An automatic multi-color diamond pasting machine for superimposed paper

By integrating bonding and cutting components into the automatic drilling machine and sliding the main frame onto the drilling platform, the problem of insufficient integration was solved, thereby improving space utilization and production efficiency.

CN224576405UActive Publication Date: 2026-07-31ZHEJIANG FUZHIYUAN MASCH EQUIP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHEJIANG FUZHIYUAN MASCH EQUIP CO LTD
Filing Date
2025-06-23
Publication Date
2026-07-31

AI Technical Summary

Technical Problem

The existing automatic drilling machines have low integration, resulting in the transmission line and processing module being independent, occupying a large production space and increasing production costs.

Method used

The bonding components for the adhesive paper and the base paper are integrated into the main frame. A pressing unit pushes the adhesive paper and the base paper to bond together. The bonding roller group and the paper cutting assembly achieve rapid bonding and cutting. The paper separating mechanism separates the papers and guides them to different channels. The receiving component collects the finished paper. The main frame is slidably set on the rocker platform. The lifting component improves work efficiency.

Benefits of technology

It improves the integration of automatic drilling machines, reduces floor space, lowers production costs, and increases work efficiency and material collection efficiency, adapting to different production needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses an automatic multi-color rhinestone applicator for bonding paper, belonging to the field of automation equipment technology. The rhinestone applicator includes a main frame with a pressing unit; a bottom paper channel for threading the bottom paper; a laminating area located in the middle of the main frame; an adhesive paper channel for threading the adhesive paper, located at the lower part of the main frame; and a reversing roller group for guiding the adhesive paper exiting the adhesive paper channel to the laminating area, and for guiding the bottom paper exiting the bottom paper channel to the top of the adhesive paper in the laminating area for lamination. Through this invention, the laminating components for the adhesive paper and bottom paper are integrated into the entire main frame, improving the overall integration of the applicator and significantly reducing its overall longitudinal length and the required installation area.
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Description

Technical Field

[0001] This invention relates to an automatic multi-color rhinestone attaching machine for top-coated paper, belonging to the field of automation equipment technology. Background Technology

[0002] A rhinestone applicator is a fabric and paper processing device used in the field of clothing and accessories. It can quickly and firmly adhere the assembled rhinestone patterns to fabric, adhesive paper, or other materials. Through subsequent processing of the fabric, adhesive paper, or other materials, paper or fabric with exquisite patterns can be produced.

[0003] The existing automatic rhinestone applicator has a low degree of integration. The paper or fabric transport line is relatively independent from the other processing modules, which means that the whole machine after the transport line and processing modules are assembled requires a large production space, which greatly increases the production cost. Summary of the Invention

[0004] The technical problem to be solved by the present invention is to provide an automatic rhinestone applicator for multi-color paper, which solves the problem of insufficient integration of the existing automatic rhinestone applicator.

[0005] The technical problem to be solved by the present invention is achieved by the following technical solution: an automatic multi-color rhinestone attaching machine for upper paper, comprising a main frame, wherein a pressing unit is provided on the main frame;

[0006] The bottom paper channel is used to thread the bottom paper through.

[0007] The overlapping area is located in the middle of the main frame;

[0008] The adhesive paper channel, used for threading adhesive paper, is located at the lower part of the main frame;

[0009] The reversing roller assembly is used to guide the adhesive paper passing through the adhesive paper channel to the lamination area, and to guide the bottom paper passing through the bottom paper channel to the top of the adhesive paper in the lamination area to be laminated with the adhesive paper.

[0010] By adopting the above technical solution, the laminating components for the adhesive paper and backing paper are integrated into the entire main frame, improving the overall integration of the adhesive paper machine. This significantly reduces the overall longitudinal length of the machine and effectively lowers the required installation area. After the adhesive paper and backing paper are reversed 180 degrees and laminated, they are discharged again from the feed end of the main frame. The feed and discharge ends of the machine are located in the same direction, eliminating the space occupied by the laminating components at the other end of the main frame and improving work efficiency, eliminating the need for operators to walk back and forth when loading and unloading materials.

[0011] The present invention is further configured such that: the pressing unit includes guide shafts disposed on both sides of the main frame, and the lower end of the guide shaft is provided with a pressing component for pressing the adhesive paper.

[0012] By adopting the above technical solution, the pressing component pushes the adhesive paper onto the platform of the hot-fix rhinestone machine to adhere to the rhinestones, thereby achieving fast and stable attachment of the rhinestone pattern. By placing the guide shafts on both sides of the main frame, the entire internal space of the main frame can be freed up to accommodate other components, effectively improving the utilization rate of the internal space of the main frame and avoiding interference between the paper feeding area inside the main frame and the pressing component.

[0013] The present invention is further configured such that: a laminating roller group is provided at the inlet end of the laminating area, the laminating roller group including two laminating rollers, the two laminating rollers being used to pass and laminate the adhesive paper and the base paper.

[0014] By adopting the above technical solution, the adhesive paper for attaching rhinestones can be quickly re-lapped with the base paper and guided into the lamination area.

[0015] The present invention is further configured such that: a paper cutting component is provided on the inner side of the laminating roller group, the paper cutting component being used to cut the re-laminated adhesive paper and the backing paper.

[0016] By adopting the above technical solution, the finished paper produced by re-laminating the adhesive paper with the base paper after the decorative rhinestones are attached can be quickly cut into individual paper fabrics. By placing the paper cutting component inside the laminating roller group, the internal space of the main frame is further utilized, the integration of the whole machine is improved, and the connection between each process module is more compact.

