tensioning guide mechanism; the problems that an existing wire storage device is not compact in winding, scattered and disordered in winding and poor in universality are solved.
Drawings
Fig. 1 is a schematic structural diagram of the present invention;
FIG. 2 is a schematic left side view of FIG. 1;
fig. 3 is a schematic structural view of the winding mechanism of the present invention;
FIG. 4 is an enlarged schematic view at A in FIG. 3;
fig. 5 is a schematic view of the working state of the present invention.
In the figure: 1. wire storage disc, 2, support frame, 3, wire inlet wheel, 4, dance wheel, 5, tensioning main wheel, 6, tensioning auxiliary wheel, 7, connecting rod, 8, tensioning cylinder, 9, stay cord, 10, balancing weight, 11, pulley, 12, wire guide groove, 13, pivot, 14, bracing piece, 15, contact, 16, count probe, 17, assembly plate, 18, rolling motor, 19, the electronic jar of wire, 20, mounting panel, 21, wire guide wheel, 22, wire baffle.
Detailed Description
The optical cable storage device with the dancing wheel consists of a tensioning guide mechanism and a winding mechanism, wherein the winding mechanism is arranged on one side of the tensioning guide mechanism at intervals, and a cable storage disc 1 is arranged on the winding mechanism; the tensioning guide mechanism is composed of a support frame 2, a wire inlet wheel 3, a dancing wheel 4, a tensioning main wheel 5 and a tensioning auxiliary wheel 6, the wire inlet wheel 3 is movably mounted on the support frame 2, the wire inlet wheel 3 is movably connected with the support frame 2 through a pin shaft, and the wire inlet wheel 3 is used for eliminating the shaking of the optical cable and stabilizing the optical cable; a rotating shaft 13 is movably arranged on the supporting frame 2 at one side of the wire inlet wheel 3 through a bearing, a supporting rod 14 is arranged on the rotating shaft 13, a dancing wheel 4 is movably arranged at the end of the supporting rod 14 through a pin shaft, and the rotating shaft 13 is used for enabling the dancing wheel 4 to swing by taking the rotating shaft 13 as an axis in the process of optical cable movement in a manner that the rotating shaft 13 is matched with the supporting rod 14, so that the direction of the dancing wheel 4 is consistent with the movement direction of the optical; contacts 15 are uniformly distributed on the dancing wheel 4 in a circular ring shape, a counting probe 16 is arranged on the supporting rod 14, the counting probe 16 penetrates through the supporting rod 14 to be in intermittent contact connection with the contacts 15, the dancing wheel 4 is driven by the optical cable to move in the optical cable winding process, the movable contacts are driven to rotate by taking the pin shaft as the axis in the dancing wheel 4 rotating process, the contacts are contacted with the counting probe 16 one by one, and therefore the counting probe 16 can count the winding length of the optical cable in cooperation with the contacts 15, and the optical cable length on the wire storage disc 1 can be counted conveniently; a tensioning main wheel 5 is movably mounted on the supporting frame 2 between the dancing wheel 4 and the wire inlet wheel 3, and the tensioning main wheel 5 is hinged with the supporting frame 2 through a connecting rod 7 so that the tensioning main wheel 5 can swing up and down; a tensioning cylinder 8 is movably mounted on the support frame 2 above the connecting rod 7, and the end of a piston rod of the tensioning cylinder 8 is hinged with the connecting rod 7; a balancing weight 10 is arranged on one side of a connecting rod 7, the balancing weight 10 is connected with the connecting rod 7 in a hoisting way through a pull rope 9, a pulley 11 is arranged on a support frame 2 above the connecting rod 7, one end of the pull rope 9 is connected with the balancing weight 10, the other end of the pull rope 9 is fixedly connected with the connecting rod 7 by passing through the pulley 11, when the tension of the optical cable is reduced, the gravity of a tension main wheel 5 can be counteracted by increasing the balance weight of the balancing weight 10 and increasing the tension of a tension cylinder 8 so as to reduce the tension