Hanging tag stacking device of hanging tablet label penetrating machine
By designing a multi-tag stacking hanging particle marking device, including a loading mechanism, a suction mechanism and a conveying mechanism, the problems of low efficiency and insufficient loading mechanism of the hanging particle marking machine in the prior art are solved, and efficient stacking and marking of hanging tags are achieved, which improves production efficiency and adapts to large-scale production needs.
Patent Information
- Application Number
- CN202422012538.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-20
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2034-08-20
AI Technical Summary
The existing particle marking machine is inefficient when handling multiple strings of tags, and cannot flexibly add loading mechanisms, resulting in the inability to meet the design requirements of multiple tags.
A multi-tag stacking hanging particle marking device is designed, including a feeding mechanism, a suction mechanism and a conveying mechanism. The feeding mechanism places tags of different shapes through the spacing adjustment components, the suction mechanism performs point-to-point suction through the rotating bracket and suction head, and the conveying mechanism achieves precise stacking of tags through the displacement main plate and the pressing parts.
It realizes efficient stacking and marking of hanging tags, improves production efficiency, adapts to large-scale production needs, reduces mechanical movement and stroke, and reduces wear and failure probability.
Smart Images

Figure CN222877301U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of production equipment, in particular to a hanging tag stacking device of a hanging particle labeling machine. Background Art
[0002] When existing products are sold, hangtags are often used to identify the brand or product information of the product. Therefore, putting hangtags on the products has become a very important and common process in the production process. The existing hangtags are often manually stacked and fixed on the products through hanging particles, which results in a large amount of manpower cost in the production process.
[0003] In order to realize the automation of the hanging grain labeling process, various automatic labeling machines have been launched on the market, but there are still many shortcomings. For example, the existing hanging grain labeling machines often place each hangtag one by one on the hanging grain threading station through the clamp, and wait until the stacking is completed before the hanging grain threading process is carried out. As a result, the entire hanging grain labeling machine can only process one string of hangtags at the same time, that is, it is necessary to wait for multiple hangtags to be stacked and the hanging grain stringing is completed before the next string of hangtags can be stacked, which greatly reduces the production efficiency. In addition, in order to ensure that the working stroke of the clamp is consistent with that of the feeding mechanism, each feeding mechanism is often arranged in a circle on the circumference of the labeling mechanism. This spatial layout will limit the number of feeding mechanisms, resulting in the inability to flexibly increase the feeding mechanisms when the number of hangtags is too large and exceeds the number of feeding mechanisms set on its circumference, and thus the inability to meet the threading needs of a large number of hangtags.
[0004] In order to solve the above problems, the applicant has designed a hanging particle labeling device for stacking multiple hanging tags. Utility Model Content
[0005] In order to solve the above technical problems, the embodiment of the utility model provides a tag stacking device for a hanging particle tagging machine, comprising: a feeding mechanism, a suction mechanism and a conveying mechanism;
[0006] A plurality of the feeding mechanisms are arranged in a vertical row on the side of the suction mechanism, and the suction mechanism includes: a driving component, a rotating bracket and a suction head, the driving component is transmission-connected to the rotating bracket, the suction head is arranged on the rotating bracket, and the suction head sucks the hanging tag on the feeding mechanism and places it on the conveying mechanism.
[0007] The conveying mechanism includes: a tag main board, a displacement main board, a clamping member and a positioning member that is lifted and lowered on the clamping member, the displacement main board is connected to one side of the tag main board and can move relative to the tag main board, thereby driving the tag to move to the bottom of the next suction head for stacking of the tag, the clamping member can be lifted and lowered on the displacement main board, a positioning pin is provided at the lower end of the positioning member, the clamping member can clamp the tag, and the positioning pin can cooperate with the rope threading hole on the tag to realize the positioning of the tag, and then the displacement main board can drive the tag to pass under multiple suction heads in turn, and cooperate with the clamping member and the positioning member to realize the stacking of the tag.
[0008] Among them, the feeding mechanism includes a material box bracket and a plurality of material boxes arranged on the material box bracket, the material box is provided with an optical axis, and the material box bracket is provided with an optical axis connector, so that the material box can be installed on the material box bracket through the cooperation between the optical axis and the optical axis connector.
[0009] Among them, the material box has relatively arranged clamping plates, a pushing rod is provided on the top of the clamping plate, a limiting plate is provided on the bottom of the clamping plate, and a limiting needle is provided on one side of the pushing rod. The limiting needle passes through the rope threading hole of the tag to position the tag.