[0017] The present invention is further configured such that: the paper cutting assembly includes a cutting component for cutting, the cutting component being slidably disposed along the axial direction of the reversing roller group.

[0018] By adopting the above technical solution, the multi-blade layout is replaced by sliding cutting, which reduces mechanical complexity and maintenance costs. The cutting component can slide along the axis to adapt to paper or materials of different widths, significantly improving the equipment's responsiveness to different production needs.

[0019] The present invention is further configured such that: a storage component is provided in the lamination area, the storage component being used to store the re-lamination of the adhesive paper and the backing paper.

[0020] By adopting the above technical solution, the re-coated adhesive paper and backing paper can be centrally recycled, avoiding the materials from scattering and piling up, and facilitating subsequent unified collection. Different storage capacities can be designed according to production conditions to adapt to different production scale requirements.

[0021] The present invention is further configured such that the storage component is slidably disposed within the covering area and can be pulled out to the outside of the covering area.

[0022] By adopting the above technical solutions, material feeding efficiency can be greatly improved and external space of the equipment can be saved.

[0023] The present invention is further configured such that: a paper separating mechanism is provided at one end of the main frame, the paper separating mechanism separates the adhesive paper and the bottom paper and guides them respectively into the adhesive paper channel and the bottom paper channel, the paper separating mechanism includes a paper separating roller for guiding the adhesive paper into the adhesive paper channel.

[0024] By adopting the above technical solution, the adhesive paper and backing paper to be processed are quickly separated from the roll and guided to the adhesive paper channel and backing paper channel respectively, improving feeding efficiency. Integrating the paper separating mechanism into the main frame eliminates the need for external feeding and paper separating mechanisms, further reducing the space occupied by the machine.

[0025] The present invention is further configured such that: the paper separating mechanism includes at least two inclined rollers, the inclined rollers are used to change the transmission direction of the bottom paper, the transmission direction is adjusted once each time the bottom paper passes through the inclined rollers, and the bottom paper enters the bottom paper channel after being guided multiple times.

[0026] By adopting the above technical solution, the bottom paper is guided to the upper part of the main frame by inclined rollers for transmission, forming an upward paper feeding channel for the bottom paper, which effectively utilizes the vertical height space of the entire machine. At the same time, guided by two inclined rollers, a large feeding port can be formed at the feeding end of the main frame, which can quickly pull the storage component out of the lamination area for feeding, facilitating subsequent paper replacement and improving work efficiency.

[0027] The present invention is further configured such that the bottom paper channel is located at the upper part of the main frame.

[0028] By adopting the above technical solution, compared to the method of transferring the base paper from the support frame at the bottom of the entire rotary drilling platform, guiding the base paper to the upper part of the rotary drilling platform eliminates the need to set a base paper guide channel in the support frame below the rotary drilling platform. Multiple support points can be set on the crossbeam in the sliding direction of the entire support frame, thereby improving the overall support strength. This allows the entire support frame to be extended indefinitely with the rotary drilling platform, thus enabling the production of decorative rhinestone pattern stickers with any combination.

[0029] The present invention is further configured to include at least one rotary drilling platform, wherein the main frame is slidably disposed on the upper part of the rotary drilling platform, and the rotary drilling platform is distributed and arranged along the sliding direction of the main frame.

[0030] By adopting the above technical solution, the rotary drilling platform is distributed along the sliding direction, allowing the main frame to switch quickly between different work positions, thereby improving work efficiency.

[0031] The present invention is further configured such that: at least one pattern board is provided on the drilling platform, and each pattern board is used to lay different decorative diamond patterns.

[0032] By adopting the above technical solution, each pattern board can be pre-set with different rhinestone patterns (such as geometric arrangements or custom graphics). By changing the pattern board, the pattern can be quickly switched to meet the needs of personalized customization.

[0033] The present invention is further configured such that: a support base is provided below the rotary drilling platform, and a fixed support column and a lifting component are provided on the support base; the lifting component is used to support the main frame and push it up and down along the fixed support column; the lifting component slides synchronously with the main frame.

[0034] By adopting the above technical solution, the lifting component moves synchronously with the main frame, avoiding the cable / air circuit entanglement problem caused by traditional independent lifting mechanisms and improving long-term reliability.

[0035] The present invention is further configured such that: the lifting component is disposed on one side of the main frame, the other side of the main frame is suspended, and another main frame with the opposite paper feeding direction is disposed on the suspended side via the lifting component.

[0036] By adopting the above technical solution and setting up a two-way main frame, two paper patterns can be applied simultaneously on the entire drilling platform, greatly increasing processing efficiency.

[0037] The present invention is further configured such that: the lifting assembly includes a supporting side plate and longitudinal wall plates fixed on both sides of the supporting side plate and connected to the main frame; a pushing unit is provided on the supporting side plate; the pushing unit is connected to a lifting plate; both ends of the lifting plate are fixedly connected to the longitudinal wall plates; and the pushing unit is used to push the lifting plate to move up and down.

[0038] By adopting the above technical solution, the two ends of the lifting plate are rigidly fixed to the longitudinal wall panel, ensuring synchronous lifting on both sides and avoiding the software synchronization error of traditional dual-motor drive.

