Optical fiber coating machine for unmanned aerial vehicle

By designing an optical fiber coating machine for drones, which utilizes a high-pressure water pump to spray cleaning fluid, a fan to dry the fiber, and a coating ring to apply the coating, the problem of inconvenient surface cleaning of optical fibers was solved, the adhesion and uniformity of the coating were improved, and the performance of the optical fiber was enhanced.

CN223847351UActive Publication Date: 2026-01-30WUXI GUANGCHUANG OPTOELECTRONICS TECH CO LTD
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Patent Information

Application Number
CN202520171138.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-25
Publication Date
2026-01-30
Estimated Expiration
2035-01-25

AI Technical Summary

Technical Problem

Existing fiber coating machines are not convenient for cleaning the fiber surface during use, resulting in dust, grease and other contaminants affecting the adhesion and uniformity of the coating, which in turn affects the coating quality and fiber performance.

Method used

A fiber optic coating machine for UAVs was designed, comprising components such as a rectangular cylinder, a fan, a liquid storage box, a high-pressure water pump, a cleaning cylinder, a water absorption ring, a coating ring, and a sponge strip. The machine achieves cleaning and coating of the fiber optic surface by spraying cleaning liquid with a high-pressure water pump, drying with a fan, and applying coating with a coating ring.

Benefits of technology

It effectively removes contaminants from the surface of optical fibers, improves the adhesion between the coating and the optical fiber surface, and enhances the uniformity of the coating and the performance of the optical fiber.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223847351U_ABST
Patent Text Reader

Abstract

The utility model relates to an optical fiber coating machine for an unmanned aerial vehicle, which belongs to the technical field of optical fiber coating machines and comprises a rectangular cylinder, an optical fiber cleaning mechanism is arranged on the rectangular cylinder, and the optical fiber cleaning mechanism comprises a fan and a liquid storage box which are fixedly mounted on the upper surface of the rectangular cylinder. An air outlet pipe extending to the inner side of the rectangular barrel is fixedly installed at the air outlet end of the fan, a transverse pipe is fixedly installed at the bottom of the air outlet pipe, an electric heating wire net is fixedly installed on the inner side of the air outlet pipe, a high-pressure water pump is fixedly installed in the liquid storage box, and a liquid outlet pipe extending to the inner side of the rectangular barrel is fixedly installed at the water outlet end of the high-pressure water pump. According to the optical fiber coating machine for the unmanned aerial vehicle, cleaning liquid can be uniformly sprayed on the surface of an optical fiber through the cleaning cylinder and the high-pressure water pump to wash the surface of the optical fiber, pollutants on the surface of the optical fiber are removed, the surface of the optical fiber can be dried through the draught fan and the electric heating wire net, and then the adhesive force between coating and the surface of the optical fiber can be improved; and thus, the coating effect on the optical fiber can be improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to optical fiber coating machine technical field, specifically is a kind of optical fiber coating machine for unmanned aerial vehicle. BACKGROUND

[0002] Optical fiber coating machine is a kind of equipment for coating protective layer or functional coating on the surface of optical fiber, and this coating process is usually used to improve the performance, durability and adaptability of optical fiber.

[0003] But the existing optical fiber coating machine is not convenient for cleaning the surface of optical fiber in the use process, and if the dust, grease or other pollutants on the surface of optical fiber are more, the adhesion and uniformity of coating will be affected, thereby affecting the final coating quality and the performance of optical fiber. SUMMARY

[0004] In view of the defects of the prior art, the utility model provides an optical fiber coating machine for unmanned aerial vehicle, which has the advantages of good coating quality, solves the problem that the existing optical fiber coating machine is not convenient for cleaning the surface of optical fiber in the use process, and if the dust, grease or other pollutants on the surface of optical fiber are more, the adhesion and uniformity of coating will be affected, thereby affecting the final coating quality and the performance of optical fiber.

