Vibrating disc for invisible spring pull head
By introducing a pull-up push mechanism and a spiral feeding track into the zipper head vibration plate, the problem of difficult to adjust the vertical relationship between the pull-up and the zipper head body is solved, ensuring the reasonable posture of the zipper head before processing and improving processing efficiency.
Patent Information
- Application Number
- CN202510813333.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-18
- Publication Date
- 2025-08-15
AI Technical Summary
The existing zipper head vibration disc cannot effectively flatten the vertical relationship between the pull ring and the zipper head body, resulting in low processing efficiency.
A vibrating disc with invisible spring pulling head including a vibrating disk hopper and a pulling ring pushing mechanism is designed. By setting up a driving member and pushing block, the pulling ring is pushed to the body perpendicular to the zipper head, combining a spiral feeding track and a multi-layer bearing plate structure to ensure that the zipper head has a reasonable attitude before processing.
The reasonable posture of the zipper head before processing is achieved, and the processing efficiency and efficient work are improved.
Smart Images

Figure CN120482631A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the field of zipper head conveying, in particular to an invisible spring slider vibration plate. Background Art
[0002] The connection between the pull ring of each zipper head and the zipper head body is an interference fit connection, and in most cases, the pull ring and the zipper are in a vertical relationship. The pull ring needs to be flattened to form a vertical relationship with the zipper head body before the next processing can be carried out. However, the existing zipper head vibration plate can only perform simple feeding and cannot flatten the pull ring of the zipper head, so its use is limited. Summary of the Invention
[0003] In order to overcome the above-mentioned shortcomings, the present invention aims to provide a technical solution that can solve the above-mentioned problems.
[0004] A vibration plate with an invisible spring pull head includes a vibration plate hopper and a pull ring flattening mechanism. A feeding track is provided on the inner wall of the vibration plate hopper, a return hopper is provided on the outer side of the vibration plate hopper, and a discharge rack is provided in the return hopper. The feeding track is spirally arranged from the bottom of the vibration plate hopper toward the discharge rack, and the end of the discharge rack extends to the outside of the return hopper. The pull ring flattening mechanism includes a mounting frame, which is arranged on the outer side of the discharge rack. A driving member is provided on the mounting frame, and the output end of the driving member faces the discharge rack. A push block is provided on the output end of the driving member, and the push block is located below the discharge rack.
[0005] As a further solution of the present invention: the discharging rack includes a conveying section and a discharging section, the starting end of the conveying section is connected to the end of the feeding track, the end of the conveying section is connected to the starting end of the discharging section, the end of the discharging section extends to the outside of the return hopper, and the conveying section includes a first supporting plate, and the lower edge of the first supporting plate is folded to form a first L-shaped supporting fold.
[0006] As a further solution of the present invention: the angle between the first supporting plate and the inner wall of the return hopper is 0° to 30°, and the angle between the first supporting plate and the inner wall of the return hopper gradually decreases from the beginning to the end of the first supporting plate.
[0007] As a further solution of the present invention: the discharge section includes a second supporting plate, the second supporting plate is parallel to the inner wall of the return hopper, the lower edge of the second supporting plate is bent to form an L-shaped second supporting fold, and an L-shaped baffle is detachably provided on the second supporting plate above the second supporting fold, and a feeding trough is formed between the baffle and the second supporting fold.
[0008] As a further solution of the present invention: the discharging section also includes a third supporting plate, which is arranged at the end of the second supporting plate, and the central axis of the third supporting plate is perpendicular to the central axis of the second supporting plate. Two limiting plates are arranged on the third supporting plate at intervals, and a discharging trough is formed between the two limiting plates, and the discharging trough is connected to the feeding trough.
[0009] As a further solution of the present invention: a mounting portion is provided on the baffle, a first waist-shaped hole is opened on the mounting portion, a first bolt is passed through the first waist-shaped hole, a fixing portion is provided on the second supporting plate, a first screw hole is opened on the fixing portion, and the first bolt passes through the first waist-shaped hole and is threadedly connected to the first screw hole.
[0010] As a further solution of the present invention: a support piece is provided on the second load-bearing fold near the end of the second load-bearing plate, the support piece is parallel to the second load-bearing plate, the upper edge of the support piece is bent to form a support fold, the support fold is perpendicular to the second load-bearing plate, and the side of the support fold away from the third load-bearing plate is bent to form a transition fold, and the angle between the transition fold and the support fold is 170°~175°.
