Chip label punching device

By introducing a limit seat, a moving deviation correction mechanism and a material collection mechanism into the chip label drilling device, the problem of complex positioning structure and difficult to disassemble the correction mechanism is solved, convenient collection of waste and efficient maintenance of the device are achieved, and the hole drilling accuracy and working efficiency are improved.

CN120269637AInactive Publication Date: 2025-07-08SHENZHEN XIN JING LU ELECTRONICS TECH
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Patent Information

Application Number
CN202510756006.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-07
Publication Date
2025-07-08
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The positioning structure of the existing chip label drilling device is complex, the waste is not easy to collect, and the deviation correction mechanism is not easy to disassemble and repair, which affects work efficiency.

Method used

A chip label drilling device is designed, using a limit seat, a moving deviation correction mechanism and a material collection mechanism to limit the electronic label tape roll through the limit slot. The waste material is collected through the blanking slot. The moving deviation correction mechanism can be moved simultaneously. The sliding mechanism is easy to disassemble and repair, and the rotating roller can be quickly replaced.

Benefits of technology

It realizes stable hole drilling of electronic label tape coils and convenient collection of waste materials, improving the maintenance efficiency and hole drilling accuracy of the device.

✦ Generated by Eureka AI based on patent content.

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    Figure CN120269637A_ABST
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Abstract

The invention relates to a chip label punching device which comprises a supporting plate. First guide rails are fixed to the front and rear ends of the top of the supporting plate. According to the chip label punching device, by arranging the movable deviation rectifying mechanism, when the limiting bases move, the first sliding mechanism and the second sliding mechanism synchronously move on the first guide base and the second guide base correspondingly, and normal installation of the movable deviation rectifying mechanism is not affected while the distance between the two sets of limiting bases is adjusted; the first sliding mechanism and the second sliding mechanism move towards the leftmost end or the rightmost end of the first guide seat and the second guide seat, the adjusting mechanism can be disassembled and maintained, meanwhile, the rotating roller is disassembled from the first disassembling structure and the second disassembling structure, the rotating roller can be rapidly disassembled and replaced, and the maintenance efficiency of the chip label punching device is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of electronic tags, and specifically relates to a punching device for chip tags. Background Art

[0002] An electronic tag is also called a radio frequency tag, transponder, data carrier; a reader is also called a reading device, scanner, read head, communicator, or reader-writer. When punching an electronic tag, an electronic tag tape roll punching device is needed to punch it.

[0003] The punching devices in related technologies are usually used in conjunction with a positioning mechanism. The positioning mechanism is shown in, for example, Patent CN221872258U, which includes a first L-shaped plate and a second L-shaped plate that can move through a lead screw and an electric push rod. There are also rollers on both of them that can move and lock their positions, and the movement of the electronic tag is positioned by the rollers to facilitate the punching device to punch.

[0004] In the above-mentioned literature, although the electronic tag can be positioned, its positioning structure is complex, and it is not easy to collect waste materials after punching the electronic tag tape roll. At the same time, during the winding process of the electronic tag tape roll, the electronic tag tape roll is prone to deviation. At this time, an external deviation correction mechanism is usually required. However, the structure of the external deviation correction mechanism is mostly fixed, so it is not easy to be used in combination with the chip tag punching device, and the deviation correction mechanism is not easy to disassemble and repair, which affects the working efficiency of the chip tag punching device. Summary of the Invention

[0005] 1. Technical Problems to be Solved To solve the above technical problems, the present invention provides a punching device for chip tags.

[0006] (II) Technical Solutions Based on this, the present invention provides the following technical solution: A punching device for chip tags, including a support plate; At the front and rear ends of the top of the support plate, a first guide rail is fixed. The first guide rail is slidably matched with the bottom of the moving plate. A locking button is arranged at the front end of the moving plate. At the left and right ends of the top of the moving plate, a second guide rail is relatively fixed. The second guide rail is slidably matched with the bottom of the moving seat. A limiting seat is fixed on the top of the moving seat. A moving deviation correction mechanism is arranged at the right end of the limiting seat. A material collecting mechanism is installed at the bottom of the support plate; There are two groups of moving seats in total, and limiting seats are relatively arranged on the front and rear sides of the moving seat. A limiting groove is opened in the middle of the limiting seat. A punching cylinder is fixed on the top of the limiting seat, and the piston rod at the bottom of the punching cylinder vertically penetrates the top of the limiting groove. The material collecting mechanism includes a recycling frame, a pull rod, and a guide rail. The top of the guide rail is bolted to the support plate. The recycling frame is fixed to the rear end of the pull rod.