[0010] Wherein, a spacing adjustment component is provided on the side of the material box, and the spacing adjustment component comprises: a spacing adjustment rod abutting against the side of the splint, a first crown wheel, a second crown wheel and a screw rod;
[0011] The spacing adjustment rod is connected to the first crown wheel through a screw rod, the first crown wheel is meshedly connected to the second crown wheel, and the screw rod is transmission-connected to the second crown wheel. When the screw rod is turned, the screw rod can be meshedly driven by the second crown wheel and the first crown wheel, thereby controlling the spacing adjustment rod to make the two splints approach or move away from each other.
[0012] Among them, the first lifting rod and the second lifting rod are connected below the clamping member and the positioning member, and the first lifting rod and the second lifting rod are controlled by a double-axis cylinder, and then the double-axis cylinder can independently control the lifting of the clamping member and the positioning member through the first lifting rod and the second lifting rod.
[0013] Wherein, a positioning pin hole corresponding to the position of the positioning pin is provided on the displacement main board, and the positioning pin can cooperate with the positioning pin hole and use the rope threading hole on the hanging tag to position the hanging tag.
[0014] The forming end of the conveying mechanism is also provided with a marking mechanism, which includes: a turntable, a pressing device and a hanging grain moving device. The turntable is provided with a plurality of workstations, and the workstations are provided with hanging grain insertion pins and hanging grain ejectors installed on the workstations through ejector lifting devices.
[0015] The pressing device and the hanging particle moving device are arranged on the side of the turntable. The pressing device can insert the hanging particle into the hanging particle insertion pin; the hanging particle moving device can move the hanging particle from the hanging particle insertion pin to above the hanging particle ejector pin. A rope threading groove is provided in the middle of the hanging particle ejector pin, and the hanging particle ejector pin can pass the connecting rope of the hanging particle through the rope threading groove through the rope threading hole of the hanging tag.
[0016] Wherein, a turntable drive motor is provided below the turntable, and the turntable drive motor can drive the turntable to rotate, thereby enabling the workstation to pass through the pressing device and the particle hanging moving device.
[0017] Among them, a clamping mechanism is provided between the conveying mechanism and the label-threading mechanism, and the clamping mechanism includes: a clamping guide rail, a clamping cylinder and a clamping jaw. The clamping jaw is movably installed on the clamping guide rail, and the clamping jaw cylinder can drive the clamping jaw to open and close, thereby clamping the stacked tags to the work station of the turntable.
[0018] The implementation of the utility model has the following beneficial effects: ① The feeding mechanism of this scheme cooperates with the spacing adjustment component to place hangtags of different shapes or even irregular shapes, and cooperates with the clamping parts and positioning parts to achieve accurate stacking of hangtags, avoiding the problem of mismatching hangtag threading holes after stacking. ② This scheme loads materials through the feeding mechanism and the suction mechanism, and places the hangtags on each feeding mechanism at the corresponding position of the conveying mechanism. Then, when the displacement mainboard moves and passes under the suction head, the stacking process of different hangtags can be completed. Compared with the traditional method of clamping and feeding the hangtags one by one, it saves stacking time, improves production efficiency, and is more adaptable to the needs of large-scale production. ③ This scheme uses the suction mechanism to point-to-point absorb the hangtags of the feeding mechanism. Compared with the traditional scheme of mechanical clamping arms clamping hangtags from various material box positions and stacking them, the mechanical action and stroke are less, reducing wear and the probability of failure. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 It is a schematic diagram of Embodiment 1 of the present utility model;
[0020] Figure 2 It is a schematic diagram of the feeding mechanism of Example 1 of the utility model;
[0021] Figure 3 It is a schematic diagram of a material box of Example 1 of the utility model;
[0022] Figure 4 It is a schematic diagram of the suction mechanism of Example 1 of the utility model;
[0023] Figure 5 It is a schematic diagram of the conveying mechanism of Example 1 of the utility model;
[0024] Figure 6 is a cross-sectional view of the conveying mechanism of Example 1 of the utility model;
[0025] Figure 7 It is a schematic diagram of stacking hangtags of Embodiment 1 of the present utility model;
[0026] Figure 8 It is a schematic diagram of the clamping mechanism of Example 1 of the utility model;
[0027] Fig. 9 It is a schematic diagram of the marking mechanism of Embodiment 2 of the present utility model;
[0028] Fig.10 It is a schematic diagram of a pellet hanging pin according to Embodiment 2 of the present utility model;
[0029] Fig.11 It is a schematic diagram of a pellet-hanging moving mechanism of Example 2 of the utility model;
[0030] Fig.12 It is a schematic diagram of the ejector lifting device of Example 2 of the utility model. DETAILED DESCRIPTION
[0031] In order to make the purpose, technical solutions and advantages of the utility model clearer, the utility model will be further described in detail below with reference to the accompanying drawings.
