A nail art foil cutting and packing production line

By designing the nail foil cutting and packaging production line, adjusting the position of the packaging side baffle and guide plate, achieving collinear production of one or two stacks of nail foils, solving the problem of idle equipment, improving production efficiency and reducing costs.

CN117048922BActive Publication Date: 2025-08-05ZHUOZHOU HAOYUAN FOIL IND
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Patent Information

Application Number
CN202311208179.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-09-19
Publication Date
2025-08-05
Estimated Expiration
2043-09-19

AI Technical Summary

Technical Problem

During the production process of nail foil, there are problems such as idle equipment due to different packaging needs, low work efficiency and high production and maintenance costs.

Method used

Design a nail foil cutting and packaging production line, including loading components, transport components and packaging components. By adjusting the position of the packaging side baffle and guide plate, a collinear production of one or two stacks of nail foils is achieved, improving equipment utilization and reducing equipment quantity.

Benefits of technology

It improves the utilization rate of equipment, reduces production and maintenance costs, reduces equipment space and improves production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of nail art aluminum foil production equipment, and proposes a nail art foil cutting and packaging production line, comprising a loading component, a transfer component and a packaging component through which the nail art foil passes in sequence, the packaging component comprising a packaging guide platform, a packaging side baffle, a packaging frame, a packaging machine and a film guide shaft, the packaging guide platform is arranged on one side of the transfer component, the packaging side baffle is slidably arranged on the packaging guide platform, the packaging frame is arranged on one side of the packaging guide platform, the packaging machine is arranged on one side of the packaging frame, a packaging channel is formed between the two packaging side baffles, a film guide shaft is rotatably arranged below the packaging guide platform, and the packaging film passes through the packaging channel after being guided by the film guide shaft; through the above technical solution, the problem in the related art that nail art foils with different packaging requirements require different packaging equipment to perform packaging operations, when the packaging specifications change, multiple sets of equipment become idle, resulting in low overall work efficiency, high production cost and high equipment maintenance cost.
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Description

Technical Field

[0001] The present invention relates to the technical field of nail art aluminum foil production equipment, and in particular to a nail art foil cutting and packaging production line. Background Art

[0002] Nail foil is a tool used to remove nail polish. With the rise of the nail art industry, the demand for nail foil is gradually increasing. After production, nail foil is generally cut into small pieces, which are then stacked into piles, packaged, and then delivered to the user. During production, nail foil is packaged in either one or two piles. The packaging process varies to meet different customer needs, so two sets of packaging equipment are required. However, considering the daily workload of on-site operators, equipment wear, and equipment maintenance, the daily production volume of nail foil is limited. At this time, both sets of packaging equipment cannot be fully activated, resulting in idle equipment and low utilization rates, increasing the investment and maintenance costs of production equipment. Furthermore, multiple sets of equipment occupy more space in the production workshop, reducing the effective use of space. Therefore, it is necessary to improve and optimize existing technologies to increase equipment utilization. Summary of the Invention

[0003] The present invention proposes a nail foil cutting and packaging production line, which solves the problem in the related art that nail foils with different packaging requirements require different packaging equipment to carry out packaging operations. When the packaging specifications change, multiple sets of equipment become idle, resulting in low overall work efficiency, high production costs, and high equipment maintenance costs.

[0004] The technical solutions of the present invention are as follows:

[0005] A nail foil cutting and packaging production line includes a loading component, a transfer component and a packaging component through which the nail foil passes in sequence. The packaging component includes a packaging guide platform, a packaging side baffle, a packaging frame, a packaging machine and a film guide shaft. The packaging guide platform is arranged on one side of the discharge port of the transfer component. There are two packaging side baffles, both of which are slidably arranged on the packaging guide platform. The packaging frame is arranged on one side of the discharge port of the packaging guide platform. The packaging machine is arranged on one side of the packaging frame. A packaging channel through which the packaging film passes is formed between the two packaging side baffles. The film guide shaft is rotatably arranged below the packaging guide platform. A guide rod is provided on the side of the packaging guide platform close to the transfer component. After being guided by the film guide shaft, the packaging film is slidably connected to the guide rod and passes through the packaging channel.

[0006] As a further technical solution, the packaging component also includes a packaging conveyor rack, a packaging conveyor belt and a packaging guide plate. The packaging conveyor rack is arranged between the packaging guide platform and the transfer component. The packaging conveyor belt is cyclically slidably arranged on the packaging conveyor rack, and the packaging guide plate is slidably arranged on the packaging conveyor rack.

[0007] As a further technical solution, it also includes a discharging component, which includes a bag cutter, a discharging rack, a discharging conveyor belt and a material dividing unit. The bag cutter is arranged at the discharging port of the packaging component, the discharging rack is arranged at the discharging port of the bag cutter, the discharging conveyor belt is cyclically slidably arranged on the discharging rack, and the material dividing unit is arranged at the discharging port of the discharging rack. The material dividing unit includes a slide plate, a diverter plate and a diverter cylinder. The slide plate is arranged at the discharging port of the discharging rack, the diverter plate is hinged on the slide plate, the diverter cylinder is arranged on the diverter plate, and the telescopic output end of the diverter cylinder is hinged to the diverter plate.

[0008] As a further technical solution, the loading assembly includes a frame, a cutting table is provided on the frame, a cutting motor is provided on the cutting table, a cutting knife is provided on the telescopic output shaft of the cutting motor, a limit plate is provided on the frame for extrusion contact with the nail foil, and the limit plate is located on the discharge side of the cutting table; a conveying track is provided on the feed side of the cutting table, and a plurality of conveying rollers distributed in sequence are rotatably provided on the conveying track.

