Film coating equipment for aluminum plate of true aluminum automobile interior trim part
By designing the film components, pressing components and mold conversion components of the aluminum plate coating equipment of real aluminum automotive interior parts, the problem of inconvenient mold switching is solved, and efficient production and high-quality coating are achieved.
Patent Information
- Application Number
- CN202422115145.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-30
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2034-08-30
AI Technical Summary
In the prior art, the mold switching of real aluminum automotive interior parts aluminum plate coating equipment is inconvenient, resulting in low production efficiency and prone to adverse defects.
A real aluminum automotive interior parts aluminum plate coating equipment is designed, including material film assembly, pressing assembly, mold conversion assembly and sliding limit assembly. By controlling the membrane speed, increasing buffering and mold positioning, rapid mold switching and precise limiting are achieved.
Improve production efficiency, reduce the emergence of bad defective products, and improve product quality and safety.
Smart Images

Figure CN223266261U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of aluminum plate lamination of real aluminum automobile interior decoration parts, in particular to an aluminum plate lamination device for real aluminum automobile interior decoration parts. Background Art
[0002] Aluminum plates are commonly used materials in industry. In order to make the surface of aluminum plates smoother and brighter, improve the gloss, beauty and fastness of the processed objects, extend the service life of the processed objects, and realize the protective functions of the aluminum plate surface such as waterproof, anti-fouling, wear-resistant and chemical corrosion-resistant, the surface of the aluminum plates will be coated during the processing process, that is, the film will be glued or pasted on the surface of the processed object. The overall process of true aluminum interior parts mainly involves the stamping, injection molding and milling of aluminum plates. The existing lamination is external processing, which is costly and has scratches, magazines and other defects that are not easy to be found. This aluminum plate lamination will affect the scrap rate of this process and subsequent processes.
[0003] In the related technology, after searching, a utility model patent with patent announcement number CN206810939U proposed a laminated aluminum plate punching machine. The utility model discloses a laminated aluminum plate punching machine, including a workbench and a bracket, brackets are installed on both sides of the workbench, a lower die seat is installed in the middle of the upper surface of the workbench, the lower die seat and the two sides of the bottom end of the bracket are fixedly connected by bolts, a receiving interface is provided at the bottom of the lower die seat, a receiving box is installed at the lower end of the receiving interface, a handle is installed on the left side of the receiving box, the upper end of the bracket is fixedly connected to a cylinder placement plate by bolts, a cylinder is installed in the middle of the cylinder placement plate, a cylinder fixing plate is installed at the upper end of the cylinder, fixing rods are provided at the four corners of the cylinder fixing plate, and the fixing rods are connected to the cylinder placement plate pattern, a cylinder controller is installed on the upper surface of the cylinder fixing plate, the bottom end of the cylinder is fixedly connected to an upper die seat, and blades are installed all around the upper die seat.
[0004] According to the above-mentioned prior art, the inventor combined relevant technologies and found in actual application that the utility model can only solve simple pressing and laminating, cannot quickly switch the mold, and cannot automatically laminate the aluminum plate. Without positioning buffer, the film is easily pulled and deformed, increasing the occurrence of defective products. The mold switching process is cumbersome and affects production efficiency. Therefore, it is very necessary to add positioning buffer equipment for the one-time switching of the mold. Utility Model Content
[0005] In order to solve the problem that the mold cannot be quickly switched in the prior art, the utility model provides an aluminum plate laminating device for real aluminum automobile interior decoration parts;
[0006] The utility model provides a real aluminum automobile interior decoration aluminum plate laminating equipment adopts the following technical solutions:
[0007] A laminating device for aluminum plates of genuine aluminum automobile interior parts includes a laminating device body, a material film assembly is provided on the top of the laminating device body, a partition is integrally formed inside the laminating device body, a material pressing assembly is provided on the upper side of the partition, a mold conversion assembly is provided on the lower side of the partition, a sliding limit assembly is provided on the bottom of the partition, and a protective door is provided on the side wall of the laminating device body.
