Label adhesive surface code spraying device

By designing a label glue side coding device, the problem of fuzzy coding on the label glue side is solved, clear coding detection is achieved, anti-counterfeiting effect is ensured, and unqualified labels are prevented from entering the market.

CN223340303UActive Publication Date: 2025-09-16SHANGHAI QIDAYIN PACKAGING TECH CO LTD
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Patent Information

Application Number
CN202422661120.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-01
Publication Date
2025-09-16
Estimated Expiration
2034-11-01

AI Technical Summary

Technical Problem

The prior art label glue surface coding equipment causes the anti-counterfeiting code to be blurred and cannot effectively play an anti-counterfeiting role.

Method used

A label adhesive surface coding device is designed, which includes a feeding component, a coding component, a detection component and a mixing component. The feeding component separates the label from the base paper, the coding component codes the label adhesive surface, and the detection component uses a flat roller group, a lighting lamp and a mirror reflection group to reflect the coding to the detector for detection to ensure that the anti-counterfeiting code is clear.

Benefits of technology

It realizes clear inkjet coding detection on the adhesive surface of the label, avoids the appearance of fuzzy anti-counterfeiting codes, ensures the anti-counterfeiting effect, and prevents unqualified labels from entering the market.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a label adhesive surface code spraying device. The label adhesive surface code spraying device comprises a feeding assembly, a code spraying assembly, a detection assembly and a material combining assembly, the code spraying assembly is arranged on the glue face of the label and used for spraying codes on the glue face of the label. The detection assembly comprises a tiling roller group, a lighting lamp, a mirror reflection group and a detector; the tiling roller set is used for tiling a label, the lighting lamp is used for lighting the tiled label, the mirror reflection set is used for reflecting a sprayed code on the lighted label to the detector, and the detector is used for detecting the sprayed code; and the material combining assembly is used for combining the labels and the backing paper. According to the utility model, the lighting lamp illuminates a label tiled by the tiling roller group and illuminates an anti-counterfeiting code on an identification rubber surface, the mirror reflection group reflects the anti-counterfeiting code on the identification rubber surface to the detector through mirror reflection, and the detector detects a code spraying result, so that the label which cannot play an anti-counterfeiting role is prevented from entering the market.
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Description

Technical Field

[0001] The utility model relates to the technical field of label production, in particular to a label adhesive surface coding device. Background Art

[0002] Most labels are printed materials used to identify product information, and most have adhesive backing. However, some labels are printed without adhesive, and are also called "self-adhesive labels." With the increasing use of labels, some labels have become anti-counterfeiting measures. Existing technology uses inkjet printing on the adhesive side of the label to achieve this goal. However, because the adhesive side of the label is attached to the backing paper, current inkjet printing equipment produces a relatively blurred anti-counterfeiting code when printing on the adhesive side of the label, rendering the code ineffective in its anti-counterfeiting function. Summary of the Invention

[0003] According to an embodiment of the present invention, a label adhesive surface coding device is provided, comprising: a feeding component, a coding component, a detection component and a material combining component;

[0004] The feeding assembly is used to separate the label from the base paper, with the adhesive side of the label facing upwards. The feeding assembly delivers the label to the coding assembly, the detection assembly or the mixing assembly, and delivers the base paper to the mixing assembly;

[0005] The coding component is provided on the adhesive surface of the label and is used to code the adhesive surface of the label;

[0006] The detection assembly includes: a flat roller group, a lighting lamp, a mirror reflection group and a detector;

[0007] The flattening roller group is used to flatten the label, the lighting lamp is used to illuminate the flattened label, and the mirror reflection group is used to reflect the inkjet code on the illuminated label to the detector, and the detector is used to detect the inkjet code;

[0008] The combining component is used for combining the label and the base paper.

[0009] Furthermore, the feeding assembly includes: a separating roller, a label feeding roller, a bottom paper feeding roller and a combining feeding roller;

[0010] The separating roller is used to separate the label from the base paper, the label feeding roller is used to transport the separated label to the inkjet component and the detection component, and the base paper feeding roller is used to transport the separated base paper to the combining component.

