Integrated spraying machine for wearable armor

By designing an integrated spraying machine, an automated production line operation of the spraying machine in the production of cat-eye wearable nails was realized, solving the uncertainty problem of cat-eye treatment of nail pieces after spraying and improving production efficiency and product quality.

CN224057792UActive Publication Date: 2026-03-31DONGGUAN ZHONGTAI AUTOMATION EQUIP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-27
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Existing spraying machines lack automated cat-eye processing mechanisms after spraying cat-eye wearable nails, resulting in uncertain nail transfer operations, affecting the flexibility and applicability of the spraying machine, and reducing the efficiency and quality of spraying and cat-eye forming.

Method used

An integrated spraying machine was designed, including a cabinet, workbench, spraying mechanism, rotary seat, cat's eye adsorption box and curing light box, to realize automated assembly line operation of spraying, cat's eye treatment and curing. The rotating seat drives the tray fixture to move between multiple workstations, uses magnets to adsorb and form cat's eye effect, and uses UV lamps and fans to ensure the coating is cured.

Benefits of technology

It improves the production efficiency and quality consistency of wearable armor, reduces manual intervention, and realizes automated processing from spraying to cat-eye molding, enhancing the aesthetics and durability of the product.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of spraying machines, in particular to an integrated spraying machine for a wearable armor, which comprises a cabinet and a workbench arranged in the cabinet, a controller is arranged on the side surface of the cabinet, a water curtain mechanism and an air draft system are arranged in the cabinet, and a feeding station, a waiting station, a spraying station and a cat eye curing station are sequentially distributed on the workbench. A spraying cavity is formed in the machine cabinet, a spraying mechanism is connected into the machine cabinet through a moving module, a plurality of sets of tray jigs used for mounting the wearable armor are connected to the workbench through a rotating base, a driving part is arranged at the bottom of the workbench, a cat eye adsorption box is arranged on the cat eye curing station, and a magnet is arranged in the cat eye adsorption box. The rotary seat drives the tray jig to move circularly, so that the spraying, the cat eye magnetic attraction effect and the curing process of the nail tip can be completed, the integrated processing of the wearable nail is completed, and the production efficiency and the finished product quality are improved.
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Description

Technical Field

[0001] This utility model relates to the field of spraying machines, specifically to an integrated spraying machine for wearable armor. Background Technology

[0002] Spray painting machines are automated coating equipment widely used in various industrial fields. Their main function is to evenly cover the surface of an object with paint using spraying technology. In the nail industry, especially in the production of wearable nails, spray painting machines play a crucial role. Wearable nails, as a convenient and fashionable nail art method, have become increasingly popular with consumers in recent years. These include, but are not limited to, blush-inspired wearable nails, gradient wearable nails, and cat-eye wearable nails. Cat-eye wearable nails, in particular, have become a popular choice in the market due to their unique shine and varied visual effects.

[0003] The spraying machine for wearable nails mainly consists of a control system, a spraying device, and auxiliary equipment. The control system integrates the entire spraying process, including setting spraying parameters, planning the spraying trajectory, and monitoring spraying quality. The spraying device includes spray guns, nozzles, and a paint supply system, used to evenly spray paint onto the surface of the nail plates. Auxiliary equipment includes a power distribution cabinet and an air supply device, providing the necessary power and support for the spraying machine. Cat-eye glue is the key material for creating cat-eye wearable nails. It contains special magnetic powder that aligns under the attraction of a magnet, forming a unique cat-eye effect to ensure a natural and aesthetically pleasing result.