[0009] As a further technical solution, arc-shaped guide plates are provided on both sides of the feed port of the cutting table, side limit frames are provided on both sides of the discharge port of the cutting table, a rear limit frame is provided below the discharge port of the cutting table, and a limit block is provided on the side of the cutting knife close to the cutting motor, and the limit block conflicts with or separates from the side limit frame when the cutting knife slides.

[0010] As a further technical solution, the loading assembly also includes a lifting motor, a loading motor and a loading pallet, the loading motor is arranged on the frame, the lifting motor is arranged on the output shaft of the loading motor, the loading pallet is arranged on the output shaft of the lifting motor, and the loading pallet is located below the discharge port of the cutting table.

[0011] As a further technical solution, the transfer assembly includes a conveying support frame, a conveying chain and a conveying pallet. The conveying support frame is arranged between the packaging guide platform and the loading assembly. Several conveying wheels are rotatably arranged on the conveying support frame. A conveying motor is provided on one side of the conveying support frame. The output shaft of the conveying motor is fixedly connected to one of the conveying wheels. The conveying chain is sleeved on the conveying wheel. Several conveying pallets are detachably arranged at intervals on the conveying chain. A guide bar is provided on the loading pallet. A guide groove is provided on the conveying pallet. The guide bar is slidably connected to the guide groove.

[0012] As a further technical solution, a storage trough for storing nail art foil is provided on the conveying pallet, and the transfer assembly also includes a pushing unit, which includes a pushing cylinder, a transverse motor and a pushing plate. The transverse motor is arranged on one side of the conveying chain, and the pushing cylinder is arranged on the linear moving output shaft of the transverse motor. The pushing plate is arranged on the telescopic rod of the pushing cylinder, and the pushing plate is slidably connected to the storage trough.

[0013] As a further technical solution, the transfer component also includes a transfer unit, which includes a transfer support frame, a transfer base plate, a transfer opening frame, a first transfer cylinder and a limiting cylinder. The transfer support frame is arranged on one side of the conveying chain and above the feed port of the packaging guide platform. The transfer opening frame is arranged on the transfer support frame, and the opening direction of the transfer opening frame is facing downward. The first transfer cylinder is arranged on the transfer support frame. The transfer base plate is arranged on the telescopic rod of the first transfer cylinder. The transfer base plate is slidingly connected to the opening of the transfer opening frame. The transfer base plate is located above the feed port of the packaging guide platform. When the transfer base plate is located at the opening of the transfer opening frame, the transfer base plate and the transfer opening frame surround a transfer channel for transferring nail foil. The limiting cylinder is arranged above the transfer opening frame. A first groove is provided on the transfer opening frame. The telescopic rod on the limiting cylinder passes through the first groove and is located in the transfer channel.

[0014] As a further technical solution, there are two transfer units and they are symmetrically arranged on the transfer support frame. The transfer unit also includes a connecting frame, a second transfer cylinder, a slide rail and a sliding block. The slide rail is arranged on the transfer support frame, the sliding block is slidably arranged on the slide rail and is fixedly connected to the connecting frame, the connecting frame is arranged on the transfer opening frame, the first transfer cylinder is arranged on the connecting frame, the second transfer cylinder is arranged on the transfer support frame, and the telescopic rod of the second transfer cylinder is fixedly connected to the connecting frame.

[0015] The working principle and beneficial effects of the present invention are:

[0016] The present invention provides a nail foil cutting and packaging production line, which specifically includes a feeding component, a transfer component and a packaging component. The packaging component includes a packaging guide platform, a packaging side baffle, a packaging frame, a packaging machine and a film guide shaft, and also includes a packaging conveyor frame, a packaging conveyor belt and a packaging guide plate. Before work, the packaging film for nail foil packaging is first guided out from the material shaft, guided by the film guide shaft, and slides on the dynamic guide rod. Then, the packaging film extends from the guide rod to the packaging machine, passes through the closing of the packaging machine, and forms a transition packaging section between the guide rod and the packaging machine. The left and right edges of the transition packaging section located below the packaging machine overlap under the packaging machine. The packaging guide platform is located below the transition packaging section, and then the feeding component, the transfer component and the packaging component are started; the nail foil cut into small sections is stacked, and conveyed by the transfer component, the stacked nail foil is conveyed to the packaging conveyor belt, and the packaging conveyor belt conveys the nail foil The nail foil is conveyed to the transition packaging section on the packaging guide table; driven by the packaging film, the nail foil follows the packaging film and moves toward the baler; at this time, a counterweight rack is provided at the discharge port of the packaging conveyor frame, and a counterweight bar is provided on the counterweight rack, and the counterweight bar extends from the discharge port of the packaging conveyor frame to the bottom of the baler, and the nail foil that slides out from the packaging conveyor belt is just located under the counterweight bar and is squeezed into contact with the counterweight bar. Under the action of the weight of the counterweight bar itself, the nail foil is squeezed and compacted, reducing the space occupied by the nail foil and facilitating the packaging of the baler; when the nail foil follows the transition packaging section and moves to the bottom of the baler, the baler can use the existing equipment with heating and plastic sealing function; after being packaged by the baler, the packaging film forms a cylindrical shape, and stacks of nail foil are distributed at intervals in the cylindrical packaging film, and then the cylindrical packaging film continues to move forward for subsequent processing.

[0017] In order to meet the co-production of nail foils with different packaging needs, the position of the packaging side baffles on the packaging guide table is adjusted so that the two packaging side baffles are close to or away from each other; when the two packaging side baffles are adjusted to be close to each other until only one stack of nail foils can pass through, the packaging machine will package one stack of nail foils at this time; when the two packaging side baffles are adjusted to be away from each other until two stacks of nail foils can pass side by side, and at the same time, in order to ensure the accurate transportation of nail foils, the position of the packaging guide plate is adjusted synchronously so that the spacing between the two packaging guide plates is consistent with the spacing between the two packaging side baffles; then the two stacks of nail foils are transported to the packaging conveyor rack at the same time, transported to the packaging guide table through the packaging conveyor belt, and then enter the transition packaging section. Driven by the transition packaging section, they move to the packaging machine to complete the packaging operation. With the help of the adjustment of the position of the packaging side baffles and the packaging guide plates, the packaging operation of one or two stacks of nail foils is completed, which improves the utilization rate of the packaging equipment, avoids preparing multiple sets of packaging equipment, reduces production costs, and reduces equipment maintenance costs and maintenance time. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] The present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments.

