Feeding assembly for button machine

By designing a feeding assembly for a button machine, using an upper feeding cylinder and a lower feeding cylinder to drive the push rod, combined with a limit module and a pushing component, the problem of unstable feeding in the button machine was solved, and accurate and stable button delivery was achieved.

CN224242034UActive Publication Date: 2026-05-15GUANGDONG DASUN TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGDONG DASUN TECH CO LTD
Filing Date
2025-06-05
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

Existing button machine feeding components are prone to overfeeding or underfeeding, resulting in unstable button pressing.

Method used

A feeding assembly for a button machine is designed, including an upper feeding assembly and a lower feeding assembly. Through the cooperation of the upper feeding cylinder and the upper push rod, and the lower feeding cylinder and the lower push rod, the feeding module and the unloading module are fed one by one in sequence. The limit module and the pushing component ensure the stable delivery of buttons.

Benefits of technology

It achieves precise feeding of the button machine, improves the stability and feeding efficiency of the buttons, and ensures that only one button is fed at a time, avoiding overfeeding or missed feeding.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of button machines, and discloses a feeding assembly for a button machine, which comprises a rack, an upper vibrating disc and a lower vibrating disc, an upper feeding assembly matched with the upper vibrating disc and a lower feeding assembly matched with the lower vibrating disc are arranged in the rack, the upper feeding assembly comprises an upper feeding element and an upper push rod, and the lower feeding assembly comprises a lower feeding element and a lower push rod. The lower feeding assembly comprises a lower feeding element and a lower push rod, the upper vibration disc and the lower vibration disc are each provided with a material channel leading to the interior of the rack, the upper push rod and the lower push rod are arranged at feeding ports of the material channels, the upper feeding element is in transmission connection with the upper push rod, and the upper feeding element drives the upper push rod to move to the position in front of or behind the material channels. The lower feeding element is in transmission connection with the lower push rod and drives the lower push rod to move to the position in front of or behind the material channel. According to the button machine, the upper feeding element is matched with the upper push rod so that feeding can be conducted on the feeding module one by one in sequence, the lower feeding element is matched with the lower push rod so that feeding can be conducted on the discharging module one by one in sequence, and then accurate feeding of the button machine is achieved.
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Description

Technical Field

[0001] This utility model relates to the field of button machine technology, and in particular to a feeding component for a button machine. Background Technology

[0002] A button-making machine is a device used to fasten buttons onto clothing. It is commonly used in the garment processing industry because it can quickly attach buttons to clothing, greatly improving garment production efficiency, and is therefore widely used.

[0003] Existing button machines typically include an upper die assembly for punching and pressing buttons onto garments, a lower die assembly for cooperating with the upper die assembly, and a feeding assembly for feeding materials to the upper and lower die assemblies. Existing feeding assemblies generally include an upper vibrating plate for feeding the upper die assembly and a lower vibrating plate for feeding the lower die assembly. The buttons are fed and transported through the upper and lower vibrating plates, which can easily lead to overfeeding or underfeeding, resulting in unstable button pressing. Therefore, improvements are needed. Summary of the Invention

[0004] The main purpose of this utility model is to provide a feeding component for a button machine, which aims to provide a feeding component that feeds the loading module and the unloading module one by one in sequence.

[0005] To achieve the above objectives, this utility model proposes a feeding assembly for a button machine, including a frame and an upper vibrating plate and a lower vibrating plate disposed on the frame. The frame is provided with an upper feeding assembly that cooperates with the upper vibrating plate and a lower feeding assembly that cooperates with the lower vibrating plate. The upper feeding assembly includes an upper feeding element and an upper push rod, and the lower feeding assembly includes a lower feeding element and a lower push rod. The upper and lower vibrating plates are each provided with a material channel leading into the frame. The upper push rod and the lower push rod are respectively disposed at the inlet of the material channel. The upper feeding element is driven to the upper push rod, and the upper feeding element drives the upper push rod to move to the front or rear of the material channel. The lower feeding element is driven to the lower push rod, and the lower feeding element drives the lower push rod to move to the front or rear of the material channel.

[0006] Specifically, the upper feeding element includes an upper feeding cylinder, which is connected to the rear end of the upper push rod. The front end of the upper push rod is provided with a first pushing part, which has an inclined surface.