[0011] Furthermore, the coding assembly includes: a linear mechanism, a coding base plate and a coding device;

[0012] The labels are laid flat on the coding base plate, the linear mechanism is used to move the coding device, and the coding device is used to code the labels on the coding base plate.

[0013] Furthermore, the detection assembly includes: a fixed plate, and the flattening roller group includes: a first flattening roller and a second flattening roller;

[0014] The second laying roller is arranged below the first laying roller, the first laying roller and the second laying roller lay the label vertically, the fixing plate is arranged on one side of the label being laid vertically, and the detector is arranged on the fixing plate.

[0015] Further, the mirror reflection group includes: a first reflector and a second reflector;

[0016] The first reflector is arranged on the fixed plate, the first reflector is located above the detector and is arranged corresponding to the vertical flattening position of the label, and the second reflector is arranged below the second flattening roller and is arranged corresponding to the detector.

[0017] Furthermore, it also includes: a positioning component;

[0018] The position adjustment component is arranged on the conveying path of the base paper, and the position adjustment component is used to adjust the position of the base paper on the feeding component.

[0019] Furthermore, the position adjustment assembly includes: an adjustment roller, an adjustment seat, an adjustment frame and an adjustment bolt;

[0020] The bottom paper is passed around the adjustment roller, the adjustment seat is arranged at both ends of the adjustment roller, the adjustment seat is slidably arranged on the adjustment frame, the adjustment bolt is arranged on the adjustment frame, and one end is connected to the adjustment seat, and the adjustment bolt is used to make the adjustment seat move on the adjustment frame.

[0021] Furthermore, the material combining assembly includes: a guide roller, a first material combining roller and a second material combining roller;

[0022] The guide roller is used to guide the label to between the first mixing roller and the second mixing roller, the first mixing roller is used to guide the base paper to between the first mixing roller and the second mixing roller, and the first mixing roller and the second mixing roller are used to mix the base paper and the label.

[0023] According to a label adhesive surface coding device of an embodiment of the utility model, the present application separates the label from the base paper through a feeding component, the feeding component transports the label to the coding component, the coding component codes the adhesive surface of the label, and the coded label is transported to a flattening roller group, a lighting lamp illuminates the label flattened by the flattening roller group, and illuminates the anti-counterfeiting code on the adhesive surface of the label, and the mirror reflection group reflects the anti-counterfeiting code on the adhesive surface of the label to a detector through mirror reflection, and the coding result is detected by the detector to prevent labels that cannot play an anti-counterfeiting role from entering the market.

[0024] It is to be understood that both the foregoing general description and the following detailed description are exemplary, and are intended to provide further explanation of the technology as claimed. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 This is a structural diagram of a label adhesive surface coding device according to an embodiment of the present utility model;

[0026] Figure 2 This is a structural diagram of a label adhesive surface coding device according to an embodiment of the present utility model;

[0027] Figure 3 It is a front view of a label adhesive surface coding device according to an embodiment of the present utility model.

[0028] The reference numerals in the figure are: 1 is the feeding assembly, 11 is the dividing roller, 12 is the label feeding roller, 13 is the bottom paper feeding roller, 14 is the mixing feeding roller, 2 is the inkjet assembly, 21 is the linear mechanism, 22 is the inkjet base plate, 23 is the inkjet printer, 3 is the detection assembly, 31 is the fixed plate, 32 is the flattening roller group, 321 is the first flattening roller, 322 is the second flattening roller, 33 is the lighting lamp, 34 is the mirror reflection group, 341 is the first reflector, 342 is the second reflector, 35 is the detector, 4 is the mixing assembly, 41 is the guide roller, 42 is the first mixing roller, 43 is the second mixing roller, 5 is the positioning assembly, 51 is the adjusting roller, 52 is the adjusting seat, 53 is the adjusting frame, and 54 is the adjusting bolt. DETAILED DESCRIPTION

[0029] The preferred embodiments of the present invention will be described in detail below with reference to the accompanying drawings to further illustrate the present invention.

