RFID electronic tag laminating and cutting integrated device

Through integrated lamination and cutting devices, the feeding and cutting process is optimized, and the problems of inconvenient loading of existing equipment, low film tearing and cutting efficiency of films are solved, achieving continuous and efficient processing and cost reduction of RFID electronic tags.

WO2025139066A1PCT designated stage expired Publication Date: 2025-07-03QINGDAO HIGHWAY IOT TECH CO LTD
View PDF 11 Cites 0 Cited by

Patent Information

Application Number
PCT/CN2024/118593
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2023-12-26
Filing Date
2024-09-12
Publication Date
2025-07-03

AI Technical Summary

Technical Problem

The existing electronic label lamination equipment and cutting equipment have problems such as inconvenient feeding method, easy tear of film, low cutting efficiency, and high equipment cost, resulting in low processing efficiency.

Method used

Design an integrated RFID electronic tag lamination and cutting equipment, integrate lamination device and cutting device, optimize chip and glue feeding mechanism, use rotating mechanism and transition device for lamination and cutting, and integrate the material collection device to achieve continuous and efficient processing.

Benefits of technology

It improves feeding efficiency, avoids film tearing, reduces equipment costs, realizes continuous and efficient lamination and cutting processing, and improves overall processing efficiency and safety.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN2024118593_03072025_PF_FP_ABST
    Figure CN2024118593_03072025_PF_FP_ABST
Patent Text Reader

Abstract

An RFID electronic tag laminating and cutting integrated device, comprising a machine base (10), and a laminating apparatus (20) and a cutting apparatus (40) which are arranged on the machine base (10) and are sequentially connected according to the machining order, wherein the laminating apparatus (20) can laminate a chip and an adhesive material to form a laminated strip having a tag, the laminating apparatus (20) comprises a vertical plate (21), a chip feeding mechanism (22) and an adhesive material feeding mechanism (23), and the chip feeding mechanism (22) and the adhesive feeding mechanism (23) are mounted on the vertical plate (21); and the cutting apparatus (40) can cut the laminated strip, and the cutting apparatus (40) comprises a frame body (41), a cutting and conveying mechanism (42), cutting mechanisms (43) and strip receiving mechanisms (44). The RFID electronic tag laminating and cutting integrated device solves the problem of an electronic tag laminating device and an electronic tag cutting device being unable to achieve efficient machining.
Need to check novelty before this filing date? Find Prior Art

Description

RFID electronic tag lamination and cutting equipment

[0001] This application claims priority to a patent application filed with the State Intellectual Property Office of China on December 26, 2023, with application number 202323583424.9 and invention name “RFID electronic label lamination and cutting integrated equipment”, the entire contents of which are incorporated by reference into this application. Technical Field

[0002] The present application relates to the technical field of tire equipment, and in particular to an integrated RFID electronic tag lamination and cutting device. Background Art

[0003] In traditional tire tread production, vulcanized electronic tags serve as the sole identifier of the tire's identity throughout its circulation. However, with the advancement of intelligent manufacturing and the increasing automation in the tire industry, RFID (Radio Frequency Identification) tire tags are poised for widespread adoption. Before RFID tags are implanted in tires, they require pre-processing. For example, the RFID tag is encapsulated within a specially formulated rubber compound, then laminated with two layers of rubber, and the plastic wrap is removed before cutting, gripping, and labeling.

[0004] At present, in the tire production process, an electronic tag laminating device and a cutting device have appeared. After the RFID chip is wrapped and laminated by the laminating device, the cutting device identifies and locates the material strip, cuts the individual chip, and transports the individual electronic tags formed after cutting to the placement position.

[0005] There are some problems with existing electronic label laminating and cutting equipment:

[0006] 1. The loading method of the laminating equipment requires loading from both sides of the equipment, which increases the operation time of workers;

[0007] 2. When the intermediate buffer transition mechanism separates the film on the surface of the material belt, the roller is likely to carry the separated film for a distance, causing the film to tear or even break, resulting in the need for frequent manual rewinding of the film;

[0008] 3. The cutting method of the cutting equipment can only complete the positioning and cutting of a single label at a time. The cycle time of the entire action is long. For occasions with large-volume demand, this method is inefficient and cannot meet the requirements;

[0009] 4. The existing RFID electronic tag production method is completed by two devices, laminating equipment and cutting equipment, which is inefficient and relatively costly.

[0010] 5. The material collection of the original equipment requires manual opening of the equipment door, which increases the time for opening and closing the door and manual processing.

[0011] As can be seen from the above, existing electronic label laminating equipment and cutting equipment have multiple problems that make them unable to perform efficient processing, affecting processing efficiency and quality.

[0012] Utility Model Content

[0013] The main purpose of this application is to provide an RFID electronic tag laminating and cutting integrated device to solve the problem that the electronic tag laminating equipment and cutting equipment in the prior art cannot achieve efficient processing.