[0007] Preferably, two sets of guiding rails are provided, and the guiding rails are oppositely arranged along the left and right sides of the recycling box. Guiding bumps are arranged on the inner sides of the guiding rails, and the recycling box is in sliding fit with the guiding bumps, facilitating the guiding of the recycling box. By pulling the pull rod forward, the recycling box can be removed from the guiding rails to clean the collected waste materials.

[0008] Preferably, the moving deviation rectifying mechanism includes a first guiding seat, a first sliding mechanism, a first connecting seat, an adjusting mechanism, a second connecting seat, a second sliding mechanism, and a second guiding seat. The first guiding seat and the second guiding seat are horizontally arranged relative to each other, and the bottoms of the first guiding seat and the second guiding seat are respectively fixed to the two sets of limiting seats located on the front and rear sides. The first guiding seat is in sliding fit with the inner side of the first sliding mechanism. The right end of the first sliding mechanism is fixed to the first connecting seat. An adjusting mechanism is installed on the top of the first connecting seat. The rear end of the adjusting mechanism is fixed to the second connecting seat. The second connecting seat is fixed to the right end of the second sliding mechanism. The second sliding mechanism is in sliding fit with the top of the second guiding seat.

[0009] Preferably, the first connecting seat and the second connecting seat are horizontally arranged relative to each other, and the cross-sections of the first connecting seat and the second connecting seat are both in an L-shaped structure.

[0010] Preferably, the adjusting mechanism includes a first guide rail seat, a first sliding seat, a first movable seat, a rotating roller, a second movable seat, a second sliding seat, a second guide rail seat, an electric push rod, and an identifier. The bottom of the first guide rail seat is fixed to the first connecting seat. The middle part of the first guide rail seat is in sliding fit with the first sliding seat. The top of the first sliding seat is movably connected to the first movable seat. The front and rear ends of the rotating roller are respectively connected to the first movable seat and the second movable seat. The second movable seat is in rotational fit with the top of the second sliding seat. The inner side of the second sliding seat is in sliding fit with the second guide rail seat. The second sliding seat is fixed to the output end of the electric push rod, and the bottom of the electric push rod is fixed to the second guide rail seat. An identifier is arranged at the right front end of the second guide rail seat.

[0011] Preferably, the guide rail bases I and II are symmetrically arranged at an included angle, and the structure of the guide rail base I matches that of the guide rail base II. Two sets of slide bars are arranged on the inner sides of the guide rail base I respectively, which are convenient for guiding the slide seats I and II, so that the slide seats I and II can move. Demounting structures I and II are respectively arranged at the front and rear ends of the rotating roller. The front end of the demounting structure I is fixed to the movable seat I, and the rear end of the demounting structure II is fixed to the movable seat II. The structure of the demounting structure I matches that of the demounting structure II. The demounting structure I includes a fixed sleeve, a bearing sleeve, positioning beads, a compression spring, a sliding sleeve, a connecting rod, and a movable rod. The front end of the fixed sleeve is fixed to the movable seat I. The bearing sleeve is embedded in the middle of the fixed sleeve. The positioning beads are circumferentially distributed on the inner edge of the right end of the fixed sleeve. The top of the positioning bead contacts the sliding sleeve. The sliding sleeve is slidably matched with the right end of the fixed sleeve. The sliding sleeve is fixed to the right end of the compression spring, and the left end of the compression spring is fixedly connected to the fixed sleeve. The connecting rod and the right end of the movable rod are of an integrated structure. The movable rod is movably matched with the inner side of the bearing sleeve.

[0012] Preferably, the identifier includes a sliding groove, a deviation rectifying sensor, a pressing block, a screw rod, and a fixed seat. The left rear end of the fixed seat is fixed to the guide rail base II. A sliding groove is opened at the front end of the fixed seat. The deviation rectifying sensor is slidably matched with the inner side of the sliding groove. The bottom of the deviation rectifying sensor is in threaded cooperation with the screw rod. The screw rod is movably connected to the inside of the pressing block, and the pressing block moves synchronously with the screw rod.