[0005] To achieve the above object, the utility model provides the following technical scheme: an optical fiber coating machine for unmanned aerial vehicle, comprising a rectangular cylinder, the rectangular cylinder is provided with optical fiber cleaning mechanism;

[0006] The optical fiber cleaning mechanism comprises a fan and a liquid storage box fixedly installed on the upper surface of the rectangular cylinder, the fan air outlet end is fixedly installed with an air outlet pipe extending to the inside of the rectangular cylinder, the air outlet pipe bottom is fixedly installed with a cross pipe, the air outlet pipe inside is fixedly installed with an electric heating wire mesh, the liquid storage box inside is fixedly installed with a high-pressure water pump, the high-pressure water pump water outlet end is fixedly installed with a liquid outlet pipe extending to the inside of the rectangular cylinder, the liquid outlet pipe bottom is fixedly installed with a cleaning cylinder with a cavity in the cylinder wall, the cleaning cylinder inside surface is provided with a water outlet hole communicating with the cavity, and the rectangular cylinder is provided with a coating coating assembly.

[0007] Further, one end of the cleaning cylinder is fixedly installed with a circular ring, and the inside surface of the circular ring is fixedly installed with a water absorption ring.

[0008] The beneficial effects of the above further scheme are that the water stains on the surface of the optical fiber are cleaned by setting the water absorption ring.

[0009] Further, the rectangular cylinder is fixedly installed with two water retaining rings inside, the rectangular cylinder bottom surface is provided with a drain hole, the rectangular cylinder bottom surface is fixedly installed with a water collecting box, and the water collecting box bottom is fixedly installed with a liquid discharge valve.

[0010] The beneficial effect of the further scheme is that the water blocking ring prevents the sewage generated during the cleaning of the optical fiber from flowing to other places, and the drainage hole and the water collecting box facilitate the collection and centralized treatment of the sewage.

[0011] Further, the coating assembly comprises a storage box fixedly installed on the upper surface of the rectangular cylinder, a feed pump fixedly installed inside the storage box, a discharge pipe fixedly installed at the discharge end of the feed pump and extending into the rectangular cylinder, a coating ring fixedly installed on the discharge pipe, and a sponge strip fixedly installed on the inner side surface of the coating ring.

[0012] The beneficial effect of the further scheme is that the coating ring and the sponge strip facilitate the immersion of the coating on the sponge strip, and the sponge strip facilitates the coating of the coating on the surface of the optical fiber.

[0013] Further, the storage box and the liquid storage box are each provided with a feed pipe at the top.

[0014] The beneficial effect of the further scheme is that the coating and the cleaning liquid can be respectively filled into the storage box and the liquid storage box.

[0015] Further, the bottom surface of the rectangular cylinder is fixedly installed with two support legs.

[0016] The beneficial effect of the further scheme is that the support legs facilitate the support and placement of the rectangular cylinder.

[0017] Compared with the prior art, the technical scheme of the present application has the following beneficial effects:

[0018] The unmanned aerial vehicle optical fiber coating machine can uniformly spray the cleaning liquid on the surface of the optical fiber to wash the surface of the optical fiber and remove the pollutants on the surface of the optical fiber, and the fan and the electric heating wire mesh can dry the surface of the optical fiber, thereby improving the adhesion between the coating and the surface of the optical fiber and improving the coating effect of the optical fiber, solving the problem that the existing optical fiber coating machine is not convenient to clean the surface of the optical fiber during use, and if the dust, oil or other pollutants on the surface of the optical fiber are more, the adhesion and uniformity of the coating will be affected, thereby affecting the final coating quality and the performance of the optical fiber. BRIEF DESCRIPTION OF DRAWINGS

[0019] Fig. 1 It is a whole structure schematic view of the present application;

[0020] Fig. 2 It is a cross pipe schematic view of the present application;

[0021] Fig. 3 It is a cleaning cylinder schematic view of the present application;

[0022] Fig. 4 The structure of the present application is a schematic diagram of a circular ring.

[0023] Fig. 5 The structure of the present application is a schematic diagram of a coating ring.

