Automatic anti-counterfeiting code cutting mechanism

By designing an automatic anti-counterfeiting code cutting mechanism, a motor-driven rotating shaft is used to move the material-picking component away from the label, solving the problem of label retention after cutting, achieving smooth material feeding and convenient replacement of the material-picking component, and improving production efficiency.

CN223820668UActive Publication Date: 2026-01-23JIANGSU BIAOMA NEW MATERIAL TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520297483.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-24
Publication Date
2026-01-23
Estimated Expiration
2035-02-24

AI Technical Summary

Technical Problem

During the production of anti-counterfeiting codes, the cut label parts are prone to sticking to the inclined feeding chute due to electrostatic adsorption, material surface characteristics, or environmental humidity, resulting in uneven feeding.

Method used

An automatic anti-counterfeiting code cutting mechanism was designed, which includes a processing table, a feeding structure, a cutting structure, a guide groove and an auxiliary unloading structure. The motor drives the rotating shaft to drive the material-picking component, and the label is picked up from the guide groove by the pick, which improves the smoothness of unloading. The snap-fit ​​component facilitates the quick replacement of the material-picking component.

Benefits of technology

It enables smooth feeding of anti-counterfeiting codes, avoids label retention, improves production efficiency, and facilitates the maintenance and replacement of the feeding components.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an automatic anti-fake code cutting mechanism which comprises a machining table, a feeding structure is fixedly installed at the right end of the outer surface of the upper end of the machining table, a cutting structure is fixedly installed at the left end of the outer surface of the upper end of the machining table, and a guide groove is formed in the upper portion of the outer surface of the left end of the machining table. An auxiliary discharging structure is arranged on the upper portion of the material guiding groove and comprises a first fixing frame, a second fixing frame, a rotating shaft, a motor, material stirring assemblies and pin holes, the material stirring assemblies are installed on the outer wall of the rotating shaft at equal intervals, and each material stirring assembly comprises a first semi-ring body, a second semi-ring body, a stirring piece, a pin shaft and a clamping assembly. According to the automatic anti-fake code cutting mechanism, through the arranged auxiliary discharging structure, auxiliary discharging is facilitated, the discharging smoothness is improved, through the arranged material stirring assembly, the material stirring assembly and the rotating shaft are convenient to assemble and disassemble, and the damaged material stirring assembly can be conveniently and rapidly replaced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of anti -fake code production, specifically is an automatic cutting mechanism of anti -fake code. BACKGROUND

[0002] In the production of anti -fake code, need to cut structure to the anti -fake code and cut handle.

[0003] But, the anti -fake code label part that is cut off can stay on the inclined surface unloading groove, main reason has:

[0004] 1, electrostatic adsorption, label material is easy to static electricity, lead to its adsorption on the groove wall;

[0005] 2, material surface characteristics, label surface is too smooth or rough, increase friction or adsorption;

[0006] 3, environmental humidity is too high, high humidity makes label damp, stick on the groove wall.

[0007] Above, all can lead to unloading not enough smooth, for this, we put forward an automatic cutting mechanism of anti -fake code. UTILITY MODEL CONTENT

[0008] (I) the technical problem solved

[0009] In view of the deficiencies of prior art, the utility model provides an automatic cutting mechanism of anti -fake code, has the auxiliary unloading structure, improves the smoothness of unloading and so on, can effectively solve the problem in the background art.

[0010] (II) technical scheme

[0011] To realize the above -mentioned purpose, the utility model takes the technical scheme as follows: an automatic cutting mechanism of anti -fake code, including processing table, the right end of the upper end outer surface of processing table is fixedly installed with feeding structure, the left end of the upper end outer surface of processing table is fixedly installed with cutting structure, the upper part of the left end outer surface of processing table is provided with guide chute, the upper part of guide chute is provided with auxiliary unloading structure, the auxiliary unloading structure includes first fixed frame, second fixed frame, rotating shaft, motor, poking assembly and pin hole, poking assembly is installed at the outer wall of rotating shaft at equal intervals, and the poking assembly includes first half ring body, second half ring body, poking piece, pin shaft and clamping assembly, the clamping assembly includes slot, clamping hole, insert block, installation cavity, sliding hole, clamping shaft, limit block and compression spring, and the second fixed frame is fixedly installed on the left side of the rear end of the upper end outer surface of processing table, and the first fixed frame is fixedly installed on the left side of the front end of the upper end outer surface of processing table.

[0012] Preferably, the motor is fixedly installed on one side of the outer surface of the first fixed frame, the rotating shaft is connected to one end of the outer surface of the motor, and the pin hole is arranged on the upper and lower ends of the outer surface of the rotating shaft.