[0007] Specifically, the upper feeding assembly further includes an upper feeding slide rail, an upper feeding slider, and an upper feeding seat. The upper feeding slide rail is located at the frame, the upper feeding slider is slidably located on the upper feeding slide rail, the upper feeding seat is connected to the upper feeding slide rail, the piston rod end of the upper feeding cylinder is connected to the upper feeding seat, the upper feeding seat is provided with an upper assembly groove, and the rear end of the upper push rod is located in the upper assembly groove.

[0008] Specifically, the upper feeding assembly further includes an upper locking and limiting module, which includes an upper locking frame and an upper locking hook. The upper locking frame is connected to the frame and located above the upper push rod, and the upper locking hook is hinged to the upper locking frame and located directly in front of the upper push rod.

[0009] Specifically, the upper limit hook is L-shaped, and the upper limit frame is provided with a connecting groove. One end of the upper limit hook is hinged in the connecting groove, and the other end of the upper limit hook extends downward to the feed inlet of the material channel of the upper vibrating plate and is located directly in front of the upper push rod. A baffle spring is provided in the connecting groove. One end of the baffle spring abuts against the upper surface of the upper limit hook, and the other end of the baffle spring abuts against the inner wall of the connecting groove, so as to realize the downward rotation and reset of the upper limit hook.

[0010] Specifically, the lower feeding element includes a lower feeding cylinder, which is connected to the rear end of the lower push rod. The lower push rod is provided with a second pushing part, which has an inwardly concave pushing groove.

[0011] Specifically, the lower feeding assembly further includes a lower feeding slide rail, a lower feeding slider, and a lower feeding seat. The lower feeding slide rail is located at the frame, the lower feeding slider is slidably mounted on the lower feeding slide rail, the lower feeding seat is connected to the lower feeding slide rail, the piston rod end of the lower feeding cylinder is connected to the lower feeding seat, the lower feeding seat is provided with a lower assembly hole, and the rear end of the lower push rod is connected to the lower assembly hole through an external screw.

[0012] Specifically, the lower feeding assembly further includes a lower ejector module, which includes a lower ejector base plate. The lower ejector base plate is connected to the frame and located below the lower feeding assembly. The upper surface of the lower ejector base plate is provided with a lower ejector plate, and the upper surface of the lower ejector plate abuts against the lower surface of the lower push rod. The upper surface of the lower ejector plate has a first ejector baffle and a second ejector baffle. The first ejector baffle is located at the front end of the lower push rod, and the second ejector baffle is located in front of the first ejector baffle.

[0013] Specifically, the first outlet baffle includes a connecting part and a material blocking part. The material blocking part is located at the feed inlet of the material channel of the lower vibrating plate. The material blocking part has a feeding inclined surface facing the direction of the push groove. The bottom plate of the lower outlet is provided with a torsion spring. The connecting part is connected to the torsion spring to realize the rearward rotation and reset of the material blocking part.

[0014] Specifically, the second discharge baffle includes a feeding section and a discharge section. The feeding section extends to the front of the feed inlet of the material channel of the lower vibrating plate. The inner side of the feeding section is provided with a clearance slope that cooperates with the first discharge baffle. The discharge section is provided with a discharge port, and the inner side of the feeding section communicates with the discharge port.

[0015] This utility model's technical solution uses an upper feeding element and an upper push rod to feed the feeding module one by one in sequence, and uses a lower feeding element and a lower push rod to feed the unloading module one by one in sequence, thereby achieving precise feeding of the button machine. Attached Figure Description

[0016] Figure 1 This is one of the three-dimensional structural diagrams of the assembled state of this utility model.

[0017] Figure 2 This is the second three-dimensional structural diagram of the assembled state of this utility model.

[0018] Figure 3 This is one of the three-dimensional schematic diagrams of the upper feeding assembly and the lower feeding assembly of this utility model.

[0019] Figure 4 This is the second three-dimensional schematic diagram of the upper feeding assembly and the lower feeding assembly of this utility model.

[0020] The reference numerals in the attached drawings include: 10. Frame; 11. Upper vibratory plate; 12. Lower vibratory plate; 20. Upper feeding assembly; 21. Upper feeding cylinder; 22. Upper push rod; 23. Upper feeding slide rail; 24. Upper feeding slider; 25. Upper feeding seat; 26. Upper limit frame; 27. Upper limit hook; 28. Baffle spring; 30. Lower feeding assembly; 31. Lower feeding cylinder; 32. Lower push rod; 33. Lower feeding slide rail; 34. Lower feeding slider; 35. Upper feeding seat; 36. Lower ejector plate; 361. Torsion spring; 37. Lower ejector plate; 38. First ejector baffle; 39. Second ejector baffle; 40. Upper mold assembly; 50. Lower mold assembly. Detailed Implementation

[0021] The technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this utility model, and not all of them. Based on the embodiments of this utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of this utility model.