[0019] Figure 1 It is a schematic structural diagram of the present invention as a whole;

[0020] Figure 2 It is a structural diagram of the packaging component of the present invention;

[0021] Figure 3 for Figure 2 A partial enlarged view of point A in the middle;

[0022] Figure 4 It is a structural schematic diagram of the junction of the transfer component and the loading component of the present invention;

[0023] Figure 5 for Figure 4 A partial enlarged view of point B in the middle;

[0024] Figure 6 This is a structural diagram of the feeding assembly of the present invention;

[0025] Figure 7 for Figure 6 A partial enlarged view of point C in the middle;

[0026] Figure 8 It is a structural schematic diagram of the transfer component of the present invention;

[0027] Figure 9 for Figure 8 A partial enlarged view of point D in the middle;

[0028] In the figure: 1. feeding assembly, 2. transfer assembly, 3. packaging assembly, 4. packaging guide table, 5. packaging side baffle, 6. packaging frame, 7. packaging machine, 8. film guide shaft, 9. guide rod, 10. packaging conveyor frame, 11. packaging conveyor belt, 12. packaging guide plate, 13. discharging assembly, 14. cutting machine, 15. discharging rack, 16. discharging conveyor belt, 17. material dividing unit, 18. slide plate, 19. diverter plate, 20. diverter cylinder, 21. frame, 22. cutting table, 23. cutting motor, 24. cutting knife, 25. limit plate, 26. conveying track, 27. conveying roller, 28. arc guide plate, 29. side limit frame, 30. rear limit frame, 31. limit block, 3 2. Lifting motor, 33. Loading motor, 34. Loading pallet, 35. Conveying support frame, 36. Conveying chain, 37. Conveying pallet, 38. Conveying wheel, 39. Conveying motor, 40. Guide bar, 41. Guide groove, 42. Storage trough, 43. Pushing unit, 44. Pushing cylinder, 45. Transverse movement motor, 46. Pushing plate, 47. Transfer unit, 48. Transfer support frame, 49. Transfer bottom plate, 50. Transfer opening frame, 51. First transfer cylinder, 52. Limiting cylinder, 53. First groove, 54. Connecting frame, 55. Second transfer cylinder, 56. Slide rail, 57. Sliding block, 58. Transition packaging section, 59. Counterweight rack, 60. Counterweight bar, 61. Processor. DETAILED DESCRIPTION

[0029] The following will be combined with the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making any creative efforts are within the scope of protection of the present invention.

[0030] like Figures 1 to 9 As shown, this embodiment proposes a nail art foil cutting and packaging production line;

[0031] A nail foil cutting and packaging production line includes a loading component 1, a transfer component 2 and a packaging component 3 through which the nail foil passes in sequence. The packaging component 3 includes a packaging guide platform 4, a packaging side baffle 5, a packaging frame 6, a packaging machine 7 and a film guide shaft 8. The packaging guide platform 4 is arranged on one side of the discharge port of the transfer component 2. There are two packaging side baffles 5, both of which are slidably arranged on the packaging guide platform 4. The packaging frame 6 is arranged on one side of the discharge port of the packaging guide platform 4. The packaging machine 7 is arranged on one side of the packaging frame 6. A packaging channel through which the packaging film passes is formed between the two packaging side baffles 5. A film guide shaft 8 is rotatably provided below the packaging guide platform 4. A guide rod 9 is provided on the side of the packaging guide platform 4 close to the transfer component 2. After being guided by the film guide shaft 8, the packaging film is slidably connected with the guide rod 9 and passes through the packaging channel.

[0032] Furthermore, the packaging component 3 also includes a packaging conveyor rack 10, a packaging conveyor belt 11 and a packaging guide plate 12. The packaging conveyor rack 10 is arranged between the packaging guide platform 4 and the transfer component 2. The packaging conveyor belt 11 is cyclically slidably arranged on the packaging conveyor rack 10, and the packaging guide plate 12 is slidably arranged on the packaging conveyor rack 10.

[0033] In this embodiment, Figures 1 to 3 As shown, a nail foil cutting and packaging production line is provided, which specifically includes a feeding component 1, a transfer component 2 and a packaging component 3. The packaging component 3 includes a packaging guide platform 4, a packaging side baffle 5, a packaging frame 6, a packaging machine 7 and a film guide shaft 8, and also includes a packaging conveyor frame 10, a packaging conveyor belt 11 and a packaging guide plate 12; before work, the packaging film for nail foil packaging is first guided out from the material shaft, guided by the film guide shaft 8, and slides over the dynamic guide rod 9, and then extends from the guide rod 9 to the packaging machine 7, passes through the closing of the packaging machine 7, so that the packaging film between the guide rod 9 and the packaging machine 7 forms a transition packaging section 58; the left and right edges of the transition packaging section 58 located below the packaging machine 7 overlap below the packaging machine 7; the packaging guide platform 4 is located below the transition packaging section 58, and then the feeding component 1, the transfer component 2 and the packaging component 3 are started; the nail foil cut into small sections is stacked, and after being transported by the transfer component 2, the stacked nail foil is transported to the packaging conveyor belt 11, and the packaging conveyor belt 1 1 conveys the nail foil to the transition packaging section 58 on the packaging guide platform 4; driven by the packaging film, the nail foil follows the packaging film and moves towards the packaging machine 7; at this time, a counterweight frame 59 is provided at the discharge port of the packaging conveyor frame 10, and a counterweight bar 60 is provided on the counterweight frame 59. The counterweight bar 60 extends from the discharge port of the packaging conveyor frame 10 to the bottom of the packaging machine 7, and the nail foil sliding out of the packaging conveyor belt 11 is just located under the counterweight bar 60 and is squeezed and contacted with the counterweight bar 60 The nail foil is touched and squeezed under the action of the weight bar 60's own gravity, compacting the nail foil and reducing the space occupied by the nail foil, which is convenient for the packaging of the packaging machine 7; when the nail foil follows the transition packaging section 58 and moves to the bottom of the packaging machine 7, the packaging machine 7 can use an existing device with a heating and plastic sealing function; after being packaged by the packaging machine 7, the packaging film forms a cylindrical shape, and stacks of nail foils are distributed at intervals in the cylindrical packaging film, and then the cylindrical packaging film continues to move forward for subsequent processing.