[0032] Example 1
[0033] like Figure 1 As shown, a tag stacking device of a hanging particle tagging machine includes: a feeding mechanism 1, a suction mechanism 2, and a conveying mechanism 3.
[0034] like Figure 2 As shown, the feeding structure includes: a material box holder 11 and a plurality of material boxes 12 arranged on the material box holder 11, the back of the material box 12 is provided with an optical axis 125, and the material box holder 11 is provided with an optical axis plug-in 111, and the material box 12 can be plugged into the optical axis plug-in 111 through the optical axis 125, so that the material box 12 can be disassembled and installed by simple plugging and unplugging, and then the number of the material boxes 12 can be flexibly increased or decreased according to the actual number of hang tags required to meet the needs of various hang tag quantities.
[0035] like Figure 3As shown in (A), the feeding mechanism 1 is arranged in a vertical row on the side of the suction mechanism 2 through a feeding mechanism bracket. The feeding mechanism 1 is two oppositely arranged clamping plates 121 arranged on the sliding rod of the feeding mechanism bracket. A pushing rod 122 is provided on the top of the clamping plate 121, and a limiting plate 123 is provided on the bottom of the clamping plate 121. A limiting needle 124 is provided on one side of the pushing rod 122. The limiting needle 124 can pass through the rope threading hole of the tag, and then through the clamping of the two clamping plates 121 and the cooperation of the limiting needle 124, the feeding mechanism 1 can position tags of different shapes or even irregular shapes.
[0036] like Figure 3 As shown in (B), a spacing adjustment component 15 is provided on the side of the feeding mechanism 1, and the spacing adjustment component 15 includes: a spacing adjustment rod 151, a first crown wheel 152, a second crown wheel 153 and a screw rod 154 that abut against the side of the splint, the spacing adjustment rod 151 is connected to the first crown wheel 152 through a screw rod, the first crown wheel 152 is meshed and connected with the second crown wheel 153, and the screw rod 154 is transmission-connected to the second crown wheel 153. When the screw rod 154 is turned, the meshing transmission screw rod of the second crown wheel 153 and the first crown wheel 152 can be used to control the spacing adjustment rod 151 to make the two splints 121 approach or move away from each other.
[0037] Of course, the spacing adjustment component 15 of the present solution is not limited to the above-mentioned setting method, and can also be replaced by a cross universal coupling or other conventional structures that can adjust the spacing. The present application is not limited to this.
[0038] It should be noted that the limiting plates 123 of the present embodiment are a number of baffles protruding from the bottom edge of the feeding mechanism, and the baffles can limit the hangtag, so that when the suction head 23 sucks the hangtag, it can overcome the obstruction of the baffles, so that the hangtag at the bottom position can be separated from the feeding mechanism 1 and transported to the conveying mechanism 3.
[0039] like Figure 4 As shown, the suction mechanism 2 includes: a driving component 21, a rotating bracket 22 and a suction head 23. The driving component 21 is connected to the rotating bracket 22 in a transmission manner. The suction head 23 is arranged on the rotating bracket 22 and corresponds to the position of the feeding mechanism 1. Then, the driving component can drive the rotating bracket to rotate 120° as a whole. At the same time, the suction head 23 can suck the hanging tag at the tail of the feeding mechanism 1 and place it on the conveying mechanism 3. When the conveying mechanism 3 transports the hanging tags to the positions of different suction heads 23 in turn, the hanging tags can be stacked in turn.
[0040] Specifically, the driving component 21 includes: a rotary driving motor 211, a first rotating wheel 212, a second rotating wheel 213 and a belt 214. The output shaft of the servo rotary motor 211 is connected to the first rotating wheel 212, and the second rotating wheel 213 is connected to the rotating shaft arranged inside the rotating bracket 22. The first rotating wheel 212 and the second rotating wheel 213 are connected to each other through the belt 214. When the rotary driving motor is working, the rotating bracket 22 can be linked through the first rotating wheel 212, the belt 214, and the second rotating wheel 213 in sequence, so that the suction head on the rotating bracket 22 makes a 120° reciprocating swing, and the suction head sucks the tag and places it on the conveying mechanism 3.
