Spacing-free-to-spacing transferring and pasting device

By designing a transfer device that can switch from gapless to spaced labeling, the problems of adhesive penetration, misalignment of spacing, and scratches during the storage and use of label products have been solved, achieving efficient production and controllable product quality.

CN223606696UActive Publication Date: 2025-11-28DONGGUAN KAICHENG ENVIRONMENTAL PROTECTION TECH
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Patent Information

Application Number
CN202423196645.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-24
Publication Date
2025-11-28
Estimated Expiration
2034-12-24

AI Technical Summary

Technical Problem

Existing label products suffer from problems such as adhesive seepage, spacing not meeting production requirements, and scratches during transfer, resulting in low production efficiency and high costs.

Method used

Design a non-gap to gapped transfer device, including a feeding component, a transfer component, a pressing component, and a winding component. By adjusting the winding speed and setting a low-hardness convex strip, the spacing of the label products can be adjusted and the surface protected.

Benefits of technology

It improves the production efficiency of label products, reduces production costs, ensures the controllability of product quality and surface protection, and meets production requirements.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of repasting equipment, in particular to a repasting device capable of converting a non-interval mode into an interval mode. Comprising a feeding assembly, a transferring and pasting assembly, a pressing and pasting assembly and a winding assembly. The discharging assembly comprises a first discharging piece, a first conveying body and a first winding piece. The transferring and pasting assembly comprises a second discharging piece, a second conveying body and an upper pressing piece; the first feeding part, the first conveying body, the second conveying body, the pressing and pasting assembly and the winding assembly are sequentially arranged in the conveying direction, and the first conveying body and the second conveying body are arranged in a spaced mode. The rotating speed of the first winding piece is smaller than that of the winding assembly; the pressing and pasting assembly comprises a third lower wheel body and a third upper wheel body, and the third lower wheel body is located over the third upper wheel body. The third lower wheel body and the third upper wheel body each comprise a roller and a plurality of protruding strips, the protruding strips are arranged on the side surfaces of the rollers, and the hardness of the protruding strips is smaller than that of the side surfaces of the rollers. The surface of an external label product is protected, and the controllability of the product machining quality is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a retransfer equipment technical field especially relates to a no interval reinterval retransfer device. BACKGROUND

[0002] The label paper with adhesive property is usually in the state of being printed after production: a label face paper is pasted on a bottom film, the surface of the label face paper is printed with several same patterns, and there is a cutting mark between two adjacent same patterns to facilitate tearing off a single label product. The label product in this state has the following problems in storage and use: 1. After long-term storage, the adhesive of the label product penetrates into the cutting mark, which makes the label product difficult to peel off, affecting the material taking before assembly and the qualified rate of product labeling; 2. The product to be labeled usually has an interval, and the label paper without interval is used to paste the product, which results in slow efficiency and does not meet the production requirements, and needs to be improved; 3. The existing retransfer device causes surface scratches of the label product during the retransfer process of the label product, resulting in high loss and increased production cost. SUMMARY

[0003] In order to overcome the slow retransfer efficiency in the prior art, the purpose of the utility model is to provide a no interval reinterval retransfer device, which can convert label paper without interval into label paper with interval, facilitate subsequent production and use, and improve production efficiency.

[0004] To achieve the above-mentioned purpose, the technical scheme of the utility model is as follows:

[0005] A no interval reinterval retransfer device, comprising a feeding assembly, a retransfer assembly, a pressing and transferring assembly, and a winding assembly;

[0006] The feeding assembly comprises a first feeding member, a first conveying body, and a first winding member;

[0007] The retransfer assembly comprises a second feeding member, a second conveying body, and an upper pressing member;

[0008] The first feeding member, the first conveying body, the second conveying body, the pressing and transferring assembly, and the winding assembly are sequentially arranged along the conveying direction, the first feeding member, the first conveying body, and the second conveying body are arranged in a straight line, the first conveying body and the second conveying body are arranged with a gap, and the rotating speed of the first winding member is less than that of the winding assembly;

[0009] The first winding member is arranged below the first conveying body and close to the first feeding member, and the second feeding member is arranged below the second conveying body;

[0010] The pressing and transferring assembly comprises a third lower wheel body and a third upper wheel body, and the third lower wheel body is located directly above the third upper wheel body;

[0011] The third lower wheel body and the third upper wheel body each comprise a roller and a plurality of protrusions, the plurality of protrusions are arranged on the side surface of the roller, and the hardness of the protrusions is less than the hardness of the side surface of the roller.