[0013] Preferably, bearings are arranged between the rotating shaft and the first fixed frame and the second fixed frame, the rotating shaft is rotatably connected to the first fixed frame and the second fixed frame through the bearings, a shaft coupling is arranged between the rotating shaft and the motor, and one end of the outer surface of the rotating shaft is fixedly connected to one end of the outer surface of the output shaft of the motor through the shaft coupling.

[0014] Preferably, the number of the pin shafts and the number of the clamping assemblies in the group of the material pushing assemblies are both two, two groups of the pushing plates are fixedly installed on one end of the outer walls of the first half ring body and the second half ring body, two groups of the pin shafts are fixedly installed on the middle portions of the inner walls of the first half ring body and the second half ring body, the first half ring body and the second half ring body are installed on the outer wall of the rotating shaft, and the outer wall of the pin shaft is inserted into the pin hole.

[0015] Preferably, the insertion block is fixedly installed on the left and right ends of the lower end of the outer surface of the first half ring body, the insertion slot is arranged on the left and right ends of the upper end of the outer surface of the second half ring body, the clamping hole is arranged on the left and right ends of the upper portion of the outer surface of the second half ring body, the clamping hole is communicated with the insertion slot, the outer wall of the insertion block is inserted into the insertion slot, and the outer wall of one end of the clamping shaft is clamped into the clamping hole.

[0016] Preferably, the mounting cavity is arranged in the inner portion of the two ends of the insertion block, the sliding hole is arranged in the middle portion of the outer surface of the two ends of the insertion block, the outer wall of one side of the clamping shaft is slidably inserted into the sliding hole and fixedly connected to the inner portion of the mounting cavity and the outer wall of one side of the limiting block, the compression spring is fixedly installed between the other side of the outer surface of the limiting block and one end of the mounting cavity away from the sliding hole, the outer wall of the limiting block is slidably connected to the mounting cavity, the outer wall of the clamping shaft is slidably connected to the sliding hole, and one side of the outer surface of the limiting block is elastically connected to one end of the mounting cavity through the compression spring.

[0017] (Three) beneficial effects

[0018] Compared with the prior art, the anti-fake code automatic cutting mechanism has the following beneficial effects:

[0019] 1. The anti-fake code automatic cutting mechanism is convenient for auxiliary discharging and improves the smoothness of discharging.

[0020] 2. The anti-fake code automatic cutting mechanism is convenient for assembling and disassembling between the material pushing assembly and the rotating shaft, and facilitates quick replacement of damaged material pushing assemblies. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 It is the overall structure schematic view of the automatic cutting mechanism of anti-fake code.

[0022] Figure 2 It is the structure schematic view of the auxiliary blanking structure in the automatic cutting mechanism of anti-fake code.

[0023] Figure 3 It is the partial structure schematic view of the auxiliary blanking structure in the automatic cutting mechanism of anti-fake code.

[0024] Figure 4 It is the structure schematic view of the material pushing assembly in the automatic cutting mechanism of anti-fake code.

[0025] Figure 5 It is the side view sectional view of the first half ring body and the second half ring body connected through the clamping assembly in the automatic cutting mechanism of anti-fake code.

[0026] In the figure: 1, processing table; 2, feeding structure; 3, shearing structure; 4, guide chute; 5, auxiliary blanking structure; 6, first fixed frame; 7, second fixed frame; 8, rotating shaft; 9, motor; 10, material pushing assembly; 11, pin hole; 12, first half ring body; 13, second half ring body; 14, pushing piece; 15, pin shaft; 16, clamping assembly; 17, insertion slot; 18, clamping hole; 19, insertion block; 20, mounting cavity; 21, sliding hole; 22, clamping shaft; 23, limiting block; 24, compression spring. DETAILED DESCRIPTION

[0027] In order to make the technical means, creative features, purposes and effects of the utility model easy to understand, the utility model is further described below in combination with specific embodiments.

[0028] The embodiment is an automatic cutting mechanism of anti-fake code.

[0029] As Figures 1-5As shown, including processing table 1, the upper end of the outer surface of the right end of the fixed installation of feeding structure 2, the upper end of the outer surface of the left end of the fixed installation of shearing structure 3, the left end of the outer surface of the upper part of the processing table 1 is provided with guide chute 4, the upper part of guide chute 4 is provided with auxiliary discharge structure 5, auxiliary discharge structure 5 includes first fixed frame 6, second fixed frame 7, rotating shaft 8, motor 9, poking assembly 10 and pin hole 11, poking assembly 10 is installed at equal intervals on the outer wall of rotating shaft 8, poking assembly 10 includes first half ring body 12, second half ring body 13, poking piece 14, pin shaft 15 and clamping assembly 16, clamping assembly 16 includes slot 17, clamping hole 18, plug 19, installation cavity 20, sliding hole 21, clamping shaft 22, limiting block 23 and compression spring 24, and the second fixed frame 7 is fixedly installed on the left side of the rear end of the upper end of the outer surface of the processing table 1, and the first fixed frame 6 is fixedly installed on the left side of the front end of the upper end of the outer surface of the processing table 1.