[0039] The beneficial effects of this invention are:

[0040] By placing the connection ends of the pressing unit on both sides of the main frame, the internal space of the main frame is freed up to form the lamination area for the base paper and adhesive paper. The paper separating mechanism and lamination roller assembly are integrated onto the main frame, effectively utilizing the internal space of the main frame, improving the overall integration of the machine, and reducing the space required for the entire adhesive paper machine installation site. The feed and discharge ends for both the adhesive paper and base paper are located at the same end, significantly reducing the length of the entire processing line and thus minimizing the longitudinal space occupied by the machine.

[0041] By incorporating a storage component within the lamination area of ​​the main frame, the space in the lamination area that does not require paper feeding is further utilized, thus improving the overall space utilization of the machine. Simultaneously, the detachable and sliding design of the storage component facilitates material unloading and prevents material from scattering and piling up.

[0042] The paper separating mechanism guides the bottom paper at multiple angles to the upper part of the main frame, forming a bottom paper channel for upward paper feeding. This effectively utilizes the upper space of the main frame. After multiple guidances, a larger feed port is formed at the feeding end of the main frame, which can prevent the bottom paper from blocking subsequent loading and unloading, and facilitates the unloading of storage components from the lamination area and the replacement of paper rollers.

[0043] By sliding the entire main frame above the drilling platform and aligning the base paper above it, and assembling multiple drilling platforms in coordination with the sliding direction, a single main frame can slide onto different drilling platforms for rhinestone pattern application, thus improving the efficiency of the rhinestone applicator. The bottom support frame for the main frame's sliding is unaffected by the base paper's orientation, allowing for multiple support points and increased overall support strength. This ensures the slide rails supporting the main frame can extend infinitely with the drilling platform. Furthermore, by arranging multiple drilling platforms and strategically placing the rhinestone patterns on each platform, any combination of rhinestone patterns can be applied to a single adhesive paper.

[0044] By setting main frames on both sides of the rotary drilling platform and cooperating with lifting components, the main frames on both sides can switch positions, allowing the rotary drilling platform to simultaneously apply patterns to two adhesive papers, thus improving the overall drilling efficiency of the device. Attached Figure Description

[0045] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0046] Figure 2 This is a schematic diagram of the paper feeding and adhesive paper path of the present invention;

[0047] Figure 3 This is a three-dimensional structural diagram of the pressing unit of the present invention;

[0048] Figure 4 This is a schematic diagram showing the orientation of the base paper and the adhesive paper in another embodiment of the present invention;

[0049] Figure 5 This is a three-dimensional structural diagram of the laminating roller assembly of the present invention;

[0050] Figure 6 This is a three-dimensional structural diagram of the paper cutting assembly of the present invention;

[0051] Figure 7 This is a three-dimensional structural diagram of another embodiment of the present invention;

[0052] Figure 8 For the present invention Figure 6 A three-dimensional structural diagram of the paper-splitting mechanism in the embodiment;

[0053] Figure 9 For the present invention Figure 6 A schematic diagram showing the orientation of the bottom paper and the adhesive paper when the paper roll is positioned between the inclined rollers in the Chinese embodiment;

[0054] Figure 10 For the present invention Figure 6 A schematic diagram showing the orientation of the bottom paper and the adhesive paper when the paper roll is positioned below the inclined roller in the Chinese embodiment;

[0055] Figure 11 This is a three-dimensional structural diagram of the main frame of the present invention when it is slidably installed;

[0056] Figure 12 This is a three-dimensional structural diagram of the main frame of the present invention when one end is supported on one side.

[0057] Figure 13 This is a side view of the main frame of the present invention when it is supported on one side only;

[0058] Figure 14 This is a three-dimensional structural diagram of the lifting component of the present invention;

[0059] Figure 15 This is a three-dimensional structural diagram of the sliding motor and the locking strip arrangement of the present invention;

[0060] Figure 16 This is a three-dimensional structural diagram of the main frame of the present invention when arranged on both sides.

[0061] In the diagram: 1. Main frame; 101. Fixed side plate; 2. Pressing unit; 201. Guide shaft; 202. Pressing component; 203. Linear bearing; 204. Synchronous belt clamp; 205. Synchronous pulley; 206. Synchronous belt; 3. Bottom paper channel; 4. Laminating area; 5. Adhesive paper channel; 6. Paper cutting assembly; 601. Cutting component; 602. DC brushless geared motor; 603. Slider; 604. Sliding shaft; 7. Paper separating mechanism; 701. Paper separating roller; 702. Inclined roller; 8. Reversing roller group; 9. Laminating roller group; 901. Laminating roller; 9 011. Moving roller; 9012. Fixed roller; 902. Pull rod cylinder; 10. Base paper; 11. Adhesive paper; 12. Storage component; 13. Paper roll; 14. Drilling platform; 15. Tensioning roller; 16. Guide roller; 17. Layout board; 18. Fixed support column; 19. Lifting assembly; 20. Support base frame; 21. Longitudinal wall panel; 22. Support side panel; 23. Pushing unit; 24. Lifting plate; 25. Strength support column; 26. Crossbeam; 27. Sliding motor; 28. Sliding gear; 29. ​​Locking strip; 30. Slide rail assembly; 31. Sheet metal column. Detailed Implementation

[0062] To facilitate a clear understanding of the technical means, creative features, objectives, and effects of this invention, the invention will be further described below in conjunction with specific illustrations.