[0041] like Figure 5 As shown, the conveying mechanism 3 includes: a tag main board 31, a displacement main board 32, a clamping member 33 and a positioning member 34 which is lifted and lowered on the clamping member. The displacement main board 32 is connected to one side of the tag main board 31 and can move relative to the tag main board 31. The clamping member 33 can be lifted and lowered on the displacement main board 32. A positioning pin 341 is provided at the lower end of the positioning member 34. When the displacement main board 32 drives the tag to move, the clamping member 33 can clamp the tag. At the same time, the positioning pin 341 can cooperate with the rope threading hole on the tag to realize the positioning of the tag during the movement and stacking process.
[0042] like Figure 6 As shown, the clamping member 33 and the positioning member 34 are respectively connected to the first lifting rod 331 and the second lifting rod 332, the first lifting rod 331 is connected to the first lifting cylinder, and the second lifting cylinder 332 is connected to the second lifting cylinder, so that the first lifting cylinder can control the lifting of the clamping member 33 through the first lifting rod 331, and the second lifting cylinder can control the lifting of the positioning member 34 through the second lifting rod 332.
[0043] The clamping member 33 in this embodiment is provided with a through hole in the middle, and the positioning member 34 can be raised and lowered in the through hole. The first lifting cylinder and the second lifting cylinder can be controlled to control the first lifting rod 331 and the second lifting rod 332 respectively, so that the clamping member 33 and the positioning member 34 can be controlled to be raised and lowered separately.
[0044] It is important to add that Figure 4 , Figure 5 A positioning pin hole 321 is provided on the displacement main board 32 at a position corresponding to the positioning pin 341, so that the positioning pin 341 can pass through the rope threading hole of the tag and probe into the positioning pin hole 321, thereby completing the positioning of the tag.
[0045] Please combine Figure 1 to Figure 7It can be seen that when the suction mechanism 2 sucks the tag to the junction of the tag main board 31 and the displacement main board, the positioning member 34 descends successively to position the tag through the positioning pin, and then the clamping member 33 presses down and clamps, and the displacement main board 32 moves to the position of the next feeding mechanism 1 and the suction head 23. At this time, the clamping member 33 and the positioning member 34 rise and are in an open state. Then the suction head 23 at this position stacks another tag in the feeding mechanism 1, and then the clamping member 33 and the positioning member 34 descend again to complete the positioning, and reciprocate in sequence until all the tags are stacked and sent to the end of the conveying mechanism 3, and at the same time are transferred to the marking mechanism by the subsequent clamping claw mechanism 5.
[0046] like Figure 8 As shown, a clamping mechanism 5 is provided between the conveying mechanism 3 and the label threading mechanism 4, and the clamping mechanism 5 includes: a clamping guide rail 51, a clamping cylinder 52 and a clamping jaw 53. The clamping jaw 53 is movably installed on the clamping guide rail 51, and the clamping jaw cylinder 52 can drive the clamping jaw 53 to open and close, and then clamp the stacked hanging tags to the work station of the turntable 41, and then the tip of the hanging particle ejector pin cooperates with the rope threading hole of the hanging tag, so as to position the stacked hanging tags on the turntable.
[0047] Example 2
[0048] This embodiment mainly discloses a label-piercing mechanism 4, which is used to thread the hanging beads onto the stacked hanging tags, thereby completing the hanging bead label-piercing process.
[0049] like Fig. 9 , Fig.10 As shown, the marking mechanism 4 includes: a turntable 41, a pressing device 42 and a hanging particle moving device 43. The turntable 41 is provided with a plurality of workstations, and the workstations are provided with hanging particle insertion pins 411 and hanging particle ejector pins 413 installed on the workstations through ejector pin lifting devices 412. The pressing device 42 and the hanging particle moving device 43 are arranged on the side of the turntable. The pressing device 42 can insert the hanging particle into the hanging particle insertion pin 411, and the hanging particle moving device 43 can move the hanging particle from the hanging particle insertion pin 411 to the top of the hanging particle ejector pin 413. A rope threading groove 4131 is provided in the middle of the hanging particle ejector pin 413, and the hanging particle ejector pin 413 can pass the connecting rope of the hanging particle through the rope threading groove 4131.
[0050] like Fig.10As shown, the particle hanging pin 411 includes: a first needle member 4111, a second needle member 4112 and a connecting member 4113. The first needle member 4111 and the second needle member 4112 are provided with a shuttle-shaped portion 411-A at the upper ends. The length of the connecting member 4113 is less than that of the first needle member 4111 and the second needle member 4112. The first needle member 4111 and the second needle member 4112 are connected to both sides of the connecting member 4113, thereby forming a deformation gap between the first needle member 4111 and the second needle member 4112.