[0013] Preferably, the center lines of the pressing block and the screw rod are in the same vertical direction, and the top of the pressing block contacts the fixed seat.

[0014] Preferably, the structure of the sliding mechanism I matches that of the sliding mechanism II. The sliding mechanism I includes a sliding frame, a positioning rod, a limiting rod, a pulley, and sliding beads. A pulley is arranged at the upper end inside the sliding frame. The pulley is slidably matched with the top of the guide seat I. The positioning rod is threadedly connected to the right end of the sliding frame. The sliding frame is in threaded cooperation with the limiting rod. The sliding beads are oppositely arranged at the left and right ends inside the sliding frame.

[0015] Preferably, the sliding beads are movably connected to the inside of the sliding frame. The limiting rod is arranged obliquely. Through the threaded transmission between the limiting rod and the sliding frame, the limiting rod moves towards the inside of the sliding frame and contacts the upper end of the sliding bead, thereby positioning the sliding bead.

[0016] (III) Beneficial Effects Compared with the prior art, the present invention provides a chip label punching device, which has the following beneficial effects: The chip label punching device can be locked after moving on a horizontal plane through two limit seats. The electronic label tape roll is limited through a limit groove. A punching mechanism is arranged on the limit seat, which can punch the electronic label tape roll. A blanking groove is opened on the support plate, and waste can fall into the recycling box through the blanking groove for collection. The recycling box is arranged in a pull-out manner and can be detached and replaced. And by setting a moving deviation rectifying mechanism, when the limit seat moves, the first sliding mechanism and the second sliding mechanism move synchronously on the first guide seat and the second guide seat respectively. That is, while adjusting the distance between the two groups of limit seats, it does not affect the normal installation of the moving deviation rectifying mechanism. And by moving the first sliding mechanism and the second sliding mechanism to the leftmost or rightmost ends of the first guide seat and the second guide seat, the disassembly and maintenance of the adjusting mechanism can be realized. At the same time, by removing the rotating roller from the first disassembly structure and the second disassembly structure, the rapid disassembly and replacement of the rotating roller can be realized, increasing the maintenance efficiency of the chip label punching device. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 is a schematic diagram of the overall structure of the present invention; Figure 2 is a front view structure schematic diagram of the limit seat of the present invention; Figure 3 is a three-dimensional structure schematic diagram of the material receiving mechanism of the present invention; Figure 4 is a three-dimensional structure schematic diagram of the moving deviation rectifying mechanism of the present invention; Figure 5 is a three-dimensional structure schematic diagram of the adjusting mechanism of the present invention; Figure 6 is a three-dimensional structure schematic diagram of the identifier of the present invention; Figure 7 is a three-dimensional structure schematic diagram of the first sliding mechanism of the present invention; Figure 8 is a front view structure schematic diagram of the first sliding mechanism of the present invention; Figure 9 is a three-dimensional structure schematic diagram of the rotating roller of the present invention; Figure 10 is a schematic diagram of the internal structure of the first disassembly structure of the present invention.

[0018] In the figure: 1, support plate; 2, first guide rail; 3, moving plate; 4, locking button; 5, second guide rail; 6, moving seat; 7, limit seat; 71, limit groove; 72, punching cylinder; 8. Mobile deviation correction mechanism, 81. First guide seat, 82. First sliding mechanism, 821. Sliding frame, 822. Positioning rod, 823. Limiting rod, 824. Pulley, 825. Sliding bead, 83. First connecting seat, 84. Adjusting mechanism, 841. First guide rail seat, 842. First sliding seat, 843. First movable seat, 844. Rotating roller, 8441. First disassembly structure, 8442. Second disassembly structure, 84411. Fixed sleeve, 84412. Bearing sleeve, 84413. Positioning bead, 84414. Compression spring, 84415. Sliding sleeve, 84416. Connecting rod, 84417. Movable rod, 845. Second movable seat, 846. Second sliding seat, 847. Second guide rail seat, 848. Electric push rod, 849. Identifier, 8491. Sliding groove, 8492. Deviation correction sensor, 8393. Pressing block, 8494. Screw rod, 8495. Fixed seat, 85. Second connecting seat, 86. Second sliding mechanism, 87. Second guide seat; 9. Material receiving mechanism, 91. Recycling frame, 92. Pull rod, 93. Guide rail. Specific implementation mode