[0022] It should be noted that if any directional indication (such as up, down, left, right, front, back, top, bottom, inside, outside, vertical, horizontal, longitudinal, counterclockwise, clockwise, circumferential, radial, axial, etc.) is involved in the embodiments of this utility model, the directional indication is only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indication will also change accordingly.

[0023] Furthermore, if the embodiments of this utility model involve descriptions such as "first" or "second," such descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, features defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, such a combination of technical solutions should be considered non-existent and not within the scope of protection claimed by this utility model.

[0024] like Figures 1 to 4 As shown, a feeding assembly for a button machine includes a frame 10 and an upper vibrating plate 11 and a lower vibrating plate 12 disposed on the frame 10. The frame 10 is provided with an upper feeding assembly 20 that cooperates with the upper vibrating plate 11 and a lower feeding assembly 30 that cooperates with the lower vibrating plate 12. The upper feeding assembly 20 includes an upper feeding element and an upper push rod 22, and the lower feeding assembly 30 includes a lower feeding element and a lower push rod 32. The upper vibrating plate 11 and the lower vibrating plate 12 are respectively provided with a material channel leading into the frame 10. The upper push rod 22 and the lower push rod 32 are respectively disposed at the inlet of the material channel. The upper feeding element is driven to the upper push rod 22, and the upper feeding element drives the upper push rod 22 to move to the front or rear of the material channel. The lower feeding element is driven to the lower push rod 32, and the lower feeding element drives the lower push rod 32 to move to the front or rear of the material channel. When installing buttons on garments, due to the different structures of the upper and lower buttons, the upper mold assembly 40 and the lower mold assembly 50 need to be fed sequentially. When feeding the upper mold assembly 40, the upper vibrating plate 11 feeds the upper button, causing it to move along the material channel to the inlet. Then, through the cooperation of the upper feeding element and the upper push rod 22, the upper feeding element drives the upper push rod 22 to push the upper button located at the inlet, and pushes the upper button to the corresponding processing position one by one, so as to achieve precise feeding of the upper mold assembly 40. When feeding the lower mold assembly 50, the lower vibrating plate 12 feeds the lower button, causing it to move along the material channel to the inlet. Then, through the cooperation of the lower feeding element and the lower push rod 32, the lower feeding element drives the lower push rod 32 to push the lower button located at the inlet, and pushes the lower button to the corresponding processing position one by one, so as to achieve precise feeding of the lower mold assembly 50.

[0025] The upper feeding element includes an upper feeding cylinder 21, which is connected to the rear end of an upper push rod 22 via a transmission connection. The front end of the upper push rod 22 is provided with a first pushing part, which has an inclined surface. In this embodiment, the upper feeding cylinder 21 is used as the upper feeding element. The upper feeding cylinder 21 drives the upper push rod 22 to achieve feeding of the upper buckle. Alternatively, a motor can be used to drive the upper push rod 22 as needed.

[0026] The upper feeding assembly 20 also includes an upper feeding slide rail 23, an upper feeding slider 24, and an upper feeding seat 25. The upper feeding slide rail 23 is located at the frame 10, the upper feeding slider 24 is slidably mounted on the upper feeding slide rail 23, the upper feeding seat 25 is connected to the upper feeding slide rail 23, the piston rod end of the upper feeding cylinder 21 is connected to the upper feeding seat 25, and the upper feeding seat 25 is provided with an upper assembly groove, the rear end of the upper push rod 22 is located in the upper assembly groove. By setting the upper feeding slide rail 23 and the upper feeding slider 24, the stability of the upper push rod 22 during movement is improved, thereby improving the feeding efficiency of the upper mold assembly 40.