[0014] In order to achieve the above-mentioned purpose, according to an optional embodiment of the present application, an RFID electronic tag lamination and cutting integrated equipment is provided, including a machine base, and a laminating device and a cutting device arranged on the machine base and connected in sequence according to the processing order, wherein the laminating device can laminate the chip and the adhesive to form a laminated material strip with a label, the laminating device includes a vertical plate, a chip feeding mechanism and an adhesive feeding mechanism, and the chip feeding mechanism and the adhesive feeding mechanism are installed on the vertical plate; the cutting device can cut the laminated material strip, and the cutting device includes a frame, a cutting and conveying mechanism, a cutting mechanism and a material receiving mechanism.

[0015] In an optional embodiment, the laminating device also includes a rotating mechanism, which includes: a bracket, the bracket includes a longitudinal section and a transverse section connected in sequence, the longitudinal section is upright on the machine base, and the transverse section extends transversely and is connected to the top of the longitudinal section; a rotating swing arm, the rotating swing arm is rotatably arranged on the transverse section, and is located above the chip feeding mechanism and the glue feeding mechanism; a rotating driving member, the rotating driving member is connected to the bracket and is driven by the rotating swing arm to drive the rotating swing arm to rotate; a material picking driving member, the material picking driving member is arranged on the rotating swing arm and rotates with the rotating swing arm, and the bottom end of the material picking driving member has a material picking head for picking up materials.

[0016] In an optional embodiment, the laminating device further comprises a laminating mechanism, which is disposed on the glue feeding mechanism and is capable of laminating the chip conveyed to the glue feeding mechanism with the glue.

[0017] In an optional embodiment, the RFID electronic tag laminating and cutting integrated equipment also includes a transition device, which includes a guide frame and a conveying roller. The guide frame has a peeling surface, and the laminated material strip with the chip and the adhesive laminated together can pass through the transition device to peel off the film on the surface of the laminated material strip with the label, wherein the peeling surface is located on the side of the guide frame toward the input end of the transition device, and along the conveying direction of the laminated material strip, the peeling surface is inclined toward the direction close to the laminated material strip.

[0018] In an optional embodiment, the transition device further comprises a film collecting reel, the film is wound and collected on the film collecting reel, and is driven by the film collecting reel to move along the peeling surface.

[0019] In an optional embodiment, there are multiple guide frames, at least one of which is provided with a peeling surface, there are multiple conveying rollers, at least two of which are opposed to each other and arranged with a gap between them, the laminated material strip is located in the gap between the upper and lower conveying rollers, and the guide frame is located at the conveying roller.

[0020] In an optional embodiment, the frame includes a plurality of horizontal beams and a plurality of longitudinal beams, and the horizontal beams and the longitudinal beams form a frame structure; the cutting and conveying mechanism is located on the output side of the laminating device, and the laminated material strip that has been laminated is conveyed to the cutting and conveying mechanism for cutting; at least a part of the cutting mechanism is movably set on the horizontal beam and moves along the extension direction of the horizontal beam, and the cutting mechanism is located above the cutting and conveying mechanism and can cut the laminated material strip on the cutting and conveying mechanism; the receiving mechanism can be arranged to move laterally and is located in the next process of the cutting and conveying mechanism. After the cutting mechanism cuts the laminated material strip, it conveys the cut label to the receiving mechanism.

[0021] In an optional embodiment, the cutting mechanism includes: a cutting base, which is movably arranged on a crossbeam; a cutting drive member, which is arranged at the bottom end of the cutting base, and the bottom end of the cutting drive member has a cutting head for cutting the laminated material strip; a transverse drive member, which is arranged on the crossbeam and is driven and connected to the cutting base to drive the cutting base and the cutting drive member to move laterally.

[0022] In an optional embodiment, the RFID electronic tag laminating and cutting integrated equipment also includes a material receiving device, the machine base includes a base body and a protective cover, the base body is provided with a laminating device, a cutting device and a material receiving device, the protective cover is provided on the base body and covers the outside of the laminating device and the cutting device.

[0023] In an optional embodiment, the protective cover has an openable and closable safety door, which is located at the receiving device. The receiving device can receive, roll and transport the labels cut in the previous process to the outside of the equipment. The receiving device can be flipped over. When the safety door is opened, the receiving device flips out of the protective cover.

[0024] In an optional embodiment, the machine base also includes a fixed shaft, and the material receiving device includes: a material receiving base, which is rotatably set at the fixed shaft; a flipping drive component, which is connected to the material receiving base and drives the material receiving base to flip; a material receiving hub, which is rotatably set on the material receiving base, and when the material receiving base flips, the material receiving hub extends out of the protective cover; a material receiving drive component, which is drivingly connected to the material receiving hub and drives the material receiving hub to rotate.