[0019] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0020] Please refer to Figures 1 - 3, A chip label punching device, including a support plate 1; at the front and rear ends of the top of the support plate 1, a first guide rail 2 is fixed. The first guide rail 2 is slidably matched with the bottom of the moving plate 3. A locking button 4 is arranged at the front end of the moving plate 3. At the left and right ends of the top of the moving plate 3, a second guide rail 5 is relatively fixed. The second guide rail 5 is slidably matched with the bottom of the moving seat 6. A limiting seat 7 is fixed at the top of the moving seat 6. A moving deviation correction mechanism 8 is arranged at the right end of the limiting seat 7. A material collecting mechanism 9 is installed at the bottom of the support plate 1; there are two groups of moving seats 6 in total, and limiting seats 7 are relatively arranged on the front and rear sides of the moving seat 6. A limiting groove 71 is opened in the middle of the limiting seat 7. A punching cylinder 72 is fixed at the top of the limiting seat 7, and the bottom piston rod of the punching cylinder 72 vertically penetrates the top of the limiting groove 71. The material collecting mechanism 9 includes a recycling frame 91, a pull rod 92, and a guide rail 93. The top of the guide rail 93 is bolted to the support plate 1. The recycling frame 91 is fixed to the rear end of the pull rod 92. There are two groups of guide rails 93 in total, and the guide rails 93 are relatively arranged along the left and right sides of the recycling frame 91. A guide convex block is arranged inside the guide rail 93. The recycling frame 91 is slidably matched with the guide convex block, which is convenient for guiding the recycling frame 91. By pulling the pull rod 92 forward, the recycling frame 91 can be removed from the guide rail 93 to clean the collected waste materials. A controller can be arranged on the support plate 1, which is not drawn in the figure. The punching cylinder 72, the electric push rod 848, and the deviation correction sensor 8492 are controlled through the controller. The punching cylinder 72 is an ordinary cylinder, which refers to a cylindrical metal component that guides the piston to perform linear reciprocating motion in the cylinder. Air converts heat energy into mechanical energy through expansion in the engine cylinder; gas is compressed by the piston in the compressor cylinder to increase pressure.

[0021] In this application, the first guide rail 2 and the second guide rail 5 are ordinary guide rails, which are grooves or ridges made of metal or other materials, and are devices that can bear, fix, guide moving devices or equipment and reduce their friction; a threaded rod is arranged at the rear end of the locking button 4. The threaded rod is threadedly matched with the front end of the moving plate 3. Through the threaded transmission of the threaded rod and the moving plate 3, it abuts against the front end of the support plate 1 to symmetrically position the moving plate 3. A locking button 4 and a threaded rod are also arranged at the top of the moving seat 6. Similarly, the moving seat 6 is positioned on the top of the moving plate 3 through the threaded rod.

[0022] Please refer to Figure 4, a chip label punching device, the mobile deviation correction mechanism 8 includes a first guide seat 81, a first sliding mechanism 82, a first connecting seat 83, an adjusting mechanism 84, a second connecting seat 85, a second sliding mechanism 86, and a second guide seat 87. The first guide seat 81 and the second guide seat 87 are horizontally arranged with each other, and the bottoms of the first guide seat 81 and the second guide seat 87 are respectively fixed to two groups of limit seats 7 located on the front and back sides. The first guide seat 81 is slidably matched with the inner side of the first sliding mechanism 82. The right end of the first sliding mechanism 82 is fixed to the first connecting seat 83. The adjusting mechanism 84 is installed on the top of the first connecting seat 83. The rear end of the adjusting mechanism 84 is fixed to the second connecting seat 85. The second connecting seat 85 is fixed to the right end of the second sliding mechanism 86. The second sliding mechanism 86 is slidably matched with the top of the second guide seat 87.

[0023] In some embodiments, the first connecting seat 83 and the second connecting seat 85 are horizontally arranged with each other, and the cross-sections of the first connecting seat 83 and the second connecting seat 85 are both in an L-shaped structure, which is convenient for supporting the adjusting mechanism 84.

