Marking system of hard card electronic tag
By designing a marking system for hard card electronic tags and adopting a laser marking machine and an automated stacking mechanism, the problems of low efficiency and high error rate of manual stacking were solved, and efficient automated production was achieved.
Patent Information
- Application Number
- CN202520160952.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-23
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-01-23
AI Technical Summary
In the current production process of hard card electronic tags, manual stacking is labor-intensive, inefficient, and prone to errors, making it difficult to achieve mechanization and automation.
A marking system for hard card electronic tags was designed, including a laser marking machine, a buffer stacking bin, a finished product stacking bin, an ejection mechanism, an insertion mechanism, a lifting mechanism, and a locking tongue device, to realize the automated stacking and sequential marking of hard card electronic tags.
It improves the production efficiency of hard card electronic tags, reduces the error rate, and realizes the mechanized sequential stacking and marking process.
Smart Images

Figure CN223734107U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to electronic tag processing technical field, and specifically is hard card electronic tag's marking system. BACKGROUND
[0002] Electronic tag is also called radio frequency tag, and its English name is radio frequency identification, and is abbreviated as RFID. Electronic tag has wide application in production, storage, logistics and other links and is used for identifying the identity information of products or goods.
[0003] Electronic tag includes tag (TAG) and antenna, in order to form protection and / or improve the service life of electronic tag, some types of products will be packaged in plastic shell (plastic shell) in the tag and antenna, and the electronic tag is called hard card electronic tag in the industry. These hard card electronic tags need to use laser engraving equipment (laser engraving machine) to engrave one or more of two-dimensional code, bar code, digital code, logo and other identification information on its plastic shell in the production process, to increase the identification mode of the tag.
[0004] In the automatic control process, the electric digital signal is the key input signal, and the existing industrial control technology can automatically detect and judge through the corresponding digital signal.
[0005] The identification code of laser engraving is generated according to certain coding rules. The tag engraved by the laser engraving machine needs to be placed in order, classified and then used for subsequent packaging. When manually operated, the labor intensity is high, the efficiency is low, and errors are easy to occur. UTILITY MODEL CONTENT
[0006] The utility model aims at providing hard card electronic tag's marking system, which is used for carrying out the stacking work mechanically in the hard card electronic tag marking process, replacing manual stacking and improving production efficiency.
[0007] The utility model solves the technical problems by adopting the following technical scheme:
[0008] The marking system of hard card electronic tag includes a laser marking machine, the laser marking machine includes a laser head, a marking station is arranged below the laser head, and a buffer stacking bin, a finished product stacking bin and a jacking mechanism are further included. The buffer stacking bin and the finished product stacking bin can be used for stacking hard card electronic tags respectively.
[0009] The bottom of the buffer stacking bin is provided with a push-out port, and the bottom of the finished product stacking bin is provided with a push-in port. The push-in port and the push-out port are respectively directed to the marking station.
[0010] The buffer storage rack is provided with a pushing-out mechanism, which is used to push the electronic tag of the hard card located at the bottom of the buffer storage rack to the marking station through the push-out port.
[0011] The finished product storage rack is provided with a pushing-in mechanism, which is used to push the electronic tag of the hard card located at the marking station to the bottom of the finished product storage rack through the push-in port.
[0012] The jacking mechanism comprises a jacking block and a jacking block driving device, and the jacking block is arranged at the bottom of the finished product storage rack and is used to jack the electronic tag of the hard card pushed by the marking station.
[0013] The buffer storage rack is provided with a lifting mechanism, which comprises two oppositely arranged lock tongue devices, and each lock tongue device comprises a lock tongue head.
[0014] The above structure of the utility model is beneficial to the sequential storage of the hard card electronic tags in the finished product storage rack during the sequential marking work, and compared with manual sorting, the error rate is low, and the production efficiency is also improved.
[0015] Further, the hard card electronic tag is a cuboid, and the buffer storage rack and the finished product storage rack each comprise two oppositely arranged guide frames, and each guide frame comprises a vertically arranged guide groove, which is a rectangular opening on the inner side.
[0016] The advantage is that it is beneficial to the marking work of the cuboid hard card electronic tag.
[0017] Further, the bottom of the buffer storage rack is provided with a detection switch, which is used to detect whether there is a hard card electronic tag in the buffer storage rack.
[0018] The advantage is that it is beneficial to feeding the digital signal of whether there is material to the industrial control device.
[0019] Further, the pushing-out mechanism comprises a push plate and a first air cylinder, and the first air cylinder is used to drive the push plate to reciprocate, the bottom of the buffer storage rack is provided with a socket, the socket and the push-out port are oppositely arranged, the push plate is slidingly connected in the socket, and the push plate can be pushed out of the push-out port.