[0025] By applying the technical solution of the present application, the laminating device and the cutting device are optimized, wherein the laminating device feeds the chips and the adhesive through the chip feeding mechanism and the adhesive feeding mechanism, which can facilitate manual loading during loading, greatly improving the loading efficiency, and thus improving the processing efficiency. The laminating device laminates the chips and the adhesive, and the laminated laminated material strip is transported to the cutting device for cutting. The cutting device realizes cutting and placement through the cutting conveying mechanism, the cutting mechanism and the receiving mechanism, thereby further improving the processing efficiency. The above-mentioned setting method optimizes the RFID electronic tag laminating and cutting integrated device from two aspects: the laminating device and the cutting device, so that the RFID electronic tag laminating and cutting integrated device can realize continuous and efficient processing, thereby improving the processing efficiency. At the same time, since the present embodiment integrates lamination and cutting into an integrated device, the RFID electronic tag laminating and cutting integrated device can realize the processing of both lamination and cutting, and reduces the overall cost of the device on the basis of meeting the processing requirements compared to two separate devices. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] The drawings that constitute part of this application are used to provide a further understanding of this application. The illustrative embodiments of this application and their descriptions are used to explain this application and do not constitute an improper limitation on this application. In the drawings:

[0027] FIG1 shows a front view of the RFID electronic tag laminating and cutting integrated device of the present application;

[0028] FIG2 shows an axonometric view of FIG1 ;

[0029] FIG3 shows a schematic structural diagram of FIG1 without the base;

[0030] FIG4 shows a schematic structural diagram of the lamination device in FIG1 ;

[0031] FIG5 shows a schematic structural diagram of the rotating mechanism in FIG4 ;

[0032] FIG6 shows a schematic structural diagram of the transition device in FIG1 ;

[0033] FIG7 shows a schematic structural diagram of the guide frame in FIG6 ;

[0034] FIG8 shows an axonometric view of FIG7 ;

[0035] FIG9 shows a schematic structural diagram of the cutting device and the material receiving device in FIG1 ;

[0036] FIG10 shows a schematic structural diagram of the cooperation between the frame and the cutting mechanism in FIG9 ;

[0037] FIG11 shows a schematic structural diagram of the material collecting device in FIG9 .

[0038] The above drawings include the following reference numerals:

[0039] 10. Machine base; 11. Base body; 12. Protective cover; 121. Safety door; 20. Laminating device; 21. Vertical plate; 22. Chip feeding mechanism; 23. Glue feeding mechanism; 24. Rotating mechanism; 241. Bracket; 242. Rotating swing arm; 243. Rotating drive member; 244. Material taking drive member; 25. Laminating mechanism; 30. Transition device; 31. Guide frame; 311. Peeling surface; 32. Conveyor roller; 33. Film collecting reel; 40. Cutting device; 41. Frame; 42. Cutting and conveying mechanism; 43. Cutting mechanism; 431. Cutting base; 432. Cutting drive member; 433. Transverse movement drive member; 44. Material receiving mechanism; 50. Material receiving device; 51. Material receiving base; 52. Flipping drive member; 53. Material receiving hub; 54. Material receiving drive member. DETAILED DESCRIPTION

[0040] It should be noted that, in the absence of conflict, the embodiments and features of the embodiments in this application can be combined with each other. The present application will be described in detail below with reference to the accompanying drawings and in combination with the embodiments.

[0041] In order to solve the problem that electronic tag laminating equipment and cutting equipment in the prior art cannot achieve efficient processing, the present application provides an RFID electronic tag laminating and cutting integrated equipment.

[0042] As shown in Figures 1 to 11, an RFID electronic tag laminating and cutting integrated device includes a machine base 10, and a laminating device 20 and a cutting device 40 arranged on the machine base 10 and connected in sequence according to the processing order, wherein the laminating device 20 can laminate the chip and the adhesive to form a laminated material strip with a label, the laminating device 20 includes a vertical plate 21, a chip feeding mechanism 22 and an adhesive feeding mechanism 23, and the chip feeding mechanism 22 and the adhesive feeding mechanism 23 are installed on the vertical plate 21; the cutting device 40 can cut the laminated material strip, and the cutting device 40 includes a frame 41, a cutting and conveying mechanism 42, a cutting mechanism 43 and a material receiving mechanism 44.

[0043] This embodiment optimizes the laminating device 20 and the cutting device 40, wherein the laminating device 20 feeds the chips and the adhesive through the chip feeding mechanism 22 and the adhesive feeding mechanism 23, which facilitates manual loading during loading, greatly improving the loading efficiency and thus improving the processing efficiency. The laminating device 20 laminates the chips and the adhesive, and the laminated laminated material is transported to the cutting device 40 for cutting. The cutting device cuts and places the laminated material through the cutting conveying mechanism 42, the cutting mechanism 43 and the receiving mechanism 44, thereby further improving the processing efficiency. The above-mentioned setting method optimizes the RFID electronic tag laminating and cutting integrated device from two aspects: the laminating device 20 and the cutting device 40, so that the RFID electronic tag laminating and cutting integrated device can achieve continuous and efficient processing, thereby improving the processing efficiency. At the same time, since this embodiment integrates lamination and cutting into an integrated device, the RFID electronic tag laminating and cutting integrated device can achieve both lamination and cutting processing, which reduces the overall cost of the device while meeting the processing requirements compared to two separate devices.