[0024] Please refer to Figure 5 , Figure 6 , Figure 9 , Figure 10 , a chip label punching device, the adjusting mechanism 84 includes a first guide rail seat 841, a first sliding seat 842, a first movable seat 843, a rotating roller 844, a second movable seat 845, a second sliding seat 846, a second guide rail seat 847, an electric push rod 848, and an identifier 849. The bottom of the first guide rail seat 841 is fixed to the first connecting seat 83. The middle part of the first guide rail seat 841 is slidably matched with the first sliding seat 842. The top of the first sliding seat 842 is movably connected to the first movable seat 843. The front and rear ends of the rotating roller 844 are respectively connected to the first movable seat 843 and the second movable seat 845. The second movable seat 845 is rotatably matched with the top of the second sliding seat 846. The inner side of the second sliding seat 846 is slidably matched with the second guide rail seat 847. The second sliding seat 846 is fixed to the output end of the electric push rod 848, and the bottom of the electric push rod 848 is fixedly connected to the second guide rail seat 847. An identifier 849 is arranged at the right front end of the second guide rail seat 847.

[0025] In some embodiments, the guide rail base one 841 and the guide rail base two 847 are symmetrically arranged at an included angle, and the structure of the guide rail base one 841 coincides with the structure of the guide rail base two 847. Two groups of sliding rods are arranged on the inner sides of the guide rail base one 841 to facilitate guiding the sliding seat one 842 and the sliding seat two 846, so that the sliding seat one 842 and the sliding seat two 846 move. The identifier 849 includes a sliding groove 8491, a deviation correction sensor 8492, a pressing block 8393, a screw rod 8494, and a fixed seat 8495. The left rear end of the fixed seat 8495 is fixed to the guide rail base two 847. A sliding groove 8491 is opened at the front end of the fixed seat 8495. The deviation correction sensor 8492 is slidably engaged with the inner side of the sliding groove 8491. The bottom of the deviation correction sensor 8492 is in threaded cooperation with the screw rod 8494. The screw rod 8494 is movably connected to the inside of the pressing block 8393, and the pressing block 8393 moves synchronously with the screw rod 8494. The center line of the pressing block 8393 and the screw rod 8494 is in the same vertical direction, and the top of the pressing block 8393 contacts the fixed seat 8495. Moreover, the deviation correction sensor 8492 can be moved to make the deviation correction sensor 8492 slide in the sliding groove 8491 to adjust the horizontal position of the deviation correction sensor 8492. After the adjustment is completed, rotate the screw rod 8494 clockwise to make the screw rod 8494 threadedly drive the bottom of the deviation correction sensor 8492, driving the fixed seat 8495 to closely fit with the bottom of the fixed seat 8495 to realize the positioning of the deviation correction sensor 8492, which can meet the identification of electronic tag tape rolls of different widths. The deviation correction sensor 8492 is an ordinary deviation correction sensor, and the specific model is designed or customized according to actual use. The deviation correction sensor 8492 detects and monitors in real time the position deviation edge and the offset amount of the electronic tag tape roll transmission and winding through optical, electromagnetic or mechanical means, and converts the physical signal into an electrical signal. After the controller receives the signal of the sensor, it compares the preset standard value, calculates the deviation direction and amplitude, and generates a proportional adjustment instruction. The deviation amount is converted into a pulse signal of the motor driver of the electric push rod 848, and the electric push rod 848 adjusts the position of the sliding seat two 846 according to the control instruction.The rotating roller 844 is offset to return the electronic label tape roll to a predetermined trajectory for smooth conveyance, increasing the punching accuracy; the screw 8494 is a cylinder with spiral grooves on its outer surface or a cone with conical spiral grooves. The electric push rod 848, also known as a linear actuator, is a new type of linear actuator mainly composed of a motor push rod and a control device, etc., and can be considered an extension of a rotary motor in terms of structure. At the front and rear ends of the rotating roller 844, a disassembly structure one 8441 and a disassembly structure two 8442 are respectively provided. The front end of the disassembly structure one 8441 is fixed to the movable seat one 843, and the rear end of the disassembly structure two 8442 is fixed to the movable seat two 845. The structure of the disassembly structure one 8441 is in line with the structure of the disassembly structure two 8442. The disassembly structure one 8441 includes a fixed sleeve 84411, a bearing sleeve 84412, positioning beads 84413, a compression spring 84414, a sliding sleeve 84415, a connecting rod 84416, and a movable rod 84417. The front end of the fixed sleeve 84411 is fixed to the movable seat one 843. The bearing sleeve 84412 is embedded in the middle of the fixed sleeve 84411. The positioning beads 84413 are circumferentially distributed on the inner edge of the right end of the fixed sleeve 84411. The top of the positioning beads 84413 is in contact with the sliding sleeve 84415. The sliding sleeve 84415 is slidably matched with the right end of the fixed sleeve 84411. The sliding sleeve 84415 is fixed to the right end of the compression spring 84414, and the left end of the compression spring 84414 is fixedly connected to the fixed sleeve 84411. The connecting rod 84416 and the right end of the movable rod 84417 are of an integrated structure. The movable rod 84417 is movably matched with the inside of the bearing sleeve 84412. A positioning groove is provided at the left end of the connecting rod 84416. The positioning beads 84413 are embedded in the positioning groove to position the connecting rod 84416. When the rotating roller 844 needs to be disassembled, only need to move the sliding sleeve 84415 to the left, so that the sliding sleeve 84415 presses the compression spring 84414 to deform to the left, releasing the downward pressure on the positioning beads 84413, so that the positioning beads 84413 are released from the engaged state with the positioning groove. Subsequently, the connecting rod 84416 can be pulled out of the fixed sleeve 84411 to the right. Similarly, the rotating roller 844 on the disassembly structure two 8442 can be removed, and the rotating roller 844 can be disassembled and replaced. And the rotating roller 844 will rotate in the bearing sleeve 84412 through the movable rod 84417, making the rotating roller 844 drive smoothly.