[0020] During the movement of the push plate from the socket to the push-out port, the end of the push plate can push out the hard card electronic tag located at the bottom of the buffer storage rack.
[0021] The advantage is that it is beneficial to smoothly push the hard card electronic tag out of the buffer storage rack.
[0022] Further, the pushing mechanism comprises a second cylinder and a pushing block, the second cylinder is used for driving the pushing block to move back and forth, and the pushing block can be used for pushing the hard card electronic tag into the bottom of the finished product storage bin through the pushing opening.
[0023] The advantage is that the hard card electronic tag is smoothly pushed into the pushing opening.
[0024] Further, the buffer storage bin and the finished product storage bin are carried on the operation platform, the operation platform is provided with a lifting opening, the lifting opening is communicated with the bottom of the finished product storage bin, and the jacking block is slidingly connected in the lifting opening.
[0025] The advantage is that the jacking block is arranged at a position which does not affect the pushing of the hard card electronic tag from the pushing opening.
[0026] Further, the operation platform is provided with a limiting guide, the limiting guide is used for limiting the hard card electronic tag in marking, and the limiting guide is used for guiding the movement of the hard card electronic tag on the operation platform.
[0027] The advantage is that the marking position is accurate, and the hard card electronic tag is accurately pushed.
[0028] Further, the locking tongue device comprises an upper segment, a lower segment and an elastic segment, the locking tongue head is arranged on the upper segment, the elastic segment is connected between the upper segment and the lower segment, and the upper segment and the lower segment are connected on the finished product storage bin respectively.
[0029] The advantage is that the upper segment and the lower segment are inelastic, especially the upper segment, the stable pulling force of which is beneficial to stably bear the weight of the stacked hard card electronic tags; when the hard card electronic tag below the locking tongue head is pushed upward, the elastic segment is elastically deformed, thereby facilitating the smooth upward movement of the hard card electronic tag; when the hard card electronic tag moves above the locking tongue head, the pulling force generated by the elastic segment rebounds the locking tongue head. BRIEF DESCRIPTION OF DRAWINGS
[0030] Figure 1 It is a perspective view of the embodiment one of the utility model;
[0031] Figure 2 It is a top view of the embodiment one of the utility model which hides the laser marking machine;
[0032] Figure 3 It is a front view of the embodiment one of the utility model; Figure 2
[0033] Figure 4 It is a stacking view of the finished product storage bin in the embodiment one of the utility model;
[0034] Figure 5 It is a perspective view of the jacking mechanism in the embodiment one of the utility model;
[0035] Figure 6 This is a schematic diagram of the locking tongue device in Embodiment 2;
[0036] In the diagram: 1 Laser head, 2 Working platform, 21 Marking station, 3 Buffer stacking bin, 31 Push-out port, 32 Guide frame, 33 Guide groove, 34 Detection switch, 35 Push plate component, 36 First cylinder, 4 Finished product stacking bin, 41 Push-in port, 42 Lifting block, 43 Lifting block drive device, 44 Second cylinder, 45 Push block, 5 Locking tongue, 51 Upper section, 52 Lower section, 53 Elastic section, 54 Spring plate, 55 Mounting part, 6 Limiting guide component, 7 Hard card electronic tag. Detailed Implementation
[0037] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. All other embodiments obtained by those skilled in the art based on the embodiments of this utility model without creative effort are within the scope of protection of this utility model.
[0038] Implementation Method 1:
[0039] like Figures 1 to 3 As shown, the marking system for hard card electronic tags includes a laser marking machine, which includes a laser head 1 and a marking station 21 located below the laser head 1. It also includes a buffer stacking bin 3, a finished product stacking bin 4, and a lifting mechanism. The buffer stacking bin 3 and the finished product stacking bin 4 are used to stack hard card electronic tags. The bottom of the buffer stacking bin 3 has an ejection port 31, and the bottom of the finished product stacking bin 4 has a push-in port 41. The push-in port 41 and the ejection port 31 face the marking station 21 respectively. The buffer stacking bin 3 and the finished product stacking bin 4 are mounted on the operating platform 2.
