Auxiliary lifting platform of optical fiber take-up machine
By designing an auxiliary lifting platform for the fiber optic take-up machine, the problem of difficulty in taking up the cable due to its large diameter was solved, resulting in a more reliable and stable take-up process, increasing cable capacity and reducing the error rate.
Patent Information
- Application Number
- CN202520020848.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-06
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-01-06
AI Technical Summary
Existing fiber optic cable take-up machines suffer from problems such as cable accumulation and difficulty in take-up due to the relatively thick cable diameter, resulting in poor flexibility of the micro-cable.
An auxiliary lifting platform for a fiber optic take-up machine was designed. The lifting and lowering of the take-up machine's feed hopper is achieved through a fixed mounting plate, a telescopic linkage assembly, and a drive motor, ensuring the stability of the take-up process and the amount of fiber it can hold.
It improves the reliability of cable retrieval, increases cable capacity, reduces the possibility of errors, and solves the retrieval risks caused by insufficient flexibility of micro-cables.
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Figure CN223852206U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to optical fiber production and manufacturing technical field especially is a kind of auxiliary lifting platform of optical fiber take-up machine. BACKGROUND
[0002] In the production and use of optical cable, some special products are often encountered, which require special boxing / panning methods. In order to deal with these special products, some modifications need to be made to the equipment to make the equipment meet the actual needs.
[0003] The plum blossom take-up equipment is born to meet the needs of tension-free boxing of some microcables. In conventional production, the material box does not need to be lifted, and the microcable freely falls into the pan box, with a drop of 300mm from an empty box to a full box. When the microcable has poor softness due to thick wire diameter, it may be fluffy in the material box and accumulate to a high level. During the take-up process, the accumulation may cause take-up difficulties. SUMMARY
[0004] Therefore, the utility model solves the problem of accumulation during the take-up process of the plum blossom take-up equipment due to thick wire diameter.
[0005] To solve the above technical problems, the utility model provides an auxiliary lifting platform of optical fiber take-up machine, which comprises: a plurality of fixed mounting plates, which are installed on the rack body of the optical fiber take-up machine by fasteners; a first telescopic connecting rod assembly, the lower end of which is hingedly connected to the fixed mounting plate; a second telescopic connecting rod assembly, the lower end of which is hingedly connected to the fixed mounting plate, and the upper ends of the second telescopic connecting rod assembly and the first telescopic connecting rod assembly are connected to a horizontal support plate, the horizontal support plate is provided with an optical fiber take-up machine material bucket, and the second telescopic connecting rod assembly and the first telescopic connecting rod assembly are used to drive the optical fiber take-up machine material bucket to lift; and a driving motor, the output end of which is connected to a lead screw, the lead screw is threadedly connected to a lead screw nut, the first telescopic connecting rod assembly is connected to the lead screw nut, and the second telescopic connecting rod assembly is arranged on the driving motor.
[0006] In one embodiment of the utility model, the number of fixed mounting plates is four, and the fixed mounting plates are located at the four corner positions of the rectangular cross section.
[0007] In one embodiment of the utility model, the first telescopic connecting rod assembly comprises an intermediate connecting plate one, a connecting rod one, a connecting rod two, a connecting rod three and a connecting rod four, the lower end of the connecting rod one is hingedly connected to the fixed mounting plate, the upper end of the connecting rod one and the lower end of the connecting rod two are hingedly connected to the intermediate connecting plate one, the lower end of the connecting rod three is hingedly connected to the fixed mounting plate, the upper end of the connecting rod three and the lower end of the connecting rod four are hingedly connected to the intermediate connecting plate one, and the intermediate connecting plate one is fixedly connected to the lead screw nut.
[0008] In one embodiment of the utility model, the intermediate connecting plate one is rectangular plate, and the both sides of intermediate connecting plate one are provided with pivot one and pivot two respectively, the upper end of connecting rod one and the lower end of connecting rod two are hinged to pivot one, the upper end of connecting rod three and the lower end of connecting rod four are hinged to pivot two.