[0008] Furthermore, the material film assembly includes a discharge roller, a receiving roller, a film blocking rod, a roller locking block, a gear rod protrusion, material film, a receiving roller, and a material film through-hole. Two roller locking blocks are welded on the top of the coating device body, and a discharge roller is rotatably connected between the two roller locking blocks. Two gear rod protrusions are welded on the outer side wall of the coating device body, and a film blocking rod is welded between the two gear rod protrusions. The inner side wall of the coating device body is rotatably connected to the receiving roller, and the side wall of the discharge roller is provided with material film, one end of the material film is fixedly connected to the discharge roller, and material film through-holes are opened on the two opposite side walls of the coating device body, and a material film through-hole is opened on the side wall of the coating device body close to the receiving roller, and the other end of the material film passes through the material film through-hole on the upper side of the partition and is connected to the recovery roller.
[0009] Furthermore, the pressing assembly includes a first cylinder, a film pressing plate, a sliding rod, a guide groove, and a guide buffer unit. The four corners of the bottom of the main body of the coating equipment are respectively provided with a first cylinder. The output ends of the four first cylinders are fixedly connected to the film pressing plate through the partition. The interior of the film pressing plate is slidably connected to the sliding rod. The lower sides of the four corresponding corners of the film pressing plate are respectively provided with guide buffer units. The side wall of the film pressing plate is provided with a guide groove that cooperates with the guide buffer unit.
[0010] Furthermore, the guide buffer unit includes a guide column, a sleeve, a material discharge plate, a cutting hole, a sleeve spring, and a sleeve spring groove. The guide column is welded on the top of the partition, and a sleeve spring groove is provided on the side wall of the guide column. The sleeve spring groove is slidably connected to the sleeve. One end of the sleeve spring is welded on the top of the partition, and the other end of the sleeve spring is welded to the sleeve. The guide column side wall is provided with a cutting hole slidably connected to the sleeve.
[0011] Furthermore, the mold conversion assembly includes a first motor, a first sliding cylinder, a second sliding cylinder, a driving magazine, a second cylinder, a mold conversion frame, a finished product lifting unit, and a gear rod engaging unit. The inner side wall of the coating device body is fixedly connected to the first sliding cylinder, the output end of the first sliding cylinder is connected to the driving magazine by bolts, the inside of the driving magazine is connected to the first motor by bolts, the output end of the first motor is welded to the mold conversion frame, the inner side wall of the coating device body opposite to the first motor is fixedly connected to the second sliding cylinder, the side wall of the mold conversion frame is rotatably connected to the output end of the second sliding cylinder, second cylinders are respectively provided on both sides of the mold conversion frame, two second cylinders are fixedly installed to the inner side wall of the coating device body by bolts, the output end of the second cylinder and the mold conversion frame can be separated or engaged, the mold conversion frame is provided with four mounting surfaces, the four mounting surfaces of the mold conversion frame are respectively provided with the finished product lifting unit, and the four mounting surfaces of the mold conversion frame are respectively provided with the gear rod engaging unit.
[0012] Furthermore, the finished product lifting unit includes a mold through hole, a mold, a cutting knife, a gear rod, a pusher block, and a pusher through hole. The mold conversion frame is fixedly connected to the mold by bolts, the cutting knife is welded to the side wall of the mold, the mold is provided with a pusher through hole, the side wall of the pusher through hole is slidably connected to a gear rod that cooperates with the sliding limit assembly, the end of the gear rod is welded with a pusher block, and the partition is provided with a mold through hole that cooperates with the mold.
[0013] Furthermore, the gear rod engaging unit includes an engaging groove, an engaging spring, an engaging block, a rotating shaft, and an engaging push rod. The side wall of the mold conversion frame is provided with an engaging groove, one end of the engaging spring is welded to the side wall of the engaging groove, and the other end of the engaging spring is welded to the engaging block. The side wall of the engaging groove is provided with an engaging through hole, one end of the engaging block is used to engage and lock with the gear rod, and the other end of the engaging block passes through the engaging through hole. The engaging block and the engaging through hole are rotatably connected through a rotating shaft, and the side wall of the engaging block is welded with an engaging push rod that cooperates with the limit assembly.
