Labeling compound machine
By designing composite paper tape and Inlay material tape conveying components in the labeling composite machine, using the re-sticking and turning technology of the steering tool, the problem of complex and low efficiency of the existing labeling composite machine is solved, and the efficient clamping of Inlay is achieved.
Patent Information
- Application Number
- CN202422636467.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-30
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-10-30
AI Technical Summary
The existing labeling composite machines have complex structure and low efficiency, and cannot efficiently realize Inlay clamping.
Using the composite paper tape conveying assembly and the Inlay material tape conveying assembly, the design of the first steering knife and the second steering knife is used to remove the face paper from the base paper and re-attach the composite paper tape of the second track. At the same time, the Inlay material tape is re-attached on the face paper at the second steering knife to realize the composite between the face paper and the bottom paper.
The structure is simplified and efficiency is improved, without the need to independently configure two sets of material collection and discharge structures, achieving efficient clamping of Inlay.
Smart Images

Figure CN223059471U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of mechanical equipment, in particular to a labeling and laminating machine. Background Art
[0002] Inlay is a special term in the smart card industry, referring to a pre-laminated product composed of multiple layers of PVC or other materials containing chips and coils laminated together. Different types of RFID tags can be made through different forms of encapsulation. During the processing of RFID tags, the Inlay is clamped between two material rolls of face paper and bottom paper, and then die-cut after lamination; usually, the two material rolls of face paper and bottom paper are independently fed, with two sets of independent unwinding and rewinding structures; first, the Inlay is guided and pasted on the bottom paper, and during the subsequent conveying process, the face paper is guided and pasted on the bottom paper with the Inlay, thus achieving the effect of clamping the Inlay between the face paper and the bottom paper. However, this type of labeling and laminating mechanism has a complex structure and low efficiency. Content of the Utility Model
[0003] In order to solve the deficiencies of the prior art, the utility model provides a labeling and laminating machine with a simple structure and high efficiency.
[0004] The technical problem to be solved by the utility model is achieved through the following technical means: a labeling and laminating machine includes a composite paper tape conveying component and an Inlay tape conveying component. The composite paper tape conveying component includes a first guide roller, a first turning knife, a plurality of second guide rollers, and a clamping and pressing roller group arranged in sequence along the conveying track of the composite paper tape. The conveying track of the composite paper tape between the first turning knife and the first of the second guide rollers is defined as the first track, and the conveying track of the composite paper tape between the last of the second guide rollers and the clamping and pressing roller group is defined as the second track. The first turning knife obliquely approaches the second track. The composite paper tape includes face paper and bottom paper. After passing through the first turning knife, the face paper of the composite paper tape separates from the bottom paper, and the face paper is transferred and pasted onto the composite paper tape in the second track. The conveying track of the composite paper tape on the plurality of second guide rollers encloses a surrounding shape with an opening, and the first guide roller is located outside the surrounding shape. The first track and the second track are separated, and an opening is formed between the first track and the second track. The Inlay tape conveying component is located inside the surrounding shape. The Inlay tape conveying component includes a second turning knife that obliquely approaches the second track. The second turning knife and the first turning knife are located on the same side of the second track.
[0005] In one embodiment, the clamping and pressing roller group includes a fixed rotating roller and a lifting and pressing roller located directly above the fixed rotating roller. The end of the first turning knife is located obliquely above the fixed rotating roller.
[0006] In one embodiment, a support platform adapted to the composite paper tape is disposed below the second trajectory, and the end of the second turning knife is located above one side of the support platform.
[0007] In one embodiment, the composite paper tape conveying assembly includes a composite paper tape raw material roll for supplying the composite paper tape. A plurality of third guide rollers for assisting in conveying the composite paper tape are disposed between the composite paper tape raw material roll and the first guide roller, and both the composite paper tape raw material roll and the third guide rollers are located outside the surrounding shape.
[0008] In one embodiment, the composite paper tape conveying assembly includes a take-up roll.
[0009] In one embodiment, the Inlay tape conveying assembly includes an Inlay tape raw material roll for supplying the Inlay tape. A plurality of fourth guide rollers for assisting in conveying the Inlay tape are disposed between the Inlay tape raw material roll and the second turning knife.
[0010] In one embodiment, the Inlay tape conveying assembly includes a waste take-up roll for taking up waste of the Inlay tape.
