A film product transfer device
By setting a film product transfer device above the blanking die to bond the strip plate with the strip steel, the problems of strip steel deformation and material drop are solved, and stable and continuous blanking operation is achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- KUNSHAN ZXJX AUTOMATION TECH LTD
- Filing Date
- 2025-05-12
- Publication Date
- 2026-05-29
AI Technical Summary
In existing film product transfer devices, the strip film is easily deformed by the punching operation of the punching module during the punching process, which may cause the punching to stop or the material to fall accurately.
A film product transfer device was designed. By setting a strip plate above the punching module to bond with the strip steel, the sheet enters the sheet groove to prevent the strip steel from deforming, and a pushing structure ensures that the sheet falls accurately.
It effectively prevents strip deformation, ensures accurate sheet drop, avoids sheet falling off the strip, and achieves stable and continuous punching operation.
Smart Images

Figure CN224298533U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of stamping product technology, specifically to a film product transfer device. Background Technology
[0002] Thin films are very thin materials, typically referring to materials with a thickness between a few nanometers and a few millimeters. Thin films can be made of a variety of materials, including plastics, metals, ceramics, semiconductors, etc., and they have a wide range of applications in industry, technology, and daily life.
[0003] When processing metal films using stamping equipment, there is often a stamping product transfer process. The corresponding product transfer device can use a bottom-up cutting die to cut the metal film sheet of the corresponding shape from the strip film and automatically paste it onto the adhesive tape, thus replacing the traditional manual operation.
[0004] However, this type of product transfer device uses a bottom-up punching module to cut metal film sheets of the corresponding shape from the strip film. When the bottom-up punching module contacts the strip film, the parts of the strip film that are not in contact with the punching module will be forced upward due to the punching operation of the punching module, causing the entire strip film to deform. If the deformation of the strip film is too severe, the punching operation may not be able to continue, and it cannot be guaranteed that each cut piece will be exactly above the punching module and will not fall off the strip film due to its impact. Therefore, it does not meet the existing requirements. To address this, we propose a film product transfer device. Utility Model Content
[0005] The purpose of this utility model is to provide a film product transfer device to solve the problems mentioned in the background art. In this type of product transfer device, the metal film sheet of the corresponding shape is cut from the strip film by a punching module that moves from bottom to top. When the punching module moves from bottom to top and contacts the strip film, the parts of the strip film that are not in contact with the punching module will be forced to be pulled upward due to the punching operation of the punching module, thereby causing the strip film to deform as a whole. If the deformation of the strip film is too severe, it may be impossible to continue the punching operation, and it is impossible to ensure that each cut piece is exactly above the punching module and will not fall off the strip film due to its impact force.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a film product transfer device, including a cutting board, a strip steel is provided at the middle position of the upper surface of the cutting board, a plurality of material sheets are provided at the upper surface of the front end of the strip steel, a strip-shaped metal shell is provided above the two material sheets located at the rearmost end, a storage groove is provided on both sides of the lower end of the strip-shaped metal shell, a single-cylinder is fixedly installed inside the strip-shaped metal shell on both sides of the storage groove, the piston rods of the two single-cylinders are connected to a strip plate located inside the storage groove, the lower end of the strip plate is in contact with the upper end of the strip steel, a material sheet groove is provided at the middle position of the lower end of the strip plate, the two material sheets located at the rearmost end are respectively located inside the two material sheet grooves, and the shape of the outer surface of the material sheet corresponds to the shape of the inner wall of the material sheet groove;
[0007] A pusher bracket is fixedly provided on both sides of the upper surface of the strip plate. The opposing surfaces of the two pushers located inside the same storage slot are inclined push surfaces. One side of the inclined push surface is provided with a rotating push block whose upper surface is slidably connected to the inner wall of the storage slot. A pressing block is provided between the two rotating push blocks. The surface of the rotating push block facing the pressing block is an inclined surface. The bottom end of the pressing block is inserted into the interior of the strip plate. The pressing block is slidably connected to the strip plate, and the lower end surface of the pressing block is connected to multiple metal balls through roller bearings.
[0008] Preferably, the lower part of the strip-shaped metal shell is provided with an opening located on the lower end face of the cutting board, and a punching module is provided on the lower side inside the opening.
[0009] Preferably, an adhesive paper is provided at the front of the strip-shaped metal casing, and an adhesive rod is provided on the inner side of the adhesive paper.
[0010] Preferably, the upper side of the lower pressing block is provided with a cylindrical groove, and the inside of the cylindrical groove is provided with a metal ring that fits against its inner wall. The metal ring is connected to a metal rod at its axis, and the upper end face of the metal rod is fixed to the inner wall of the storage groove.
[0011] Preferably, a spring is provided above the metal ring and sleeved on the outer surface of the metal rod, and the upper and lower ends of the spring are respectively connected to the inner wall of the cylindrical groove and the upper end face of the metal ring.
[0012] Preferably, the upper end face of the two strip plates is provided with a strip metal cover plate located on the upper end face of the strip metal shell, and the strip metal shell and the strip metal cover plate are fixed together by screws.