[0014] Furthermore, the sliding limit assembly includes a third sliding cylinder, a limit bin, a limit block, a second motor rotary rod, and a gear. The third sliding cylinder is fixedly connected to the bottom of the partition, the end of the sliding cylinder is connected to the limit bin, the limit block is welded to the side wall of the limit bin, the inside of the limit bin is fixedly connected to the second motor by bolts, the output end of the second motor passes through the limit bin and is fixedly connected to the rotary rod through a coupling, one end of the rotary rod passes through the limit block and is welded with a gear, and the gear is meshed with the gear rod.
[0015] In summary, the beneficial effects of the present invention are as follows:
[0016] The utility model increases the material film component, so that the rolling speed can be controlled to control the difference in the contour length of the coating mold; increases the material pressing component, so that the aluminum plate is placed in position, and the punching is buffered, so that the material film is not easily pulled and deformed, thereby reducing the occurrence of defective products; increases the mold conversion component, so that the molds can be switched in one go, so that there is no need for tedious mold switching, thereby improving the production efficiency of the product; increases the sliding limit component, so that the mold conversion component is accurately limited, and cooperates with the mold conversion component to eject the product for easy removal, thereby improving both safety and efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 This is a schematic diagram of the overall structure of the utility model;
[0018] Figure 2 This is a schematic diagram of the internal structure of the utility model;
[0019] Figure 3 This is a schematic front cross-sectional view of the overall structure of the utility model;
[0020] Figure 4 It is a side sectional schematic diagram of the overall structure of the utility model;
[0021] Figure 5 This is a schematic diagram of the partition structure of the utility model;
[0022] Figure 6 This is a schematic diagram of the structure of the mold conversion assembly of the utility model;
[0023] Figure 7 This is a schematic diagram of the structure of the lifting component of the utility model;
[0024] Figure 8 This is a structural diagram of the guide buffer unit of the utility model;
[0025] Figure 9 This is a schematic diagram of the guide gear rod engagement unit of the present invention.
[0026] As shown in the figure: 1- laminating equipment body, 2- protection door, 3- wheel locking block, 4- sliding rod, 5- film pressing plate, 6- unloading roller, 7- partition, 8- unloading plate, 9- mold conversion frame, 10- film blocking rod, 11- mold, 12- cutting knife, 13- second cylinder, 14- receiving roller, 15- push rod through hole, 16- first cylinder, 17- first sliding cylinder, 18- driving chamber, 19- second sliding cylinder, 20- material film, 21- first motor, 22- pushing block, 23-second motor, 24-third sliding cylinder, 25-limiting bin, 26-rotating rod, 27-gear, 28-gear rod, 29-guide column, 30-sleeve, 31-sleeve spring groove, 32-sleeve spring, 33-limiting block, 34-cutting hole, 35-gear rod protrusion, 36-mold through hole, 37-material film through hole, 38-engaging groove, 39-engaging spring, 40-engaging block, 41-engaging through hole, 42-engaging push rod, 43-guide groove. DETAILED DESCRIPTION
[0027] The following is combined with Figure 1-9 The utility model is further described in detail:
[0028] The utility model discloses a film laminating device for aluminum plates of real aluminum automobile interior decoration parts, such as Figure 1 、 Figure 5 As shown, a laminating device for aluminum plates of genuine aluminum automobile interior parts includes a laminating device body 1, characterized in that a material film assembly is provided on the top of the laminating device body 1, a partition 7 is integrally formed inside the laminating device body 1, a pressing assembly is provided on the upper side of the partition 7, a mold conversion assembly is provided on the lower side of the partition 7, a sliding limit assembly is provided at the bottom of the partition 7, and a protective door 2 is provided on the side wall of the laminating device body 1. In this embodiment, by adding the material film assembly, the rolling speed can be controlled to control the difference in the outline length of the laminating mold 11. By adding the pressing assembly, the aluminum plate is placed in position and the punching is buffered, so that the material film 20 is not easily pulled and deformed, thereby reducing the occurrence of defective products. By adding the mold conversion assembly, the molds 11 can be switched in one go, so that there is no need to switch the molds 11 cumbersomely, thereby improving the production efficiency of the product. By adding the sliding limit assembly, the mold conversion assembly is accurately limited and cooperates with the mold conversion assembly to eject the product for easy removal, thereby improving both safety and efficiency.