[0044] In this embodiment, the vertical plate 21 of the laminating device 20 is in a vertical form, and the chip feeding mechanism 22 and the glue feeding mechanism 23 are located on the same side of the vertical plate 21. In this way, manual loading can be performed on the same side during loading, without having to change positions back and forth between the two sides, thereby facilitating loading and greatly improving loading efficiency, thereby improving processing efficiency.

[0045] In addition to the laminating device 20 and the cutting device 40, the RFID electronic tag laminating and cutting integrated equipment of this embodiment also includes a transition device 30 and a material receiving device 50. According to the processing sequence, the laminating device 20, the transition device 30, the cutting device 40 and the material receiving device 50 are arranged in sequence.

[0046] This embodiment optimizes the laminating device 20 and the transition device 30, wherein the laminating device 20 sets the chip feeding mechanism 22 and the adhesive feeding mechanism 23 on the same side. In this way, a peeling surface 311 is also provided on the guide frame 31 of the transition device 30. The above-mentioned arrangement optimizes the RFID electronic tag laminating and cutting integrated device from the two aspects of the laminating device 20 and the transition device 30, so that the RFID electronic tag laminating and cutting integrated device can achieve continuous and efficient processing, thereby improving processing efficiency. At the same time, this embodiment also integrates lamination and cutting into an integrated device, so that the RFID electronic tag laminating and cutting integrated device can achieve both lamination and cutting processing. Compared with two separate devices, the overall cost of the device is reduced while meeting the processing requirements.

[0047] It should be noted that the basic structure of the laminating device 20, transition device 30, cutting device 40 and material receiving device 50 in this embodiment, that is, the structure for realizing its function can adopt the existing technical solution. Therefore, this embodiment mainly provides a specific description of the improved and optimized structure. Other structures that are not specifically described can refer to the existing technical solution and will not be repeated.

[0048] As shown in Figure 4, the laminating device 20 of this embodiment mainly includes a chip feeding mechanism 22, a glue feeding mechanism 23, a rotating mechanism 24, a laminating mechanism 25, etc. Its working process is: first, the chip feeding mechanism 22 accurately positions the RFID chip in the carrier and peels off the packaging film above it, and then the rotating mechanism 24 grabs the positioned chip and rotates it 180° and places it on the lower layer of glue of the glue feeding mechanism 23, and then the laminating mechanism 25 wraps and laminates the label with the upper and lower layers of glue.

[0049] Specifically, the chip feeding mechanism 22 of this embodiment includes components such as a film tearing reel, a chip reel, a feed motor, a chip pick-up platform, a tape shaft, and a chip positioning sensor. The feed motor drives the tape shaft to rotate, which pulls the chip reel to unwind. During the unwinding process, the film tearing reel tears off the upper packaging film of the reel. The chip tape, stripped of the packaging film, is then positioned by the chip positioning sensor on the chip pick-up platform, accurately positioning the chips on the chip reel. The adhesive feeding mechanism 23 of this embodiment includes an adhesive reel and a conveyor belt. The adhesive on the adhesive reel is transported on the conveyor belt by the conveyor belt's power and delivered to the base of the rotating mechanism 24 and the laminating mechanism 25.

[0050] As shown in Figure 5, the rotating mechanism 24 of this embodiment includes a bracket 241, a rotating swing arm 242, a rotating drive member 243 and a material picking drive member 244. The bracket 241 includes a longitudinal section and a transverse section connected in sequence. The longitudinal section is upright on the machine base 10, and the transverse section extends transversely and is connected to the top of the longitudinal section, so that the bracket 241 forms an inverted L-shaped structure. The reason for adopting this setting method is that after the chip feeding mechanism 22 and the glue feeding mechanism 23 are set on the same side of the vertical plate 21, the installation of the rotating mechanism 24 is limited and cannot be installed on the table. Therefore, a separate bracket 241 is set, and the bracket 241 can be supported and stood on the machine base 10, so that the bracket 241 can install and support the components of the laminating device 20, so that the material picking head can still perform operations such as picking. The rotating swing arm 242 is rotatably arranged longitudinally on the transverse section and is located above the chip feeding mechanism 22 and the glue feeding mechanism 23. The rotating driving member 243 can be a motor or other components, which is fixedly mounted on the bracket 241, and the output end is connected to the rotating swing arm 242, thereby driving the rotating swing arm 242 to rotate. The material picking drive 244 can be a cylinder or other components, which is arranged on the rotating swing arm 242 and rotates with the rotating swing arm 242. The bottom end of the material picking drive 244 has a material picking head for picking up materials. The material picking drive 244 can be one or more as needed. In order to improve efficiency, this embodiment is provided with multiple material picking drive members 244, specifically two, and the two material picking drive members 244 are respectively located at the two ends of the rotating swing arm 242, and the rotation axis of the rotating swing arm 242 is located in the middle. In this way, when the rotating swing arm 242 rotates, the material picking drive members 244 at both ends can respectively pick up the chips, thereby realizing the picking of multiple chips, thereby improving processing efficiency.