[0004] However, despite the significant achievements of existing spraying machines in wearable armor manufacturing, some defects and shortcomings still exist. When dealing with the spraying of cat-eye wearable armor, the existing spraying machines have a low degree of automation. After the armor pieces are sprayed, they need to be removed from the spraying machine and transferred to the cat-eye machine for cat-eye effect processing. Since the spraying machine lacks a mechanism to directly process the cat-eye effect on the sprayed armor pieces, the transfer operation of the armor pieces is uncertain, which limits the flexibility and applicability of the spraying machine in wearable armor manufacturing, thereby affecting the efficiency and quality of spraying and cat-eye forming, and affecting the aesthetics and durability of the product. Utility Model Content

[0005] The purpose of this utility model is to solve the above-mentioned defects and provide an integrated spraying machine for wearable armor. This solves the technical problem in the prior art that after the nail plates of existing wearable armor are sprayed, it is not easy to perform cat-eye processing, which affects the flexibility and applicability of the spraying machine and causes the transfer process to affect the efficiency and quality of subsequent nail plate cat-eye forming.

[0006] The objective of this utility model is achieved through the following means:

[0007] An integrated spraying machine for wearable armor includes a cabinet and a workbench inside the cabinet. A controller is located on the side of the cabinet, and the cabinet's interior is equipped with a water curtain mechanism and an exhaust system. The workbench has a loading station, a waiting station, a spraying station, and a cat-eye curing station arranged sequentially. The cabinet forms a spraying chamber, and a spraying mechanism is connected to the cabinet via a moving module. The spraying mechanism is located inside the spraying chamber and above the spraying stations. Multiple sets of tray fixtures for mounting wearable armor are connected to the workbench via a rotating base. The bottom of the workbench is equipped with a drive unit that drives the rotating base to rotate the multiple sets of tray fixtures around the loading station, waiting station, spraying station, and cat-eye curing station in sequence. The cat-eye curing station is equipped with a cat-eye suction box for attracting the cat-eyes of the sprayed wearable armor. The cat-eye suction box contains an adjustable magnet, and a curing light box for irradiating and curing the wearable armor is connected to the cat-eye suction box.

[0008] Furthermore, as described above, the side of the workbench is formed with a loading and unloading platform for loading and unloading armor. The side of the workbench near the loading and unloading platform is provided with a loading slot that communicates with the outside. The loading slot is connected to the spraying chamber. The bottom of the workbench is connected to a sealing plate that can be used to lift and seal or open the loading slot via a lifting cylinder.

[0009] The lifting mechanism of the sealing plate allows for control of the opening and closing of the feeding trough, reducing environmental pollution from the sprayed paint. Automated opening and closing enhances operational safety while preventing external impurities from entering the spraying chamber and affecting the spraying quality.

[0010] Specifically, when the spraying mechanism performs spraying work, the sealing plate is pushed out and paired with the feeding slot to close, thereby reducing the amount of sprayed paint that drifts and spreads from the feeding slot and improving the working environment. When the rotating seat drives the pallet fixture to rotate, the sealing plate descends and opens the feeding slot, allowing the rotating seat to drive the pallet fixture to the next work station for processing.

[0011] Furthermore, as described above, the rotating base is connected to a plurality of connecting rods for matching and installing the tray fixture. The tray fixture is detachably installed on the connecting rods and can move closer to or away from the rotating base along the connecting rods. The tray fixture has a plurality of support frames for holding the armor.

[0012] The connecting rod is used to connect the tray fixture. The detachable design of the tray fixture enables quick changeover and adapts to the production of armor plates of different specifications. The tray fixture can also be rotated closer or further away along the connecting rod as needed. The support frame provides installation and positioning for the armor plates of the wearable armor, and the simultaneous processing at multiple workstations significantly improves the production efficiency of the equipment.

[0013] Furthermore, as described above, the driving component includes a reducer and a drive motor. The reducer is mounted on the bottom of the worktable, and its output end is connected to the rotary seat. The input end of the reducer is connected to the output end of the drive motor via a belt assembly.

[0014] The rotating seat is rotated by a drive motor and reducer, which moves multiple pallet fixtures on the rotating seat to the corresponding workstations for processing. The synchronous motion of multiple workstations improves the production efficiency of the equipment.