[0063] like Figure 1 As shown, an automatic multi-color rhinestone applicator for upper-layer paper includes a main frame 1. The entire main frame 1 is supported and fixed above a rhinestone platform 14 by metal parts such as profiles or sheet metal. The rhinestone platform 14 is an automatic rhinestone applicator commonly used in the field of rhinestone pattern layout. A pressing unit 2 is provided on the main frame 1 for pushing the adhesive paper 11 onto the rhinestone platform 14 to cover the rhinestone pattern it has been screened.

[0064] like Figure 2 As shown, the two ends of the main frame 1 are respectively set as the paper separating end and the paper joining end.

[0065] The main frame 1 is equipped with multiple rollers with different functions, the specific classification and function of which will be described in detail below. The entire main frame 1 is assembled from multiple rollers and two fixed side plates 101.

[0066] In this embodiment, the main frame 1 is vertically divided into an upper bottom paper channel 3 and a lower laminating area 4 by multiple rollers. A paper-adhesive channel 5 is also provided below the main frame 1 for threading the adhesive paper 11. The bottom paper channel 3, the laminating area 4, and the paper-adhesive channel 5 are distributed vertically from top to bottom.

[0067] It should be noted that in this article, the term "threading" means passing through the guide, and is specifically used to describe the moving manner of the sticker 11 and the base paper 10.

[0068] Furthermore, the pressing-down unit 2 includes a guide shaft 201 and a pressing-down component 202. As Figure 2 shown, the sticker 11 threaded in the sticker channel 5 is pushed onto the drill press platform 14 by the pressing-down component 202 for adhering the decorative drill pattern. The dotted line part represents the state when the sticker 11 is pushed by the pressing-down component 202 to the drill-applying height, and the solid line part represents the state when the sticker 11 is lifted to the highest point.

[0069] Specifically, as Figure 3 shown, two pressing-down units 2 are installed on the main body frame 1, and are respectively arranged near the paper separating end and the paper combining end of the main body frame 1. In this embodiment, each pressing-down unit 2 includes two guide shafts 201 respectively slidably arranged on two fixed side plates 101 through linear bearings 203. The two ends of the pressing-down component 202 are respectively connected to the lower ends of the two guide shafts 201. At the same time, synchronous belt clamping plates 204 are fixedly connected to the two ends of the pressing-down component 202. The synchronous belt clamping plates 204 are used to clamp the synchronous belt 206 and move synchronously with the synchronous belt 206. A synchronous belt 206 and multiple synchronous wheels 205 are also arranged on the fixed side plates 101. A driving motor is installed on one of the synchronous wheels 205. The synchronous wheel 205 is driven by the driving motor to rotate, so as to drive the synchronous belt 206 to rotate. The synchronous belt 206 is connected to the pressing-down component 202 through the synchronous belt clamping plates 204, so that during the rotation of the synchronous belt 206, the pressing-down component 202 can be dragged to move, and a vertical sliding movement is formed under the action of the guide shaft 201. Among them, the pressing-down component 202 is specifically a rotatable roller shaft, which can further guide the sticker 11 and reduce the friction force of the sticker 11.

[0070] In one embodiment, as Figure 3 shown, the number of synchronous wheels 205 is two, which are arranged on the upper and lower sides of the fixed side plate 101. The synchronous belt 206 is sleeved on the two synchronous wheels 205. One of the synchronous wheels 205 is provided with a driving motor for driving, so as to drive the synchronous belt 206 to move, so that the synchronous belt clamping plates 204 clamping the synchronous belt 206 move accordingly, and the pressing-down component 202 connected thereto moves up and down.

[0071] In another embodiment, as Figure 13 shown, the number of synchronous wheels 205 is three. The synchronous belt 206 passes through the three synchronous wheels 205. One end is clamped by the synchronous belt clamping plate 204, and the other end is connected to the pressing-down component 202. A driving motor is arranged on one of the synchronous wheels 205. The synchronous belt 206 is driven by the driving motor to move, so that the upper and lower ends of the synchronous belt 206 rise or fall synchronously.

[0072] In some other embodiments, the pressing component 202 may also be a pressure plate or a pressure block.

[0073] By setting the drive source of the pressing unit 2 on both sides of the main frame 1, the space inside the main frame 1 can be freed up to form a lamination area 4 for paper collection. After the adhesive paper 11 and the backing paper 10 are re-laminated, they can be discharged from the paper-joining end through the lamination area 4, thus avoiding interference between the adhesive paper 11 and the backing paper 10 and the pressing unit 2 during the threading process.

[0074] Furthermore, at the paper-binding end of the main frame 1, near the inlet of the lamination area 4, a reversing roller group 8 (one of the rollers mentioned above) is provided to guide the adhesive paper 11 that passes through the adhesive paper channel 5 to change direction to the lamination area 4, and to guide the bottom paper 10 that passes through the bottom paper channel 3 to change direction to the top of the adhesive paper 11 in the lamination area 4 and to laminate with the adhesive paper 11.

[0075] Specifically, a replaceable paper roll 13 is provided at the paper separating end, and unprocessed adhesive paper 11 and bottom paper 10 are wound up at the top of the roll. After the adhesive paper 11 and bottom paper 10 on the paper roll 13 are pulled out of the paper roll 13, they are separated and guided to the adhesive paper channel 5 and the bottom paper channel 3 respectively.