[0029] like Figure 1 、 Figure 2 、 Figure 3As shown, the film assembly includes a discharge roller 6, a receiving roller 14, a film blocking rod 10, a roller locking block 3, a gear rod protrusion 35, a material film 20, a receiving roller 14, and a material film through-hole 37. Two roller locking blocks 3 are welded on the top of the laminating device body 1, and the discharge roller 6 is rotatably connected between the two roller locking blocks 3. Two gear rod protrusions 35 are welded on the outer wall of the laminating device body 1, and a film blocking rod 10 is welded between the two gear rod protrusions 35. The inner side wall of the laminating device body 1 is rotatably connected to the receiving roller 14, and the side wall of the discharge roller 6 is provided with a material film 20. One end of the material film 20 is fixedly connected to the unwinding roller 6, and a material film through hole 37 is opened on the two opposite side walls of the laminating equipment body 1. A material film through hole 37 is opened on the side wall of the laminating equipment body 1 close to the receiving roller 14. The material film 20 passes through the other end on the upper side of the partition 7 through the material film through hole 37 and is connected to the recovery roller. In this embodiment, by adding a film blocking rod 10, the material film 20 can be extended away from the outer wall of the laminating equipment body 1, so that the length of the material film 20 can be better controlled, the pulling of the material film 20 can be reduced, thereby reducing deformation and improving product quality.
[0030] like Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 As shown, the pressing assembly includes a first cylinder 16, a film pressing plate 5, a sliding rod 4, a guide groove 43, and a guide buffer unit. The four corners of the bottom of the coating equipment body 1 are respectively provided with the first cylinder 16, and the output ends of the four first cylinders 16 are fixedly connected to the film pressing plate 5 through the partition 7. The internal sliding connection of the film pressing plate 5 is connected to the sliding rod 4, and the lower sides of the four corresponding corners of the film pressing plate 5 are respectively provided with a guide groove 43 that cooperates with the guide buffer unit. In this embodiment, by adding the first cylinder 16, the transmission film pressing plate 5 is displaced downward, so that the aluminum plate is stamped and formed, and the outer contour is cut out. The first cylinder 16 is a multi-section cylinder, which cooperates with the guide groove 43 for limiting, so that the product stamping is more accurate, thereby improving the product quality.
[0031] like Figure 1 、 Figure 2 、 Figure 5 、 Figure 8As shown, the guide buffer unit includes a guide post 29, a sleeve 30, a discharge plate 8, a cutting hole 34, a sleeve spring 32, and a sleeve spring groove 31. The guide post 29 is welded on the top of the partition 7, and the side wall of the guide post 29 is provided with a sleeve spring groove 31. The sleeve spring groove 31 is slidably connected to the sleeve 30. One end of the sleeve spring 32 is welded on the top of the partition 7, and the other end of the sleeve spring 32 is welded to the sleeve 30. The side wall of the guide post 29 is provided with a cutting hole 34 slidably connected to the sleeve 30. In this embodiment, by adding the guide post 29, the internal sleeve spring 32 and the sleeve 30 are coordinated, thereby driving the discharge plate 8 to move downward, and then the punching is buffered under the action of the sleeve spring 32. The guide post 29 and the guide groove 43 cooperate with each other, so that the edge of the product can be cut more accurately and quickly, improving efficiency while reducing the pulling deformation of the edge of the product during punching.