[0012] Further, the first feeding part comprises a first upper wheel body and a first lower wheel body, the central line of the first upper wheel body and the first lower wheel body is arranged perpendicularly to the conveying direction of the first conveying body, and the first upper wheel body and the first lower wheel body are arranged at a distance.

[0013] Further, the second conveying body comprises a second lower wheel body and a supporting plate, the upper pressing part is arranged directly above the second lower wheel body, and the supporting plate is arranged between the second lower wheel body and the pressing assembly.

[0014] Further, the roller is provided with a plurality of grooves arranged along the axial direction of the roller, the protrusions are provided with a connecting portion and an arc portion, the connecting portion is arranged in the groove, and the arc portion protrudes out of the side surface of the roller.

[0015] Further, the arc portion of the third lower wheel body and the arc portion of the third upper wheel body are arranged alternately.

[0016] Further, the first conveying body is provided with a separation end and a vacuum suction part, the separation end is arranged close to the second conveying body, the separation end comprises an upper plane, a side surface and a lower inclined surface connected in sequence, the lower inclined surface is inclined from the side surface and towards the direction of the first winding part, and the vacuum suction part is arranged on the upper surface.

[0017] The label product spacing adjusting device comprises a feeding assembly, a transferring and pressing assembly, a pressing assembly and a winding assembly. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 It is a three-dimensional structure schematic view of the label product spacing adjusting device.

[0019] Figure 2 It is a plane structure schematic view of the label product spacing adjusting device.

[0020] Figure 3 It is a structure schematic view of the label product spacing adjusting device.

[0021] Figure 4 It is a structure schematic view of the label product spacing adjusting device.

[0022] Figure 5This is a schematic diagram of the structure of this utility model.

[0023] The reference numerals in the figures include:

[0024] 1—Discharging assembly; 11—First discharging component; 12—First conveyor body

[0025] 13—First winding component; 2—Transfer assembly; 21—Second unwinding component

[0026] 22—Second conveyor body; 221—Second lower wheel body; 222—Patrolley

[0027] 23—Upper pressing component 3—Pressure assembly 31—Third lower wheel body

[0028] 32—Third upper wheel body; 301—Roller; 3011—Trench body

[0029] 302—Protruding strip; 3021—Connecting part; 3022—Arc part

[0030] 4—Rewinding Assembly

[0031] 100—Bottom film; 200—Label product; 300—Separation film. Detailed Implementation

[0032] To facilitate understanding by those skilled in the art, the present invention will be further described below with reference to embodiments and accompanying drawings. The content mentioned in the embodiments is not intended to limit the present invention.

[0033] Please see Figures 1 to 5 The present invention provides a non-spacing to spacing transfer device, comprising a feeding component 1, a transfer component 2, a pressing component 3, and a winding component 4.

[0034] The feeding assembly 1 includes a first feeding component 11, a first conveying body 12, and a first winding component 13;

[0035] The transfer assembly 2 includes a second feeding component 21, a second conveying body 22, and an upper pressing component 23;

[0036] The first feeding component 11, the first conveyor 12, the second conveyor 22, the pressing component 3, and the winding component 4 are arranged sequentially along the conveying direction. The first feeding component 11, the first conveyor 12, and the second conveyor 22 are arranged in a straight line. The first conveyor 12 and the second conveyor 22 are spaced apart. The rotation speed of the first winding component 13 is less than the rotation speed of the winding component 4.

[0037] The first winding member 13 is located below the first conveyor body 12 and close to the first unloading member 11, and the second unloading member 21 is located below the second conveyor body 22;

[0038] The pressing assembly 3 comprises a third lower wheel body 31 and a third upper wheel body 32, and the third lower wheel body 31 is located directly above the third upper wheel body 32.

[0039] The third lower wheel body 31 and the third upper wheel body 32 each comprise a roller 301 and a plurality of protrusions 302, and the plurality of protrusions 302 are arranged on the side surface of the roller 301, and the hardness of the protrusions 302 is less than that of the side surface of the roller 301.