[0076] When the adhesive paper 11 is separated from the backing paper 10 and passed through the adhesive paper channel 5, the side with the rhinestone pattern attached faces downwards. After being pushed onto the drilling platform 14 by the pressing member 202 and having the rhinestone pattern attached, it exits from the other end of the adhesive paper channel 5. After being guided by the reversing roller group 8, it is rotated and conveyed to the lamination area 4. When the adhesive paper 11 enters the lamination area 4, the side with the rhinestone pattern attached flips up to face upwards and is re-attached to the backing paper 10.

[0077] After the base paper 10 separates from the adhesive paper 11, it wraps around the entire paper roll 13 to the back of the adhesive paper 11 (the side opposite to the side where the decorative rhinestones are attached), and then is guided by the guide roller 16 into the base paper channel 3. The guide roller 16 is one of the rollers mentioned above that overlaps between the two fixed side plates 101, with both ends respectively resting on the two fixed side plates 101 of the main frame 1, for pulling the base paper 10. After the base paper 10 exits from the base paper channel 3, it is guided by the reversing roller group 8 and then rotated and conveyed to the lamination area 4.

[0078] By dividing the main frame 1 into upper and lower parts, which are used to thread the bottom paper 10 and the finished paper respectively, and the adhesive paper 11 is threaded below the main frame 1, the entire paper threading and transmission line can be integrated into the main frame 1 and the rocker platform 14, thereby effectively shortening the length of the entire processing line, greatly reducing the space occupied by the machine, and reducing space costs.

[0079] In another embodiment, such as Figure 4 As shown, the bottom paper channel 3 is located below the rocking drilling platform 14, that is, the bottom paper channel 3, the adhesive paper channel 5 and the laminating area 4 are arranged vertically from bottom to top.

[0080] The interior of the main frame 1 serves as a separate lamination area 4. In this embodiment, the finished paper can be taken directly from the top of the main frame 1 without being obstructed by the bottom paper 10. The bottom paper 10 passes under the rocking drilling platform 14 and is guided by multiple guide rollers 16 before being flipped over to the top of the adhesive paper 11.

[0081] Furthermore, such as Figure 1 As shown, a laminating roller group 9 is provided at the inlet end of the laminating area 4. The laminating roller group 9 includes two laminating rollers 901. The two laminating rollers 901 are used to pass and laminate the adhesive paper 11 and the base paper 10. The flipped adhesive paper 11 and the base paper 10 are guided by the reversing roller group 8 to pass between the laminating rollers 901 for re-lamination.

[0082] like Figure 5 As shown, in this embodiment, the two laminating rollers 901 are a fixed roller 9012 and a movable roller 9011, respectively. Both ends of the fixed roller 9012 and the movable roller 9011 are connected to the fixed side plates 101 on both sides of the main frame 1. One end of the fixed roller 9012 is equipped with a drive motor, and both ends of the movable roller 9011 are connected to a pull rod cylinder 902. The pull rod cylinder 902 is fixed on the fixed side plate 101. The pull rod cylinder 902 can push the movable roller 9011 to slide along the vertical direction of the main frame 1, thereby changing the distance between it and the fixed roller 9012, so as to adapt to adhesive paper 11 and base paper 10 of different thicknesses.

[0083] In some other embodiments, both laminating rollers 901 may be either moving rollers 9011 or fixed rollers 9012, with the fixed rollers 9012 positioned above or below the moving rollers 9011.

[0084] Furthermore, such as Figure 6 As shown, a paper cutting assembly 6 is provided on the inner side of the laminating roller group 9. The paper cutting assembly 6 is used to cut the re-laminated adhesive paper 11 and the backing paper 10. The paper cutting assembly 6 includes a cutting component 601 for cutting, which is slidably disposed along the axial direction of the reversing roller group 8.

[0085] In this embodiment, the cutting component 601 is specifically a cutting blade, which can be circular or polygonal in shape. A DC brushless geared motor 602 is connected to the cutting blade to drive its rotation.

[0086] The cutting component 601 can slide axially to accommodate paper or materials of different widths, significantly improving the equipment's responsiveness to different production needs. Specifically, a slider 603 is fixedly connected to the DC brushless geared motor 602, and a sliding shaft 604 is provided on the fixed side plate 101. The slider 603 is pushed back and forth on the sliding shaft 604 by the drive component, thereby enabling the sliding of the cutting blade.

[0087] Furthermore, a storage component 12 is provided in the lamination area 4. The storage component 12 is used to store the re-lamination adhesive paper 11 and the backing paper 10. The storage component 12 is slidably disposed within the lamination area 4 and can be pulled out to the outside of the lamination area 4.

[0088] In this embodiment, the storage component 12 can be plate-shaped, mesh-shaped, or a combination of both. Its pulling direction can be set to pull along the direction of the adhesive paper 11 and the bottom paper 10, or it can be set to pull from the side of the fixed side plate 101.

[0089] Specifically, when the area of ​​the pasted adhesive paper 11 and the base paper 10 is large, the pulling direction of the storage component 12 is set to be along the paper movement direction. When the area of ​​the pasted adhesive paper 11 and the base paper 10 is small, a pull-out opening is opened on the fixed side plate 101, and the storage component 12 is set to a smaller shape. The storage component 12 is pulled out of the covering area 4 through the pull-out opening on the fixed side plate 101.

[0090] After the processed adhesive paper 11 and base paper 10 are cut by the paper cutting component 6, they are collected by the storage component 12. When the finished paper in the storage component 12 is full, the storage component 12 can be pulled out manually to quickly retrieve the finished paper.