[0030] First, combine Figures 1 to 3 A label adhesive surface coding device according to an embodiment of the present invention is described, which is used to code the adhesive surface of a label.

[0031] like Figure 1 and Figure 2 As shown, a label adhesive surface coding device according to an embodiment of the present invention comprises: a feeding component 1, a coding component 2, a detection component 3 and a material combining component 4;

[0032] The feeding component 1 is used to separate the label from the base paper, with the adhesive side of the label facing upwards. The feeding component 1 delivers the label to the coding component 2, the detection component 3 or the mixing component 4, and delivers the base paper to the mixing component 4;

[0033] The coding component 2 is provided on the adhesive surface of the label and is used to code the adhesive surface of the label;

[0034] The detection assembly 3 includes: a flat roller group 32, a lighting lamp 33, a mirror reflection group 34 and a detector 35;

[0035] The flattening roller group 32 is used to flatten the label, the lighting lamp 33 is used to illuminate the flattened label, and the mirror reflection group 34 is used to reflect the inkjet code on the illuminated label to the detector 35, and the detector 35 is used to detect the inkjet code;

[0036] The combining component 4 is used to combine the label and the base paper.

[0037] This application separates the label from the base paper through the feeding component 1, and the feeding component 1 conveys the label to the coding component 2, the coding component 2 codes the adhesive surface of the label, and the coded label is conveyed to the flattening roller group 32, the lighting lamp 33 illuminates the label flattened by the flattening roller group 32, and illuminates the anti-counterfeiting code on the adhesive surface of the label, and the mirror reflection group 34 reflects the anti-counterfeiting code on the adhesive surface of the label to the detector 35 through mirror reflection, and the coding result is detected by the detector 35 to prevent labels that cannot play an anti-counterfeiting role from entering the market.

[0038] like Figure 2 and Figure 3 As shown, the feeding assembly 1 includes: a separating roller 11, a label feeding roller 12, a bottom paper feeding roller 13 and a combining feeding roller 14;

[0039] The separating roller 11 is used to separate the label from the base paper, the label feeding roller 12 is used to transport the separated label to the inkjet component 2 and the detection component 3, and the base paper feeding roller 13 is used to transport the separated base paper to the combining component 4.

[0040] The separating roller 11 separates the label from the backing paper, which is then fed to the mixing assembly 4 via the backing paper feed roller 13. The label feed roller 12 first feeds the label to the coding assembly 2, which codes the adhesive surface of the label before conveying it to the inspection assembly 3, which inspects the coding results. The mixing feed roller 14 conveys the inspected label to the mixing assembly 4, where the label and backing paper are combined by the mixing assembly.

[0041] In this embodiment, the separating roller 11, the label feeding roller 12, the bottom paper feeding roller 13 and the combining feeding roller 14 do not refer to a single roller, and the purpose of conveying can be achieved by the cooperation of multiple rollers.

[0042] like Figure 2 and Figure 3 As shown, the coding assembly 2 includes: a linear mechanism 21, a coding base plate 22 and a coding device 23;

[0043] The labels are laid flat on the coding base plate 22 , and the linear mechanism 21 is used to move the coding device 23 , which is used to code the labels on the coding base plate 22 .

[0044] The label feeding roller 12 transports the label to the coding assembly 2, so that the label is spread flat on the coding base plate 22. The linear mechanism 21 drives the inkjet printer 23 to descend, and lowers the inkjet printer 23 to the coding position. The inkjet printer 23 codes the label adhesive surface on the coding base plate 22.