[0034] In order to meet the co-production of nail foils with different packaging requirements, the position of the packaging side baffles 5 on the packaging guide platform 4 is adjusted to make the two packaging side baffles 5 close to or away from each other; when the two packaging side baffles 5 are adjusted to be close to each other until only one stack of nail foils can pass through, the packaging machine 7 will package one stack of nail foils; when the two packaging side baffles 5 are adjusted to be away from each other until two stacks of nail foils can pass side by side, in order to ensure the accurate transportation of nail foils, the position of the packaging guide plate 12 is adjusted synchronously so that the spacing between the two packaging guide plates 12 is the same as that between the two packaging guide plates 12. The distance between the two packaging side baffles 5 is kept consistent; then the two stacks of nail art foils are transported to the packaging conveyor rack 10 at the same time, transported to the packaging guide platform 4 through the packaging conveyor belt 11, and then enter the transition packaging section 58. Driven by the transition packaging section 58, they move to the packaging machine 7 to complete the packaging operation. With the help of adjusting the position of the packaging side baffles 5 and the packaging guide plate 12, the packaging operation of one or two stacks of nail art foils is completed, thereby improving the utilization rate of the packaging equipment, avoiding the preparation of multiple sets of packaging equipment, reducing production costs, and reducing equipment maintenance costs and maintenance time.

[0035] Furthermore, it also includes a discharging component 13, which includes a bag cutter 14, a discharging rack 15, a discharging conveyor belt 16 and a dividing unit 17. The bag cutter 14 is arranged at the discharging port of the packaging component 3, the discharging rack 15 is arranged at the discharging port of the bag cutter 14, the discharging conveyor belt 16 is cyclically slidably arranged on the discharging rack 15, and the dividing unit 17 is arranged at the discharging port of the discharging rack 15. The dividing unit 17 includes a slide plate 18, a diverter plate 19 and a diverter cylinder 20. The slide plate 18 is arranged at the discharging port of the discharging rack 15, and the diverter plate 19 is hinged on the slide plate 18. The diverter cylinder 20 is arranged on the diverter plate 19, and the telescopic output end of the diverter cylinder 20 is hinged to the diverter plate 19.

[0036] In this embodiment, Figures 1 to 3As shown, the discharging assembly 13 is refined. Specifically, the discharging assembly 13 includes a package cutter 14, a discharging rack 15, a discharging conveyor belt 16 and a material dividing unit 17. The material dividing unit 17 includes a slide plate 18, a diverter plate 19 and a diverter cylinder 20. When working, the packaging film after being packaged by the baler 7 is cylindrical, and the whole is in the shape of a cylindrical strip. There are multiple stacks of nail foils placed in the cylinder, and they are not divided into a stack of individual small packages. Then the cylindrical packaging film is conveyed to the bottom of the package cutter 14. The package cutter 14 can use existing equipment with heat sealing and cutting functions to heat seal and divide the front and back of each stack of nail foils to form separate small packages. According to the packaging requirements of the nail foils, each small package contains one or two stacks of nail foils. The nail foils packaged into small packages continue to move forward, and move The slide 18 is mounted on the slide 18, and the slide 18 includes a first section and a second section, both of which are inclined, wherein the inclination angle of the first section is smaller than the inclination angle of the second section; the slide 18 is swingably mounted on the second section; a plurality of collection boxes for holding nail foils are provided at the discharge port of the second section; on the slide 18, the nail foil slides on the slide 18 in an oblique downward direction under the action of its own gravity, and then falls into the collection box; when the first collection box is full of nail foils, the two diverter cylinders 20 electrically connected to the processor 61 are started through the external processor 61, and after the diverter cylinders 20 are started, the diverter plate 19 is pushed to swing on the second section, and the two diverter strips swing in the same direction, adjusting the moving direction of the nail foil, and putting the nail foil into the second collection box to ensure continuous discharge of the nail foil.

[0037] Furthermore, the loading assembly 1 includes a frame 21, a cutting table 22 is provided on the frame 21, a cutting motor 23 is provided on the cutting table 22, a cutting knife 24 is provided on the telescopic output shaft of the cutting motor 23, and a limit plate 25 is provided on the frame 21 for extrusion contact with the nail foil, and the limit plate 25 is located on the discharge side of the cutting table 22; a conveying track 26 is provided on the feed side of the cutting table 22, and a plurality of conveying rollers 27 distributed in sequence are rotatably provided on the conveying track 26.

[0038] Furthermore, arc-shaped guide plates 28 are provided on both sides of the feed port of the cutting table 22, side limit frames 29 are provided on both sides of the discharge port of the cutting table 22, a rear limit frame 30 is provided below the discharge port of the cutting table 22, and a limit block 31 is provided on the side of the cutting knife 24 close to the cutting motor 23. When the cutting knife 24 slides, the limit block 31 conflicts with or separates from the side limit frame 29.