[0011] As a further solution of the present invention: the mounting frame includes a connecting plate, which is arranged on the side of the second supporting plate away from the feed trough, and a mounting plate is provided on the side of the connecting plate away from the second supporting plate. The angle between the central axis of the mounting plate and the central axis of the connecting plate is 30°~60°, and a fixing plate is provided on one side of the mounting plate. A fixing hole is provided on the fixing plate, and a second bolt is passed through the fixing hole. A second waist-shaped hole is provided on the mounting plate, and a second screw hole is provided on the driving member. The second bolt passes through the fixing hole, the second waist-shaped hole and the second screw hole and is threadedly connected.
[0012] As a further solution of the present invention: a material-moving rod is provided on the outer side of the vibrating disk hopper, a hose is sleeved on the end of the material-moving rod, and the end of the hose is bent toward the first load-bearing fold.
[0013] As a further solution of the present invention, an air blowing pipe is provided on the outer side of the return hopper, and the end of the air blowing pipe is bent toward the end of the hose.
[0014] Compared with the prior art, the beneficial effect of the present invention is that by providing a pull ring flattening mechanism, the pull ring can be pushed to be perpendicular to the zipper head body during the feeding process of the zipper head, thereby ensuring that the posture of the zipper head before processing is reasonable and ensuring efficient work.
[0015] Additional aspects and advantages of the present invention will be set forth in part in the description which follows and, in part, will be obvious from the description which follows, or may be learned by practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0017] Figure 1 It is a partial structural diagram of the vibrating disk hopper of the present invention.
[0018] Figure 2 It is a partial structural diagram of the first supporting plate of the present invention.
[0019] Figure 3 It is a partial structural schematic diagram of the second supporting plate of the present invention.
[0020] Figure 4 It is a partial structural schematic diagram of the support plate of the present invention.
[0021] Figure 5 It is a structural schematic diagram of the fixed plate portion of the present invention.
[0022] In the figure: 1. Vibrating disk hopper, 2. Feeding track, 3. Return hopper, 4. Discharging rack, 5. Mounting rack, 6. Driving member, 7. Push block, 8. First bearing plate, 9. First bearing fold, 10. Second bearing plate, 11. Second bearing fold, 12. Baffle, 13. Feed trough, 14. Third bearing plate, 15. Limiting piece, 16. Discharging trough, 17. Mounting part, 18. Fixing part, 19. First waist-shaped hole, 20. First bolt, 21. Blowing pipe, 22. First screw hole, 23. Supporting piece, 24. Supporting fold, 25. Transition fold, 26. Connecting plate, 27. Mounting plate, 28. Fixing plate, 29. Second bolt, 30. Second waist-shaped hole, 31. Material removing rod, 32. Hose. DETAILED DESCRIPTION
[0023] The following is a clear and complete description of the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only some embodiments of the present invention, not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making any creative efforts are within the scope of protection of the present invention.
[0024] See also Figures 1 to 5In an embodiment of the present invention, a vibration plate for an invisible spring slider includes a vibration plate hopper 1 and a pull ring flattening mechanism. A feed track 2 is provided on the inner wall of the vibration plate hopper 1, a return hopper 3 is provided on the outer side of the vibration plate hopper 1, and a discharge rack 4 is provided in the return hopper 3. The feed track 2 is spirally arranged from the bottom of the vibration plate hopper 1 toward the discharge rack 4, and the end of the discharge rack 4 extends to the outside of the return hopper 3. The pull ring flattening mechanism includes a mounting frame 5, which is arranged on the outer side of the discharge rack 4. A driving member 6 is provided on the mounting frame 5, and the output end of the driving member 6 faces the discharge rack 4. A push block 7 is provided on the output end of the driving member 6, and the push block 7 is located below the discharge rack 4. In this way, when the zipper head moves along the discharge rack 4 to the push block 7, the driving member 6 drives the push block 7 to move, so as to push the pull ring to be perpendicular to the zipper head body, thereby ensuring that the posture of the zipper head before processing is reasonable and the work is carried out efficiently.