[0045] like Figure 3 As shown, the detection assembly 3 includes: a fixed plate 31, and the flattening roller group 32 includes: a first flattening roller 321 and a second flattening roller 322;

[0046] The second laying roller 322 is arranged below the first laying roller 321 . The first laying roller 321 and the second laying roller 322 lay the labels vertically. The fixing plate 31 is arranged on the side where the labels are laid vertically. The detector 35 is arranged on the fixing plate 31 .

[0047] The mirror reflection group 34 includes: a first reflector 341 and a second reflector 342;

[0048] The first reflector 341 is disposed on the fixed plate 31 , and is located above the detector 35 and corresponding to the vertical flattening position of the label. The second reflector 342 is disposed below the second flattening roller 322 , and is corresponding to the detector 35 .

[0049] The coded label is wound around the first laying roller 321 and the second laying roller 322, and the label is laid vertically flat by the first laying roller 321 and the second laying roller 322, so that the adhesive surface of the label faces the first reflector 341, and the lighting lamp 33 illuminates the adhesive surface of the label. The first reflector 341 reflects the anti-counterfeiting code on the label to the second reflector 342, so that the detector 35 can detect the anti-counterfeiting code on the label through the second reflector 342, and the reflection of the mirror surface prevents the illumination of the lighting lamp 33 from affecting the detection result of the detector 35.

[0050] like Figure 3 As shown, it also includes: a positioning component 5;

[0051] The position adjustment component 5 is arranged on the conveying path of the base paper, and the position adjustment component 5 is used to adjust the position of the base paper on the feeding component 1.

[0052] The position adjustment component 5 includes an adjustment roller 51 , an adjustment seat 52 , an adjustment frame 53 and an adjustment bolt 54 .

[0053] The bottom paper is passed around the adjustment roller 51. The adjustment seat 52 is provided at both ends of the adjustment roller 51. The adjustment seat 52 is slidably provided on the adjustment frame 53. The adjustment bolt 54 is provided on the adjustment frame 53 and one end is connected to the adjustment seat 52. The adjustment bolt 54 is used to move the adjustment seat 52 on the adjustment frame 53.

[0054] The adjusting bolt 54 is rotated to move the adjusting seat 52 on the adjusting frame 53, thereby adjusting the height of the adjusting roller 51. By adjusting the adjusting seats 52 at both ends of the adjusting roller 51 respectively, the adjusting roller 51 is tilted, thereby changing the conveying position of the bottom paper, so that the bottom paper can be smoothly combined with the label on the combining component 4, avoiding misalignment of the bottom paper and the label during the combining process.

[0055] Figures 1 to 3 The mixing assembly 4 includes: a guide roller 41, a first mixing roller 42 and a second mixing roller 43;

[0056] The guide roller 41 is used to guide the label to between the first mixing roller 42 and the second mixing roller 43, the first mixing roller 42 is used to guide the base paper to between the first mixing roller 42 and the second mixing roller 43, and the first mixing roller 42 and the second mixing roller 43 are used to mix the base paper and the label.

[0057] The guide roller 41 guides the label to between the first mixing roller 42 and the second mixing roller 43. The first mixing roller 42 guides the backing paper to between the first mixing roller 42 and the second mixing roller 43. The backing paper and the label are mixed by the first mixing roller 42 and the second mixing roller 43. In this application, the guide roller 41 does not refer to a single roller, and multiple rollers can cooperate to achieve the purpose of conveying.

[0058] Above, refer to Figures 1 to 3 A device for coding the adhesive surface of a label according to an embodiment of the present utility model is described. The present application separates the label from the base paper through a feeding component 1, and the feeding component 1 conveys the label to the coding component 2. The coding component 2 codes the adhesive surface of the label, and the coded label is conveyed to a flattening roller group 32. A lighting lamp 33 illuminates the label flattened by the flattening roller group 32, and illuminates the anti-counterfeiting code on the adhesive surface of the label. The mirror reflection group 34 reflects the anti-counterfeiting code on the adhesive surface of the label to a detector 35 through mirror reflection. The coding result is detected by the detector 35 to prevent labels that cannot play an anti-counterfeiting role from entering the market.