[0015] Furthermore, as described above, the inside of the cat-eye adsorption box is formed with an adsorption curing chamber for accommodating the tray fixture, and the bottom of the cat-eye adsorption box has a conductive opening. A magnet is set inside the cat-eye adsorption box, and the cat-eye adsorption box is connected to the magnet by an adjusting bolt, which can drive the magnet to move up and down along the adsorption curing chamber.

[0016] The height of the magnet can be adjusted by adjusting the bolts, thereby controlling the adsorption strength of the cat-eye effect on the paint on the nail plate to ensure a natural and beautiful cat-eye effect. The bottom opening is linked with the lifting cylinder to form a sealed chamber, ensuring that there is no dust pollution during the magnet adsorption and curing process, and improving the clarity of the cat-eye pattern.

[0017] Furthermore, as described above, the workbench is connected to a bottom cover for pairing with the bottom of the cat-eye adsorption box via a lifting cylinder. The lifting cylinder can drive the bottom cover to rise and pair with the bottom of the cat-eye adsorption box for sealing. Inside the cabinet, a drive cylinder is connected to a curing light box, which can drive the curing light box to move the cat-eye adsorption box up and down, so that it can drive the magnet to adsorb the cat-eye on the wearable armor.

[0018] Specifically, the driving cylinder can drive the curing light box to move the cat-eye adsorption box closer to or away from the tray fixture, thereby controlling the speed and direction of the magnet's movement toward the nail plate, further improving the naturalness and aesthetics of the cat-eye effect.

[0019] Specifically, the spraying mechanism includes a base coat spray gun, a cat-eye gel spray gun, and a feeding system. The base coat spray gun applies a base coat to the nail tip, followed by a layer of cat-eye gel sprayed on by the cat-eye gel spray gun. Cat-eye gel is the key material for creating cat-eye manicures; it contains special magnetic powder. Primarily due to the action of a magnet, the magnetic powder in the cat-eye gel sprayed onto the nail tip aligns in a specific direction, forming a narrow, bright reflective band—the cat-eye effect.

[0020] Furthermore, as described above, the curing light box is paired and installed on the cat's eye suction box, which has a through hole for conduction, and the curing light box is equipped with a UV lamp and a fan.

[0021] UV lamps are evenly distributed within the curing chamber, drying and curing the nail tips. This ensures the cat-eye glue is completely dry and adheres to the nail tip surface, while also improving the nail tip's durability and gloss. The combination of UV lamps and a forced-cooling fan system ensures efficient curing while preventing the chamber from overheating, improving operational stability and ultimately enhancing nail tip production efficiency and quality.

[0022] The beneficial effects of this utility model are as follows: The spraying mechanism sprays the nail plates, while the water curtain mechanism effectively captures and filters the paint mist generated during the spraying process. Combined with the ventilation system, this ensures a clean working environment and protects the health of operators. The lifting and lowering adjustment of the magnet allows for magnetic attraction of the paint to create a cat-eye effect, enhancing the aesthetics and personalization of the wearable armor. Furthermore, the use of a curing light box provides ultraviolet or visible light irradiation to the wearable armor after cat-eye attraction, ensuring rapid coating curing, improving product durability and yield. The multi-station layout enables automated assembly line operation of the wearable armor from material loading to final curing, significantly improving production efficiency, reducing manual intervention, and ensuring consistent product quality. The use of a rotating seat to drive multiple sets of tray fixtures allows for automatic switching of the wearable armor between different workstations, eliminating the need for manual handling and greatly improving automation and operational efficiency. This allows for the completion of the spraying, magnetic cat-eye effect, and curing processes for the nail plates, achieving integrated processing of the wearable armor. Attached Figure Description

[0023] Figure 1 This is a perspective view of the left side of this embodiment;

[0024] Figure 2 This is a perspective view from the right viewpoint of this embodiment;

[0025] Figure 3 This is a schematic diagram of the internal connection structure of this embodiment;