[0009] In one embodiment of the utility model, the second telescopic connecting rod assembly includes intermediate connecting plate two, connecting rod five, connecting rod six, connecting rod seven and connecting rod eight, the lower end of connecting rod five is hinged to fixed mounting plate, the upper end of connecting rod five and the lower end of connecting rod six are hinged to intermediate connecting plate two, the lower end of connecting rod seven is hinged to intermediate connecting plate two, the upper end of connecting rod seven and the lower end of connecting rod eight are hinged to intermediate connecting plate two, intermediate connecting plate two is fixedly connected with driving motor.
[0010] In one embodiment of the utility model, the both sides of intermediate connecting plate two are provided with pivot three and pivot four respectively, the upper end of connecting rod five and the lower end of connecting rod six are hinged to pivot three, the upper end of connecting rod seven and the lower end of connecting rod eight are hinged to pivot four.
[0011] In one embodiment of the utility model, the horizontal support plate is provided with a plurality of mounting holes.
[0012] The utility model also provides a kind of optical fiber take-up machine, it include: sectional frame, rotary connecting rod unit, swing take-up unit, traction unit and lifting platform, the traction unit and lifting platform are set on sectional frame, the rotary connecting rod unit is set between traction unit and take-up unit, the take-up unit is set on lifting platform, and lifting platform is used to adjust the height of take-up unit, characterized by: the lifting platform is the auxiliary lifting platform of the optical fiber take-up machine.
[0013] The utility model provides that the rotary connecting rod unit and swing take-up unit are equipped with take-up cylinder.
[0014] The utility model provides that the lower end of sectional frame is equipped with Foma wheel.
[0015] The above technical scheme of the utility model has the following beneficial effects compared with prior art:
[0016] The auxiliary lifting platform of the optical fiber take-up machine is installed below take-up reel of optical fiber take-up machine, realizes the lifting function of take-up reel, so that take-up is more reliable, and wire capacity is larger, take-up is more stable, the possibility of error is reduced, and the error hidden danger caused by insufficient softness of microcable is overcome. BRIEF DESCRIPTION OF DRAWINGS
[0017] In order to make the content of the utility model more easily be clearly understood, the following according to the specific embodiment of the utility model and combining with the drawings, the utility model is further explained in detail, wherein
[0018] Figure 1 It is the structure diagram of optical fiber take-up machine in the preferred embodiment of the utility model
[0019] Figure 2 It is the structure diagram of auxiliary lifting platform of optical fiber take-up machine in the preferred embodiment of the utility model Figure One ;
[0020] Figure 3 It is the structure diagram of auxiliary lifting platform of optical fiber take-up machine in the preferred embodiment of the utility model Figure Two .
[0021] Description of the drawings: fixed mounting plate 1, first telescopic connecting rod assembly 2, intermediate connecting plate one 21, pivot one 211, pivot two 212, connecting rod one 22, connecting rod two 23, adapter block one 231, connecting rod three 24, connecting rod four 25, adapter block two 251, second telescopic connecting rod assembly 3, intermediate connecting plate two 31, pivot three 311, pivot four 312, connecting rod five 32, connecting rod six 33, adapter block three 331, connecting rod seven 34, connecting rod eight 35, adapter block four 351, horizontal support plate 4, mounting hole 41, driving motor 5, lead screw 6, lead screw nut 7, profile frame 100, rotary connecting rod unit 200, swing take-up unit 300, traction unit 400, lifting platform 500. DETAILED DESCRIPTION
[0022] The utility model is further explained in combination with the drawings and specific embodiment, so that the person skilled in the art can better understand the utility model and can be implemented, but the embodiment is not as the limitation of the utility model. EMBODIMENT
[0023] Refer to Figure 2 、 3The utility model discloses a fiber take-up machine auxiliary lifting platform, including: fixed mounting plate 1 is set to a plurality of, fixed mounting plate 1 is installed on the fiber take-up machine frame body through fastener, first telescopic connecting rod assembly 2, its lower end is hinged with fixed mounting plate 1, second telescopic connecting rod assembly 3, its lower end is hinged with fixed mounting plate 1, the upper end of second telescopic connecting rod assembly 3 and first telescopic connecting rod assembly 2 is connected with horizontal support plate 4, the horizontal support plate 4 is equipped with fiber take-up machine material bucket, and second telescopic connecting rod assembly 3 and first telescopic connecting rod assembly 2 are used to drive fiber take-up machine material bucket to lift, drive motor 5, its output end is connected with screw rod 6, the screw rod 6 is connected with screw nut 7 on screw thread, first telescopic connecting rod assembly 2 and screw nut 7 are connected, and second telescopic connecting rod assembly 3 is arranged on drive motor 5.