of the tension main wheel 5 on the optical cable, when the tension of the optical cable is increased, the gravity of the tension main wheel 5 can be increased by reducing the balance weight of the balancing weight 10 and increasing the thrust of the tension cylinder 8 so as to increase the tension of the tension main wheel 5 on the optical cable, the tension of the optical cable is adapted to the surface tension of, the optical cable is prevented from being broken, so that the universality can be effectively improved, the tension force of the optical cable is prevented from being too small, the optical cable can be tensioned when the optical cable is wound, the optical cable is wound and compacted, and the unit wire storage capacity of the optical cable can be effectively improved; the counterweight 10 is used for reducing the tension fluctuation of the main tensioning wheel 5 to the optical cable caused by the air pressure fluctuation of the tensioning cylinder 8 under the inertia action of the main tensioning wheel 5 and the counterweight 10; a tension auxiliary wheel 6 is movably mounted on the support frame 2 above the tension main wheel 5, the tension auxiliary wheel 6 is movably connected with the support frame through a pin shaft, when the optical cable tensioning device works, the optical cable sequentially penetrates and winds the tension main wheel 5 and the tension auxiliary wheel 6, and the tension main wheel 5 is matched with the tension auxiliary wheel 6 to tension the optical cable, so that the optical cable is straightened; the optical cable winding device is characterized in that the wire grooves 12 are respectively arranged, wherein the wire grooves 12 are used for limiting the position of the optical cable when the optical cable sequentially penetrates and winds the wire feeding wheel 3, the tensioning main wheel 5, the tensioning auxiliary wheel 6 and the dancing wheel 4, so that the optical cable is not easy to separate from the wire feeding wheel 3, the tensioning main wheel 5, the tensioning auxiliary wheel 6 and the dancing wheel 4, and the plurality of wire grooves 12 are arranged on the tensioning main wheel 5 in parallel, so that the optical cable penetrates and winds the tensioning main wheel 5 for multiple times, the tensioning force of the tensioning main wheel 5 on the optical cable is ensured, meanwhile, the length of the optical cable between the tensioning main wheel 5 and the tensioning auxiliary wheel 6 is enough long, further, when the winding speed is suddenly accelerated, the shortage of the paying-off speed can be supplemented through the optical cable between the tensioning main wheel 5 and the tensioning auxiliary wheel 6.
The winding mechanism is composed of an assembly plate 17, a winding motor 18 and a wire guide, wherein the assembly plate 17 is L-shaped, the winding motor 18 is arranged on the assembly plate 17, an output shaft of the winding motor 18 is connected with the wire storage coil 1 in an inserting manner through a sliding key, and when the winding mechanism works, the winding motor 18 can drive the wire storage coil 1 to rotate through the sliding key, and pulls the optical cable to be wound on the wire storage coil 1 in the rotating process of the wire storage coil 1 so as to wind the optical cable; a wire guide is arranged on the end face of the assembly plate 17 above the winding motor 18 and consists of a wire electric cylinder 19, an installation plate 20, a wire guide wheel 21 and a wire baffle plate 22, the installation plate 20 is arranged on the wire electric cylinder 19, the wire guide wheel 21 is arranged at the end of the installation plate 20 through a pin shaft, and a wire guide groove 12 is arranged on the wire guide wheel 21; the installation plate 20 is provided with a wire baffle 22 at an interval with the wire guide wheel, and the wire baffle 22 is used for preventing the optical cable from being separated from the wire guide wheel 21 by matching the wire baffle 22 with the wire guide groove 12 on the wire guide wheel 21 in the process that the wire guide wheel 21 drives the optical cable to move; the wire guide is fixedly connected with the assembly plate 17 through a wire electric cylinder 19.