[0026] Figure 4 This is a schematic diagram of the connection structure between the moving module and the spraying mechanism in this embodiment;

[0027] Figure 5 This is a partial structural diagram of this embodiment;

[0028] Figure 6 This is a schematic diagram of the tray fixture in this embodiment;

[0029] Figure 7 This is a schematic diagram of the sealing plate in its lowered state in this embodiment;

[0030] Figure 8 This is a schematic diagram of the rising and usage state of the sealing plate in this embodiment;

[0031] Figure 9 This is a schematic diagram of the curing light box in this embodiment;

[0032] Figure 10 This is a schematic diagram of the internal structure of the cat's eye suction box in this embodiment;

[0033] The labels in the attached diagram are as follows: 1-cabinet, 2-workbench, 3-controller, 4-water curtain mechanism, 5-exhaust system, 6-spraying chamber, 7-rotating seat, 8-tray fixture, 9-drive component, 91-reducer, 92-drive motor, 10-cat's eye suction box, 11-magnet, 12-curing light box, 13-loading platform, 14-loading slot, 15-lifting cylinder, 16-sealing plate, 17-connecting rod, 18-adsorption curing chamber, 19-adjusting bolt, 20-lifting cylinder, 21-bottom cover, 22-drive cylinder, 23-UV lamp, 24-fan, 25-spraying mechanism, 251-base coat spray gun, 252-cat's eye glue spray gun, 26-moving module, 27-support frame. Detailed Implementation

[0034] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0035] In this embodiment, refer to Figures 1-10 The integrated spraying machine for wearable armor includes a cabinet 1 and a workbench 2 inside the cabinet 1. A controller 3 is located on the side of the cabinet 1. The cabinet 1 contains a water curtain mechanism 4 and an exhaust system 5. The workbench 2 has a loading station, a waiting station, a spraying station, and a cat-eye curing station arranged sequentially. A spraying chamber 6 is formed inside the cabinet 1, and a spraying mechanism 25 is connected to the cabinet 1 via a moving module 26. The spraying mechanism 25 is located inside the spraying chamber 6 and above the spraying stations. The workbench 2 has a ventilation system. The rotating base 7 is connected to four sets of tray fixtures 8 for mounting the wearable armor. The bottom of the workbench 2 is equipped with a drive component 9 for driving the rotating base 7 to rotate the four sets of tray fixtures 8 around the loading station, waiting station, spraying station and cat's eye curing station in sequence. The cat's eye curing station is equipped with a cat's eye suction box 10 for attracting the cat's eye on the sprayed wearable armor. The inside of the cat's eye suction box 10 is equipped with an adjustable magnet 11. The cat's eye suction box 10 is connected to a curing light box 12 for irradiating and curing the wearable armor.

[0036] Specifically, the design of the spraying chamber 6 provides a relatively enclosed space for the spraying operation, reducing paint mist leakage; the moving module 26 enables the spraying mechanism 25 to operate precisely above the spraying station, improving spraying accuracy and efficiency. The moving module 26 consists of a gantry belt slide rail module. (See reference...) Figure 3 and Figure 4The moving module 26 includes an X-axis, a Y-axis, and a Z-axis. The moving module 26 can drive the spraying mechanism 25 to move the armor pieces on the spraying station along the X-axis, Y-axis, and Z-axis and perform spraying.

[0037] The specific structures of its moving module 26, water curtain mechanism 4, and exhaust system 5 are conventional technical means for those skilled in the art of spraying machines, and will not be described in detail here.

[0038] Reference Figure 1 and Figure 2 The workbench 2 has a loading / unloading platform 13 on its side for loading and unloading materials for the armor. A loading slot 14, communicating with the outside, is located on the side of the workbench 2 near the loading / unloading platform 13. The loading slot 14 is connected to the spraying chamber 6. A sealing plate 16, which can be raised, lowered, sealed, or opened by a lifting cylinder 15, is connected to the bottom of the workbench 2. The lifting and lowering of the sealing plate 16 controls the opening and closing of the loading slot 14, reducing environmental pollution from the sprayed paint. Automated opening and closing improves operational safety and prevents external impurities from entering the spraying chamber 6 and affecting the spraying quality.