[0027] The upper feeding assembly 20 also includes an upper locking limit module, which includes an upper limit frame 26 and an upper limit hook 27. The upper limit frame 26 is connected to the frame 10 and is located above the upper push rod 22. The upper limit hook 27 is hinged to the upper limit frame 26 and is located directly in front of the upper push rod 22. The upper limit hook 27 is L-shaped. A connecting groove is provided at the upper limit frame 26. One end of the upper limit hook 27 is hinged in the connecting groove. The other end of the upper limit hook 27 extends downward to the feed inlet of the material channel of the upper vibrating plate 11 and is located directly in front of the upper push rod 22. A baffle spring 28 is provided in the connecting groove. One end of the baffle spring 28 abuts against the upper surface of the upper limit hook 27, and the other end of the baffle spring 28 abuts against the inner wall of the connecting groove, so as to realize the downward rotation and reset of the upper limit hook. The upper limit bracket 26 is set to allow the upper limit hook 27 to be installed above the upper push rod 22. The upper limit hook 27 is set to limit the upper buckle located at the feed inlet of the material channel. At the same time, since the first push part has an inclined surface, when the upper push rod 22 pushes the upper buckle, the upper buckle will push the upper limit hook 27 to lift upward. At this time, the upper limit hook 27 moves to the inclined surface. When the upper push rod 22 finishes pushing the material and moves backward, the upper limit hook 27 moves downward along the inclined surface to reset due to the downward force of the baffle spring 28. This is repeated to ensure that when the upper feeding assembly 20 feeds the upper mold assembly 40, only one upper buckle is fed at a time, and stable material transportation is achieved.

[0028] The lower feeding element includes a lower feeding cylinder 31, which is connected to the rear end of a lower push rod 32 via a transmission connection. The lower push rod 32 has a second pushing part with a concave pushing groove. In this embodiment, the lower feeding cylinder 31 is used as the lower feeding element. The lower push rod 32 is driven by the lower feeding cylinder 31 to achieve feeding of the lower part. Alternatively, a motor can be used to drive the lower push rod 32 as needed.

[0029] The lower feeding assembly 30 also includes a lower feeding slide rail 33, a lower feeding slider 34, and a lower feeding seat 35. The lower feeding slide rail 33 is located at the frame 10, the lower feeding slider 34 is slidably mounted on the lower feeding slide rail 33, the lower feeding seat 35 is connected to the lower feeding slide rail 33, the piston rod end of the lower feeding cylinder 31 is connected to the lower feeding seat 35, and the lower feeding seat 35 is provided with a lower assembly hole. The rear end of the lower push rod 32 is connected to the lower assembly hole through an external screw. By setting the lower feeding slide rail 33 and the lower feeding slider 34, the stability of the lower push rod 32 during movement is improved, thereby improving the feeding efficiency of the lower mold assembly 50.

[0030] The lower feeding assembly 30 also includes a lower ejector module, which includes a lower ejector base plate 36. The lower ejector base plate 36 is connected to the frame 10 and located below the lower feeding assembly 30. The upper surface of the lower ejector base plate 36 is provided with a lower ejector plate 37, and the upper surface of the lower ejector plate 37 abuts against the lower surface of the lower push rod 32. The upper surface of the lower ejector plate 37 has a first ejector baffle 38 and a second ejector baffle 39. The first ejector baffle 38 is located at the front end of the lower push rod 32, and the second ejector baffle 39 is located in front of the first ejector baffle 38. The first ejector baffle 38 includes... The connecting part and the baffle part are provided. The baffle part is located at the feed inlet of the material channel of the lower vibrating plate 12. The baffle part is provided with a feed slope facing the direction of the push groove. The bottom plate 36 of the lower discharge button is provided with a torsion spring 361. The connecting part is connected to the torsion spring 361 to realize the rearward rotation and reset of the baffle part. The second discharge button baffle 39 includes a feeding part and a discharging part. The feeding part extends to the front of the feed inlet of the material channel of the lower vibrating plate 12. The inner side of the feeding part is provided with a clearance slope that cooperates with the first discharge button baffle 38. The discharging part is provided with a discharge port. The inner side of the feeding part communicates with the discharging port. By setting the lower ejector plate 37, the lower push rod 32 can eject the lower buckle along the lower ejector plate 37 when feeding the lower buckle. When feeding the lower buckle, the front end of the lower push rod 32 is provided with a pusher groove to push the lower buckle more stably. At the same time, it cooperates with the first ejector baffle 38 to push the lower buckle one by one. Then, the second ejector baffle 39 cooperates with the lower push rod 32 to push the lower buckle one by one to move to the discharge port in sequence, so as to achieve stable feeding of the lower buckle.

[0031] The above description is only a preferred embodiment of the present utility model and does not limit the patent scope of the present utility model. All equivalent structural transformations made under the inventive concept of the present utility model using the contents of the present utility model specification and drawings, or direct / indirect applications in other related technical fields, are included within the patent protection scope of the present utility model.

