Crystal mark printing and laminating integrated feeding device

By designing an integrated material handling device for crystal standard printing and coating, automatic compression and winding of crystal standard A film and B film are realized, solving the problem of complex and time-consuming operation in the prior art and improving production efficiency.

CN223085411UActive Publication Date: 2025-07-11GUANGZHOU TUSHENG DIGITAL EQUIP CO LTD
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Patent Information

Application Number
CN202422363240.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-27
Publication Date
2025-07-11
Estimated Expiration
2034-09-27

AI Technical Summary

Technical Problem

During the crystal standard printing process, the A film protective film needs to be removed first, then printed on a flatbed printing or mesh belt printer, and then coated with B film on the coating machine. The operation is complicated, time-consuming and labor-intensive.

Method used

A crystal standard printing coating integrated material conveying device is designed, including a support assembly and a bonding assembly, and the first and second paper collectors drive to realize automatic compression and winding of the crystal standard A film and B film, and the bonding quality is ensured by heating glue rollers and suction fans.

Benefits of technology

The operation process is simplified, production efficiency is improved, and the automatic fusion of crystal standard A film and B film is realized, which improves production capacity.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223085411U_ABST
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Abstract

The utility model discloses a crystal mark printing and laminating integrated feeding device, and relates to the technical field of laminating equipment. The crystal mark printing and film covering integrated feeding device comprises a supporting assembly, a first paper placing device is arranged at the position, close to the bottom end, of one side wall of the supporting assembly, a first paper collecting device is arranged at the position, located in the middle, of one side wall of the supporting assembly, and a first motor is arranged at one end of the first paper collecting device; an attaching assembly is arranged at the top end of the supporting assembly; a second paper collecting device is arranged on the other side wall of the supporting assembly and close to the bottom end, a third motor is arranged at one end of the second paper collecting device, and a second paper placing device is arranged at one end of the attaching assembly and located above the second paper collecting device. And moreover, the tearing of a crystal label A film protective film and the covering of a crystal label B film on the crystal label A film in the previous crystal production are fused together, so that the productivity is greatly improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of laminating equipment, in particular to a feeding device for integrated printing and laminating of crystal labels. Background Technique

[0002] The integrated printing and laminating feeding machine for crystal labels is a modern printing device that integrates the two processes of printing and laminating on one machine and is specifically used for producing crystal labels. Due to its high transparency, strong three-dimensional sense, beautiful and durable characteristics, crystal labels are widely used in the fields of advertising, packaging, electronic products, clothing, handicrafts, etc.

[0003] However, previously, for crystal label printing, the A-film protective film was first removed, then printed on a flatbed printer or a mesh belt printer, and then the B-film was laminated on a laminating machine. The operation was complex, time-consuming and laborious. Therefore, we propose a feeding device for integrated printing and laminating of crystal labels to solve the above problems. Content of the Utility Model

[0004] In view of the deficiencies of the prior art, the utility model provides a feeding device for integrated printing and laminating of crystal labels, which solves the problems that for crystal label printing, the A-film protective film is first removed, then printed on a flatbed printer or a mesh belt printer, and then the B-film is laminated on a laminating machine, and the operation is complex, time-consuming and laborious.

[0005] To achieve the above objectives, the utility model is realized through the following technical solutions: A feeding device for integrated printing and laminating of crystal labels, including a support assembly. A first paper feeder is arranged at a position close to the bottom end on one side wall of the support assembly. A first paper collector is arranged at a position in the middle of one side wall of the support assembly, and a first motor is arranged at one end of the first paper collector. A fitting assembly is arranged at the top end of the support assembly;

[0006] A second paper collector is arranged at a position close to the bottom end on the other side wall of the support assembly, and a third motor is arranged at one end of the second paper collector. A second paper feeder is arranged at a position above the second paper collector at one end of the fitting assembly.

[0007] Preferably, the support assembly includes a cross frame. On both sides of the middle position of the top surface of the cross frame, brackets are fixedly arranged, and the top ends of the brackets are connected to the bottom of the fitting assembly. On both sides of the bottom surface of the cross frame, feet are arranged. On the bottom surfaces of the two feet and close to both ends, brake casters are arranged.