[0051] The laminating mechanism 25 of this embodiment is disposed on the adhesive feeding mechanism 23 and is capable of laminating the chips delivered to the adhesive feeding mechanism 23 with the adhesive. The laminating device 20 of this embodiment includes components such as an adhesive pressure roller, a laminating cylinder, a laminating power roller, a laminating motor, and an adhesive guide roller. The operation process is as follows: the laminating motor drives the laminating power roller to rotate, the laminating cylinder actuates, the adhesive pressure roller moves downward for lamination, and the laminating power roller drives the adhesive pressure roller to rotate, thereby laminating two layers of adhesive.

[0052] The transition device 30 of this embodiment includes a guide frame 31 and a conveyor roller 32. The guide frame 31 has a peeling surface 311. The laminated material strip, in which the chip and the adhesive are laminated together, can be peeled off the film on the surface of the laminated material strip with the label through the transition device 30. During the peeling process, the peeling surface 311 can guide the peeled film, so that the film moves in the direction of the peeling surface 311 after peeling and is collected. This prevents the film from being pulled forward by the conveyor roller 32 and being drawn into the conveyor roller 32, causing the film to tear or even break. This allows for continuous film collection, reduces the time required for manual rewinding of the film, and thus improves processing efficiency.

[0053] As shown in Figures 6 to 8, in this embodiment, the peeling surface 311 is located on the side of the guide frame 31 that faces the input end of the transition device 30. Furthermore, along the conveying direction of the laminated web, the peeling surface 311 is inclined toward the laminated web. Specifically, in the conveying direction from left to right in Figures 6 and 7, the peeling surface 311 on the upper guide frame 31 is inclined toward the lower right. Thus, along the conveying direction of the laminated web, the film is peeled at an angle to the left, thereby preventing the film from being dragged into the conveyor roller 32 and causing tearing.

[0054] In this embodiment, the transition device 30 also includes a film collecting reel 33, which is used to wind the film. That is, when in use, the operator peels off the head end of the film in advance and collects it on the film collecting reel 33. In this way, when the film collecting reel 33 rotates, it can drive the film and the material strip to be peeled off, so that the peeled film moves along the peeling surface 311, and the film is collected at the same time.

[0055] In this embodiment, multiple guide frames 31 are provided to ensure stability during the transport of the laminated web by the transition device 30. The guide frames 31 are arranged along the transport direction of the laminated web. At least one of the guide frames 31 is provided with a peeling surface 311. Preferably, the guide frame 31 at the film peeling location is provided with a peeling surface 311. The other guide frames 31 may not be provided with a peeling surface 311. However, for ease of uniform processing, all guide frames 31 may be provided with a peeling surface 311.

[0056] The conveying rollers 32 of this embodiment are also multiple, with at least two conveying rollers 32 facing each other up and down and set with a gap, and the laminated material strip is located in the gap between the conveying rollers 32 set up above and below. The conveying rollers 32 of this embodiment are arranged in pairs, and the two conveying rollers 32 are aligned up and down, so that the two can play a clamping and stabilizing role on the laminated material strip, and at the same time, the laminated material strip can be conveyed as the conveying rollers 32 rotate. Due to the above-mentioned arrangement of the conveying rollers 32, the guide frame 31 is located at the conveying rollers 32, or more precisely, the guide frame 31 is located on the input side of the mounting frame where the conveying rollers 32 are located. In this way, the peeled film can be immediately guided by the peeling surface 311 and leave the laminated material strip, thereby ensuring the peeling effect. Of course, the specific arrangement of the guide frame 31 and the conveying rollers 32 is not limited to the above-mentioned arrangement of this embodiment, and other arrangement forms can also be adopted.