[0091] Furthermore, such as Figure 8 As shown, a paper separating mechanism 7 is provided at one end of the main frame 1, and the paper roll 13 is installed on the paper separating mechanism 7. After the adhesive paper 1 and the bottom paper 10 are separated by the paper separating mechanism 7, they are guided into the adhesive paper channel 5 and the bottom paper channel 3 respectively.

[0092] In this embodiment, the paper separating mechanism 7 includes a paper separating roller 701 for guiding the adhesive paper 11 into the adhesive paper channel 5. Figure 2 As shown, a tensioning roller 15 is also provided below the paper separating roller 701. After the adhesive paper 11 passes through the paper separating roller 701, it passes under the tensioning roller 15 and enters the adhesive paper channel 5, while the bottom paper 10 passes directly into the bottom paper channel 3.

[0093] In another embodiment, the paper separating mechanism 7 further includes at least two inclined rollers 702, the angle between the inclined rollers 702 and the paper separating roller 701 is between 30 and 60 degrees, the inclined rollers 702 are used to change the transmission direction of the bottom paper 10, the transmission direction is adjusted once each time the bottom paper 10 passes through the inclined rollers 702, and the bottom paper 10 enters the bottom paper channel 3 after being guided multiple times.

[0094] Specifically, such as Figures 7 to 9 As shown, the paper separating roller 701 is arranged parallel to the transverse direction of the main frame 1, including upper and lower sets. Each paper separating roller 701 is equipped with a drive motor to drive its rotation. The adhesive paper 11 is separated from the paper roll 13, guided upward to the upper paper separating roller 701, passes under the tension roller 15 and enters the adhesive paper channel 5. The bottom paper 10 is guided downward to the lower paper separating roller 701 and the tension roller 15, guided by the inclined roller 702, and after adjusting a certain guiding angle, it extends upward along the side of the paper roll 13, and after being guided by the inclined roller 702 again, it enters the bottom paper channel 3.

[0095] In this embodiment, the angle between the inclined roller 702 and the paper separating roller 701 is 45 degrees, and the two inclined rollers 702 are arranged in parallel on the upper and lower sides of the paper roll 13.

[0096] The inclined roller 702 guides the direction of the bottom paper 10, creating a larger opening in the laminating area 4 towards the paper-separating end of the main frame 1. Combined with the storage component 12 slidably positioned in the laminating area 4, rapid loading and unloading is achieved, preventing interference from the bottom paper 10 during unloading. Furthermore, by directly overlapping the adhesive paper 11 and bottom paper 10 on the replaced paper roll 13 with those on the conveyor line, paper changing efficiency is improved, avoiding the need for re-laying the paper. The overlapped adhesive paper 11 and bottom paper 10 can be directly fed into the conveyor line for processing. Simultaneously, the larger opening at the paper-separating end effectively increases the paper changing space, facilitating paper re-overlapping and further improving paper changing efficiency.

[0097] In other embodiments, such as Figure 10 As shown, the two inclined rollers 702 can also be positioned above the paper roll 13.

[0098] like Figure 9 As shown, the bottom paper channel 3 is located at the upper part of the main frame 1. This applies to the following specific embodiments.

[0099] like Figure 11As shown, the drilling machine also includes at least one rotary drilling platform 14, and a support frame 20 is provided below the rotary drilling platform 14. The entire support frame 20 is formed by multiple crossbeams 26 and strength support columns 25. The crossbeams 26 include an upper crossbeam and a lower crossbeam, and the strength support columns 25 are erected between the upper crossbeam and the lower crossbeam. The main frame 1 is slidably mounted on the upper part of the rotary drilling platform 14, and all rotary drilling platforms 14 are distributed and arranged on the support frame 20 along the sliding direction of the main frame 1. The sliding support of the main frame 1 can be one-end support or two-end support.

[0100] Specifically, when the main support frame 1 is supported at both ends, the entire main support frame 1 is supported by sheet metal columns 31 made of sheet metal. A slide rail assembly 30 is provided between the sheet metal columns 31 and the support base 20, allowing the sheet metal columns 31 to slide on the support base 20. A sliding motor 27 is fixed on the sheet metal columns 31, and a sliding gear 28 is provided on the rotating shaft of the sliding motor 27. At the same time, a retaining strip 29 that meshes with the sliding gear 28 is provided on the crossbeam 26 of the support base 20. When the main support frame 1 needs to slide, the sliding motor 27 controls the sliding gear 28 to rotate. After the sliding gear 28 meshes with the retaining strip 29, it rotates and moves along the retaining strip 29, driving the entire main support frame 1 to slide.

[0101] When the main support 1 is supported on one side only, such as Figure 15 As shown, the entire main support frame is supported and connected by sheet metal columns 31, and a fixed support column 18 is slidably mounted on the crossbeam 26. A slide rail assembly 30 is provided between the sheet metal columns 31 and the fixed support column 18. The entire main support frame 1 is slidably mounted on the fixed support column 18 via the sheet metal columns 31, allowing it to slide laterally with the fixed support column 18. The sliding motor 27 is fixed to the fixed support column 18, and the fixed support column 18 is slidably mounted on the entire support base frame 20 via the slide rail assembly 30.

[0102] In this embodiment, there are four rotary drilling platforms 14, each with a pattern plate 17, and different pattern plates 17 are decorated with different rhinestone patterns. The slide rail assembly 30 includes a sliding rail and several slide rail blocks that are slidably engaged with the sliding rail.