[0008] Preferably, the support assembly further includes stabilizing rods. There are two stabilizing rods, and the two stabilizing rods are respectively located on both sides of the cross frame, and the two stabilizing rods are both connected to the two feet.

[0009] Preferably, the laminating assembly includes a hollow plate. The top surface of the hollow plate is provided with air suction holes. On both sides of the middle position on the bottom surface of the hollow plate, connecting frames are provided, and the two connecting frames are respectively connected to the two brackets. Vertical plates are provided at both ends of the hollow plate;

[0010] On one side of the hollow plate and near the position of the first paper collector, a first guiding roller is provided. A second guiding roller is arranged outside the first guiding roller. An air suction fan is embedded and connected to the bottom surface of the hollow plate;

[0011] On the other side of the hollow plate and near the position of the second paper feeder, a heating rubber roller is provided. On both vertical plates and near the position of the second paper feeder, notches for clamping the heating rubber roller are provided. Lifting cylinders are provided at both ends of the heating rubber roller, and the two lifting cylinders are respectively connected to the outer walls of the two vertical plates. A conveying rubber roller is arranged below the heating rubber roller, and both ends of the conveying rubber roller are respectively connected to the two vertical plates;

[0012] On the conveying rubber roller and near one end, a first transmission wheel is provided. On the outside of the vertical plate on one side of the first transmission wheel, a second motor is provided, and a second transmission wheel is installed at the output end of the second motor. At the same time, the second transmission wheel is in transmission connection with the first transmission wheel through a transmission belt.

[0013] Preferably, three air suction fans are provided, and the three air suction fans are distributed in a linear array.

[0014] Preferably, the laminating assembly further includes a partition plate, and the partition plate is arranged on one side of the hollow plate and below the first guiding roller and the second guiding roller.

[0015] Preferably, a plurality of air suction holes are provided, and the plurality of air suction holes are distributed in a rectangular array.

[0016] Beneficial effects

[0017] The utility model provides a crystal label printing and laminating integrated material feeding device. Compared with the prior art, the following beneficial effects are achieved:

[0018] For this crystal label printing and laminating integrated material feeding device, first, the crystal label A film is fixed on the first paper feeder, the crystal label A film is pulled through the middle of the laminating assembly and then fixed to the second paper collector. Then, the crystal label B film is installed on the second paper feeder, and the crystal label B film is pulled through the middle of the laminating assembly, and the crystal label B film is located outside the crystal label A film. Then, the laminating assembly is adjusted to press the crystal label A film and the crystal label B film together. Then, the protective film on the crystal label A film is cut with a blade, and the protective film of the crystal label A film is pulled to the first paper collector. At this time, after the protection is removed, a layer of glue is covered on the surface of the crystal label A film;

[0019] Then, by starting the operation of the first motor and the third motor, the first paper collector and the second paper collector can be driven to operate respectively. At this time, the first paper collector can wind the laminated crystal label A film and crystal label B film, and at the same time, the second paper collector can wind the protective film on the crystal label A film. The whole process is simple and convenient to operate, and the operation of tearing the protective film of the crystal label A film and laminating the crystal label B film on the crystal label A film in the previous crystal production is integrated together, greatly improving the production capacity. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is a schematic diagram of the overall structure of the present utility model;

[0021] Figure 2 It is a schematic diagram of the side structure of the present utility model;

[0022] Figure 3 It is a schematic diagram of the structure of the support assembly of the present utility model;

[0023] Figure 4 It is a schematic diagram of the structure of the lamination assembly of the present utility model;

[0024] Figure 5 It is a schematic diagram of the bottom structure of the lamination assembly of the present utility model;

[0025] Figure 6 It is a schematic diagram of one side of the bottom of the lamination assembly of the present utility model.