This take optical cable of dancing wheel stores up traditional thread binding putting to the optical cable rolling, need wear the optical cable around on this stores up traditional thread binding putting, and its concrete process is: the optical cable end is threaded on a wire guide groove 12 of a wire feeding wheel 3, the optical cable end threaded on the wire feeding wheel 3 is threaded on a wire guide groove 12 on a tensioning main wheel 5 and is threaded on a wire guide groove 12 on a tensioning auxiliary wheel 6, the optical cable end threaded on the tensioning auxiliary wheel 6 is threaded on other wire guide grooves 12 on the tensioning main wheel 5 again and penetrates out of the tensioning main wheel 5, the optical cable end penetrates out of the tensioning main wheel 5, then is threaded on the wire guide groove 12 of a dancing wheel 4 and penetrates out of the dancing wheel 4, and after penetrating out of the dancing wheel 4, the optical cable end is inserted between a wire guide wheel 21 and a wire baffle plate 22, so that the optical cable is threaded on the wire guide groove 12 of the wire guide wheel 21, and then is connected to a wire storage disc 1 after passing through the optical cable end.
After the optical cable is wound on the cable storage device in a penetrating mode, when the cable storage device winds the optical cable, the winding motor 18 and the electric wire cylinder 19 are started, after the winding motor 18 is started, the winding motor 18 drives the cable storage disc 1 to rotate through a sliding key, the cable storage disc 1 pulls the optical cable, the optical cable is further wound on the cable storage disc 1 sequentially through the wire feeding wheel 3, the tensioning main wheel 5, the tensioning auxiliary wheel 6 and the dance wheel 4, in the process that the optical cable is wound on the cable storage disc 1, the tensioning main wheel 5 and the tensioning auxiliary wheel 6 are matched and tension the optical cable under the action of the self gravity of the tensioning cylinder 8, the balancing weight 10 and the tensioning main wheel 5, and the optical cable can be wound on the cable storage disc 1 in; meanwhile, the optical cable drives the dancing wheel 4 to rotate, so that the contact 15 on the dancing wheel 4 is matched with the counting probe 16 on the supporting rod 14 to count the length of the optical cable wound on the cable storage coil 1; after the electric cylinder 19 of wire starts, the electric cylinder 19 of wire drives mounting panel 20 at the 1 top back and forth movement of drum, mounting panel 20 drives wire wheel 21 motion at the motion in-process, in wire wheel 21 motion, leading wheel 21 cooperation wire baffle 22 drives the optical cable motion, make the optical cable can make the optical cable of winding on drum 1 neat and compact next to the round and one deck be close to the even winding of one deck on drum 1, make the optical cable of winding on drum 1 neat and pleasing to the eye from this, and can effectively increase the unit line storage volume.
The optical cable storage device with the dancing wheel can provide a tensioning force when the optical cable is wound through the tensioning guide mechanism, so that the optical cable can be wound and compacted on the cable storage disc 1, the tensioning cylinder 8 is matched with the balancing weight 10 to adjust the tensioning force, the tensioning force is further adapted to the surface tension of the optical cable, different optical cables cannot be broken in the winding and coiling process, the optical cable can be wound and compacted, and the optical cable storage device has high universality; the optical cable can be wound neatly through the cable guide device, and the unit cable storage amount can be effectively increased by matching with the tensioning guide mechanism; the problems that an existing wire storage device is not compact in winding, scattered and disordered in winding and poor in universality are solved.