[0030] Motor 9 is fixedly installed on one side of the outer surface of first fixed frame 6, rotating shaft 8 is connected to one end of the outer surface of motor 9, pin hole 11 is provided on the upper and lower ends of the outer surface of rotating shaft 8; rotating shaft 8 and first fixed frame 6, second fixed frame 7 are both provided with bearings, rotating shaft 8 is rotatably connected with first fixed frame 6 and second fixed frame 7 through bearings, rotating shaft 8 and motor 9 are provided with a shaft coupling, one end of the outer surface of rotating shaft 8 is fixedly connected with one end of the outer surface of the output shaft of motor 9 through the shaft coupling; the number of pin shaft 15, poking piece 14 and clamping assembly 16 in a group of poking assembly 10 is two groups, two groups of poking pieces 14 are fixedly installed on one end of the outer wall of first half ring body 12 and second half ring body 13, two groups of pin shafts 15 are fixedly installed on the middle part of the inner wall of first half ring body 12 and second half ring body 13, first half ring body 12 and second half ring body 13 are installed on the outer wall of rotating shaft 8, the outer wall of pin shaft 15 is inserted into pin hole 11; plug 19 is fixedly installed on the left and right ends of the lower end of the outer surface of first half ring body 12, slot 17 is provided on the left and right ends of the upper end of the outer surface of second half ring body 13, clamping hole 18 is provided on the left and right ends of the upper part of one side of the outer surface of second half ring body 13, clamping hole 18 is communicated with slot 17, the outer wall of plug 19 is inserted into slot 17, the outer wall of one end of clamping shaft 22 is clamped into clamping hole 18; installation cavity 20 is provided in the interior of both ends of plug 19, sliding hole 21 is provided in the middle part of the outer surface of both ends of plug 19, clamping shaft 22 is slidably inserted into the interior of installation cavity 20 through sliding hole 21 and is fixedly connected with one side of the outer surface of limiting block 23, compression spring 24 is fixedly installed between the other side of the outer surface of limiting block 23 and one end of installation cavity 20 away from sliding hole 21, the outer wall of limiting block 23 is slidably connected with installation cavity 20, the outer wall of clamping shaft 22 is slidably connected with sliding hole 21, one side of the outer surface of limiting block 23 is elastically connected with one end of installation cavity 20 through compression spring 24.

[0031] It should be noted that the utility model is a kind of anti-fake code automatic cutting mechanism, the processing table 1, feeding structure 2, shearing structure 3 and guide chute 4 recorded in the present application all belong to prior art, and the material to be cut is discharged through guide chute 4, which can be effectively known by the person skilled in the art, and specific details will not be repeated;The auxiliary discharging structure 5 is arranged, the rotating shaft 8 is driven to rotate by the operation of the motor 9, the rotating shaft 8 drives the material poking assembly 10 to rotate, the material on the guide chute 4 is stripped by the poking piece 14, the smoothness of discharging is improved, and the anti-fake code label is prevented from being retained on the guide chute 4;The material poking assembly 10 is arranged, when installing, the first half ring body 12 and the second half ring body 13 are clamped on the outer wall of the rotating shaft 8, the pin shaft 15 in the inner wall of the first half ring body 12 and the second half ring body 13 is inserted into the pin hole 11, the pin shaft 15 and the pin hole 11 are arranged, and the limiting effect is achieved, the relative rotation between the rotating shaft 8 and the first half ring body 12 and the second half ring body 13 is avoided, when assembling between the second half ring body 13 and the first half ring body 12, the clamping shaft 22 in the clamping assembly 16 is extruded, the clamping shaft 22 enters the sliding hole 21, the clamping shaft 22 drives the limiting block 23 to extrude the compression spring 24 in the installation cavity 20, then the plug block 19 is inserted into the insertion slot 17, when the clamping shaft 22 reaches one end of the clamping hole 18, one end of the clamping shaft 22 is inserted into the clamping hole 18 due to the counterforce of the compression spring 24, assembly is realized, and disassembly is facilitated.

[0032] It should be noted that, in this document, relational terms such as first and second and the like can be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus. The terms "includes", "including", or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that includes a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus.