[0026] In the figure: 1, support assembly; 11, cross frame; 12, bracket; 13, footrest; 14, brake caster; 15, stabilizing rod; 2, first paper feeder; 3, first paper collector; 4, first motor; 5, lamination assembly; 51, hollow plate; 52, suction holes; 53, connecting frame; 54, vertical plate; 55, first guide roller; 56, second guide roller; 57, suction fan; 58, heating rubber roller; 59, notch; 510, lifting cylinder; 511, conveying rubber roller; 512, first driving wheel; 513, second motor; 514, second driving wheel; 515, transmission belt; 516, partition board; 6, second paper feeder; 7, second paper collector; 8, third motor. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0027] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0028] Please refer toFigure 1-2 , the utility model provides a technical solution: a crystal label printing and laminating integrated material feeding device, including a support assembly 1. A first paper feeder 2 is arranged at a position close to the bottom end on one side wall of the support assembly 1. A first paper collector 3 is arranged in the middle of one side wall of the support assembly 1. And a first motor 4 is arranged at one end of the first paper collector 3. A laminating assembly 5 is arranged at the top end of the support assembly 1; on the other side wall of the support assembly 1 and at a position close to the bottom end, a second paper collector 7 is arranged. And a third motor 8 is arranged at one end of the second paper collector 7. A second paper feeder 6 is arranged at a position above the second paper collector 7 and at one end of the laminating assembly 5;

[0029] First, fix the crystal label A film on the first paper feeder 2, pull the crystal label A film through the middle of the laminating assembly 5 and then fix it on the second paper collector 7. Then, install the crystal label B film on the second paper feeder 6, pull the crystal label B film through the middle of the laminating assembly 5, and the crystal label B film is located outside the crystal label A film. Then, adjust the laminating assembly 5 to press the crystal label A film and the crystal label B film together. Then, use a blade to cut the protective film on the crystal label A film, and pull the protective film of the crystal label A film to the first paper collector 3. At this time, after the protection is removed, there is a layer of glue on the surface of the crystal label A film. Then, by starting the first motor 4 and the third motor 8 to run, the first paper collector 3 and the second paper collector 7 can be respectively driven to run. At this time, the first paper collector 3 can wind the laminated crystal label A film and crystal label B film, and at the same time, the second paper collector 7 can wind the protective film on the crystal label A film. The whole process is simple and convenient to operate, and the operations of tearing the protective film of the crystal label A film and laminating the crystal label B film in the previous crystal production are integrated together, greatly improving the production capacity.

[0030] Refer to Figure 1-Figure 3 , the support assembly 1 includes a cross frame 11. On both sides of the middle position of the top surface of the cross frame 11, brackets 12 are fixedly arranged. And the top end of the bracket 12 is connected to the bottom of the laminating assembly 5. On both sides of the bottom surface of the cross frame 11, feet 13 are arranged. On the bottom surfaces of the two feet 13 and at positions close to both ends, brake casters 14 are arranged. The support assembly 1 further includes stabilizing rods 15. There are two stabilizing rods 15, and the two stabilizing rods 15 are respectively located on both sides of the cross frame 11. And the two stabilizing rods 15 are both connected to the two feet 13;

[0031] Through the cross frame 11 in the support assembly 1, the laminating assembly 5 can be installed and fixed through the two brackets 12, and the two feet 13 can also be installed and fixed. And the two feet 13 can provide stable support for the cross frame 11, thereby ensuring the stability of the operation of components such as the first paper feeder 2 and the laminating assembly 5. Since brake casters 14 are arranged on the bottom surfaces of the two feet 13 and at positions close to both ends, it is convenient for users to move the equipment flexibly. Through the two stabilizing rods 15, the support stability of the two feet 13 can be further enhanced.