[0057] As shown in Figure 9, in this embodiment, the cutting device 40 includes a frame 41, a cutting and conveying mechanism 42, a cutting mechanism 43, and a material receiving mechanism 44. The frame 41 is the supporting portion, and the cutting mechanism 43 is mounted and connected to the frame 41. The cutting and conveying mechanism 42 is mounted on the machine base 10 and docks with the transition device 30 to convey the laminated material strip conveyed by the transition device 30 to the cutting and conveying mechanism 42, so that the cutting mechanism 43 can process it. The frame 41 includes multiple crossbeams and multiple longitudinal beams, which are interconnected to form a frame structure. The cutting and conveying mechanism 42, the cutting mechanism 43, and the material receiving mechanism 44 are all housed within the frame structure. At least a portion of the cutting mechanism 43 is movably mounted on the crossbeam and moves along the extension direction of the crossbeam. This makes the cutting mechanism 43 more stable and enables high-speed operation, thereby improving processing efficiency. The cutting mechanism 43 is located above the cutting and conveying mechanism 42 and is capable of cutting the laminated material strip on the cutting and conveying mechanism 42. The receiving mechanism 44 is arranged to be movable laterally and is located in the process downstream of the cutting and conveying mechanism 42. After the cutting mechanism 43 cuts the laminated material strip, it conveys the cut labels to the receiving mechanism 44.

[0058] This embodiment is equipped with a set of cutting and conveying mechanisms 42, two sets of receiving mechanisms 44, and two sets of cutting mechanisms 43, thereby achieving improved efficiency. The two sets of cutting mechanisms 43 are located above the cutting and conveying mechanisms 42, and are arranged horizontally apart. The cutting and conveying mechanisms 42 are located below the gap between the two sets of cutting mechanisms 43. The two sets of receiving mechanisms 44 are located on either side of the cutting and conveying mechanisms 42, respectively, so that they can correspond to the two sets of cutting mechanisms 43 and achieve simultaneous cutting processing. Its working process is as follows: the two sets of cutting mechanisms 43 move simultaneously, cutting the labels on the conveyor line of the middle cutting and conveying mechanism 42 and placing them on the mounting base plate platforms of the receiving mechanisms 44 on both sides. The cut labels are then collected and rolled by the subsequent receiving device 50.

[0059] The cutting and conveying mechanism 42 in this embodiment includes a visual camera, a mounting reference plate, a conveyor belt, a conveyor belt motor, a label positioning sensor, and a tensioning pulley. Its function is to use the conveyor belt motor to drive the belt, transporting the electronic labels on the conveyor belt to the designated location. During this process, the visual camera identifies and locates the electronic labels. Once located, the cutting mechanism 43 cuts the labels and places them on the mounting reference plate.

[0060] The material receiving mechanism 44 of this embodiment includes a transverse guide rail, a label positioning sensor, a mounting reference plate, a tension wheel, etc. Its main function is that the cutting mechanism 43 cuts the label and places it on the mounting reference plate of the mechanism.

[0061] As shown in FIG10 , the cutting mechanism 43 of this embodiment includes a cutting base 431, a cutting drive 432, and a transverse drive 433. The cutting base 431 is the main body, which is movably arranged on the crossbeam and can move along the length direction of the crossbeam. The length direction of the crossbeam is the same as the arrangement direction of the cutting conveying mechanism 42 and the material receiving mechanism 44. As a result, the cutting mechanism 43 can switch positions between the cutting conveying mechanism 42 and the material receiving mechanism 44 when moving along the length direction of the crossbeam. The cutting drive 432 can be a cylinder or other component. It is arranged at the bottom end of the cutting base 431 and moves synchronously with the cutting base 431. The bottom end of the cutting drive 432 has a cutting head for cutting the laminated material strip, thereby achieving cutting of the laminated material strip. The transverse driving member 433 can be an electric cylinder or other components, which is set on the crossbeam and is connected to the cutting base 431, thereby driving the cutting base 431 and the cutting driving member 432 to move horizontally, so as to place the cut chips in sequence on the isolation film of the mounting reference plate.

[0062] As shown in Figures 1 and 2, in this embodiment, the machine base 10 includes a base body 11 and a protective cover 12. The base body 11 is the main part, and a laminating device 20, a transition device 30, a cutting device 40 and a material receiving device 50 are provided on the base body 11, and the protective cover 12 is provided on the base body 11. Naturally, the protective cover 12 also covers the outside of the laminating device 20, the transition device 30 and the cutting device 40, thereby making the overall equipment integrated.

[0063] The material receiving device 50 of this embodiment is not always kept in the protective cover 12 because it needs to unload the material roll when the material receiving reaches a certain level. Specifically, the end of the protective cover 12, that is, the end along the conveying direction of the laminated material strip, has an openable and closable safety door 121. The safety door 121 is located at the material receiving device 50, and the material receiving device 50 adopts a reversible setting. The material receiving device 50 can receive, roll, and convey the labels cut in the previous process to the outside of the equipment. In this way, when the material is normally received, the safety door 121 is closed, and the material receiving device 50 does not flip and is located in the protective cover 12, so that the isolation film with the labels placed on it can be rolled into a roll normally; and when the material receiving reaches a certain level, the safety door 121 is opened, and the material receiving device 50 is activated and flipped out of the protective cover 12, so that the material roll on the material receiving device 50 can be unloaded. In this way, after production is completed, the material is automatically conveyed to the outside of the equipment, which greatly reduces the frequent opening and closing of the equipment door and the manual operation time when personnel collect materials, thereby improving the safety of personnel operation and the intelligence of the equipment.