[0013] Compared with the prior art, the beneficial effects of this utility model are:
[0014] This invention features a strip plate positioned above the punching die, with its lower end face fitting against the upper end face of the strip. When the punching die performs a punching operation on the strip, the strip plate prevents deformation due to the punching action. The cut pieces enter a material slot located on the lower end face of the strip plate, preventing them from falling off the strip due to the impact of the punching die. This technical solution prevents deformation of the strip during the punching operation and ensures that the cut pieces remain on the upper end face of the strip, preventing them from falling off due to the impact of the punching die. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0016] Figure 2 This is a front view of the internal structure of this utility model;
[0017] Figure 3 This utility model Figure 2 Enlarged view of the structure at point A in the middle;
[0018] Figure 4 This utility model Figure 3 Enlarged view of the structure at point B.
[0019] In the diagram: 1. Cutting board; 2. Strip steel; 3. Through hole; 4. Punching module; 5. Adhesive paper; 6. Inclined surface; 7. Sheet metal; 8. Strip metal shell; 9. Storage slot; 10. Strip plate; 11. Sheet metal slot; 12. Single-cylinder cylinder; 13. Pushing bracket; 14. Inclined pushing surface; 15. Rotary push block; 16. Pressing block; 17. Metal ball; 18. Cylindrical slot; 19. Metal rod; 20. Spring; 21. Metal ring; 22. Adhesive rod. Detailed Implementation
[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0021] The single-cylinder cylinder 12 (model RMSF), spring 20 (model JX110) and metal ring 21 (model 304) mentioned in this utility model can all be obtained from the market or through private customization.
[0022] Please see Figures 1 to 4An embodiment of this utility model provides a film product transfer device, including a cutting board 1, a strip steel 2 at the middle position of the upper end face of the cutting board 1, a plurality of material sheets 7 at the upper end face of the front end face of the strip steel 2, a strip-shaped metal shell 8 above the two material sheets 7 at the rearmost position, a storage groove 9 on both sides of the lower end face of the strip-shaped metal shell 8, a single-cylinder 12 fixedly installed inside the strip-shaped metal shell 8 on both sides of the storage groove 9, the piston rods of the two single-cylinder 12 are connected to a strip plate 10 located inside the storage groove 9, the lower end face of the strip plate 10 is in contact with the upper end face of the strip steel 2, a material sheet groove 11 is provided at the middle position of the lower end face of the strip plate 10, the two material sheets 7 at the rearmost position are respectively located inside the two material sheet grooves 11, and the shape of the outer surface of the material sheet 7 corresponds to the shape of the inner wall of the material sheet groove 11;
[0023] A pusher bracket 13 is fixedly provided on both sides of the upper end face of the strip plate 10. The two pusher brackets 13 located inside the same storage groove 9 have opposite faces that are inclined pusher surfaces 14. One side of the inclined pusher surface 14 is provided with a rotating push block 15 that is slidably connected between its upper end face and the inner wall of the storage groove 9. A pressing block 16 is provided between the two rotating push blocks 15. The face of the rotating push block 15 facing the pressing block 16 is an inclined surface 6. The bottom end of the pressing block 16 is inserted into the interior of the strip plate 10. The pressing block 16 is slidably connected to the strip plate 10, and the lower end face of the pressing block 16 is connected to multiple metal balls 17 through roller bearings.
[0024] The strip metal shell 8 has an opening 3 located on the lower end face of the cutting plate 1. The lower side of the opening 3 is provided with a punching module 4. When the strip steel 2 is punched by the punching module 4, the strip plate 10 that is in contact with the strip steel 2 can prevent the strip steel 2 from deforming due to the punching of the punching module 4. The piece 7 punched out by the punching module 4 will enter the piece groove 11 located on the lower end face of the strip plate 10. The piece groove 11 can prevent the cut piece 7 from falling off the strip steel 2 due to the impact of the punching module 4. The above technical solution can prevent the strip steel 2 from deforming due to the punching operation and can ensure that the cut piece 7 is on the upper end face of the strip steel 2 and will not fall off the strip steel 2 due to the impact of the punching module 4.
[0025] The upper side of the lower pressure block 16 is provided with a cylindrical groove 18. The inside of the cylindrical groove 18 is provided with a metal ring 21 that fits against its inner wall. The metal ring 21 is connected to a metal rod 19, and the upper end face of the metal rod 19 is fixed to the inner wall of the receiving groove 9. A spring 20 is provided above the metal ring 21 and sleeved on the outer surface of the metal rod 19. The upper and lower ends of the spring 20 are respectively connected to the inner wall of the cylindrical groove 18 and the upper end face of the metal ring 21. When the punching operation needs to be performed again, the punching module 4 is moved downward first. When the punching module 4 moves downward, the strip plate 10 is pulled upward by the single-cylinder cylinder 12. As the strip plate 10 rises, a gap will be generated between the strip plate 10 and the strip steel 2.