[0103] By defining the guiding path of the base paper 10, the base paper 10 is guided from above the main frame 1. In conjunction with the reversing roller group 8, the base paper 10 can be fed upwards. This avoids the situation in traditional processes where the base paper 10 passes through the support frame 20. The entire support frame 20 does not need to consider the direction of the base paper 10 when overlapping. Multiple strong support columns 25 can be set between the crossbeams 26 on both sides for sliding of the main frame 1, so that the entire support frame 20 can be extended indefinitely. With the addition of multiple drilling platforms 14, the entire device can achieve the application and combination of any rhinestone patterns.

[0104] Furthermore, when the main support 1 is supported at one end, such as Figure 12 and Figure 13 As shown, a fixed support column 18 and a lifting assembly 19 are provided on the support base 20. The fixed support column 18 can be made of sheet metal or profiles. The lifting assembly 19 is used to support the main frame 1 and push it up and down along the fixed support column 18. The lifting assembly 19 slides synchronously with the main frame 1. The lifting assembly 19 is located on one side of the main frame 1, and the other side of the main frame 1 is suspended. On the suspended side, another main frame 1 with the opposite paper feeding direction is provided through the lifting assembly 19.

[0105] Specifically, such as Figure 14 and Figure 15 As shown, the lifting assembly 19 includes a support side plate 22 and longitudinal wall plates 21 fixed on both sides of the support side plate 22 and connected to the main frame 1. A push unit 23 is provided on the support side plate 22. The push unit 23 is connected to a lifting plate 24. Both ends of the lifting plate 24 are fixedly connected to the longitudinal wall plates 21. The push unit 23 is used to push the lifting plate 24 to lift.

[0106] In this embodiment, the pushing unit 23 is driven by a lead screw module and a drive motor. A sliding block is sleeved on the lead screw and is fixedly connected to the lifting plate 24. The drive motor drives the lead screw to rotate, which drives the sliding block sleeved on the lead screw to rise, thereby driving the lifting plate 24 to rise, and the lifting plate 24 pushes the entire main frame 1 to rise.

[0107] A support side plate 22 connected to the main frame 1 is provided above the support base 20. The support side plate 22 is fixedly spliced ​​to the ends of the fixed side plates 101 on both sides of the main support 1. After the two support side plates 22 are fixedly connected to the sheet metal column 31, the entire main support 1 is slidably connected by setting a slide rail assembly 30 between the sheet metal column 31 and the fixed support column 18.

[0108] Furthermore, such as Figure 13As shown, a slide rail assembly 30 is also provided between the bottom of the support side plate 22 and the support base 20. The slide rail assembly 30 can enhance the support strength of the longitudinal wall plate 21 for the entire main frame 1, and prevent the entire support side plate 22 from bending and deforming due to excessive weight at the suspended end of the main support 1.

[0109] like Figure 16 As shown, by setting opposing main frames 1 on both sides for rhinestone application, the overall rhinestone application efficiency can be greatly improved. During operation, the two sets of main frames 1 slide synchronously. When they slide to one end of the support base 20, the lifting component 19 controls one main frame 1 to descend and the other main frame 1 to rise. By sliding and switching the positions of the two main frames 1, the adhesive paper 11 on both main frames 1 can adhere to all the rhinestone patterns on the rhinestone platform 14.

[0110] Working principle:

[0111] The paper processing steps are specifically described when the bottom paper channel 3 is located above the main frame 1. When the bottom paper channel 3 is located above the main frame 1, the following two preferred implementation methods are available:

[0112] Firstly, the main frame 1 is fixedly installed above the drilling platform 14, and the entire production line is fixed. The adhesive paper 11 only adheres to one type of rhinestone pattern.

[0113] Specific reference Figure 1 and Figure 2 As shown, the entire main support frame is fixed directly above the drilling platform 14 by external supports. After the backing paper 10 and adhesive paper 11 are pulled out from the paper roll 13, they are guided into the backing paper channel 3 and adhesive paper channel 5, respectively. The backing paper 10 is directly guided upward by the guide roller 16, without needing to pass under the support base 20. The adhesive paper 11 and backing paper 10 are finally flipped 180 degrees from the other end of the main frame 1 by the reversing roller group 8, and then pressed together by the laminating roller group 901 9. Since the adhesive surface of the adhesive paper 11 is flipped upward after the reversing, it fits perfectly with the backing paper 10. After being laminated, the adhesive paper 11 and backing paper 10 are cut by the cutting component and fall into the storage component 12 for storage.

[0114] Based on this embodiment, the paper separating mechanism 7 is further optimized by setting two inclined rollers 702, as detailed in the following reference. Figure 7 and Figure 9 As shown, after the bottom paper 10 is pulled out from the paper roll 13, it passes under the paper roll 13 and is guided by the two inclined rollers 702 into the bottom paper channel 3.

[0115] Secondly, the main frame 1 is slidably set above the drilling platform 14, and the entire production line is slidably set. The adhesive paper 11 can adhere any kind of decorative diamond pattern, thereby creating a variety of different combination patterns.