[0064] In this embodiment, a fixed base is provided on the machine base 10, and a fixed shaft is mounted on the fixed base, so that the material receiving device 50 rotates around the fixed shaft. As shown in Figure 11, the material receiving device 50 includes a material receiving base 51, a flip drive 52, a material receiving hub 53, and a material receiving drive 54. The material receiving base 51 is the main body, and the fixed shaft is passed through the material receiving base 51, so that the material receiving base 51 is rotatably arranged at the fixed shaft. The flip drive 52 can be a component such as a cylinder, one end of which is fixed to the machine base 10 and the other end is connected to the flip shaft on the material receiving base 51. In this way, when the flip drive 52 is in motion, it can drive the material receiving base 51 to move by pushing the flip shaft to achieve the effect of driving the material receiving base 51 to flip. The receiving hub 53 is rotatably mounted on the receiving base 51 and is used to collect the material rolls. In this embodiment, the receiving hub 53 is mounted at the top of the receiving base 51, with the fixed shaft located at the bottom of the receiving base 51. This allows the receiving hub 53, located at the top, to extend out of the protective cover 12 when the receiving base 51 is turned over, allowing personnel or subsequent equipment to unload the material. The receiving drive 54, which can be a motor or other component, is connected to the receiving hub 53 and drives the receiving hub 53 to rotate, thereby achieving the rotating receiving of the receiving hub 53.

[0065] It should be noted that, in the above embodiments, a plurality refers to at least two.

[0066] From the above description, it can be seen that the above embodiments of the present application achieve the following technical effects:

[0067] 1. Solve the problem that electronic label laminating equipment and cutting equipment in the existing technology cannot achieve efficient processing;

[0068] 2. Manual loading can be performed on the same side of the laminating device, eliminating the need to change positions back and forth between the two sides, making loading more convenient and greatly improving loading efficiency, thereby improving processing efficiency;

[0069] 3. Prevent the film from being drawn into the conveyor roller and being torn or even broken by the conveyor roller, so that the film collection can be continuous, reducing the time of manual rewinding of the film, thereby improving the processing efficiency;

[0070] 4. The RFID electronic tag lamination and cutting integrated equipment is optimized so that the RFID electronic tag lamination and cutting integrated equipment can achieve continuous and efficient processing, thereby improving processing efficiency;

[0071] 5. The RFID electronic tag laminating and cutting integrated equipment can realize both lamination and cutting processing. Compared with two separate equipment, it can reduce the overall cost of the equipment while meeting the processing requirements;

[0072] 6. After the equipment is completed, the materials are automatically sent to the outside of the equipment, which greatly reduces the frequent opening and closing of equipment doors and manual operation time when personnel collect materials, and improves the safety of personnel operation and the intelligence of the equipment.

[0073] Obviously, the embodiments described above are only part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts should fall within the scope of protection of this application.

[0074] The above description is merely a preferred embodiment of the present application and is not intended to limit the present application. Various modifications and variations are possible for those skilled in the art. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present application shall be included within the scope of protection of the present application.

Claims

1. An RFID electronic tag lamination and cutting integrated device, characterized in that, It includes a machine base (10), and a lamination device (20) and a cutting device (40) which are arranged on the machine base (10) and are sequentially connected in the processing order. Among them, the lamination device (20) can laminate a chip and a glue material to form a laminated tape with a label. The lamination device (20) includes a vertical plate (21), a chip feeding mechanism (22) and a glue material feeding mechanism (23). The chip feeding mechanism (22) and the glue material feeding mechanism (23) are installed on the vertical plate (21); the cutting device (40) can cut the laminated tape. The cutting device (40) includes a frame (41), a cutting and conveying mechanism (42), a cutting mechanism (43) and a material receiving mechanism (44).

2. The RFID electronic tag lamination and cutting integrated device according to claim 1, wherein The lamination device (20) further includes a rotating mechanism (24). The rotating mechanism (24) includes: a bracket (241). The bracket (241) includes a longitudinal section and a transverse section that are sequentially connected. The longitudinal section is vertically arranged on the machine base (10), and the transverse section extends horizontally and is connected to the top end of the longitudinal section; a rotating swing arm (242). The rotating swing arm (242) is rotatably arranged on the transverse section and is located above the chip feeding mechanism (22) and the glue material feeding mechanism (23); a rotation driving member (243). The rotation driving member (243) is connected to the bracket (241) and is drivingly connected to the rotating swing arm (242) to drive the rotating swing arm (242) to rotate; a material taking driving member (244). The material taking driving member (244) is arranged on the rotating swing arm (242) and rotates with the rotating swing arm (242). The bottom end of the material taking driving member (244) has a material taking head for taking materials.