[0026] Please refer to Figures 7 - 8, a chip label punching device, the structure of the first sliding mechanism 82 coincides with the structure of the second sliding mechanism 86. The first sliding mechanism 82 includes a sliding frame 821, a positioning rod 822, a limiting rod 823, a pulley 824, and a sliding bead 825. A pulley 824 is arranged at the upper end inside the sliding frame 821. The pulley 824 is in sliding fit with the top of the first guide seat 81. The positioning rod 822 is threadedly connected to the right end of the sliding frame 821. The sliding frame 821 is in threaded fit with the limiting rod 823. The sliding beads 825 are arranged oppositely at the left and right ends inside the sliding frame 821. The sliding beads 825 are movably connected to the inside of the sliding frame 821. The limiting rod 823 is arranged obliquely. Through the threaded transmission between the limiting rod 823 and the sliding frame 821, it moves towards the inside of the sliding frame 821 and contacts the upper end of the sliding bead 825, thereby positioning the sliding bead 825.

[0027] In summary, during use, a chip label punching device is connected to an electronic label tape roll output device, and the electronic label tape roll is passed through the limiting groove 71 of the limiting seat 7. The electronic label tape roll is limited by the limiting groove 71, and at the same time, the bottom of the electronic label tape roll is in contact with the top of the rotating roller 844 and is in transmission cooperation with the rotating roller 844; And before the electronic label tape roll is transported, the moving plate 3 can be moved to make the moving plate 3 slide on the first guide rail 2 to adjust the left and right positions of the moving plate 3; by moving the moving seat 6 on the second guide rail 5, the distance between the two limiting seats 7 can be adjusted. And when adjusting the distance between the limiting seats 7, it is necessary to make the first sliding mechanism 82 and the second sliding mechanism 86 move synchronously on the first guide seat 81 and the second guide seat 87 respectively, so that while adjusting the distance between the two limiting seats 7, the normal installation of the moving deviation correction mechanism 8 is not affected; Subsequently, the electronic label tape roll output device is used to transport the electronic label tape roll. When the electronic label tape roll is transported into the limiting groove 71, the piston rod on the punching cylinder 72 punches the electronic label tape roll, and the punching waste will fall into the recovery frame 91 for collection. The recovery frame 91 is arranged in a drawable manner and can be detached and replaced; During the transportation of the electronic label tape reel, the deviation sensor 8492 detects the offset amount of the edge of the real-time monitored position deviation of the electronic label tape reel during transmission and winding through optical, electromagnetic or mechanical means, and converts the physical signal into an electrical signal. After receiving the signal from the sensor, the controller compares it with the preset standard value, calculates the deviation direction and amplitude, and generates a proportional adjustment instruction. The deviation amount is converted into a pulse signal of the motor driver of the electric push rod 848. The electric push rod 848 adjusts the position of the second slide 846 according to the control instruction, so that the second slide 846 moves on the second guide rail seat 847. When the second slide 846 moves, it will cause the rotating roller 844 to drive the first slide 842 to move correspondingly on the first guide rail seat 841, causing the rotating roller 844 to shift, so that the electronic label tape reel returns to the predetermined trajectory, conducts stable transmission, and increases the punching accuracy.