[0051] Furthermore, when the hanging particle is placed on the hanging particle insertion pin 411, the shuttle-shaped parts of the first needle member 4111 and the second needle member 4112 and the deformation gap in between will make it easier for the hanging particle insertion pin 411 to penetrate into the insertion hole of the hanging particle. Then, by pressing down the pressing device 42, the hanging particle can be pressed into the hanging particle insertion pin 411 according to a preset depth.
[0052] The pressing device 42 includes: a pressing cylinder 421 and a soft rubber pressing block 422 connected to the output shaft of the pressing cylinder 421 , so that the pressing cylinder 421 can drive the soft rubber pressing block 422 to press down and press the hanging particle to be inserted into the hanging particle pin 411 .
[0053] like Fig.11 As shown, the hanging grain moving device 43 includes: a hanging grain moving guide rail 431, a hanging grain clamping claw 432 and a hanging grain clamping cylinder 433. The hanging grain clamping claw 432 is movably installed on the hanging grain moving guide rail 431, and the hanging grain clamping cylinder 433 can drive the hanging grain clamping claw 432 to open and close, thereby clamping the hanging grain located on the hanging grain pin 411 and moving it to the hanging grain ejector pin 413.
[0054] like Fig.12 As shown, the ejector lifting device 412 includes: a dovetail guide seat 4121, a dovetail sub-seat 4122, an ejector lifting cylinder 4123 and a reset spring 4124. The dovetail guide seat 4121 is connected to the bottom of the workstation, the dovetail sub-seat 4122 is connected to the dovetail guide seat 4121, an ejector lifting cylinder 4123 is provided inside the dovetail sub-seat 4122, and the particle hanging ejector 413 is fixed in the middle of the dovetail sub-seat 4122, and then the ejector lifting cylinder 4123 can drive the dovetail sub-seat 4122 to lift up together with the particle hanging ejector 413, and at the same time it is reset by the reset spring 4124.
[0055] Please combine Figure 7 to Figure 12When the stacked hangtag is placed on the workstation on the turntable 41, the tip of the hangtag pin 413 cooperates with the rope threading hole on the hangtag to position the hangtag. At the same time, the hangtag is manually installed on the upper end of the hangtag pin 411, and the soft rubber pressing block of the pressing device 42 presses the hangtag down to a preset depth. The pressed hangtag rotates with the turntable to the workstation with the hangtag moving device 43, and the hangtag is moved from the hangtag pin 411 to above the hangtag pin 413 by the hangtag clamping claw 432. Then the pin lifting cylinder 4123 drives the hangtag pin 413 to push up, and the connecting rope of the hangtag passes through the rope threading hole of the hangtag along the rope threading groove 4131, completing the complete process of hanging the hangtag and labeling.
[0056] Of course, the above embodiments are only for illustrating the technical concept and features of the utility model, and their purpose is to enable people familiar with the technology to understand the content of the utility model and implement it accordingly, and they cannot be used to limit the protection scope of the utility model. Any modifications made according to the spirit of the main technical solution of the utility model should be included in the protection scope of the utility model.
Claims
1. A tag stacking device for a hanging particle labeling machine, characterized in that: include: A feeding mechanism (1), a suction mechanism (2) and a conveying mechanism (3); A plurality of the feeding mechanisms (1) are arranged in a longitudinal row on the side of the suction mechanism (2), the suction mechanism (2) comprising: a driving assembly (21), a rotating bracket (22) and a suction head (23), the driving assembly (21) being drivingly connected to the rotating bracket (22), the suction head (23) being arranged on the rotating bracket (22), and the suction head (23) suctions the hanging tag on the feeding mechanism (1) and places it on the conveying mechanism (3); The conveying mechanism (3) comprises: a hangtag main board (31), a displacement main board (32), a pressing member (33), and a positioning member (34) which is lifted and arranged on the pressing member. The displacement main board (32) is connected to one side of the hangtag main board (31) and can move relative to the hangtag main board (31), thereby driving the hangtag to move to the bottom of the next suction head (23) for stacking the hangtag. The pressing member (33) can be lifted and arranged on the displacement main board (32). A positioning pin (341) is provided at the lower end of the positioning member (34). The pressing member (33) can press the hangtag, and the positioning pin (341) can cooperate with the rope threading hole on the hangtag to realize the positioning of the hangtag. Then, the displacement main board (32) can drive the hangtag to pass under multiple suction heads (23) in sequence, and cooperate with the pressing member (33) and the positioning member (34) to realize the stacking of the hangtag.