[0039] Furthermore, the loading assembly 1 also includes a lifting motor 32, a loading motor 33 and a loading pallet 34. The loading motor 33 is set on the frame 21, the lifting motor 32 is set on the output shaft of the loading motor 33, and the loading pallet 34 is set on the output shaft of the lifting motor 32. The loading pallet 34 is located below the discharge port of the cutting table 22.

[0040] In this embodiment, Figure 1~Figure 2 and Figures 4 to 7 As shown, the feeding assembly 1 is refined, specifically including a frame 21, a cutting table 22, a cutting motor 23, a cutting knife 24, a limiting plate 25, a conveying track 26 and a conveying roller 27; wherein a plurality of conveying rollers 27 spaced apart in sequence respectively form an upper group of rollers and a lower group of rollers, and an external controller is located on one side of the frame 21; the cutting motor 23 is electrically connected to the processor 61; when working, the nail foil is pulled onto the conveying track 26, and the nail foil is located between the upper group of rollers and the lower group of rollers. With the help of the rotation of the conveying roller 27, the nail foil is conveyed to the cutting table 22, and at the same time, the upper group of rollers and the lower group of rollers can be used to flatten the nail foil, thereby improving the flatness of the nail foil when it is discharged; after the nail foil reaches the cutting table 22, under the conveying action of the conveying roller 27, the starting end of the nail foil is squeezed and contacted with the limiting plate 25, At this time, the cutting motor 23 is started by the processor 61. The cutting motor 23 is an electrically driven motor. The cutting motor 23 can provide a linear driving force. Under the action of the cutting motor 23, the cutter 24 gradually approaches the nail foil and cuts the nail foil under the action of the cutter 24. After the nail foil is cut, the cutting motor 23 quickly reverses under the control of the processor 61, and drives the cutter 24 to quickly move away from the nail foil. At this time, the cutting of the nail foil is completed once. Then the nail foil continues to move forward until the nail foil is squeezed and contacted with the limit plate 25 again, and then the processor 61 controls the cutting motor 23 to complete the second cutting operation. Repeat this process until the cutting of the nail foil is completed. With the help of the limiting effect of the limit plate 25, the consistency of the size of the nail foil cut each time is improved, which is convenient for the subsequent stacking and packaging of the nail foil.

[0041] The cutting table 22 has been optimized by adding an arc-shaped guide plate 28, a side limit frame 29 and a rear limit frame 30; wherein, arc-shaped guide plates 28 have been added on the left and right sides of the feed port of the cutting table 22, and the conveying direction of the nail foil is guided by the arc-shaped guide plates 28 to avoid the conveying direction of the nail foil from being offset and causing the nail foil to be stuck.

[0042] Side limit frames 29 are added on the left and right sides of the cutting table 22 discharge port, and a rear limit frame 30 is added below the cutting table 22 discharge port; during operation, the starting end of the nail foil passes through the cutting table 22 and is squeezed into contact with the limit plate 25. At this time, the left and right sides of the nail foil that exceeds the cutting table 22 are respectively slidably connected with the two side limit frames 29. Under the action of the side limit frames 29, the nail foil is prevented from deviating to the left and right sides; the nail foil cut by the cutter 24 will fall down, and the front and back and left and right positions of the nail foil are limited and constrained by the limit plate 25, the side limit frames 29 and the rear limit frame 30, thereby ensuring the consistency of the cutting size of the nail foil and the accuracy of the cutting positioning, so that the cut nail foil falls down neatly and stacks together, realizing rapid stacking.

[0043] A limit block 31 is added to the cutter 24; through the extrusion contact between the limit block 31 and the side limit frame 29, the moving trajectory of the cutter 24 can be effectively limited to prevent the cutting motor 23 from malfunctioning and the moving distance of the cutter 24 from changing, causing equipment damage and personal injury.

[0044] A lifting motor 32, a feeding motor 33 and a feeding support plate 34 are also added; wherein the lifting motor 32 and the feeding motor 33 are preferably electrically driven motors, and the lifting motor 32 and the feeding motor 33 are electrically connected to the processor 61; during operation, when the nail foil is squeezed and contacted with the limit plate 25, the processor 61 starts the cutting motor 23, and the cutting motor 23 pushes the cutter 24 to complete the cutting of the nail foil, and the cut nail foil falls on the feeding support plate 34. At this time, the processor 61 starts the lifting motor 32. After the lifting motor 32 is started, it will drive the feeding support plate 34 to gradually descend away from the discharge port of the cutting table 22. As the cutter 24 gradually cuts the nail foil, the feeding support plate 34 will also gradually descend. At this time, the feeding support plate 3 4; when the cutting motor 23 stops working for a period of time, the processor 61 will be adjusted to stop the feeding of the nail foil, and the lifting motor 32 will continue to run for a period of time and then stop; at this time, the highest layer of nail foil on the loading tray 34 is also located below the limit plate 25; then the processor 61 starts the loading motor 33, and after the loading motor 33 is started, it pushes the lifting motor 32 in the direction away from the cutting table 22, and the lifting motor 32 moves with the loading tray 34 and the stacked nail foil in the direction away from the cutting table 22, completing the cutting and stacking of the nail foil; at the same time, the consistency of the cutting size of the nail foil is ensured, and the neatness of the stacking of the nail foil is improved.

[0045] Furthermore, the transfer component 2 includes a conveying support frame 35, a conveying chain 36 and a conveying pallet 37. The conveying support frame 35 is arranged between the packaging guide platform 4 and the loading component 1. Several conveying wheels 38 are rotatably arranged on the conveying support frame 35. A conveying motor 39 is provided on one side of the conveying support frame 35. The output shaft of the conveying motor 39 is fixedly connected to one of the conveying wheels 38. The conveying chain 36 is sleeved on the conveying wheel 38. Several conveying pallets 37 are detachably arranged at intervals on the conveying chain 36. A guide bar 40 is provided on the loading pallet 34. A guide groove 41 is provided on the conveying pallet 37. The guide bar 40 is slidably connected to the guide groove 41.