[0040] Specifically, in the embodiment, the outer base film 100 is attached with label face paper, the cutting knife cuts the label face paper into a plurality of label products 200, and the adjacent two label products 200 are arranged in a linear gap-free state, the outer base film 100 attached with the label products 200 is discharged by the first discharge part 11, the first conveying body 12 is in a flat plate shape for conveying, the label products 200 and the outer base film 100 are separated at the end of the first conveying body 12, the outer base film 100 is completed by the first winding part 13, the label products 200 enter the transfer and pressing assembly 2, the transfer and pressing assembly 2 comprises the first discharge part 11, the first conveying body 12, and the second conveying body 22, the outer isolation film 300 is discharged by the first discharge part 11 and then enters the second conveying body 22, the pressing assembly 3, and the winding assembly 4 in sequence, the label products 200 separated at the end of the first conveying body 12 are attached to the surface of the isolation film 300 by the upper pressing part 23, the rotation speed of the winding assembly 4 is greater than that of the first winding part 13, that is, the conveying speed of the outer isolation film 300 is greater than that of the outer base film 100, that is, the distance between the adjacent two label products 200 attached to the outer isolation film 300 is increased, the purpose of gap-free transfer to gap transfer is achieved, the production requirements are met, preferably, the pressing assembly 3 comprises the third lower wheel body 31 and the third upper wheel body 32, and the third lower wheel body 31 and the third upper wheel body 32 each comprise the roller 301 and the plurality of protrusions 302, the roller 301 is made of steel material, the protrusions 302 are made of plastic injection, and the plurality of protrusions 302 are arranged to make the elastic protrusions 302 directly contact the outer label products 200, attach the label products 200 to the outer isolation film 300, further protect the surface of the label products 200, avoid surface damage of the label products 200 caused by abrasion during pressing, and improve the controllability of product quality.

[0041] The label product 200 is pressed and pasted by the no-gap rotating and gap rotating pasting device composed of the feeding assembly 1, the rotating and pasting assembly 2, the pressing and pasting assembly 3 and the winding assembly 4, so that the purpose of quickly adjusting the gap of the label product 200 is achieved, and the pressing and pasting assembly 3 is provided with the third lower wheel body 31 and the third upper wheel body 32, the third lower wheel body 31 and the third upper wheel body 32 both include the roller 301 and a plurality of protrusions 302, the plurality of protrusions 302 are arranged on the side surface of the roller 301, the hardness of the protrusions 302 is less than the hardness of the side surface of the roller 301, the surface of the label product 200 is protected, and the controllability of the product processing quality is improved.

[0042] The first feeding part 11 includes a first upper wheel body and a first lower wheel body, the first upper wheel body and the first lower wheel body are arranged perpendicularly to the conveying direction of the first conveying body 12 along the center line, and the first upper wheel body and the first lower wheel body are arranged at a distance, so that the first upper wheel body and the first lower wheel body press and hold the combination of the outer base film 100 and the label face paper together, the stability of the conveying direction is ensured, and the floating phenomenon of the combination of the base film 100 and the label face paper is avoided.

[0043] The second conveying body 22 includes a second lower wheel body 221 and a supporting plate 222, the upper pressing part 23 is arranged directly above the second lower wheel body 221, and the supporting plate 222 is arranged between the second lower wheel body 221 and the pressing and pasting assembly 3, preferably, the upper pressing part 23 is in the form of a roller, the outer isolation base film 300 is in linear contact with the second lower wheel body 221 and the upper pressing part 23 respectively, the outer label product 200 is pressed and held on the surface of the outer isolation base film 300, and the supporting plate 222 is arranged to linearly convey the combination of the outer isolation base film 300 and the label product 200.

[0044] The roller 301 is provided with a plurality of groove bodies 3011 arranged along the axial direction of the roller 301, the protrusion 302 is provided with a connecting part 3021 and an arc part 3022, the connecting part 3021 is arranged in the groove body 3011, and the arc part 3022 protrudes out of the side surface of the roller 301, preferably, the cross section of the groove body 3011 is in the shape of a trapezoid, the cross section of the connecting part 3021 is in the shape of a trapezoid, so that the connection between the protrusion 302 and the roller 301 is more firm, the service life is provided, and preferably, the hardness of the connecting part 3021 is greater than the hardness of the arc part 3022, so that the deformation resistance of the protrusion 302 is improved.