[0024] In the figure: 1, rectangular cylinder; 2, fan; 3, liquid storage box; 4, air outlet pipe; 5, horizontal pipe; 6, electric heating wire mesh; 7, high-pressure water pump; 8, liquid outlet pipe; 9, cavity; 10, cleaning cylinder; 11, water outlet hole; 12, circular ring; 13, water absorption ring; 14, water blocking ring; 15, drain hole; 16, water collecting box; 17, storage box; 18, feeding pump; 19, discharge pipe; 20, coating ring; 21, sponge strip; 22, liquid discharge valve; 23, feeding pipe; 24, supporting leg. DETAILED DESCRIPTION

[0025] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0026] Please refer to Figs. 1 to 5 In the embodiment, the optical fiber coating machine for unmanned aerial vehicle comprises a rectangular cylinder 1, the rectangular cylinder 1 is provided with an optical fiber cleaning mechanism, the optical fiber cleaning mechanism comprises a fan 2 and a liquid storage box 3 fixedly installed on the upper surface of the rectangular cylinder 1, the fan 2 is fixedly installed with an air outlet pipe 4 extending to the inner side of the rectangular cylinder 1 at the air outlet end, the air outlet pipe 4 is fixedly installed with a horizontal pipe 5 at the bottom, the air outlet pipe 4 is fixedly installed with an electric heating wire mesh 6 at the inner side, the liquid storage box 3 is fixedly installed with a high-pressure water pump 7 inside, the high-pressure water pump 7 is fixedly installed with a liquid outlet pipe 8 extending to the inner side of the rectangular cylinder 1 at the water outlet end, the liquid outlet pipe 8 is fixedly installed with a cleaning cylinder 10 with a cavity 9 formed in the inner wall at the bottom, the cleaning cylinder 10 is fixedly installed with a circular ring 12 at one end, the inner side surface of the circular ring 12 is fixedly installed with a water absorption ring 13, the water absorption ring 13 is arranged to facilitate cleaning of water stains on the surface of the optical fiber, and the inner side surface of the cleaning cylinder 10 is formed with a water outlet hole 11 in communication with the cavity 9.

[0027] The rectangular cylinder 1 is fixedly installed with two water blocking rings 14 inside, the bottom surface of the rectangular cylinder 1 is formed with a drain hole 15, the bottom surface of the rectangular cylinder 1 is fixedly installed with a water collecting box 16, the water collecting box 16 is fixedly installed with a liquid discharge valve 22 at the bottom, the water blocking rings 14 are arranged to prevent sewage generated during cleaning of the optical fiber from flowing to other places, and the drain hole 15 and the water collecting box 16 are arranged to facilitate collection and centralized treatment of the sewage.

[0028] The rectangular cylinder 1 is provided with a coating assembly, the coating assembly comprises a storage box 17 fixedly installed on the upper surface of the rectangular cylinder 1, a feeding pump 18 is fixedly installed in the storage box 17, a discharge pipe 19 extending into the rectangular cylinder 1 is fixedly installed at the discharge end of the feeding pump 18, a coating ring 20 is fixedly installed on the discharge pipe 19, sponge strips 21 are fixedly installed on the inner side surface of the coating ring 20, the coating ring 20 and the sponge strips 21 are arranged to facilitate the coating to be soaked on the sponge strips 21, the sponge strips 21 are arranged to facilitate the coating to be coated on the surface of the optical fiber, and the storage box 17 and the storage box 3 are provided with feeding pipes 23 at the top, so that the coating and the cleaning liquid can be respectively filled into the storage box 17 and the storage box 3.

[0029] The bottom surface of the rectangular cylinder 1 is fixedly installed with two supporting legs 24, and the supporting legs 24 are arranged to facilitate supporting and placing the rectangular cylinder 1.

[0030] The working principle of the above embodiment is as follows:

[0031] In use, the cleaning liquid is injected into the storage box 3, the high-pressure water pump 7 injects the cleaning liquid into the cavity 9 through the liquid outlet pipe 8, the cleaning liquid in the cavity 9 is sprayed into the cleaning cylinder 10 through the water outlet holes 11, the optical fiber is passed through the cleaning cylinder 10, the cleaning liquid is used to clean the surface of the optical fiber, the water stains on the surface of the optical fiber are adsorbed by the water absorption ring 13, the hot air generated by the fan 2, the air outlet pipe 4, the horizontal pipe 5 and the electric heating wire net 6 is used to dry the surface of the optical fiber, the optical fiber is passed through the coating ring 20, so that the sponge strips 21 are in contact with the optical fiber, the coating in the storage box 17 is sprayed into the inner side of the coating ring 20 by the feeding pump 18 through the discharge pipe 19, so that the sponge strips 21 absorb the coating, and the sponge strips 21 are used to coat the coating on the surface of the optical fiber.