[0046] Furthermore, a storage trough 42 for storing nail foil is provided on the conveying pallet 37, and the transfer component 2 also includes a pushing unit 43, which includes a pushing cylinder 44, a transverse motor 45 and a pushing plate 46. The transverse motor 45 is arranged on one side of the conveying chain 36, and a pushing cylinder 44 is provided on the linear moving output shaft of the transverse motor 45, and a pushing plate 46 is provided on the telescopic rod of the pushing cylinder 44, and the pushing plate 46 is slidably connected to the storage trough 42.

[0047] Furthermore, the transfer component 2 also includes a transfer unit 47, which includes a transfer support frame 48, a transfer base plate 49, a transfer opening frame 50, a first transfer cylinder 51 and a limiting cylinder 52. The transfer support frame 48 is arranged on one side of the conveyor chain 36 and is located above the feed port of the packaging guide platform 4. The transfer opening frame 50 is arranged on the transfer support frame 48, and the opening direction of the transfer opening frame 50 is facing downward. The first transfer cylinder 51 is arranged on the transfer support frame 48. The telescopic rod of the first transfer cylinder 51 is provided with a transfer base plate 49. The transfer base plate 49 is slidingly connected to the opening of the transfer opening frame 50. The transfer base plate 49 is located above the feed port of the packaging guide platform 4. When the transfer base plate 49 is located at the opening of the transfer opening frame 50, the transfer base plate 49 and the transfer opening frame 50 are surrounded to form a transfer channel for transferring nail foil. The limiting cylinder 52 is arranged above the transfer opening frame 50. The transfer opening frame 50 is provided with a first groove 53. The telescopic rod on the limiting cylinder 52 passes through the first groove 53 and is located in the transfer channel.

[0048] Furthermore, there are two transfer units 47 and they are symmetrically arranged on the transfer support frame 48. The transfer unit 47 also includes a connecting frame 54, a second transfer cylinder 55, a slide rail 56 and a sliding block 57. The slide rail 56 is arranged on the transfer support frame 48, the sliding block 57 is slidably arranged on the slide rail 56 and is fixedly connected to the connecting frame 54, the connecting frame 54 is arranged on the transfer opening frame 50, the first transfer cylinder 51 is arranged on the connecting frame 54, the second transfer cylinder 55 is arranged on the transfer support frame 48, and the telescopic rod of the second transfer cylinder 55 is fixedly connected to the connecting frame 54.

[0049] In this embodiment, Figure 1~Figure 2 and Figures 4 to 9As shown, the transfer component 2 is refined. The specific transfer component 2 includes a conveying support frame 35, a conveying chain 36, a conveying pallet 37 and a conveying motor 39; the conveying motor 39 is electrically connected to the processor 61; the conveying motor 39 uses an electrically driven servo motor and its output shaft is a circular motion; when working, the conveying motor 39 is started, and the conveying motor 39 drives the conveying wheel 38 to rotate, and the conveying wheel 38 drives the meshing conveying chain 36 to move back and forth on the conveying support frame 35. When the conveying chain 36 moves, it will drive the conveying pallet 37 to move in the same direction. When the conveying pallet 37 is aligned with the loading pallet 34, the processor 61 controls the conveying motor 39 to stop power output; at this time, the processor 61 starts the loading motor 33, and the output shaft of the loading motor 33 begins to telescopically move, and pushes the loading pallet 34 to gradually approach the conveying pallet 37 until the guide bar 40 is inserted into the guide groove 41. As the loading motor 3 3 continues to run, the edge position of the bottom of the conveying tray 37 slides on the upper surface of the loading tray 34 until the stacks of nail art foils on the loading tray 34 are squeezed and contacted with the conveying tray 37, and a guide bevel is provided on the side of the conveying tray 37 close to the loading tray 34. Under the action of the guide bevel, the stacks of nail art foils are finally moved from the loading tray 34 to the conveying tray 37; then the processor 61 controls the loading motor 33 to return to the initial position, waiting for the next stack of nail art foils to be transported to the loading tray 34; at the same time, the processor 61 will start the conveying motor 39, and the conveying motor 39 will drive the conveying wheel 38, the conveying chain 36, the conveying tray 37 and the nail art foils in turn, and approach the next packaging process together. The stacks of nail art foils are transferred with the help of the loading component 1 and the transfer component 2, and the baffles combed on the left and right sides of the conveying tray 37 are used to prevent the nail art foils from tilting or misaligning to facilitate the subsequent packaging operation.

[0050] The transfer component 2 is further optimized, and a pushing unit 43 is added. The pushing unit 43 includes a pushing cylinder 44, a transverse motor 45 and a pushing plate 46; the pushing cylinder 44 and the transverse motor 45 are electrically connected to the processor 61; the telescopic rod of the pushing cylinder 44 performs linear telescopic movement; the transverse motor 45 uses an electrically driven servo motor; the output shaft of the transverse motor 45 performs linear telescopic movement; when working, when the stacked nail art foils on the discharge component 13 are moved to the conveying tray 37, the conveying tray 37 gradually approaches the pushing unit 43 under the driving action of the conveying chain 36. When the conveying tray 37 is aligned with the pushing plate 46, the processor 61 will control the conveying The motor 39 stops running; then the processor 61 starts the push cylinder 44. After the push cylinder 44 is started, the telescopic rod on the push cylinder 44 moves the push plate 46 toward the storage trough 42 until the push plate 46 enters the storage trough 42. As the push cylinder continues to advance, the push plate 46 comes into contact with the nail foil in the storage trough 42; under the push of the push plate 46, the nail foil slides from one end of the storage trough 42 to the other end until the nail foil separates from the conveying tray 37; at this time, the transfer of the nail foil is completed; then the processor 61 starts the push cylinder 44 again to return to the initial position and wait for the arrival of the next conveying tray 37. The transverse motor 45 can adjust the position of the push cylinder 44 to improve the applicable range of the push cylinder 44.