Claims (6)
1. An optical cable storage device with dancing wheels comprises a tensioning guide mechanism and a winding mechanism, wherein the winding mechanism is arranged on one side of the tensioning guide mechanism at intervals, and a cable storage disc (1) is arranged on the winding mechanism; the method is characterized in that: the tensioning guide mechanism is composed of a support frame (2), a wire inlet wheel (3), a dancing wheel (4), a tensioning main wheel (5) and a tensioning auxiliary wheel (6), the wire inlet wheel (3) is movably mounted on the support frame (2), the dancing wheel (4) is movably mounted on the support frame (2) on one side of the wire inlet wheel (3) through a rotating shaft (13) and a support rod (14), the tensioning main wheel (5) is movably mounted on the support frame (2) between the dancing wheel (4) and the wire inlet wheel (3), and the tensioning auxiliary wheel (6) is movably mounted on the support frame (2) above the tensioning main wheel (5); the tensioning main wheel (5) is hinged with the support frame (2) through a connecting rod (7), a tensioning cylinder (8) is movably mounted on the support frame (2) above the connecting rod (7), and the end of a piston rod of the tensioning cylinder (8) is hinged with the connecting rod (7); the connecting rod (7) is hoisted with a balancing weight (10) through a pull rope (9), and the pull rope (9) is connected with the supporting frame (2) through a pulley (11).
2. The optical cable storage device with dancing wheels as claimed in claim 1, wherein: the wire feeding wheel (3), the dancing wheel (4), the tensioning main wheel (5) and the tensioning auxiliary wheel (6) are respectively provided with a wire guide groove (12), wherein the tensioning main wheel (5) is provided with a plurality of wire guide grooves (12) in parallel.
3. The optical cable storage device with dancing wheels as claimed in claim 1, wherein: contacts (15) are uniformly distributed on the dancing wheel (4) in a circular ring shape; the supporting rod (14) is provided with a counting probe (16), and the counting probe (16) penetrates through the supporting rod (14) to be in intermittent contact connection with the contact (15).
4. The optical cable storage device with dancing wheels as claimed in claim 1, wherein: the winding mechanism is composed of an assembly plate (17), a winding motor (18) and a wire guide, wherein the assembly plate (17) is L-shaped, the winding motor (18) is arranged on the assembly plate (17), and the wire guide is arranged on the end face of the assembly plate (17) above the winding motor (18); an output shaft of the winding motor (18) is connected with the wire storage disc (1) in a plug-in manner through a sliding key.
5. The optical cable storage device with dancing wheels as claimed in claim 4, wherein: the wire guide device is composed of a wire electric cylinder (19), a mounting plate (20), a wire guide wheel (21) and a wire baffle plate (22), wherein the mounting plate (20) is arranged on the wire electric cylinder (19), the wire guide wheel (21) is mounted at the end of the mounting plate (20) through a pin shaft, and the wire baffle plate (22) is arranged on the mounting plate (20) and at intervals with the wire guide wheel; the wire guide is fixedly connected with the assembly plate (17) through a wire electric cylinder (19).
6. The optical cable storage device with dancing wheels as claimed in claim 5, wherein: the wire guiding wheel (21) is provided with a wire guiding groove (12).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202022687028.0U CN213707318U (en) | 2020-11-19 | 2020-11-19 | Take optical cable storage device of dancing wheel |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202022687028.0U CN213707318U (en) | 2020-11-19 | 2020-11-19 | Take optical cable storage device of dancing wheel |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN213707318U true CN213707318U (en) | 2021-07-16 |
Family
ID=76806480
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202022687028.0U Expired - Fee Related CN213707318U (en) | 2020-11-19 | 2020-11-19 | Take optical cable storage device of dancing wheel |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN213707318U (en) |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN116148094A (en) * | 2023-04-19 | 2023-05-23 | 江苏亨通高压海缆有限公司 | High-voltage large-section submarine cable winding test system and winding test method |
-
2020
- 2020-11-19 CN CN202022687028.0U patent/CN213707318U/en not_active Expired - Fee Related
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN116148094A (en) * | 2023-04-19 | 2023-05-23 | 江苏亨通高压海缆有限公司 | High-voltage large-section submarine cable winding test system and winding test method |
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Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| GR01 | Patent grant | ||
| GR01 | Patent grant | ||
| CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20210716 |
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| CF01 | Termination of patent right due to non-payment of annual fee |