[0039] Specifically, refer to Figures 6-8 In this embodiment, a loading / unloading platform 13 is formed on the side of the workbench 2 to facilitate loading and unloading operations for the armor. A loading slot 14, communicating with the outside, is provided on the side of the workbench 2 near the loading / unloading platform 13. This slot is connected to the spraying chamber 6. To control paint leakage during the spraying process, a sealing plate 16 is connected to the bottom of the workbench 2 via a lifting cylinder 15. This sealing plate 16 can be raised and lowered to seal or open the loading slot 14. When the spraying mechanism 25 is working, the sealing plate 16 rises and closes the loading slot 14 to prevent paint from spreading; when the rotating seat 7 drives the tray fixture 8 to rotate, the sealing plate 16 descends and opens the loading slot 14, allowing the tray fixture 8 to move to the next work station.

[0040] Reference Figure 8 The rotating seat 7 is connected to four connecting rods 17 for matching and installing the tray fixture 8. The tray fixture 8 is detachably installed on the connecting rods 17 and can move closer to or away from the rotating seat 7 along the connecting rods 17. The tray fixture 8 has four support frames 27 for holding the armor.

[0041] The connecting rod 17 is used to connect the tray fixture 8. The detachable design of the tray fixture 8 enables quick changeover and adapts to the production of armor plates of different specifications. The tray fixture 8 can rotate closer to or further away from the connecting rod 17 as needed. The support frame 27 provides installation and positioning for the armor plates of the wearable armor and significantly improves the production efficiency of the equipment by processing them simultaneously at multiple workstations.

[0042] Reference Figure 5The driving component 9 includes a reducer 91 and a drive motor 92. The reducer 91 is mounted on the bottom of the worktable 2, and its output end is connected to the rotary seat 7. The input end of the reducer 91 is connected to the output end of the drive motor 92 via a belt assembly. The drive motor 92 drives the reducer 91 to rotate the rotary seat 7, causing multiple pallet fixtures 8 on the rotary seat 7 to move to their corresponding workstations for processing. This multi-workstation synchronous motion processing improves the production efficiency of the equipment.

[0043] Reference Figures 9-10 The cat-eye adsorption box 10 has an adsorption and curing chamber 18 inside for accommodating the tray fixture 8. A conductive opening is formed at the bottom of the cat-eye adsorption box 10. A magnet 11 is disposed inside the cat-eye adsorption box 10 and connected to the magnet 11 via an adjusting bolt 19, which can move the magnet 11 up and down along the adsorption and curing chamber 18. The height of the magnet 11 is adjusted by the adjusting bolt 19, thereby controlling the adsorption intensity of the cat-eye effect on the nail plate, ensuring a natural and aesthetically pleasing cat-eye effect. The bottom opening is linked with the lifting cylinder 20 to form a sealed chamber, ensuring no dust contamination during the adsorption and curing process of the magnet 11, and improving the clarity of the cat-eye pattern.

[0044] Reference Figure 3 and Figure 7 The workbench 2 is connected to the bottom cover 21 of the cat-eye adsorption box 10 via a lifting cylinder 20. The lifting cylinder 20 can drive the bottom cover 21 to rise and pair with the bottom of the cat-eye adsorption box 10 for sealing. The cabinet 1 is connected to the curing light box 12 via a driving cylinder 22, which can drive the curing light box 12 to move the cat-eye adsorption box 10 up and down, so that it can drive the magnet 11 to adsorb the cat-eye on the wearable armor.