[0024] In the above structure, the first telescopic connecting rod assembly 2 includes intermediate connecting plate one 21, connecting rod one 22, connecting rod two 23, connecting rod three 24 and connecting rod four 25, the lower end of connecting rod one 22 is hinged with fixed mounting plate 1, the upper end of connecting rod one 22 and the lower end of connecting rod two 23 are hinged on intermediate connecting plate one 21, the lower end of connecting rod three 24 is hinged with fixed mounting plate 1, the upper end of connecting rod three 24 and the lower end of connecting rod four 25 are hinged on intermediate connecting plate one 21, and intermediate connecting plate one 21 is fixedly connected with screw nut 7. Connecting rod one 22 and connecting rod two 23 are located on the same side, and connecting rod one 22 and connecting rod two 23 are arranged in a "V" shape, connecting rod three 24 and connecting rod four 25 are located on the same side, and connecting rod three 24 and connecting rod four 25 are arranged in a "V" shape, and the connecting rod structure formed by connecting rod one 22 and connecting rod two 23 and the connecting rod structure formed by connecting rod three 24 and connecting rod four 25 are symmetrically arranged. Intermediate connecting plate one 21 is a rectangular plate, and pivot one 211 and pivot two 212 are arranged on the two sides of intermediate connecting plate one 21 respectively, the upper end of connecting rod one 22 and the lower end of connecting rod two 23 are hinged on pivot one 211, and the upper end of connecting rod three 24 and the lower end of connecting rod four 25 are hinged on pivot two 212. The upper end of connecting rod two 23 is provided with adapter block one 231, the upper end of connecting rod four 25 is provided with adapter block two 251, adapter block one 231 is hinged with the upper end of connecting rod one 22, adapter block two 251 is hinged with the upper end of connecting rod two 23, and adapter block one 231 and adapter block two 251 are fixedly connected with horizontal support plate 4.
[0025] In the structure, the second telescopic linkage assembly 3 comprises an intermediate connecting plate two 31, a linkage five 32, a linkage six 33, a linkage seven 34 and a linkage eight 35, the lower end of the linkage five 32 is hinged to the fixed mounting plate 1, the upper end of the linkage five 32 and the lower end of the linkage six 33 are hinged to the intermediate connecting plate two 31, the lower end of the linkage seven 34 is hinged to the intermediate connecting plate two 31, the upper end of the linkage seven 34 and the lower end of the linkage eight 35 are hinged to the intermediate connecting plate two 31, and the intermediate connecting plate two 31 is fixedly connected with the driving motor 5. The linkage five 32 and the linkage six 33 are located on the same side and arranged in a “V” shape, the linkage seven 34 and the linkage eight 35 are located on the same side and arranged in a “V” shape, and the linkage structure formed by the linkage five 32 and the linkage six 33 and the linkage structure formed by the linkage seven 34 and the linkage eight 35 are symmetrically arranged. The intermediate connecting plate two 31 is provided with a rotating shaft three 311 and a rotating shaft four 312 on both sides, the upper end of the linkage five 32 and the lower end of the linkage six 33 are hinged to the rotating shaft three 311, and the upper end of the linkage seven 34 and the lower end of the linkage eight 35 are hinged to the rotating shaft four 312. The upper end of the linkage six 33 is connected with a transfer block three 331, the upper end of the linkage eight 35 is connected with a transfer block four 351, the transfer block three 331 is hinged to the linkage six 33, the transfer block four 351 is hinged to the linkage eight 35, and the transfer block three 331 and the transfer block four 351 are fixedly connected with the horizontal support plate 4.