[0059] It should be noted that, in this specification, the terms "comprises," "includes," or any other variations thereof are intended to encompass non-exclusive inclusion, such that a process, method, article, or apparatus comprising a series of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus. In the absence of further limitations, elements defined by the phrase "comprising..." do not exclude the presence of other identical elements in the process, method, article, or apparatus comprising the elements.

[0060] Although the present invention has been described in detail through the above preferred embodiments, it should be understood that the above description should not be considered as limiting the present invention. After reading the above description, various modifications and alternatives to the present invention will be readily apparent to those skilled in the art. Therefore, the scope of protection of the present invention shall be defined by the appended claims.

Claims

1. A label adhesive surface coding device, characterized in that: include: Feeding components, coding components, detection components and mixing components; The feeding assembly is used to separate the label from the base paper, with the adhesive side of the label facing upwards. The feeding assembly delivers the label to the coding assembly, the detection assembly or the mixing assembly, and delivers the base paper to the mixing assembly; The coding component is provided on the adhesive surface of the label and is used to code the adhesive surface of the label; The detection assembly includes: a flat roller group, a lighting lamp, a mirror reflection group and a detector; The flattening roller group is used to flatten the label, the lighting lamp is used to illuminate the flattened label, and the mirror reflection group is used to reflect the inkjet code on the illuminated label to the detector, and the detector is used to detect the inkjet code; The combining component is used for combining the label and the base paper.

2. A label adhesive surface coding device as claimed in claim 1, characterized in that: The feeding assembly includes: a separating roller, a label feeding roller, a bottom paper feeding roller and a combining feeding roller; The separating roller is used to separate the label from the base paper, the label feeding roller is used to transport the separated label to the inkjet component and the detection component, and the base paper feeding roller is used to transport the separated base paper to the combining component.

3. A label adhesive surface coding device as claimed in claim 1, characterized in that: The inkjet coding assembly includes: a linear mechanism, an inkjet coding base plate and an inkjet coding device; The labels are laid flat on the coding base plate, the linear mechanism is used to move the coding device, and the coding device is used to code the labels on the coding base plate.

4. The label adhesive surface coding device according to claim 1, characterized in that: The detection assembly includes: a fixed plate, and the flattening roller group includes: a first flattening roller and a second flattening roller; The second laying roller is arranged below the first laying roller, the first laying roller and the second laying roller lay the label vertically, the fixing plate is arranged on one side of the label being laid vertically, and the detector is arranged on the fixing plate.

5. A label adhesive surface coding device as claimed in claim 4, characterized in that: The mirror reflection group includes: a first reflector and a second reflector; The first reflector is arranged on the fixed plate, the first reflector is located above the detector and is arranged corresponding to the vertical flattening position of the label, and the second reflector is arranged below the second flattening roller and is arranged corresponding to the detector.

6. The label adhesive surface coding device according to claim 1, characterized in that: Also includes: Positioning components; The position adjustment component is arranged on the conveying path of the base paper, and the position adjustment component is used to adjust the position of the base paper on the feeding component.

7. A label adhesive surface coding device as claimed in claim 6, characterized in that: The position adjustment assembly includes: an adjustment roller, an adjustment seat, an adjustment frame and an adjustment bolt; The bottom paper is passed around the adjustment roller, the adjustment seat is arranged at both ends of the adjustment roller, the adjustment seat is slidably arranged on the adjustment frame, the adjustment bolt is arranged on the adjustment frame, and one end is connected to the adjustment seat, and the adjustment bolt is used to make the adjustment seat move on the adjustment frame.

8. The label adhesive surface coding device according to claim 1, characterized in that: The mixing assembly includes: a guide roller, a first mixing roller and a second mixing roller; The guide roller is used to guide the label to between the first mixing roller and the second mixing roller, the first mixing roller is used to guide the base paper to between the first mixing roller and the second mixing roller, and the first mixing roller and the second mixing roller are used to mix the base paper and the label.