[0028] The control mode of the present invention is controlled by manually starting and closing the switch. The wiring diagram of the power element and the power supply are common knowledge in the art, and the present invention mainly aims to protect the mechanical device, so the control mode and wiring layout of the present invention will not be explained in detail.

[0029] The control mode of the present invention is automatically controlled by a controller. The control circuit of the controller can be realized by simple programming by those skilled in the art, and the power supply is also common knowledge in the art. The present invention mainly aims to protect the mechanical device, so the control mode and circuit connection of the present invention will not be explained in detail.

[0030] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A chip label punching device, characterized in that: It includes a support plate (1); At the front and rear ends of the top of the support plate (1), a first guide rail (2) is fixed. The first guide rail (2) is slidably matched with the bottom of the moving plate (3). A locking button (4) is arranged at the front end of the moving plate (3). At the left and right ends of the top of the moving plate (3), second guide rails (5) are relatively fixed. The second guide rails (5) are slidably matched with the bottom of the moving seat (6). A limiting seat (7) is fixed at the top of the moving seat (6). A moving deviation correction mechanism (8) is arranged at the right end of the limiting seat (7). A material collecting mechanism (9) is installed at the bottom of the support plate (1); There are two groups of the moving seats (6) in total. Limiting seats (7) are relatively arranged on the front and rear sides of the moving seats (6). A limiting groove (71) is opened in the middle of the limiting seat (7). A punching cylinder (72) is fixed at the top of the limiting seat (7). The bottom piston rod of the punching cylinder (72) vertically penetrates through the top of the limiting groove (71). The material collecting mechanism (9) includes a recycling frame (91), a pull rod (92), and a guide rail (93). The top of the guide rail (93) is bolted to the support plate (1). The recycling frame (91) is fixed to the rear end of the pull rod (92).

2. The chip label punching device according to claim 1, characterized in that: There are two groups of the guide rails (93) in total. The guide rails (93) are relatively arranged along the left and right sides of the recycling frame (91). Guide bumps are arranged on the inner sides of the guide rails (93). The recycling frame (91) is slidably matched with the guide bumps.

3. A chip label punching device according to claim 1, characterized in that: The moving deviation correction mechanism (8) includes a first guide seat (81), a first sliding mechanism (82), a first connecting seat (83), an adjusting mechanism (84), a second connecting seat (85), a second sliding mechanism (86), and a second guide seat (87). The first guide seat (81) and the second guide seat (87) are horizontally arranged relative to each other. The bottoms of the first guide seat (81) and the second guide seat (87) are respectively fixed to the two groups of limiting seats (7) located on the front and rear sides. The first guide seat (81) is slidably matched with the inner side of the first sliding mechanism (82). The right end of the first sliding mechanism (82) is fixed to the first connecting seat (83). An adjusting mechanism (84) is installed at the top of the first connecting seat (83). The rear end of the adjusting mechanism (84) is fixed to the second connecting seat (85). The second connecting seat (85) is fixed to the right end of the second sliding mechanism (86). The second sliding mechanism (86) is slidably matched with the top of the second guide seat (87).

4. The chip label punching device according to claim 3, characterized in that: The first connecting seat (83) and the second connecting seat (85) are horizontally arranged relative to each other. The cross-sections of the first connecting seat (83) and the second connecting seat (85) are both in an L-shaped structure.