[0116] Specific reference Figure 11 As shown, any number of drilling platforms 14 can be arranged according to production needs. The entire main support is slidably arranged above the drilling platform 14 via the lifting component 19. During the production process, when the adhesive paper 11 is used to attach the rhinestone pattern, the main support stops sliding. After one rhinestone pattern is attached, the main support is controlled to slide to another drilling platform 14. After all the rhinestone patterns are attached, the adhesive paper 11 is controlled to overlap with the base paper 10. The overlapped adhesive paper 11 and base paper 10 are collected by the storage component 12.

[0117] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments, and various changes and modifications can be made without departing from the spirit and scope of the invention, all of which fall within the scope of protection claimed by the present invention. The scope of protection of the present invention is defined by the appended claims and their equivalents.

Claims

1. An automatic multi-color rhinestone applicator for top-coated paper, characterized in that, include: The main frame (1) is provided with a pressing unit (2); The bottom paper channel (3) is used to thread the bottom paper (10); The overlapping area (4) is located inside the main frame (1); Adhesive paper channel (5), used for threading adhesive paper (11), is located at the lower part of the main frame (1); The reversing roller group (8) is used to guide the adhesive paper (11) passing through the adhesive paper channel (5) to the bonding area (4) and to guide the bottom paper (10) passing through the bottom paper channel (3) to the top of the adhesive paper (11) in the bonding area (4) to bond with the adhesive paper (11).

2. The automatic multi-color rhinestone applicator for upper cladding paper according to claim 1, characterized in that: The pressing unit (2) includes guide shafts (201) disposed on both sides of the main frame (1), and a pressing component (202) for pressing the adhesive paper (11) is disposed at the lower end of the guide shaft (201).

3. The automatic multi-color rhinestone applicator for upper cladding paper according to claim 1, characterized in that: The inlet end of the lamination area (4) is provided with a lamination roller group (9), which includes two lamination rollers (901) for passing and laminating the adhesive paper (11) and the backing paper (10).

4. The automatic multi-color rhinestone applicator for upper cladding paper according to claim 3, characterized in that: The inner side of the laminating roller group (9) is provided with a paper cutting assembly (6), which is used to cut the re-laminated adhesive paper (11) and the backing paper (10).

5. The automatic multi-color rhinestone applicator for upper cladding paper according to claim 4, characterized in that: The paper cutting assembly (6) includes a cutting component (601) for cutting, which is slidably disposed along the axial direction of the reversing roller group (8).

6. The automatic multi-color rhinestone attaching machine for upper cladding paper according to claim 5, characterized in that: A storage component (12) is provided in the lamination area (4), which is used to store the re-lamination of the adhesive paper (11) and the backing paper (10).

7. The automatic multi-color rhinestone applicator for upper cladding paper according to claim 6, characterized in that: The storage component (12) is slidably disposed within the covering area (4) and can be pulled out to the outside of the covering area (4).

8. The automatic multi-color rhinestone applicator for upper cladding paper according to claim 5, characterized in that: A paper separating mechanism (7) is provided at one end of the main frame (1). The paper separating mechanism (7) separates the adhesive paper (11) and the bottom paper (10) and guides them into the adhesive paper channel (5) and the bottom paper channel (3) respectively. The paper separating mechanism (7) includes a paper separating roller (701) for guiding the adhesive paper (11) into the adhesive paper channel (5).

9. The automatic multi-color rhinestone applicator for upper cladding paper according to claim 8, characterized in that: The paper separating mechanism (7) also includes at least two inclined rollers (702), which are used to change the transmission direction of the bottom paper (10). The bottom paper (10) adjusts its transmission direction once each time it passes through the inclined rollers (702), and the bottom paper (10) enters the bottom paper channel (3) after being guided multiple times.

10. The automatic multi-color rhinestone applicator for upper cladding paper according to claim 1, characterized in that: The bottom paper channel (3) is located on the upper part of the main frame (1).

11. The automatic multi-color rhinestone applicator for upper cladding paper according to claim 10, characterized in that: It also includes at least one rotary drilling platform (14), the main frame (1) is slidably disposed on the upper part of the rotary drilling platform (14), and the rotary drilling platform (14) is distributed and arranged along the sliding direction of the main frame (1).

12. The automatic multi-color rhinestone applicator for upper cladding paper according to claim 11, characterized in that: The drilling platform (14) is provided with at least one pattern board (17), each pattern board (17) being used to lay different diamond patterns.

13. The automatic multi-color rhinestone applicator for upper cladding paper according to claim 11, characterized in that: A support base (20) is provided below the rocking drilling platform (14). A fixed support column (18) and a lifting assembly (19) are provided on the support base (20). The lifting assembly (19) is used to support the main frame (1) and push it up and down along the fixed support column (18). The lifting assembly (19) slides synchronously with the main frame (1).

14. The automatic multi-color rhinestone applicator for upper cladding paper according to claim 13, characterized in that: The lifting assembly (19) is located on one side of the supporting base frame (20), the other side of the main frame (1) is suspended, and another main frame (1) with the opposite paper feeding direction is provided on the suspended side through the lifting assembly (19).

15. The automatic multi-color rhinestone applicator for upper cladding paper according to claim 13, characterized in that: The lifting assembly (19) includes a support side plate (22) and longitudinal wall plates (21) fixed on both sides of the support side plate (22) and connected to the main frame (1). A pushing unit (23) is provided on the support side plate (22). The pushing unit (23) is connected to a lifting plate (24). Both ends of the lifting plate (24) are fixedly connected to the longitudinal wall plates (21). The pushing unit (23) is used to push the lifting plate (24) to lift.