[0025] The discharge rack 4 includes a conveying section and a discharge section. The conveying section's starting point is connected to the end of the feed track 2, and the end of the conveying section is connected to the starting point of the discharge section. The end of the discharge section extends to the exterior of the return hopper 3. The conveying section includes a first carrier plate 8, the lower edge of which is folded to form an L-shaped first bearing fold 9. The angle between the first carrier plate 8 and the inner wall of the return hopper 3 is between 0° and 30°, and the angle between the first carrier plate 8 and the inner wall of the return hopper 3 gradually decreases from the starting point to the end of the first carrier plate 8. The discharge section includes a second carrier plate 10, which is parallel to the inner wall of the return hopper 3. The lower edge of the second carrier plate 10 is bent to form an L-shaped second bearing fold 11. A removable L-shaped baffle 12 is provided on the second carrier plate 10 above the second bearing fold 11, forming a feed trough 13 between the baffle 12 and the second bearing fold 11. In this way, the part where the first supporting plate 8 is connected to the feeding track 2 is tilted inward to ensure that the zipper head moves quickly and is not easy to fall off. The second supporting plate 10 is set vertically, so that the zipper head is in a vertical state during the discharging process, which is convenient for the subsequent pushing and pulling of the pull ring of the zipper head. In addition, the setting of the first supporting fold 9, the second supporting fold 11 and the baffle 12 can prevent the zipper head from falling off the first supporting plate 8 and the second supporting plate 10.
[0026] The discharge section also includes a third carrier plate 14, which is positioned at the end of the second carrier plate 10. The central axis of the third carrier plate 14 is perpendicular to the central axis of the second carrier plate 10. Two spaced-apart stoppers 15 are positioned on the third carrier plate 14, forming a discharge chute 16 between the two stoppers 15. The discharge chute 16 communicates with the feed chute 13. Under the action of gravity, the zipper slider can fall out through the discharge chute 16, allowing the zipper slider to be discharged in a timely manner and avoiding blockage.
[0027] The baffle 12 is provided with a mounting portion 17, which defines a first waist-shaped hole 19. A first bolt 20 is inserted into the first waist-shaped hole 19. The second supporting plate 10 is provided with a fixing portion 18, which defines a first screw hole 22. The first bolt 20 passes through the first waist-shaped hole 19 and is threadedly connected to the first screw hole 22. During use, the baffle 12 can be adjusted to the desired size by loosening the first bolt 20 and then moving the baffle 12 through the first waist-shaped hole 19, thereby adjusting the feed chute 13 to the desired size. The first bolt 20 can then be tightened to secure the baffle 12, enhancing practicality.
[0028] A support piece 23 is provided on the second bearing fold 11 near the end of the second bearing plate 10. The support piece 23 is parallel to the second bearing plate 10. The upper edge of the support piece 23 is bent to form a support fold 24. The support fold 24 is perpendicular to the second bearing plate 10. The side of the support fold 24 away from the third bearing plate 14 is bent to form a transition fold 25. The angle between the transition fold 25 and the support fold 24 is 170° to 175°. It should be noted that when the zipper head is moving, when the pull ring is in a vertical state, the pull ring is placed outside the first bearing fold 9 and the second bearing fold 11. When the zipper head moves to the support piece 23, the support piece 23 will block the zipper head in the vertical state. After the pull ring is pushed to be perpendicular to the zipper head body, the pull ring can be placed on the support fold 24 via the transition fold 25 and then fall out through the discharge chute 16. In this way, the posture of the delivered zipper head is guaranteed to be uniform.
[0029] The mounting frame 5 includes a connecting plate 26, which is arranged on the side of the second supporting plate 10 away from the feed trough 13. A mounting plate 27 is provided on the side of the connecting plate 26 away from the second supporting plate 10. The angle between the central axis of the mounting plate 27 and the central axis of the connecting plate 26 is 30°~60°. A fixing plate 28 is provided on one side of the mounting plate 27. A fixing hole (not marked in the figure) is provided on the fixing plate 28, and a second bolt 29 is passed through the fixing hole (not marked in the figure). A second waist-shaped hole 30 is provided on the mounting plate 27, and a second screw hole (not marked in the figure) is provided on the driving member 6. The second bolt 29 passes through the fixing hole (not marked in the figure), the second waist-shaped hole 30 and the second screw hole (not marked in the figure) and is threadedly connected. In this way, the driving member 6 is set at an angle, which can drive the push block 7 to move upward at an angle, thereby pushing the pull ring to be perpendicular to the zipper head body. When in use, the second bolt 29 can be loosened as needed and then the fixing plate 28 can be moved through the second waist-shaped hole 30 to adjust the driving member 6 to a suitable position, and then the second bolt 29 can be tightened to fix the driving member 6, further increasing practicality.
[0030] A material-moving rod 31 is provided on the outside of the vibrating disk hopper 1. A hose 32 is sleeved on the end of the material-moving rod 31. The end of the hose 32 is bent toward the first load-bearing fold 9. During the conveying process of the zipper head, the hose 32 can move the zipper head to a vertical state, thereby facilitating the subsequent pushing of the pull ring to be perpendicular to the zipper head body.