[0026] The linkage one 22, the linkage two 23, the linkage five 32 and the linkage six 33 are located on the same side and arranged in a diamond shape, the linkage three 24, the linkage four 25, the linkage seven 34 and the linkage eight 35 are located on the same side and arranged in a diamond shape, and the linkage one 22, the linkage two 23, the linkage three 24, the linkage four 25, the linkage five 32, the linkage six 33, the linkage seven 34 and the linkage eight 35 all use sheet metal parts, and the installation parts use aluminum alloy parts, which can effectively reduce the self weight. In addition, the linkage structure adopts a diamond-shaped quadrilateral mechanism, which can stably lift the material bucket.
[0027] In the structure, the number of the fixed mounting plates 1 is four, and the fixed mounting plates 1 are located at the four corner positions of the rectangular section. The upper end of the fixed mounting plate 1 is fixed on the optical fiber take-up frame body through fasteners, the linkage one 22, the linkage three 24, the linkage five 32 and the linkage seven 34 are arranged one by one corresponding to the four fixed mounting plates 1, and the lower end of the linkage one 22, the linkage three 24, the linkage five 32 and the linkage seven 34 are connected with the four fixed mounting plates 1 through pin shafts.
[0028] In addition, the horizontal support plate 4 is provided with a plurality of mounting holes 41.
[0029] The working principle of the auxiliary lifting platform of the optical fiber take-up machine is:
[0030] At the beginning, it is lowered to the minimum, so that the distance between the discharge port and the barrel tray is maximum, after the barrel and the auxiliary hopper are installed and fixed, the equipment enters the standby state, and the lifting platform is raised to the highest; after starting to take up, the lifting platform intermittently lowers according to the total length and the take-up speed in proportion, until the take-up is finished; after the take-up is finished, the platform is lowered to the minimum, and the next take-up process is entered. Embodiment
[0031] Referring to Figure 1 As shown in the figure, an optical fiber take-up machine comprises a profile frame 100, a rotating connecting rod unit 200, a swing take-up unit 300, a traction unit 400 and a lifting platform 500, the traction unit 400 and the lifting platform are arranged on the profile frame 100, the rotating connecting rod unit 200 is arranged between the traction unit 400 and the take-up unit 300, the take-up unit 300 is arranged on the lifting platform 500, and the lifting platform is used for adjusting the height of the take-up unit 300, characterized in that: the lifting platform 500 is the auxiliary lifting platform of the optical fiber take-up machine. A take-up cylinder is arranged between the rotating connecting rod unit 200 and the swing take-up unit 300. The lower end of the profile frame 100 is provided with a Foma wheel. The lifting of the take-up unit 300 is driven by the lifting platform 500, so that the discharge port is closer to the barrel and the lower layer micro cable.
[0032] The above-mentioned optical fiber take-up machine adopts the prior application of the applicant, the application number is CN202122745540.0, the patent name is a tensionless loose winding type optical fiber unit take-up device, and the application date is November 10, 2021.
[0033] Obviously, the above-mentioned embodiments are only examples for clearly illustrating, and are not limited to the implementation. For ordinary skilled in the art, other different forms of changes or variations can be made on the basis of the above-mentioned description. Here, it is not necessary and impossible to enumerate all the implementation. The obvious changes or variations derived therefrom are still within the protection scope of the present application.