Claims

1. A feeding assembly for a button making machine, comprising a frame and an upper vibrating plate and a lower vibrating plate disposed on the frame, characterized in that: The frame is equipped with an upper feeding assembly that works with the upper vibrating plate and a lower feeding assembly that works with the lower vibrating plate. The upper feeding assembly includes an upper feeding element and an upper push rod, and the lower feeding assembly includes a lower feeding element and a lower push rod. The upper and lower vibrating plates are each provided with a material channel leading into the frame. The upper push rod and the lower push rod are respectively located at the inlet of the material channel. The upper feeding element is driven to the upper push rod, and the upper feeding element drives the upper push rod to move to the front or rear of the material channel. The lower feeding element is driven to the lower push rod, and the lower feeding element drives the lower push rod to move to the front or rear of the material channel.

2. The feeding assembly for a button machine according to claim 1, characterized in that: The upper feeding element includes an upper feeding cylinder, which is connected to the rear end of the upper push rod. The front end of the upper push rod is provided with a first pushing part, which has an inclined surface.

3. The feeding assembly for a button machine according to claim 2, characterized in that: The upper feeding assembly also includes an upper feeding slide rail, an upper feeding slider, and an upper feeding seat. The upper feeding slide rail is located at the frame, the upper feeding slider is slidably located on the upper feeding slide rail, the upper feeding seat is connected to the upper feeding slide rail, the piston rod end of the upper feeding cylinder is connected to the upper feeding seat, the upper feeding seat is provided with an upper assembly groove, and the rear end of the upper push rod is located in the upper assembly groove.

4. The feeding assembly for a button machine according to claim 3, characterized in that: The upper feeding assembly also includes an upper locking and limiting module, which includes an upper locking frame and an upper locking hook. The upper locking frame is connected to the frame and located above the upper push rod, and the upper locking hook is hinged to the upper locking frame and located directly in front of the upper push rod.

5. A feeding assembly for a button machine according to claim 4, characterized in that: The upper limit hook is L-shaped, and a connecting groove is provided at the upper limit frame. One end of the upper limit hook is hinged in the connecting groove, and the other end of the upper limit hook extends downward to the feed inlet of the material channel of the upper vibrating plate and is located directly in front of the upper push rod. A baffle spring is provided in the connecting groove. One end of the baffle spring abuts against the upper surface of the upper limit hook, and the other end of the baffle spring abuts against the inner wall of the connecting groove, so as to realize the downward rotation and reset of the upper limit hook.

6. The feeding assembly for a button machine according to claim 1, characterized in that: The lower feeding element includes a lower feeding cylinder, which is connected to the rear end of the lower push rod. The lower push rod is provided with a second pushing part, which has an inwardly concave pushing groove.

7. A feeding assembly for a button machine according to claim 6, characterized in that: The lower feeding assembly also includes a lower feeding slide rail, a lower feeding slider, and a lower feeding seat. The lower feeding slide rail is located at the frame, the lower feeding slider is slidably mounted on the lower feeding slide rail, the lower feeding seat is connected to the lower feeding slide rail, the piston rod end of the lower feeding cylinder is connected to the lower feeding seat, the lower feeding seat is provided with a lower assembly hole, and the rear end of the lower push rod is connected to the lower assembly hole through an external screw.

8. A feeding assembly for a button machine according to claim 7, characterized in that: The lower feeding assembly further includes a lower ejector module, which includes a lower ejector base plate. The lower ejector base plate is connected to the frame and located below the lower feeding assembly. The upper surface of the lower ejector base plate is provided with a lower ejector plate. The upper surface of the lower ejector plate abuts against the lower surface of the lower push rod. The upper surface of the lower ejector plate has a first ejector baffle and a second ejector baffle. The first ejector baffle is located at the front end of the lower push rod, and the second ejector baffle is located in front of the first ejector baffle.

9. A feeding assembly for a button machine according to claim 8, characterized in that: The first outlet baffle includes a connecting part and a material blocking part. The material blocking part is located at the feed inlet of the material channel of the lower vibrating plate. The material blocking part has a feeding inclined surface facing the direction of the push groove. The bottom plate of the lower outlet is provided with a torsion spring. The connecting part is connected to the torsion spring to realize the rearward rotation and reset of the material blocking part.

10. A feeding assembly for a button machine according to claim 9, characterized in that: The second discharge baffle includes a feeding section and a discharge section. The feeding section extends to the front of the feed inlet of the material channel of the lower vibrating plate. The inner side of the feeding section is provided with a clearance slope that cooperates with the first discharge baffle. The discharge section is provided with a discharge port, and the inner side of the feeding section communicates with the discharge port.