2. The tag stacking device of the hanging particle labeling machine according to claim 1 is characterized in that: The feeding mechanism (1) comprises a material box support (11) and a plurality of material boxes (12) arranged on the material box support (11); the material box is provided with an optical axis (125); the material box support (11) is provided with an optical axis plug-in component (111); and the material box (12) can be installed on the material box support (11) by plugging and matching the optical axis (125) with the optical axis plug-in component (111).
3. The tag stacking device of the hanging particle labeling machine according to claim 2 is characterized in that: The material box (12) has clamping plates (121) arranged opposite to each other, a pushing rod (122) is provided on the top of the clamping plate (121), a limiting plate (123) is provided on the bottom of the clamping plate (121), and a limiting needle (124) is provided on one side of the pushing rod (122), and the limiting needle (124) passes through the rope threading hole of the hangtag to position the hangtag.
4. The tag stacking device of the hanging particle labeling machine according to claim 3 is characterized in that: A spacing adjustment component (15) is provided on the side of the material box (12), and the spacing adjustment component (15) comprises: a spacing adjustment rod (151) abutting against the side of the clamping plate, a first crown wheel (152), a second crown wheel (153) and a screwing rod (154); The spacing adjustment rod (151) is connected to the first crown wheel (152) via a screw rod, the first crown wheel (152) is meshedly connected to the second crown wheel (153), and the screw rod (154) is transmission-connected to the second crown wheel (153). When the screw rod (154) is turned, the meshed transmission screw rod of the second crown wheel (153) and the first crown wheel (152) is used to control the spacing adjustment rod (151) so that the two splints (121) are moved closer to or farther from each other.
5. The tag stacking device of the hanging particle labeling machine according to claim 1 is characterized in that: A first lifting rod (331) and a second lifting rod (332) are respectively connected below the pressing member (33) and the positioning member (34); a first lifting cylinder is connected below the first lifting rod (331); and a second lifting cylinder is connected below the second lifting rod (332); thereby, the first lifting cylinder can control the lifting of the pressing member (33) through the first lifting rod (331); and the second lifting cylinder can control the lifting of the positioning member (34) through the second lifting rod (332).
6. The tag stacking device of the hanging particle labeling machine according to claim 1 is characterized in that: The displacement main board (32) is provided with a positioning pin hole (321) corresponding to the position of the positioning pin (341); the positioning pin (341) can cooperate with the positioning pin hole (321) and use the rope threading hole on the hanging tag to position the hanging tag.
7. The tag stacking device of the hanging particle labeling machine according to claim 1 is characterized in that: The conveying mechanism (3) is also provided with a marking mechanism (4) at the forming end thereof, and the marking mechanism (4) comprises: a rotating disk (41), a pressing device (42) and a particle hanging moving device (43); The rotating disk (41) is provided with a plurality of workstations, each of which is provided with a pellet hanging pin (411) and a pellet hanging pin (413) installed on the workstation via a pin lifting device (412); The pressing device (42) and the hanging pellet moving device (43) are arranged on the peripheral side of the rotating disk, and the pressing device (42) can insert the hanging pellet into the hanging pellet insertion pin (411); The hanging bead moving device (43) can move the hanging bead from the hanging bead insertion pin (411) to above the hanging bead ejector pin (413). A rope threading groove (4131) is provided in the middle of the hanging bead ejector pin (413). The hanging bead ejector pin (413) can pass the connecting rope of the hanging bead through the rope threading groove (4131) through the rope threading hole of the hanging tag.
8. The tag stacking device of the hanging particle labeling machine according to claim 7 is characterized in that: A turntable drive motor is provided below the turntable (41), and the turntable drive motor can drive the turntable (41) to rotate, thereby enabling the workstation to pass through the pressing device (42) and the particle hanging moving device (43).
9. The tag stacking device of the hanging particle labeling machine according to claim 7, characterized in that: A clamping mechanism (5) is provided between the conveying mechanism (3) and the label-piercing mechanism (4), and the clamping mechanism (5) comprises: a clamping guide rail (51), a clamping cylinder (52) and a clamping jaw (53). The clamping jaw (53) is movably mounted on the clamping guide rail (51), and the clamping jaw cylinder (52) can drive the clamping jaw (53) to open and close, thereby clamping the stacked hanging tags to the work station of the turntable (41).