Claims
1. An auxiliary lifting platform for fiber optic cable take-up machines, characterized in that, The utility model relates to a fiber cable winding machine auxiliary lifting platform, including: Fixed mounting plate is provided as several, the fixed mounting plate is installed on the fiber cable winding machine frame body through fastener; First telescopic connecting rod assembly is hinged with fixed mounting plate lower end part; Second telescopic connecting rod assembly is hinged with fixed mounting plate lower end part, the upper end part of second telescopic connecting rod assembly and first telescopic connecting rod assembly is connected with horizontal support plate, and the horizontal support plate is equipped with fiber cable winding machine material bucket, and second telescopic connecting rod assembly and first telescopic connecting rod assembly are used to drive fiber cable winding machine material bucket to lift; Drive motor is connected with screw rod on output end, and the screw rod is screwed with screw nut, and first telescopic connecting rod assembly and screw nut are connected, and second telescopic connecting rod assembly is arranged on drive motor.
2. The auxiliary lift table for fiber optic cable spooling machine according to claim 1, wherein: The number of fixed mounting plate is four, and fixed mounting plate is located at four corner positions of rectangular section.
3. The auxiliary lift table for fiber optic cable spooling machine according to claim 1, wherein: First telescopic connecting rod assembly includes intermediate connecting plate one, connecting rod one, connecting rod two, connecting rod three and connecting rod four, and the lower end part of connecting rod one is hinged with fixed mounting plate, and the upper end part of connecting rod one and the lower end part of connecting rod two are hinged with intermediate connecting plate one, and the lower end part of connecting rod three is hinged with fixed mounting plate, and the upper end part of connecting rod three and the lower end part of connecting rod four are hinged with intermediate connecting plate one, and intermediate connecting plate one is fixedly connected with screw nut.
4. The auxiliary lift table for fiber optic cable spooling machine according to claim 3, wherein: Intermediate connecting plate one is rectangular plate, and the both sides of intermediate connecting plate one are respectively provided with rotating shaft one and rotating shaft two, and the upper end part of connecting rod one and the lower end part of connecting rod two are hinged with rotating shaft one, and the upper end part of connecting rod three and the lower end part of connecting rod four are hinged with rotating shaft two.
5. The auxiliary lift table for fiber optic cable spools as recited in claim 1, wherein: Second telescopic connecting rod assembly includes intermediate connecting plate two, connecting rod five, connecting rod six, connecting rod seven and connecting rod eight, and the lower end part of connecting rod five is hinged with fixed mounting plate, and the upper end part of connecting rod five and the lower end part of connecting rod six are hinged with intermediate connecting plate two, and the lower end part of connecting rod seven is hinged with intermediate connecting plate two, and the upper end part of connecting rod seven and the lower end part of connecting rod eight are hinged with intermediate connecting plate two, and intermediate connecting plate two is fixedly connected with drive motor.
6. The auxiliary lift table for fiber optic cable spools as recited in claim 5, wherein: The both sides of intermediate connecting plate two are respectively provided with rotating shaft three and rotating shaft four, and the upper end part of connecting rod five and the lower end part of connecting rod six are hinged with rotating shaft three, and the upper end part of connecting rod seven and the lower end part of connecting rod eight are hinged with rotating shaft four.
7. The auxiliary lift table for fiber optic cable spools as described in claim 1, wherein: Horizontal support plate is equipped with a plurality of mounting holes.
8. An optical fiber take-up machine comprising: Profile frame, rotating connecting rod unit, swing winding unit, traction unit and lifting platform, the traction unit and lifting platform are arranged on profile frame, the rotating connecting rod unit is arranged between traction unit and winding unit, the winding unit is arranged on lifting platform, and the lifting platform is used to adjust the height of winding unit, characterized by: the lifting platform is the auxiliary lifting platform of fiber cable winding machine of any one of claims 1-7.
9. The fiber optic line-in machine of claim 8, wherein: Winding drum body is arranged between rotating connecting rod unit and swing winding unit.
10. The fiber optic line-in machine of claim 8, wherein: The lower end part of profile frame is equipped with foma wheel.
Citation Information
Patent Citations
Tension-free loose winding type optical fiber unit take-up device
CN217102474U