[0040] like Figures 1 to 4As shown, the hard card electronic tag 7 is cuboid, the buffer storage rack 3 and the finished product storage rack 4 each include two oppositely arranged guide frames 32, each guide frame 32 includes a vertically arranged guide slot 33, the guide slot 33 is rectangular with the inside open. Taking the placement of the cuboid-shaped hard card electronic tag 7 in the finished product storage rack 4 as an example to illustrate the placement of the cuboid-shaped hard card electronic tag 7 in the corresponding storage rack (buffer storage rack or finished product storage rack): the hard card electronic tag 7 of this shape is placed horizontally, one end is placed in the guide slot at this end, and the other end is placed in the guide slot 33 at the other end. The width of the guide slot matches the width of the hard card electronic tag of this model. When it is necessary to take out the stack of electronic tags from the buffer storage rack 3 or the finished product storage rack 4, the stored hard card electronic tags can be taken out from between the two guide frames of the buffer storage rack 3 or the finished product storage rack 4. This facilitates the taking / placing of the whole stack of hard card electronic tags. The bottom of the buffer storage rack 3 is provided with a detection switch 34, which is used to detect whether there is a hard card electronic tag in the buffer storage rack. The detection switch 34 is used to generate a corresponding digital signal according to the change of the material in the buffer storage rack 3, so as to facilitate the detection of whether the material needs to be replenished through the industrial control device.
[0041] As shown in Figures 1 to 3 , the buffer storage rack 3 is provided with a pushing mechanism, which is used to push the hard card electronic tag at the bottom of the buffer storage rack 3 to the marking station 21 through the push-out port 31. The pushing mechanism includes a push plate 35 and a first air cylinder 36, the first air cylinder 36 is used to drive the push plate 35 to reciprocate, and the first air cylinder 36 adopts a double-shaft model. The cylinder body of the first air cylinder 36 is fixedly connected to the working platform 2. The bottom of the buffer storage rack 3 is provided with a socket, the socket and the push-out port 31 are oppositely arranged, the push plate 35 is slidingly connected in the socket, and the push plate 35 can protrude out of the push-out port 31. During the movement of the push plate from the socket to the push-out port 31, the end of the push plate can push the hard card electronic tag at the bottom of the buffer storage rack 3 out.
[0042] As shown in Figure 1 and Figure 2 , the working platform is provided with a limiting guide 6, which is used to limit the hard card electronic tag during marking, and the limiting guide 6 is used to guide the movement of the hard card electronic tag on the working platform.
[0043] As shown in Figures 1 to 3As shown, the finished product storage bin 4 is provided with a pushing mechanism, which is used to push the hard card electronic label at the marking station 21 through the pushing opening 41 into the bottom of the finished product storage bin 4. The pushing mechanism includes a second air cylinder 44 and a pushing block 45, the second air cylinder 44 is used to drive the pushing block 45 to reciprocate, and the pushing block 45 can be used to push the hard card electronic label through the pushing opening 41 into the bottom of the finished product storage bin 4. The second air cylinder 44 adopts a double-shaft type, and the cylinder body of the second air cylinder 44 is fixedly connected to the operation platform 2. With the action direction of the telescopic action as the reference, the first air cylinder 36 and the second air cylinder 44 are arranged perpendicular to each other.
[0044] As shown in Figure 1 , Figure 2 , Figure 3 and Figure 5 , the jacking mechanism includes a jacking block 42 and a jacking block driving device 43. A vertically arranged double-shaft air cylinder is used as the jacking block driving device 43. The jacking block 42 is arranged at the bottom of the finished product storage bin 4, and is used to jack the hard card electronic label pushed by the marking station 21. The operation platform 2 is provided with a lifting opening, which is in communication with the bottom of the finished product storage bin 4, and the jacking block 42 is slidingly connected in the lifting opening.
[0045] As shown in Figures 1 to 4 , the buffer storage bin 3 is provided with a lifting mechanism, which includes two oppositely arranged lock tongue devices, the lock tongue device includes a lock tongue head 5, the lower side of the lock tongue head 5 is inclined, the upper side of the lock tongue head 5 is horizontal, and the lock tongue head 5 is higher than the pushing opening 41. The lock tongue device includes an upper segment 51, a lower segment 52 and an elastic segment 53, the lock tongue head 5 is arranged on the upper segment 51, the elastic segment 53 is connected between the upper segment 51 and the lower end, and the upper segment 51 and the lower segment 52 are respectively connected to the finished product storage bin 4.
[0046] As shown in Figures 1 to 4As shown, the working process of the hard card electronic tag using the laser marking of the utility model is as follows: placing the hard card electronic tag code to be marked in the buffer storage compartment 3→ the push-out mechanism pushes out the hard card electronic tag at the bottom of the buffer storage compartment 3 and pushes it to the marking station 21→ the laser head 1 marks the hard card electronic tag on the marking station 21→ the push-in mechanism pushes the marked hard card electronic tag to the bottom of the finished product storage compartment 4 through the push-in port 41; the pushed-in hard card electronic tag is below the lock tongue 5→ the lifting mechanism pushes the hard card electronic tag below the lock tongue 5 to above the lock tongue 5, and in the process of pushing, the hard card electronic tag contacts the lower inclined surface of the lock tongue 5, the pressure on the inclined surface generates a component force that makes the lock tongue 5 retract (retract to a position that does not affect the upward movement of the hard card electronic tag), when the hard card electronic tag moves to above the lock tongue 5, the lock tongue rebounds, and then the lock tongue device holds the hard card electronic tag stack in the finished product storage compartment 4, which does not affect the entry of the next hard card electronic tag. According to the above process, each hard card electronic tag is sequentially marked, and the above structure of the utility model is beneficial to the sequential storage of the sequentially marked hard card electronic tags in the finished product storage compartment 4, and compared with manual sorting, the error rate is low, and the production efficiency is also improved.