[0045] Specifically, the driving cylinder 22 can drive the curing light box 12 to move the cat-eye adsorption box 10 closer to or further away from the tray fixture 8, thereby controlling the speed and direction of the magnet 11 moving towards the nail plate, further improving the naturalness and aesthetics of the cat-eye effect.

[0046] Specifically, the spraying mechanism 25 includes a base coat spray gun 251, a cat-eye gel spray gun 252, and a feeding system. The base coat spray gun 251 applies a base coat to the nail tip, and the cat-eye gel spray gun 252 applies a layer of cat-eye gel. Cat-eye gel is the key material for creating cat-eye manicures; it contains special magnetic powder. The magnetic powder in the cat-eye gel sprayed onto the nail tip is oriented by the magnet 11, forming a narrow, bright reflective band, i.e., the cat-eye effect.

[0047] The curing light box 12 is paired and installed on the cat eye suction box 10. The cat eye suction box 10 has a through hole. The curing light box 12 is equipped with a UV lamp 23 and a fan 24.

[0048] In this embodiment, a bottom cover 21 is connected to the workbench 2 via a lifting cylinder 20. This bottom cover 21 can rise and seal with the bottom of the cat-eye adhesive box 10. A drive cylinder 22 is connected to the curing light box 12, which can drive the curing light box 12 to move the cat-eye adhesive box 10 up and down. This design allows the magnet 11 to move closer to or further away from the nail tip for cat-eye adhesion, further improving the naturalness and aesthetics of the cat-eye effect. Simultaneously, the curing light box 12 is paired with the cat-eye adhesive box 10 and contains UV lamps 23 and a fan 24 for drying and curing the nail tip. The UV lamps 23 are evenly distributed to ensure the cat-eye adhesive is completely dried and fixed to the nail tip surface; the fan 24 is used for heat dissipation to prevent the light box from overheating and affecting the stability of use.

[0049] The specific production process of the integrated spraying machine for wearable armor in this embodiment is as follows:

[0050] Loading: The sealing plate 16 is driven to descend by the lifting cylinder 15, so that the loading slot 14 is in an open state. The drive motor 92 drives the reducer 91 to drive the rotating seat 7 to rotate clockwise, so that the four tray fixtures 8 on the rotating seat 7 are distributed in the loading station, waiting station, spraying station and cat eye curing station. The armor pieces are held on the tray fixtures 8 in the loading station and enter the waiting station under the rotation of the rotating seat 7.

[0051] Spraying: The spraying path and paint effect of the spraying mechanism 25 are adjusted by the controller 3. The rotating seat 7 rotates the tray fixture 8 waiting for the work station into the spraying chamber 6 and places it on the spraying work station. At this time, the sealing plate 16 is closed with the material loading slot 14. The base color is sprayed by the base color spray gun 251 and the cat eye glue spray gun 252 is used to spray the cat eye glue, thereby completing the spraying of the nail plate. The spraying mechanism 25 is then closed.

[0052] Magnetic cat's eye: The sealing plate 16 is driven to descend by the lifting cylinder 15, so that the loading slot 14 is in an open state. At this time, the rotating seat 7 can drive the tray fixture 8 on the spraying station to move to the cat's eye curing station. The curing light box 12 is driven by the driving cylinder 22 to move the cat's eye adsorption box 10 to cover the tray fixture 8. The lifting cylinder 20 can drive the bottom cover 21 to rise and match with the bottom of the cat's eye adsorption box 10 to form a relative seal. The cat's eye effect is formed by the adsorption of the magnetic powder in the cat's eye glue by the magnet 11.

[0053] Curing: Heating the UV lamp 23 allows the coating to be dried and cured by irradiating the coating material with the UV lamp 23, ensuring rapid curing of the coating and improving the durability and yield of the product;

[0054] Material unloading: The bottom cover 21 and the cat-eye adsorption box 10 are relatively far apart, so that the tray fixture 8 of the cat-eye curing station is exposed. Under the rotation of the rotating seat 7, it moves to the loading station, where the operator unloads the finished product and loads the nail pieces. The upward movement is repeated in a cycle to improve the level of automation and work efficiency, so that the spraying machine can spray the nail pieces, magnetically adsorb the cat-eye effect and cure the process, and complete the integrated processing of the wearable nail.