[0026] As the strip plate 10 moves upward, the pusher bracket 13 fixed to the upper surface of the strip plate 10 will also move upward. As the pusher bracket 13 rises, the inclined push surface 14 on the outer surface of the pusher bracket 13 will contact the rotating push block 15 and push the rotating push block 15 inward. As the rotating push block 15 moves, the inclined surface 6 on the outer surface of the rotating push block 15 will contact the upper surface of the lower pressure block 16 and push the lower pressure block 16 downward. As the lower pressure block 16 descends, the metal ball 17 fixed to the lower surface of the lower pressure block 16 will contact the sheet 7 that has been pushed into the sheet groove 11 due to the punching operation. Through the push of the metal ball 17, the sheet 7 will fall out of the sheet groove 11 and land on the upper surface of the strip steel 2. Then, as the strip steel 2 moves, the sheet 7 that has fallen on the upper surface of the strip steel 2 will move out through the gap between the strip plate 10 and the strip steel 2.
[0027] The front of the strip metal casing 8 is provided with adhesive paper 5, and the inner side of the adhesive paper 5 is provided with adhesive rod 22; the material sheet 7 that moves from the gap between the strip plate 10 and the strip steel 2 to the outside will come into contact with the adhesive paper 5 and be stuck to the lower end face of the adhesive paper 5.
[0028] When the pressure block 16 is pushed downward, the distance between the upper inner wall of the cylindrical groove 18 inside the pressure block 16 and the metal ring 21 will gradually decrease, thereby squeezing the spring 20 located between them. When the punching operation needs to be performed again, the strip plate 10 is pushed downward by the single-cylinder cylinder 12. During the downward movement of the strip plate 10, the pressure block 16 and the metal ball 17 can be pushed back to their original positions by the reaction force of the squeezed spring 20. When the lower end face of the strip plate 10 is in contact with the upper end face of the strip steel 2 again, the punching operation can be performed again by the punching module 4.
[0029] The upper surfaces of the two strip plates 10 are provided with a strip metal cover plate located on the upper surface of the strip metal shell 8, and the strip metal shell 8 and the strip metal cover plate are fixed together by screws; the strip metal cover plate can protect the internal structure of the strip metal shell 8, and when the internal structure of the strip metal shell 8 fails, the strip metal cover plate can be removed to repair its internal structure.
[0030] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
Claims
1. A film product transfer device, comprising a cutting board (1), characterized in that: A strip steel (2) is provided in the middle of the upper end face of the cutting board (1). A plurality of material pieces (7) are provided on the upper end face of the front end face of the strip steel (2). A strip metal shell (8) is provided above the two material pieces (7) at the rearmost end. A storage groove (9) is provided on both sides of the lower end face of the strip metal shell (8). A single-cylinder cylinder (12) is fixedly installed inside the strip metal shell (8) on both sides of the storage groove (9). The piston rods of the two single-cylinder cylinders (12) are connected to a strip plate (10) located inside the storage groove (9). The lower end face of the strip plate (10) is in contact with the upper end face of the strip steel (2). A material piece groove (11) is provided in the middle of the lower end face of the strip plate (10). The two material pieces (7) at the rearmost end are located inside the two material piece grooves (11), and the shape of the outer surface of the material piece (7) corresponds to the shape of the inner wall of the material piece groove (11). A pusher bracket (13) is fixedly provided on both sides of the upper end face of the strip plate (10). The two pusher brackets (13) located inside the same storage groove (9) have opposite faces that are inclined pusher surfaces (14). One side of the inclined pusher surface (14) is provided with a rotating pusher block (15) whose upper end face is slidably connected to the inner wall of the storage groove (9). A pressing block (16) is provided between the two rotating pushers (15). The face of the rotating pusher block (15) facing the pressing block (16) is an inclined surface (6). The bottom end of the pressing block (16) is inserted into the interior of the strip plate (10). The pressing block (16) is slidably connected to the strip plate (10), and the lower end face of the pressing block (16) is connected to multiple metal balls (17) through roller bearings.
2. The film product transfer device according to claim 1, characterized in that: The strip-shaped metal shell (8) has an opening (3) located on the lower end face of the cutting board (1), and a punching module (4) is provided on the lower side inside the opening (3).
3. The film product transfer device according to claim 1, characterized in that: The strip-shaped metal casing (8) has an adhesive paper (5) at the front, and an adhesive rod (22) is provided on the inner side of the adhesive paper (5).
4. The film product transfer device according to claim 1, characterized in that: The upper side of the lower pressure block (16) is provided with a cylindrical groove (18), and the inside of the cylindrical groove (18) is provided with a metal ring (21) that fits against its inner wall. The metal ring (21) is connected to a metal rod (19) at its axis, and the upper end face of the metal rod (19) is fixed to the inner wall of the storage groove (9).
5. A film product transfer device according to claim 4, characterized in that: A spring (20) is provided above the metal ring (21) and sleeved on the outer surface of the metal rod (19). The upper and lower ends of the spring (20) are respectively connected to the inner wall of the cylindrical groove (18) and the upper end face of the metal ring (21).
6. A film product transfer device according to claim 1, characterized in that: The upper surfaces of the two strip plates (10) are provided with a strip metal cover plate located on the upper surface of the strip metal shell (8), and the strip metal shell (8) and the strip metal cover plate are fixed together by screws.