[0032] like Figure 1 、 Figure 2 、 Figure 5 、 Figure 6 As shown, the mold conversion assembly includes a first motor 21, a first sliding cylinder 17, a second sliding cylinder 19, a driving bin 18, a second cylinder 13, a mold conversion frame 9, a finished product lifting unit, a mold 11, and a cutter 12. The inner side wall of the laminating equipment body 1 is fixedly connected to the first sliding cylinder 17, and the output end of the first sliding cylinder 17 is connected to the driving bin 18 by bolts. The inside of the driving bin 18 is connected to the first motor 21 by bolts, and the output end of the first motor 21 is welded to the mold conversion frame 9. The inner side wall of the laminating equipment body 1 opposite to the first motor 21 is fixedly connected to the second sliding cylinder 19, and the side wall of the mold conversion frame 9 is rotatably connected to the output end of the second sliding cylinder 19. Second cylinders 13 are respectively provided on both sides of the mold conversion frame 9, and the two second cylinders 13 are connected to the laminating equipment body by bolts. 1 is fixedly installed on the inner wall, and the output end of the second cylinder 13 can be separated or engaged with the mold conversion frame 9. The mold conversion frame 9 is provided with four mounting surfaces, and the four mounting surfaces of the mold conversion frame 9 are respectively provided with a finished product lifting unit. In this embodiment, by adding the mold conversion frame 9, the first sliding cylinder 17 and the second sliding cylinder 19 cooperate with each other, so that the transmission drive bin 18 drives the first motor 21, and then the output end of the first motor 21 drives the mold conversion frame 9 to perform longitudinal displacement. The mold conversion frame 9 is driven by the output end of the first motor 21 to rotate the mold conversion frame 9, thereby driving the four mounting surfaces to switch, thereby completing the switching of the mold 11. After adjusting the rotation of the mold conversion frame 9, the second cylinders 13 on both sides engage with the mold conversion frame 9 to support it.
[0033] like Figure 5 、 Figure 6 、 Figure 7As shown, the finished product lifting unit includes a mold 11, a cutter 12, a gear rod 28, a pusher block 22, and a pusher through hole 15. The mold conversion frame 9 is fixedly connected to the mold 11 by bolts. The cutter 12 is welded to the side wall of the mold 11. The mold 11 is provided with a pusher through hole 15. The side wall of the pusher through hole 15 is slidably connected with a gear rod 28 that cooperates with the sliding limit assembly. The end of the gear rod 28 is welded with a pusher block 22. The partition 7 is provided with a mold through hole 36 that cooperates with the mold 11. In this embodiment, by adding the gear rod 28, the gear rod 28 and the sliding limit assembly cooperate with each other, so that the gear rod 28 moves longitudinally on the pusher through hole 15, so that the cut finished product is pushed to the appropriate position for easy picking. This not only improves product efficiency, but also ensures that the operator can pick up the finished product without touching the cutter 12, away from the cutter 12, and greatly improves safety.
[0034] like Figure 6 、 Figure 7 、 Figure 9 As shown, the gear rod engaging unit includes an engaging groove 38, an engaging spring 39, an engaging block 40, an engaging through-hole 41, and an engaging push rod 42. The side wall of the mold conversion frame 9 is provided with an engaging groove 38, one end of the engaging spring 39 is welded to the side wall of the engaging groove 38, and the other end of the engaging spring 39 is welded to the engaging block 40. The side wall of the engaging groove 38 is provided with an engaging through-hole 41. One end of the engaging block 40 is used to engage and lock with the gear rod 28, and the other end of the engaging block 40 passes through the engaging spring 39. Through hole 41, the engaging block 40 is rotatably connected to the engaging through hole 41 via a rotating shaft, and the side wall of the engaging block 40 is welded with an engaging push rod 42 that cooperates with the limit assembly. In this embodiment, by adding the engaging block 40, the engaging block 40 is engaged with the gear rod 28 under the action of the engaging spring 39, so that the gear rod 28 is locked and cannot move, and the engaging push rod 42 contacts the limit block 33, so that the engaging spring 39 is tightened, so that the gear 27 and the gear 27 ring block are engaged with each other for transmission.