[0051] The transfer component 2 is further optimized, and a transfer unit 47 is added. The transfer unit 47 includes a transfer support frame 48, a transfer base plate 49, a transfer opening frame 50, a first transfer cylinder 51 and a limit cylinder 52; the telescopic rod of the first transfer cylinder 51 performs linear telescopic movement; during operation, when the conveying support plate 37 is aligned with the pushing plate 46, the conveying support plate 37 is just aligned with the transfer channel, and with the help of the pushing plate 46, the nail foil is separated from the conveying support plate 37 and moved to the transfer base plate 49 in the transfer channel. After the pushing plate 46 pushes the nail foil to run a distance on the transfer base plate 49, the pushing plate 46 returns to its initial position under the action of the pushing cylinder 44; when the nail foil moves on the transfer base plate 49, the side walls on the left and right sides of the transfer opening frame 50 limit and guide the nail foil; with the push of the pushing plate 46, the nail foil and the telescopic rod on the limit cylinder 52 are aligned. The retracted rods come into contact with each other through compression, and with the help of the obstruction and limiting effect of the telescopic rod on the limit cylinder 52, one end of the nail foil is aligned, and at the same time, the stacked nail foil can be prevented from tilting and misaligning. At this time, the transfer base plate 49 is located above the conveyor belt of the packaging process, and then the processor 61 starts the first transfer cylinder 51. The telescopic rod of the first transfer cylinder 51 begins to move away from the transfer opening frame 50, and the telescopic rod of the first transfer cylinder 51 drives the transfer base plate 49 to move in the same direction. When the transfer base plate 49 moves, the nail foil on the transfer base plate 49 will not move with the transfer base plate 49 due to the obstruction of the side wall of the transfer opening frame 50, and the nail foil will remain in the transfer opening frame 50. When the transfer base plate 49 is separated from the transfer opening frame 50, the nail foil falls downward from the transfer channel until it falls onto the conveyor belt of the packaging process, at which time the transfer of the nail foil is completed. The transfer unit 47 completes the transfer connection between the conveyor plate 37 and the conveyor belt.

[0052] The transfer unit 47 is optimized, and a connecting frame 54, a second transfer cylinder 55, a slide rail 56 and a sliding block 57 are added; the number of the transfer units 47 is preferably two, and the number of the pushing units 43 is also preferably two, which correspond to the transfer units 47 one by one; by adjusting the position of the conveying pallet 37 on the conveying chain 36, two stacks of nail foils can be conveyed and transferred at the same time, and the subsequent packaging process can realize the simultaneous packaging of two stacks of nail foils to meet different packaging requirements; the second transfer cylinder 55 is electrically connected to the processor 61, and the telescopic rod of the second transfer cylinder 55 performs linear telescopic movement, and the processor 61 Start the second transfer cylinder 55, the telescopic rod on the second transfer cylinder 55 will drive the connecting frame 54 to move in the same direction, and the connecting frame 54 will drive the sliding block 57 to slide on the slide rail 56. With the help of the cooperation of the slide rail 56 and the sliding block 57, the consistency of the movement of the second transfer cylinder 55 is ensured; at the same time, the connecting frame 54 will drive the transfer base plate 49, the transfer opening frame 50 and the first transfer cylinder 51 to move in the same direction; the distance between the two transfer opening frames 50 is adjusted by the movement of the two second transfer cylinders 55, so that the two transfer opening frames 50 correspond to the conveying pallet 37 on the conveyor chain 36, thereby ensuring the smooth completion of the transfer of the nail foil.

[0053] The above are only preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A nail art foil cutting and packaging production line, comprising a feeding assembly (1), a transfer assembly (2) and a packaging assembly (3) through which nail art foil passes in sequence, characterized in that: The packaging component (3) includes a packaging guide platform (4), a packaging side baffle (5), a packaging frame (6), a packaging machine (7) and a film guide shaft (8). The packaging guide platform (4) is arranged on one side of the discharge port of the transfer component (2). The number of the packaging side baffles (5) is two and both are slidably arranged on the packaging guide platform (4). The packaging frame (6) is arranged on one side of the discharge port of the packaging guide platform (4). The packaging machine (7) is arranged on one side of the packaging frame (6). A packaging channel for the packaging film to pass through is formed between the two packaging side baffles (5). The film guide shaft (8) is rotatably arranged below the packaging guide platform (4). A guide rod (9) is arranged on one side of the packaging guide platform (4) close to the transfer component (2). After being guided by the film guide shaft (8), the packaging film is slidably connected to the guide rod (9) and passes through the packaging channel. The packaging assembly (3) further includes a packaging conveyor frame (10), a packaging conveyor belt (11) and a packaging guide plate (12); The machine further comprises a discharge assembly (13), wherein the discharge assembly (13) comprises a bag cutter (14), a discharge rack (15), a discharge conveyor belt (16), and a material dividing unit (17), wherein the material dividing unit (17) comprises a slide plate (18), a diverter plate (19), and a diverter cylinder (20), wherein the slide plate (18) is arranged at the discharge port of the discharge rack (15), and the diverter plate (19) is hingedly connected to the slide plate (18); The transfer assembly (2) comprises a conveying support frame (35), a conveying chain (36) and a conveying support plate (37); The transfer assembly (2) further includes a transfer unit (47), the transfer unit (47) including a transfer support frame (48), a transfer bottom plate (49), a transfer opening frame (50), a first transfer cylinder (51) and a limit cylinder (52), the transfer support frame (48) is arranged on one side of the conveyor chain (36) and above the feed port of the packaging guide platform (4), the transfer opening frame (50) is arranged on the transfer support frame (48), the opening direction of the transfer opening frame (50) is downward, the first transfer cylinder (51) is arranged on the transfer support frame (48), and a telescopic rod of the first transfer cylinder (51) is provided with The transfer base plate (49) is slidably connected to the opening of the transfer opening frame (50). The transfer base plate (49) is located above the feed port of the packaging guide platform (4). When the transfer base plate (49) is located at the opening of the transfer opening frame (50), the transfer base plate (49) and the transfer opening frame (50) surround a transfer channel for transferring nail art foil. The limiting cylinder (52) is arranged above the transfer opening frame (50). A first groove (53) is provided on the transfer opening frame (50). The telescopic rod on the limiting cylinder (52) passes through the first groove (53) and is located in the transfer channel.