[0032] Refer to Figure 1-Figure 6 , the laminating assembly 5 includes a hollow plate 51. Suction holes 52 are formed in the top surface of the hollow plate 51. Connecting frames 53 are provided on both sides of the bottom surface of the hollow plate 51 and at the middle position, and the two connecting frames 53 are respectively connected to the two brackets 12. Vertical plates 54 are provided at both ends of the hollow plate 51. A first guiding roller 55 is provided on one side of the hollow plate 51 and near the first paper collector 3. A second guiding roller 56 is provided outside the first guiding roller 55. A suction fan 57 is embedded and connected to the bottom surface of the hollow plate 51. A heating rubber roller 58 is provided on the other side of the hollow plate 51 and near the second paper feeder 6. Notches 59 for clamping the heating rubber roller 58 are provided on both vertical plates 54 and near the second paper feeder 6. Lifting cylinders 510 are provided at both ends of the heating rubber roller 58, and the two lifting cylinders 510 are respectively connected to the outer walls of the two vertical plates 54. A conveying rubber roller 511 is provided at a position below the heating rubber roller 58, and both ends of the conveying rubber roller 511 are connected to the two vertical plates 54. A first transmission wheel 512 is provided on the conveying rubber roller 511 and near one end. A second motor 513 is provided outside the vertical plate 54 on one side of the first transmission wheel 512, and a second transmission wheel 514 is installed at the output end of the second motor 513. At the same time, the second transmission wheel 514 is in transmission connection with the first transmission wheel 512 through a transmission belt 515;

[0033] First, fix the crystal label A film on the first paper feeder 2. Pull the crystal label A film through the first guiding roller 55 to the hollow plate 51, then pass it through the middle of the heating rubber roller 58 and the conveying rubber roller 511, and fix it on the second paper collector 7. Then, fix the crystal label B film on the second paper feeder 6. Pull the crystal label B film from the heating rubber roller 58 around to the middle of the heating rubber roller 58 and the conveying rubber roller 511. Then, after pulling and flattening the crystal label A film and the crystal label B film, the position of the heating rubber roller 58 can be adjusted through two lifting cylinders 510, so that the heating rubber roller 58 can be attached to the conveying rubber roller 511, and then the crystal label A film and the crystal label B film can be pressed together. Then, use a blade to cut open the protective film of the crystal label A film, and pull the protective film of the crystal label A film through the second guiding roller 56 and fix it on the first paper collector 3. At this time, after pulling and removing the protection, there is a layer of glue on the surface of the crystal label A film. By adjusting the appropriate temperature of the heating rubber roller 58 to press the crystal label A film and the crystal label B film, it is ensured that there are no bubbles in the middle and the crystal label B film fits better with the picture. Since the top surface of the hollow plate 51 is provided with air suction holes 52, and the bottom surface of the hollow plate 51 is inlaid and connected with an air suction fan 57, the hollow plate 51 can generate a downward suction force to completely attach the crystal label A film to the hollow plate 51, ensuring the stability of the attachment of the crystal label A film and the crystal label B film. Through two connecting frames 53, it can be fixed to the bottom of the hollow plate 51 and connected to the bracket 12, and then can provide stable support for the hollow plate 51. Since a first transmission wheel 512 is arranged on the conveying rubber roller 511 and near one end, and a second motor 513 is arranged outside the vertical plate 54 on one side of the first transmission wheel 512, and the second transmission wheel 514 at the output end of the second motor 513 is in transmission connection with the first transmission wheel 512 through a transmission belt 515, the conveying rubber roller 511 can be driven to rotate through the second motor 513, and then it is convenient for the conveying rubber roller 511 to convey the pressed crystal label A film and crystal label B film.

[0034] Refer to Figure 5 , Figure 6 , there are three air suction fans 57, and the three air suction fans 57 are distributed in a linear array, which can make the air suction of the air suction holes 52 on the hollow plate 51 more uniform.

[0035] Refer to Figure 4 , Figure 5 , the laminating assembly 5 further includes a partition plate 516, and the partition plate 516 is arranged on one side of the hollow plate 51 and below the first guiding roller 55 and the second guiding roller 56;

[0036] Through the partition plate 516, the first guiding roller 55 and the second guiding roller 56 can be separated from the air suction fan 57, and thus the influence of the air suction fan 57 on the second guiding roller 56 and the air suction fan 57 can be reduced.

[0037] Refer to Figure 4, there are multiple air suction holes 52 provided, and the multiple air suction holes 52 are distributed in a rectangular array, which can ensure the uniformity of the adsorption of the hollow plate 51 on the crystal label A film.