[0055] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any way. Although the present utility model has been disclosed above with reference to a preferred embodiment, it is not intended to limit the present utility model. Any person skilled in the art can make some changes or modifications to the above-disclosed technical content to create equivalent embodiments without departing from the scope of the present utility model. Any simple modifications, equivalent changes, and modifications made to the above embodiments based on the present utility model without departing from the scope of the present utility model shall fall within the scope of the present utility model.

Claims

1. An integrated spraying machine for wearing gloves, comprising a cabinet and a workbench arranged in the cabinet, a controller is arranged on the side of the cabinet, a water curtain mechanism and an air extraction system are arranged in the interior of the cabinet, characterized in that: The workbench is sequentially provided with a feeding station, a waiting station, a spraying station and a cat eye curing station, a spraying chamber is formed in the cabinet, and the spraying mechanism is connected to the cabinet through a moving module, the spraying mechanism is arranged in the spraying chamber and above the spraying station, a plurality of groups of tray jigs for mounting the wear-resistant shoes are connected to the workbench through rotating seats, a driving member for driving the rotating seats to drive the plurality of groups of tray jigs to rotate around the feeding station, the waiting station, the spraying station and the cat eye curing station in turn is arranged at the bottom of the workbench, a cat eye suction box for suctioning the sprayed wear-resistant shoes is arranged on the cat eye curing station, a magnet capable of being adjusted in lifting is arranged in the cat eye suction box, and a curing lamp box for irradiating and curing the wear-resistant shoes is connected to the cat eye suction box.

2. The unitized applicator for use with a prosthetic covering according to claim 1, wherein: A feeding and discharging platform for feeding and discharging the wear-resistant shoes is formed on the side of the workbench, and a feeding slot opening to the outside is arranged on the side of the workbench close to the feeding and discharging platform, the feeding slot is communicated with the spraying chamber, and a sealing plate capable of being lifted to seal or open the feeding slot is connected to the bottom of the workbench through a lifting cylinder.

3. The unitized applicator of claim 1, wherein: A plurality of connecting rods for pairing the tray jigs are connected to the rotating seat, the tray jigs are detachably mounted on the connecting rods and can move towards or away from the rotating seat along the connecting rods, and a plurality of supporting frames for clamping the wear-resistant shoes are formed on the tray jigs.

4. The unitized applicator of claim 1, wherein: The driving member comprises a reducer and a driving motor, the reducer is mounted at the bottom of the workbench, the output end of the reducer is connected to the rotating seat, and the input end of the reducer is connected to the output end of the driving motor through a belt assembly.

5. The unitized applicator of claim 1, wherein: An adsorption curing chamber for accommodating the tray jigs is formed in the cat eye suction box, an opening opening to the outside is formed at the bottom of the cat eye suction box, the magnet is arranged in the cat eye suction box, the cat eye suction box is connected to the magnet through an adjusting bolt, and the magnet can be adjusted in lifting along the adsorption curing chamber.

6. The unitized applicator of claim 5, wherein: A bottom cover paired with the bottom of the cat eye suction box is connected to the workbench through a jacking cylinder, the jacking cylinder can drive the bottom cover to rise and pair with the bottom of the cat eye suction box to seal, the curing lamp box is connected to the cabinet through a driving cylinder and can drive the curing lamp box to drive the cat eye suction box to move up and down, so that the magnet can adsorb the wear-resistant shoes.

7. The unitized applicator for use with a prosthetic covering according to any one of claims 1-6, wherein: The curing lamp box is paired and mounted on the cat eye suction box, a through hole opening to the outside is formed in the cat eye suction box, and a UV lamp and a fan are arranged in the curing lamp box.