2. A nail art foil cutting and packaging production line according to claim 1, characterized in that: The packaging conveyor frame (10) is arranged between the packaging guide platform (4) and the transfer assembly (2), the packaging conveyor belt (11) is cyclically slidably arranged on the packaging conveyor frame (10), and the packaging guide plate (12) is slidably arranged on the packaging conveyor frame (10).

3. The nail art foil cutting and packaging production line according to claim 1, characterized in that: The bag cutting machine (14) is arranged at the discharge port of the packaging component (3), the discharge rack (15) is arranged at the discharge port of the bag cutting machine (14), the discharge conveyor belt (16) is arranged on the discharge rack (15) in a circular sliding manner, the dividing unit (17) is arranged at the discharge port of the discharge rack (15), the diverter cylinder (20) is arranged on the diverter plate (19), and the telescopic output end of the diverter cylinder (20) is hinged to the diverter plate (19).

4. The nail art foil cutting and packaging production line according to claim 2, characterized in that: The feeding assembly (1) comprises a frame (21), a cutting table (22) is provided on the frame (21), a cutting motor (23) is provided on the cutting table (22), a cutting blade (24) is provided on the telescopic output shaft of the cutting motor (23), a limiting plate (25) is provided on the frame (21) for extrusion contact with the nail art foil, and the limiting plate (25) is located on one side of the discharge port of the cutting table (22); a conveying track (26) is provided on one side of the feed port of the cutting table (22), and a plurality of conveying rollers (27) are rotatably provided on the conveying track (26) and are distributed in sequence at intervals.

5. The nail art foil cutting and packaging production line according to claim 4, characterized in that: Arc-shaped guide plates (28) are provided on both sides of the feed port of the cutting table (22), side limit frames (29) are provided on both sides of the discharge port of the cutting table (22), a rear limit frame (30) is provided below the discharge port of the cutting table (22), and a limit block (31) is provided on the side of the cutting knife (24) close to the cutting motor (23), and when the cutting knife (24) slides, the limit block (31) contacts or separates from the side limit frame (29).

6. The nail art foil cutting and packaging production line according to claim 5, characterized in that: The feeding assembly (1) further comprises a lifting motor (32), a feeding motor (33) and a feeding support plate (34), wherein the feeding motor (33) is arranged on the frame (21), the lifting motor (32) is arranged on the output shaft of the feeding motor (33), and the feeding support plate (34) is arranged on the output shaft of the lifting motor (32), and the feeding support plate (34) is located below the discharge port of the cutting table (22).

7. The nail art foil cutting and packaging production line according to claim 6, characterized in that: The conveying support frame (35) is arranged between the packaging guide platform (4) and the loading assembly (1), and a plurality of conveying wheels (38) are rotatably arranged on the conveying support frame (35). A conveying motor (39) is arranged on one side of the conveying support frame (35), and the output shaft of the conveying motor (39) is fixedly connected to one of the conveying wheels (38). The conveying chain (36) is sleeved on the conveying wheel (38), and a plurality of spaced conveying support plates (37) are detachably arranged on the conveying chain (36). A guide bar (40) is arranged on the loading support plate (34), and a guide groove (41) is opened on the conveying support plate (37). The guide bar (40) is slidably connected to the guide groove (41).

8. The nail art foil cutting and packaging production line according to claim 7, characterized in that: The conveying support plate (37) is provided with a storage trough (42) for storing nail art foil. The transfer assembly (2) also includes a pushing unit (43). The pushing unit (43) includes a pushing cylinder (44), a transverse motor (45) and a pushing plate (46). The transverse motor (45) is arranged on one side of the conveying chain (36). The pushing cylinder (44) is arranged on a linear movable output shaft of the transverse motor (45). The pushing plate (46) is arranged on the telescopic rod of the pushing cylinder (44). The pushing plate (46) is slidably connected to the storage trough (42).

9. The nail art foil cutting and packaging production line according to claim 8, characterized in that: The number of the transfer units (47) is two and they are symmetrically arranged on the transfer support frame (48). The transfer unit (47) further includes a connecting frame (54), a second transfer cylinder (55), a slide rail (56) and a sliding block (57). The slide rail (56) is arranged on the transfer support frame (48). The sliding block (57) is slidably arranged on the slide rail (56) and is fixedly connected to the connecting frame (54). The connecting frame (54) is arranged on the transfer opening frame (50). The first transfer cylinder (51) is arranged on the connecting frame (54). The second transfer cylinder (55) is arranged on the transfer support frame (48). The telescopic rod of the second transfer cylinder (55) is fixedly connected to the connecting frame (54).

Citation Information

Patent Citations

  • Cutting and packaging production line for manicure foil

    CN220884965U

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    CN220925320U