[0038] During operation, first fix the crystal label A film on the first paper feeder 2, pull the crystal label A film through the middle of the laminating assembly 5 and then fix it on the second paper collector 7. Then install the crystal label B film on the second paper feeder 6, pull the crystal label B film through the middle of the laminating assembly 5, and the crystal label B film is located outside the crystal label A film. Then adjust the laminating assembly 5 to press the crystal label A film and the crystal label B film together. Then use a blade to cut the protective film on the crystal label A film, and pull the protective film of the crystal label A film to the first paper collector 3. At this time, there is a layer of glue on the surface of the crystal label A film after the protection is removed. Then, by starting the operation of the first motor 4 and the third motor 8, the first paper collector 3 and the second paper collector 7 can be respectively driven to operate. At this time, the first paper collector 3 can wind up the laminated crystal label A film and crystal label B film, and at the same time, the second paper collector 7 can wind up the protective film on the crystal label A film. The whole process is simple and convenient to operate, and the operations of tearing the protective film of the crystal label A film and laminating the crystal label B film in the previous crystal production are integrated together, greatly improving the production capacity.

[0039] Through the cross frame 11 in the support assembly 1, the laminating assembly 5 can be installed and fixed by the two brackets 12, and the two tripod supports 13 can also be installed and fixed. And the two tripod supports 13 can provide stable support for the cross frame 11, which can further ensure the stability of the operation of components such as the first paper feeder 2 and the laminating assembly 5. Since the bottom surfaces of the two tripod supports 13 and near both ends are provided with braking casters 14, it is convenient for users to move the equipment flexibly. Through the two stabilizing rods 15, the support stability of the two tripod supports 13 can be further enhanced.

[0040] First, fix the crystal label A film on the first paper feeder 2. Pull the crystal label A film through the first guiding roller 55 to the hollow plate 51, then pass it through the middle of the heating rubber roller 58 and the conveying rubber roller 511 and fix it on the second paper collector 7. Then, fix the crystal label B film on the second paper feeder 6. Pull the crystal label B film from the heating rubber roller 58 around to pass through the middle of the heating rubber roller 58 and the conveying rubber roller 511. Then, after pulling the crystal label A film and the crystal label B film flat, through two lifting cylinders 510, the position of the heating rubber roller 58 can be adjusted, so that the heating rubber roller 58 can be attached to the conveying rubber roller 511, and then the crystal label A film and the crystal label B film can be pressed together. Then, use a blade to cut open the protective film of the crystal label A film. Pull the protective film of the crystal label A film through the second guiding roller 56 and fix it on the first paper collector 3. At this time, after the protection is removed, there is a layer of glue on the surface of the crystal label A film. By adjusting the appropriate temperature of the heating rubber roller 58, the crystal label A film and the crystal label B film can be pressed together to ensure that there are no bubbles in the middle and the crystal label B film fits better with the picture. Since the top surface of the hollow plate 51 is provided with air suction holes 52, and the bottom surface of the hollow plate 51 is inlaid and connected with an air suction fan 57, the hollow plate 51 can generate a downward suction force to completely attach the crystal label A film to the hollow plate 51, ensuring the stability of the attachment of the crystal label A film and the crystal label B film. Through two connecting frames 53, it can be fixed at the bottom of the hollow plate 51 and connected to the bracket 12, and then a stable support can be provided for the hollow plate 51. Since a first transmission wheel 512 is arranged on the conveying rubber roller 511 and near one end, and a second motor 513 is arranged outside the vertical plate 54 on one side of the first transmission wheel 512, and the second transmission wheel 514 at the output end of the second motor 513 is in transmission connection with the first transmission wheel 512 through a transmission belt 515, the conveying rubber roller 511 can be driven to rotate through the second motor 513, and then it is convenient for the conveying rubber roller 511 to convey the pressed crystal label A film and crystal label B film. Through the isolation plate 516, the first guiding roller 55 and the second guiding roller 56 can be separated from the air suction fan 57, thereby reducing the influence of the air suction fan 57 on the second guiding roller 56 and the air suction fan 57.