[0011] The beneficial effects of the present utility model are as follows: In the present utility model, the face paper has adhesiveness, and the face paper is attached to the base paper to form a composite paper tape and then fed together. During the process of manufacturing the RFID tag, first, the face paper is separated from the base paper at the first turning knife and conveyed in two paths. Among them, the base paper continues to be conveyed along the original conveying trajectory of the composite paper tape, while the face paper is transferred and attached to the composite paper tape on the second trajectory. At this time, the composite paper tape is actually the base paper without the face paper conveyed after the face paper is separated, that is, the effect of re-transferring and attaching the face paper to the base paper is achieved. Among them, before the face paper is re-attached to the base paper, the Inlay on the Inlay tape is transferred and attached to the face paper on the second trajectory at the second turning knife by using the Inlay tape conveying assembly; in other words, originally the face paper and the base paper are attached to form a whole, first the face paper is separated from the base paper, and then, at the second trajectory, the Inlay is attached to the base paper, and then the separated face paper is re-guided and attached to the base paper, so that the Inlay can be sandwiched between the face paper and the base paper. Finally, the Inlay, the base paper, and the face paper can be pressed and laminated at the nip roller group. Therefore, the present utility model does not need to independently configure two sets of dedicated winding and unwinding structures for the face paper and the base paper, but only one set of winding and unwinding structure for the face paper and the base paper is adopted, which simplifies the structure and improves the efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1It is a schematic structural diagram of the present utility model in an embodiment;
[0013] Figure 2 It is a schematic structural diagram of the separation and reattachment of the face paper and the bottom paper in an embodiment;
[0014] Figure 3 It is a schematic diagram of the first track and the second track in an embodiment. Specific embodiments
[0015] The present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It can be understood that the specific embodiments described herein are only used to explain the present utility model, rather than limiting the present utility model. In addition, it should be noted that for the convenience of description, only the parts related to the present utility model rather than all the structures are shown in the drawings.
[0016] As Figures 1 to 3 shown, the technical solution adopted by the present utility model is that the present utility model is a labeling and laminating machine, including a composite paper tape conveying assembly and an Inlay tape conveying assembly. The composite paper tape conveying assembly includes a first guide roller 2, a first turning knife 3, a plurality of second guide rollers 4 and a clamping roller group 5 arranged in sequence according to the conveying track of the composite paper tape 1. The conveying track of the composite paper tape 1 between the first turning knife 3 and the first of the second guide rollers 4 is defined as the first track 6, and the conveying track of the composite paper tape 1 between the last of the second guide rollers 4 and the clamping roller group 5 is defined as the second track 7. The first turning knife 3 obliquely approaches the second track 7. The composite paper tape 1 includes a face paper 8 and a bottom paper 9. After passing through the first turning knife 3, the face paper 8 of the composite paper tape 1 is separated from the bottom paper 9, and the face paper 8 is transferred and pasted onto the composite paper tape 1 in the second track 7. The conveying track of the composite paper tape 1 on the plurality of second guide rollers 4 encloses a surrounding shape with an opening, and the first guide roller 2 is located outside the surrounding shape. The first track 6 and the second track are separated, and an opening is formed between the first track 6 and the second track 7. The Inlay tape conveying assembly is located inside the surrounding shape. The Inlay tape conveying assembly includes a second turning knife 10 that obliquely approaches the second track 7. The second turning knife 10 and the first turning knife 3 are located on the same side of the second track 7.
[0017] In one embodiment, the clamping roller group 5 includes a fixed roller 11 and a lifting pressure roller 12 located directly above the fixed roller 11. The end of the first turning knife 3 is located obliquely above the fixed roller 11.
[0018] In one embodiment, a support platform 13 adapted to the composite paper tape 1 is provided below the second track 7, and the end of the second turning knife 10 is located above one side of the support platform 13.
[0019] In one embodiment, the composite paper tape conveying assembly includes a composite paper tape raw material roll 14 for supplying the composite paper tape 1. A number of third guide rollers 15 for assisting in conveying the composite paper tape 1 are provided between the composite paper tape raw material roll 14 and the first guide roller 2, and both the composite paper tape raw material roll 14 and the third guide rollers 15 are located outside the surrounding shape.
[0020] In one embodiment, the composite paper tape conveying assembly includes a take-up roll 16. The take-up roll 16 is used for taking up the laminated thickness of the Inlay 21, the base paper 9, and the face paper 8.
[0021] In one embodiment, the Inlay tape conveying assembly includes an Inlay tape raw material roll 18 for supplying the Inlay tape 17. A number of fourth guide rollers 19 for assisting in conveying the Inlay tape 17 are provided between the Inlay tape raw material roll 18 and the second turning knife 10.
[0022] In one embodiment, the Inlay tape conveying assembly includes a waste take-up roll 20 for taking up waste of the Inlay tape 17.