5. The chip label punching device according to claim 3, characterized in that: The adjusting mechanism (84) includes a first guide rail seat (841), a first sliding seat (842), a first movable seat (843), a rotating roller (844), a second movable seat (845), a second sliding seat (846), a second guide rail seat (847), an electric push rod (848), and an identifier (849). The bottom of the first guide rail seat (841) is fixed to the first connecting seat (83). The middle parts of the first guide rail seat (841) and the first sliding seat (842) are slidably matched. The top of the first sliding seat (842) is movably connected to the first movable seat (843). The front and rear ends of the rotating roller (844) are respectively connected to the first movable seat (843) and the second movable seat (845). The second movable seat (845) is rotatably matched with the top of the second sliding seat (846). The inner side of the second sliding seat (846) is slidably matched with the second guide rail seat (847). The second sliding seat (846) is fixed to the output end of the electric push rod (848), and the bottom of the electric push rod (848) is fixedly connected to the second guide rail seat (847). The identifier (849) is arranged at the right front end of the second guide rail seat (847).

6. The chip label punching device according to claim 5, wherein: The first guide rail seat (841) and the second guide rail seat (847) are symmetrically arranged at an included angle, and the structure of the first guide rail seat (841) is consistent with that of the second guide rail seat (847). Two groups of sliding rods are arranged on the inner sides of the first guide rail seat (841). Disassembly structures one (8441) and two (8442) are respectively arranged at the front and rear ends of the rotating roller (844). The front end of the disassembly structure one (8441) is fixed to the first movable seat (843). The rear end of the disassembly structure two (8442) is fixed to the second movable seat (845). The structure of the disassembly structure one (8441) is consistent with that of the disassembly structure two (8442). The disassembly structure one (8441) includes a fixed sleeve (84411), a bearing sleeve (84412), positioning beads (84413), a compression spring (84414), a sliding sleeve (84415), a connecting rod (84416), and a movable rod (84417). The front end of the fixed sleeve (84411) is fixed to the first movable seat (843). The bearing sleeve (84412) is embedded in the middle of the fixed sleeve (84411). The positioning beads (84413) are circumferentially distributed on the inner edge of the right end of the fixed sleeve (84411). The top of the positioning beads (84413) contacts the sliding sleeve (84415). The sliding sleeve (84415) is slidably matched with the right end of the fixed sleeve (84411). The sliding sleeve (84415) is fixed to the right end of the compression spring (84414), and the left end of the compression spring (84414) is fixedly connected to the fixed sleeve (84411). The connecting rod (84416) and the right end of the movable rod (84417) are of an integrated structure. The movable rod (84417) is movably matched with the inner side of the bearing sleeve (84412).

7. The chip label punching device according to claim 5, wherein: The recognizer (849) includes a sliding groove (8491), a deviation correction sensor (8492), a pressing block (8393), a screw rod (8494), and a fixed seat (8495). The left rear end of the fixed seat (8495) is fixed to the second guide rail seat (847). A sliding groove (8491) is formed at the front end of the fixed seat (8495). The deviation correction sensor (8492) is slidably engaged with the inner side of the sliding groove (8491). The bottom of the deviation correction sensor (8492) is threadedly engaged with the screw rod (8494). The screw rod (8494) is movably connected to the inner side of the pressing block (8393), and the pressing block (8393) moves synchronously with the screw rod (8494).

8. A chip label punching device according to claim 7, characterized in that: The center line of the pressing block (8393) and the screw rod (8494) is in the same vertical direction, and the top of the pressing block (8393) is in contact with the fixed seat (8495).

9. The chip label punching device according to claim 3, characterized in that: The structure of the first sliding mechanism (82) coincides with the structure of the second sliding mechanism (86). The first sliding mechanism (82) includes a sliding frame (821), a positioning rod (822), a limiting rod (823), a pulley (824), and sliding beads (825). A pulley (824) is arranged at the upper end inside the sliding frame (821). The pulley (824) is slidably engaged with the top of the first guide seat (81). A positioning rod (822) is threadedly connected to the right end of the sliding frame (821). The sliding frame (821) is threadedly engaged with the limiting rod (823). Sliding beads (825) are oppositely arranged at the left and right ends inside the sliding frame (821).

10. A chip label punching device according to claim 9, characterized in that: The sliding beads (825) are movably connected to the inner side of the sliding frame (821), and the limiting rod (823) is arranged in an inclined shape.

Citation Information

Patent Citations

  • Punching positioning mechanism for electronic tag

    CN221872258U