[0045] The arc part 3022 of the third lower wheel body 31 and the arc part 3022 of the third upper wheel body 32 are arranged alternately, so that the rotation is more stable.

[0046] The first conveying body 12 is provided with a separation end and a vacuum suction piece, the separation end is arranged close to the second conveying body 22, the separation end comprises an upper plane, a side surface and a lower inclined surface connected in sequence, the lower inclined surface starts from the side surface and is inclined towards the direction of the first winding member 13, and the vacuum suction piece is arranged on the upper surface; the separation end is substantially in the shape of a sharp head, which facilitates the separation of the external bottom film 100 and the label product 200; and the vacuum suction piece is arranged so that the combination of the external bottom film 100 and the label product 200 is adsorbed on the surface of the first conveying body 12, thereby avoiding the floating phenomenon of the combination of the external bottom film 100 and the label product 200, affecting the separation of the bottom film 100 and the label product 200, and improving the stability of the production quality.

[0047] The above is only a preferred embodiment of the present application, and for those skilled in the art, according to the idea of the present application, the specific implementation and application range can be changed, and the content of the specification should not be understood as a limitation of the present application.

Claims

1. A device for converting a non-spaced rotation into a spaced rotation, characterized in that: It comprises a feeding assembly (1), a transferring assembly (2), a pressing assembly (3) and a winding assembly (4). The feeding assembly (1) comprises a first feeding part (11), a first conveying body (12) and a first winding part (13). The transferring assembly (2) comprises a second feeding part (21), a second conveying body (22) and an upper pressing part (23). The first feeding part (11), the first conveying body (12), the second conveying body (22), the pressing assembly (3) and the winding assembly (4) are sequentially arranged along a conveying direction, the first feeding part (11), the first conveying body (12) and the second conveying body (22) are arranged in a straight line, the first conveying body (12) and the second conveying body (22) are arranged with a gap, and the rotating speed of the first winding part (13) is less than that of the winding assembly (4). The first winding part (13) is arranged below the first conveying body (12) and close to the first feeding part (11), and the second feeding part (21) is arranged below the second conveying body (22). The pressing assembly (3) comprises a third lower wheel body (31) and a third upper wheel body (32), and the third lower wheel body (31) is located directly above the third upper wheel body (32). The third lower wheel body (31) and the third upper wheel body (32) each comprise a roller (301) and a plurality of protrusions (302), the plurality of protrusions (302) are arranged on the side surface of the roller (301), and the hardness of the protrusions (302) is less than that of the side surface of the roller (301).

2. The spacerless-to-spaced gear pasting device of claim 1, wherein: The first feeding part (11) comprises a first upper wheel body and a first lower wheel body, the center line of the first upper wheel body and the first lower wheel body is arranged perpendicularly to the conveying direction of the first conveying body (12), and the first upper wheel body and the first lower wheel body are arranged with a gap.

3. The spacerless-to-spaced gear pasting apparatus of claim 1, wherein: The second conveying body (22) comprises a second lower wheel body (221) and a supporting plate (222), the upper pressing part (23) is arranged directly above the second lower wheel body (221), and the supporting plate (222) is located between the second lower wheel body (221) and the pressing assembly (3).

4. The spacerless-to-spaced gear pasting apparatus of claim 1, wherein: The roller (301) is provided with a plurality of groove bodies (3011), the groove bodies (3011) are arranged along the axial direction of the roller (301), the protrusions (302) are provided with a connecting part (3021) and an arc part (3022), the connecting part (3021) is arranged in the groove body (3011), and the arc part (3022) protrudes out of the side surface of the roller (301).

5. The spacerless-to-spaced gear pasting apparatus of claim 4, wherein: The arc part (3022) of the third lower wheel body (31) and the arc part (3022) of the third upper wheel body (32) are arranged alternately.

6. The spacerless-to-spaced gear pasting apparatus of claim 1, wherein: The first conveying body (12) is provided with a separation end and a vacuum suction part, the separation end is arranged close to the second conveying body (22), the separation end comprises an upper plane, a side surface and a lower inclined surface which are sequentially connected, the lower inclined surface is inclined from the side surface towards the direction of the first winding part (13), and the vacuum suction part is arranged on the upper surface.