[0047] Embodiment two
[0048] Embodiment two is different from embodiment one in that the lock tongue device is different.
[0049] As Figure 6 shown, the finished product storage compartment 4 is provided with a hole position for sleeving and slidingly connecting the lock tongue 5 on the two guide frames, the lock tongue 5 is slidingly connected in the corresponding hole position, the outer side of the lock tongue is provided with a mounting portion 55, the mounting portion 55 is fixedly connected to the finished product storage compartment 4, a spring sheet 54 is arranged between the mounting portion 55 and the lock tongue 5, and the spring sheet 54 is used to make the lock tongue 5 have a rebounding tendency. The spring sheet 54 can also be replaced by a compression spring.
Claims
1. A marking system of a hard card electronic label, comprising a laser marker, the laser marker comprising a laser head, a marking station being arranged below the laser head, characterized in that, The application further comprises a buffer storage, a finished product storage and a jacking mechanism, wherein the buffer storage and the finished product storage are used for storing hard card electronic tags respectively; The bottom of the buffer storage is provided with a push-out port, and the bottom of the finished product storage is provided with a push-in port, wherein the push-in port and the push-out port are respectively directed to the marking station; The buffer storage is provided with a push-out mechanism, which is used for pushing a hard card electronic tag at the bottom of the buffer storage to the marking station through the push-out port; The finished product storage is provided with a push-in mechanism, which is used for pushing a hard card electronic tag at the marking station into the bottom of the finished product storage through the push-in port; The jacking mechanism comprises a jacking block and a jacking block driving device, wherein the jacking block is arranged at the bottom of the finished product storage and is used for jacking a hard card electronic tag pushed by the marking station; The buffer storage is provided with a lifting mechanism, which comprises two oppositely arranged lock tongue devices, wherein each lock tongue device comprises a lock tongue head, the lower side of the lock tongue head is inclined, the upper side of the lock tongue head is horizontal, the lock tongue head is higher than the push-in port, and the finished product storage is provided with a channel for recycling the lock tongue head; During the process of jacking the hard card electronic tag from below the head to above the lock tongue head, the head is first recycled and then popped out.
2. The hard card electronic label marking system according to claim 1, wherein The hard card electronic tag is in the shape of a cuboid, and the buffer storage and the finished product storage each comprise two oppositely arranged guide frames, each of which comprises a vertically arranged guide slot in the shape of a rectangle with an open inner side.
3. The system for marking a hard card electronic tag of claim 1, wherein, The bottom of the buffer storage is provided with a detection switch, which is used for detecting whether there is a hard card electronic tag in the buffer storage.
4. The system for marking a hard card electronic tag of claim 1, wherein, The push-out mechanism comprises a push plate and a first air cylinder, wherein the first air cylinder is used for driving the push plate to reciprocate, the bottom of the buffer storage is provided with a socket, the socket and the push-out port are oppositely arranged, the push plate is slidingly connected in the socket, and the push plate can be protruded from the push-out port; During the process of moving the push plate from the socket to the push-out port, the end of the push plate can push a hard card electronic tag at the bottom of the buffer storage.
5. The system for marking a hard card electronic tag of claim 1, wherein, The push-in mechanism comprises a second air cylinder and a push block, wherein the second air cylinder is used for driving the push block to reciprocate, and the push block can be used for pushing a hard card electronic tag into the bottom of the finished product storage through the push-in port.
6. The system for marking a hard card electronic tag of claim 1, wherein, The buffer storage and the finished product storage are mounted on a work platform, the work platform is provided with a lifting opening, the lifting opening is communicated with the bottom of the finished product storage, and the jacking block is slidingly connected in the lifting opening.
7. The system for marking a hard card electronic tag of claim 6, wherein, The work platform is provided with a limiting guide, which is used for limiting a hard card electronic tag in marking and guiding the movement of the hard card electronic tag on the work platform.
8. The system for marking a hard card electronic tag of claim 1, wherein, The lock tongue device comprises an upper section, a lower section and an elastic section, the lock tongue head is arranged in the upper section, the elastic section is connected between the upper section and the lower section, and the upper section and the lower section are respectively connected to the finished product storage.