3. The RFID electronic tag laminating and cutting integrated device according to claim 1, characterized in that, The lamination device (20) further includes a lamination mechanism (25). The lamination mechanism (25) is arranged on the glue material feeding mechanism (23) and can laminate the chip conveyed to the glue material feeding mechanism (23) with the glue material together.

4. The RFID electronic tag lamination and cutting integrated device according to claim 3, characterized in that The RFID electronic tag lamination and cutting integrated device further includes a transition device (30). The transition device (30) includes a guiding frame (31) and conveying rollers (32). The guiding frame (31) has a peeling surface (311). The laminated tape with the chip and the glue material laminated together can peel off the film on the surface of the laminated tape with the label through the transition device (30). Among them, the peeling surface (311) is located on one side of the guiding frame (31) facing the input end of the transition device (30), and along the conveying direction of the laminated tape, the peeling surface (311) is inclined towards the laminated tape.

5. The RFID electronic tag lamination and cutting integrated device according to claim 4, wherein The transition device (30) further includes a film collecting reel (33). The film is wound and collected on the film collecting reel (33) and moves along the peeling surface (311) driven by the film collecting reel (33).

6. The RFID electronic tag laminating and cutting integrated device according to claim 4, wherein The guide frames (31) are multiple, and at least one of the guide frames (31) is provided with the peeling surface (311). The conveying rollers (32) are multiple, and at least two of the conveying rollers (32) are arranged vertically opposite to each other with a gap therebetween. The laminated tape is located at the gap between the vertically arranged conveying rollers (32), and the guide frames (31) are located at the position of the conveying rollers (32).

7. The RFID electronic tag laminating and cutting integrated device according to claim 1, characterized in that The frame body (41) includes a plurality of cross beams and a plurality of longitudinal beams, and the cross beams and the longitudinal beams form a frame structure; the cutting and conveying mechanism (42) is located on the output side of the laminating device (20), and the laminated tape after lamination is conveyed to the cutting and conveying mechanism (42) for cutting; at least a part of the cutting mechanism (43) is movably arranged on the cross beam and moves along the extending direction of the cross beam. The cutting mechanism (43) is located above the cutting and conveying mechanism (42) and can cut the laminated tape on the cutting and conveying mechanism (42); the material receiving mechanism (44) is arranged to be laterally movable and is located in the next process of the cutting and conveying mechanism (42). After the cutting mechanism (43) cuts the laminated tape, the cut label is conveyed to the material receiving mechanism (44).

8. The RFID electronic tag laminating and cutting integrated device according to claim 7, characterized in that, The cutting mechanism (43) includes: A cutting base body (431), and the cutting base body (431) is movably arranged on the cross beam; A cutting driving member (432), and the cutting driving member (432) is arranged at the bottom end of the cutting base body (431). The bottom end of the cutting driving member (432) has a cutting head for cutting the laminated tape; A lateral movement driving member (433), and the lateral movement driving member (433) is arranged on the cross beam and is drivingly connected to the cutting base body (431) to drive the cutting base body (431) and the cutting driving member (432) to move laterally.

9. The RFID electronic tag lamination and cutting integrated device according to claim 1, characterized in that, The RFID electronic tag laminating and cutting integrated device further includes a material receiving device (50). The machine base (10) includes a base body (11) and a protective cover (12). The laminating device (20), the cutting device (40) and the material receiving device (50) are arranged on the base body (11). The protective cover (12) covers the base body (11) and the outside of the laminating device (20) and the cutting device (40).

10. The RFID electronic tag laminating and cutting integrated device according to claim 9, characterized in that, The protective cover (12) has an openable and closable safety door (121). The safety door (121) is located at the position of the material receiving device (50). The material receiving device (50) can receive, roll up the label cut in the previous process and convey it to the outside of the device. The material receiving device (50) is arranged to be flipable. When the safety door (121) is opened, the material receiving device (50) flips out of the protective cover (12).

11. The RFID electronic tag laminating and cutting integrated device according to claim 10, characterized in that, The machine base (10) further includes a fixed shaft, and the material receiving device (50) includes: A material receiving base body (51), and the material receiving base body (51) is rotatably arranged at the fixed shaft; A flipping drive member (52), the flipping drive member (52) is connected to the material receiving base body (51) and drives the material receiving base body (51) to flip; A material receiving hub (53), the material receiving hub (53) is rotatably arranged on the material receiving base body (51), when the material receiving base body (51) flips, the material receiving hub (53) extends out of the protective cover (12); A material receiving drive member (54), the material receiving drive member (54) is drivingly connected to the material receiving hub (53) and drives the material receiving hub (53) to rotate.

Citation Information

Patent Citations

  • RFID electronic tag laminating and cutting integrated equipment

    CN222042151U

  • Electronic tag cutting apparatus

    CN107775726A

  • Cutting and collecting unit for cutting equipment and cutting equipment

    CN114147780A

  • Cutting device

    CN116851544A

  • Electronic tags cuts and snatchs mechanism and cutting tool

    CN207432315U