[0032] The control mode of the utility model is controlled by the controller, the control circuit of the controller can be realized by simple programming of the person skilled in the art, the power supply also belongs to the public knowledge in the field, and the utility model is mainly used for protecting the mechanical device, so the control mode and the circuit connection of the utility model are not explained in detail.

[0033] It is to be understood that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting; it is not intended to exclude myriad other embodiments of the present application that other inventors can develop based on the same general inventive concepts embodied by the described embodiments. That is, although the present application is described in terms of particular embodiments and implementations, it is to be understood that the terminology used is for the purpose of descriptive clarity and that it is intended to be limited only by the words recited in the appended claims. The scope of the present application shall be limited only by the claims.

[0034] While the embodiments of the present application have been shown and described with respect to particular embodiments thereof, it will be understood by those skilled in the art that various changes in form and details can be made therein without departing from the spirit and scope of the application. Therefore, the scope of the application should not be limited by the embodiments, but should be defined only in accordance with the following claims and their equivalents.

Claims

1. An optical fiber coating machine for drones, comprising a rectangular barrel (1), characterized in that: The rectangular cylinder (1) is provided with an optical fiber cleaning mechanism; The optical fiber cleaning mechanism comprises a fan (2) and a liquid storage box (3) fixedly installed on the upper surface of the rectangular cylinder (1), the fan (2) is fixedly installed with an air outlet pipe (4) extending to the inner side of the rectangular cylinder (1) at the air outlet end, the air outlet pipe (4) is fixedly installed with a cross pipe (5) at the bottom, the air outlet pipe (4) is fixedly installed with an electric heating wire mesh (6) at the inner side, the liquid storage box (3) is fixedly installed with a high-pressure water pump (7) at the inner side, the high-pressure water pump (7) is fixedly installed with a liquid outlet pipe (8) extending to the inner side of the rectangular cylinder (1) at the water outlet end, the liquid outlet pipe (8) is fixedly installed with a cleaning cylinder (10) with a cavity (9) opened in the inner wall at the bottom, the inner side surface of the cleaning cylinder (10) is opened with a water outlet hole (11) in communication with the cavity (9), and the rectangular cylinder (1) is provided with a coating coating assembly. 2.The optical fiber coating machine for unmanned aerial vehicle according to claim 1, wherein: One end of the cleaning cylinder (10) is fixedly installed with a circular ring (12), and the inner side surface of the circular ring (12) is fixedly installed with a water absorbing ring (13).

3. The optical fiber coating machine for unmanned aerial vehicles according to claim 1, characterized in that: The rectangular cylinder (1) is fixedly installed with two water blocking rings (14) inside, the bottom surface of the rectangular cylinder (1) is opened with a drain hole (15), the bottom surface of the rectangular cylinder (1) is fixedly installed with a water collecting box (16), and the bottom of the water collecting box (16) is fixedly installed with a liquid discharge valve (22).

4. The optical fiber coating machine for unmanned aerial vehicles according to claim 1, characterized in that: The coating coating assembly comprises a storage box (17) fixedly installed on the upper surface of the rectangular cylinder (1), the storage box (17) is fixedly installed with a feeding pump (18) inside, the feeding pump (18) is fixedly installed with a feeding pipe (19) extending to the inside of the rectangular cylinder (1) at the discharge end, the feeding pipe (19) is fixedly installed with a coating ring (20), and the inner side surface of the coating ring (20) is fixedly installed with a sponge strip (21).

5. The optical fiber coating machine for unmanned aerial vehicles according to claim 4, characterized in that: The top of the storage box (17) and the liquid storage box (3) is provided with a feeding pipe (23).

6. The optical fiber coating machine for unmanned aerial vehicles according to claim 1, characterized in that: The bottom surface of the rectangular cylinder (1) is fixedly installed with two supporting legs (24).