[0023] The beneficial effects of the present utility model are as follows: In the present utility model, the facial tissue 8 has adhesiveness. The facial tissue 8 is attached to the base paper 9 to form a composite paper tape and then fed together. During the production process of the RFID tag, first, the facial tissue 8 is separated from the base paper 9 at the first turning knife 3 and conveyed in two paths. Among them, the base paper 9 continues to be conveyed along the conveying trajectory of the original composite paper tape 1, while the facial tissue 8 is transferred and attached to the composite paper tape 1 on the second trajectory 7. At this time, the composite paper tape 1 is actually the base paper 9 without the facial tissue 8 conveyed after being separated from the facial tissue 8, that is, the effect of re-transferring and attaching the facial tissue 8 to the base paper 9 is achieved. Among them, before the facial tissue 8 is re-attached to the base paper 9, the Inlay 21 on the Inlay tape 17 is first transferred and attached to the facial tissue 8 on the second trajectory 7 at the second turning knife 10; in other words, originally, the facial tissue 8 and the base paper 9 are attached to form a whole. First, the facial tissue 8 is separated from the base paper 9, and then, at the second trajectory 7, the Inlay 21 is attached to the base paper 9, and then the separated facial tissue 8 is re-guided and attached to the base paper 9. In this way, the Inlay 21 can be sandwiched between the facial tissue 8 and the base paper 9. Finally, the Inlay 21, the base paper 9, and the facial tissue 8 can be press-compounded at the pinch roller group 5. Therefore, the present utility model does not require two independent dedicated winding and unwinding structures for the facial tissue 8 and the base paper 9. Instead, only one set of winding and unwinding structure is used for the facial tissue 8 and the base paper 9, which simplifies the structure and improves the efficiency. In addition, the facial tissue 8 on the composite paper tape 1 can be a continuous strip or a cut and evenly sorted disconnected sheet. In addition, both the first turning knife 3 and the second turning knife 10 are fixedly arranged.
Claims
1. A labeling and laminating machine, characterized in that, It includes a composite paper tape conveying component and an Inlay tape conveying component. The composite paper tape conveying component includes a first guide roller (2), a first turning knife (3), several second guide rollers (4), and a clamping roller group (5) arranged in sequence along the conveying track of the composite paper tape (1). The conveying track of the composite paper tape (1) between the first turning knife (3) and the first of the second guide rollers (4) is defined as the first track (6), and the conveying track of the composite paper tape (1) between the last of the second guide rollers (4) and the clamping roller group (5) is defined as the second track (7). The first turning knife (3) obliquely approaches the second track (7). The composite paper tape (1) includes a face paper (8) and a base paper (9). After passing through the first turning knife (3), the face paper (8) of the composite paper tape (1) separates from the base paper (9), and the face paper (8) is reattached to the composite paper tape (1) on the second track (7). The conveying track of the composite paper tape (1) on several second guide rollers (4) encloses an enclosed shape with an opening, and the first guide roller (2) is located outside the enclosed shape. The first track (6) and the second track (7) are separated, and an opening is formed between the first track (6) and the second track (7). The Inlay tape conveying component is located inside the enclosed shape. The Inlay tape conveying component includes a second turning knife (10) that obliquely approaches the second track (7). The second turning knife (10) and the first turning knife (3) are located on the same side of the second track (7).
2. The labeling and laminating machine according to claim 1, wherein: The clamping roller group (5) includes a fixed roller (11) and a lifting pressure roller (12) located directly above the fixed roller (11). The end of the first turning knife (3) is located obliquely above the fixed roller (11).
3. The labeling and laminating machine according to claim 1, wherein: A support platform (13) adapted to the composite paper tape (1) is provided below the second track (7). The end of the second turning knife (10) is located above one side of the support platform (13).
4. A labeling and laminating machine according to claim 1, characterized in that: The composite paper tape conveying component includes a composite paper tape raw material roller (14) for supplying the composite paper tape (1). Several third guide rollers (15) for assisting in conveying the composite paper tape (1) are provided between the composite paper tape raw material roller (14) and the first guide roller (2). Both the composite paper tape raw material roller (14) and the third guide rollers (15) are located outside the enclosed shape.
5. A labeling and laminating machine according to claim 1, characterized in that: The composite paper tape conveying component includes a take-up roller (16).
6. The labeling and laminating machine according to claim 1, wherein: The Inlay tape conveying component includes an Inlay tape raw material roller (18) for supplying the Inlay tape (17). Several fourth guide rollers (19) for assisting in conveying the Inlay tape (17) are provided between the Inlay tape raw material roller (18) and the second turning knife (10).