[0033] The basic principle and main features of the utility model and the advantages of the utility model are shown and described above. Those skilled in the art should understand that the utility model is not limited to the above-mentioned embodiments, and the above-mentioned embodiments and descriptions in the specification are only to illustrate the principle of the utility model, and various changes and improvements can be made to the utility model without departing from the spirit and scope of the utility model, and these changes and improvements all fall within the scope of the claimed utility model.

Claims

1. An automatic anti-counterfeiting code cutting mechanism, comprising a processing table (1), wherein a feeding structure (2) is fixedly installed on the right end of the upper outer surface of the processing table (1), a shearing structure (3) is fixedly installed on the left end of the upper outer surface of the processing table (1), and a guide groove (4) is provided on the upper part of the left outer surface of the processing table (1), characterized in that: The upper part of the guide groove (4) is provided with an auxiliary feeding structure (5). The auxiliary feeding structure (5) includes a first fixed frame (6), a second fixed frame (7), a rotating shaft (8), a motor (9), a feeding assembly (10), and a pin hole (11). The feeding assembly (10) is installed at equal intervals on the outer wall of the rotating shaft (8). The feeding assembly (10) includes a first half-ring (12), a second half-ring (13), a feeding plate (14), a pin shaft (15), and a snap-fit ​​assembly (16). The snap-fit ​​assembly (16) includes a slot (17), a snap-fit ​​hole (18), a plug (19), a mounting cavity (20), a sliding hole (21), a snap-fit ​​shaft (22), a limiting block (23), and a compression spring (24). The second fixed frame (7) is fixedly installed on the rear end of the left side of the upper outer surface of the processing table (1), and the first fixed frame (6) is fixedly installed on the front end of the left side of the upper outer surface of the processing table (1).

2. The anti-counterfeiting code automatic cutting mechanism according to claim 1, characterized in that: The motor (9) is fixedly installed on one side of the outer surface of the first fixed frame (6), the rotating shaft (8) is connected to one end of the outer surface of the motor (9), and the pin hole (11) is opened on the upper and lower ends of the outer surface of the rotating shaft (8).

3. The anti-counterfeiting code automatic cutting mechanism according to claim 2, characterized in that: Bearings are provided between the rotating shaft (8) and the first fixed frame (6) and the second fixed frame (7). The rotating shaft (8) is rotatably connected to the first fixed frame (6) and the second fixed frame (7) through the bearings. A coupling is provided between the rotating shaft (8) and the motor (9). One end of the outer surface of the rotating shaft (8) is fixedly connected to one end of the outer surface of the output shaft in the motor (9) through the coupling.

4. The anti-counterfeiting code automatic cutting mechanism according to claim 3, characterized in that: The number of pins (15), paddles (14) and snap-fit ​​components (16) in a set of feeding components (10) are two sets each. The two sets of paddles (14) are fixedly installed at one end of the outer wall of the first half-ring (12) and the second half-ring (13). The two sets of pins (15) are fixedly installed in the middle of the inner wall of the first half-ring (12) and the second half-ring (13). The first half-ring (12) and the second half-ring (13) are installed on the outer wall of the rotating shaft (8). The outer wall of the pin (15) and the pin hole (11) are inserted into each other.

5. The anti-counterfeiting code automatic cutting mechanism according to claim 4, characterized in that: The insert (19) is fixedly installed on the left and right ends of the lower outer surface of the first semi-ring (12). The slot (17) is opened on the left and right ends of the upper outer surface of the second semi-ring (13). The snap-fit ​​hole (18) is opened on the left and right ends of the upper part of the outer surface of one side of the second semi-ring (13). The snap-fit ​​hole (18) is connected to the slot (17). The outer wall of the insert (19) is inserted into the slot (17). The outer wall of one end of the snap-fit ​​shaft (22) is snapped into the snap-fit ​​hole (18).

6. The anti-counterfeiting code automatic cutting mechanism according to claim 5, characterized in that: The mounting cavity (20) is opened inside both ends of the insert (19). The sliding hole (21) is opened in the middle of the outer surface of both ends of the insert (19). The snap-fit ​​shaft (22) slides through the sliding hole (21) and extends into the interior of the mounting cavity (20) and is fixedly connected to one side of the outer surface of the limiting block (23). The compression spring (24) is fixedly installed between the other side of the outer surface of the limiting block (23) and the end of the mounting cavity (20) away from the sliding hole (21). The outer wall of the limiting block (23) is slidably connected to the mounting cavity (20). The outer wall of the snap-fit ​​shaft (22) is slidably connected to the sliding hole (21). One side of the outer surface of the limiting block (23) is elastically connected to one end of the mounting cavity (20) through the compression spring (24).