[0041] In summary, the whole process of this device is simple and convenient to operate, and it combines the processes of tearing the protective film of the crystal label A film and covering the crystal label B film on the crystal label A film in the previous crystal production, greatly improving the production capacity.

[0042] At the same time, the content not described in detail in this specification belongs to the prior art well-known to those skilled in the art.

Claims

1. A crystal label printing and laminating integrated material feeding device, characterized in that: It includes a support assembly (1). A first paper feeder (2) is provided at a position near the bottom end on one side wall of the support assembly (1). A first paper collector (3) is provided at a position in the middle on one side wall of the support assembly (1). And a first motor (4) is provided at one end of the first paper collector (3). A fitting assembly (5) is provided at the top end of the support assembly (1). A second paper collector (7) is provided at a position near the bottom end on the other side wall of the support assembly (1). And a third motor (8) is provided at one end of the second paper collector (7). A second paper feeder (6) is provided at a position above the second paper collector (7) at one end of the fitting assembly (5).

2. The one-piece feeding device for crystal label printing and laminating according to claim 1, characterized in that: The support assembly (1) includes a cross frame (11). Brackets (12) are fixedly provided on both sides of the middle position of the top surface of the cross frame (11). And the top ends of the brackets (12) are connected to the bottom of the fitting assembly (5). Footrests (13) are provided on both sides of the bottom surface of the cross frame (11). Brake casters (14) are provided at positions near both ends on the bottom surfaces of the two footrests (13).

3. The integrated feeding device for printing and laminating crystal labels according to claim 2, wherein: The support assembly (1) further includes stabilizing rods (15). There are two stabilizing rods (15). The two stabilizing rods (15) are respectively located on both sides of the cross frame (11). And the two stabilizing rods (15) are both connected to the two footrests (13).

4. A crystal label printing and laminating integrated material feeding device according to claim 2, characterized in that: The fitting assembly (5) includes a hollow plate (51). Suction holes (52) are formed on the top surface of the hollow plate (51). Connecting frames (53) are provided on both sides of the middle position on the bottom surface of the hollow plate (51). And the two connecting frames (53) are respectively connected to the two brackets (12). Vertical plates (54) are provided at both ends of the hollow plate (51). A first guiding roller (55) is provided on one side of the hollow plate (51) and near the first paper collector (3). A second guiding roller (56) is provided on the outside of the first guiding roller (55). A suction fan (57) is embedded and connected to the bottom surface of the hollow plate (51). A heating rubber roller (58) is provided on the other side of the hollow plate (51) and near the second paper feeder (6). Notches (59) for clamping the heating rubber roller (58) are provided on both vertical plates (54) and near the second paper feeder (6). Lifting cylinders (510) are provided at both ends of the heating rubber roller (58). The two lifting cylinders (510) are respectively connected to the outer walls of the two vertical plates (54). A conveying rubber roller (511) is provided at a position below the heating rubber roller (58). The two ends of the conveying rubber roller (511) are respectively connected to the two vertical plates (54). A first driving wheel (512) is arranged on the conveying rubber roller (511) and near one end. A second motor (513) is arranged outside a vertical plate (54) on one side of the first driving wheel (512). An output end of the second motor (513) is provided with a second driving wheel (514). The second driving wheel (514) is in transmission connection with the first driving wheel (512) through a transmission belt (515).

5. A crystal label printing and laminating integrated material feeding device according to claim 4, characterized in that: Three suction fans (57) are provided, and the three suction fans (57) are distributed in a linear array.

6. The one-piece feeding device for crystal label printing and laminating according to claim 4, characterized in that: The laminating assembly (5) further includes a partition plate (516). The partition plate (516) is arranged on one side of the hollow plate (51) and below the first guide roller (55) and the second guide roller (56).

7. A crystal label printing and laminating integrated material feeding device according to claim 4, characterized in that: A plurality of suction holes (52) are formed, and the plurality of suction holes (52) are distributed in a rectangular array.