[0031] An air blow pipe 21 is provided on the outside of the return hopper 3, and the end of the air blow pipe 21 is bent toward the end of the hose 32. When in use, the beginning of the air blow pipe 21 can be connected to a blower. The air flow generated by the blower passes through the air blow pipe 21 and blows toward the zipper head at the end of the hose 32, thereby pushing the zipper head to move and preventing the end of the hose 32 from being blocked.
[0032] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the invention can be embodied in other specific forms without departing from the spirit or essential characteristics of the invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the invention is defined by the appended claims rather than the foregoing description, and it is intended that all variations that come within the meaning and range of equivalents of the claims be embraced therein.
Claims
1. An invisible spring pull head vibration plate, characterized in that: include: Vibrating plate hopper, the inner wall of the vibrating plate hopper is provided with a feeding track, the outer side of the vibrating plate hopper is provided with a return hopper, the return hopper is provided with a discharge rack, the feeding track is spirally arranged from the bottom of the vibrating plate hopper toward the discharge rack, and the end of the discharge rack extends to the outside of the return hopper; The pull ring pushing mechanism includes a mounting frame, which is arranged on the outside of the discharge frame. A driving member is provided on the mounting frame, and the output end of the driving member faces the discharge frame. A push block is provided on the output end of the driving member, and the push block is located below the discharge frame.
2. The invisible spring slider vibration plate according to claim 1, characterized in that: The discharging rack includes a conveying section and a discharging section. The starting end of the conveying section is connected to the end of the feeding track, and the end of the conveying section is connected to the starting end of the discharging section. The end of the discharging section extends to the outside of the return hopper. The conveying section includes a first supporting plate, and the lower edge of the first supporting plate is folded to form an L-shaped first supporting fold.
3. The invisible spring slider vibration plate according to claim 2, characterized in that: The included angle between the first supporting plate and the inner wall of the return hopper is 0° to 30°, and the included angle between the first supporting plate and the inner wall of the return hopper gradually decreases from the beginning to the end of the first supporting plate.
4. The invisible spring slider vibration plate according to claim 2, characterized in that: The discharge section includes a second supporting plate, which is parallel to the inner wall of the return hopper. The lower edge of the second supporting plate is bent to form an L-shaped second supporting fold. An L-shaped baffle is detachably provided on the second supporting plate above the second supporting fold, and a feeding trough is formed between the baffle and the second supporting fold.
5. The invisible spring slider vibration plate according to claim 4, characterized in that: The discharging section also includes a third supporting plate, which is arranged at the end of the second supporting plate. The central axis of the third supporting plate is perpendicular to the central axis of the second supporting plate. Two limiting plates are arranged on the third supporting plate at intervals, and a discharging trough is formed between the two limiting plates. The discharging trough is connected to the feeding trough.
6. The invisible spring slider vibration plate according to claim 4, characterized in that: The baffle is provided with a mounting portion, which has a first waist-shaped hole, and a first bolt is passed through the first waist-shaped hole. The second supporting plate is provided with a fixing portion, which has a first screw hole, and the first bolt passes through the first waist-shaped hole and is threadedly connected to the first screw hole.
7. The invisible spring slider vibration plate according to claim 4, characterized in that: A support piece is provided on the second bearing fold near the end of the second bearing plate. The support piece is parallel to the second bearing plate. The upper edge of the support piece is bent to form a supporting fold. The supporting fold is perpendicular to the second bearing plate. The side of the supporting fold away from the third bearing plate is bent to form a transition fold. The angle between the transition fold and the supporting fold is 170°~175°.
8. The invisible spring slider vibration plate according to claim 4, characterized in that: The mounting frame includes a connecting plate, which is arranged on the side of the second supporting plate away from the feed trough. A mounting plate is provided on the side of the connecting plate away from the second supporting plate. The angle between the central axis of the mounting plate and the central axis of the connecting plate is 30°~60°. A fixing plate is provided on one side of the mounting plate, and a fixing hole is provided on the fixing plate. A second bolt is passed through the fixing hole. A second waist-shaped hole is provided on the mounting plate, and a second screw hole is provided on the driving member. The second bolt passes through the fixing hole, the second waist-shaped hole and the second screw hole and is threadedly connected.
9. The invisible spring slider vibration plate according to claim 2, characterized in that: A material-moving rod is provided on the outer side of the vibrating disk hopper, a hose is sleeved on the end of the material-moving rod, and the end of the hose is bent toward the first load-bearing folded edge.
10. The invisible spring slider vibration plate according to claim 9, characterized in that: An air blowing pipe is provided on the outer side of the return hopper, and the end of the air blowing pipe is bent toward the end of the hose.
Citation Information
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