[0035] like Figure 6 、 Figure 7As shown, the sliding limit assembly includes a third sliding cylinder 24, a limit bin 25, a limit block 33, a second motor 23, a rotary rod 26, and a gear 27. The third sliding cylinder 24 is fixedly connected to the bottom of the partition 7, and the end of the third sliding cylinder 24 is connected to the limit bin 25. The limit block 33 is welded to the side wall of the limit bin 25. The interior of the limit bin 25 is fixedly connected to the second motor 23 by bolts. The output end of the second motor 23 passes through the limit bin 25 and is fixedly connected to the rotary rod 26 through a coupling. One end of the rotary rod 26 passes through the limit block 33 and is welded with a gear 27. The gear 27 is meshed with the gear rod 28. In this embodiment, by adding the limit bin 25, the third sliding cylinder 24 is started to drive the limit bin 25, thereby driving the limit block 33 and the mold conversion frame 9 to fit together and limit the position. By adding the second motor 23, the transmission rotary rod 26 drives the gear 27, thereby driving the gear rod 28 meshing with the gear 27, thereby causing the gear rod 28 to move longitudinally.
[0036] The implementation principle of the embodiment of the present utility model is:
[0037] During use, the operator first places the aluminum plate on the discharge plate 8, and then adjusts the first sliding cylinder 17 and the second sliding cylinder 19 so that the transmission drive bin 18 drives the first motor 21, so that the output end of the first motor 21 drives the mold conversion frame 9 to move downward, and starts the first motor 21, so that the output end of the first motor 21 drives the mold conversion frame 9 to rotate, thereby driving the four mounting surfaces to switch, and then adjust to the appropriate mold 11, and then adjust the first sliding cylinder 17 and the second sliding cylinder 19 so that the output end of the first motor 21 drives the mold conversion frame 9 to move upward, so that the mold 11 and the side wall of the mold through hole 36 are in contact with each other, and then start the second cylinders 13 on both sides of the mold conversion frame 9 to engage and support the mold conversion frame 9;
[0038] The locking spring 39 is pressed against the locking rod 42, and the locking block 40 is pressed against the gear rod 28, thereby separating the locking block 40 from the gear rod 28. The unloading film 20 and the receiving film 20 are adjusted so that the length of the film 20 is controlled within the appropriate range of the mold 11. The first cylinder 16 is then started, so that the output end of the first cylinder 16 drives the film pressing plate 5, thereby pressing the film pressing plate 5 downward, and the guide groove 43 on the film pressing plate 5 and the guide column 29 cooperate with each other to position, and the sleeve 30 is driven downward by the unloading plate 8 to press the sleeve spring 32, so that the downward pressure of the film pressing plate 5 is buffered, thereby making the aluminum plate and the film 20 contact and laminate, and the film pressing plate 5 is pressed down to the mold 11 under the action of the cutter 12 to obtain the outer contour of the product.
[0039] Finally, the second motor 23 is started, so that the rotary rod 26 drives the gear 27, thereby driving the gear rod 28 and the pusher block 22 to push the finished product upward, thereby allowing personnel to take out the finished product.
[0040] The above shows and describes the basic principles, main features and advantages of the present invention. The various components mentioned in the present invention are common technologies in the existing field. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and improvements may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and improvements fall within the scope of the present invention. The scope of protection claimed in this utility model is defined by the appended claims and their equivalents.
Claims
1. A film laminating device for aluminum plates of real aluminum automobile interior parts, comprising a film laminating device body (1), characterized in that: A material film assembly is provided on the top of the laminating device body (1), a partition (7) is integrally formed inside the laminating device body (1), a material pressing assembly is provided on the upper side of the partition (7), a mold conversion assembly is provided on the lower side of the partition (7), a sliding limit assembly is provided on the bottom of the partition (7), and a protective door (2) is provided on the side wall of the laminating device body (1).
2. The aluminum plate laminating equipment for real aluminum automobile interior parts according to claim 1, characterized in that: The film assembly comprises a discharge roller (6), a receiving roller (14), a film blocking rod (10), a roller locking block (3), a gear bar protrusion (35), a film (20), a receiving roller (14), and a film through hole (37); two roller locking blocks (3) are welded on the top of the coating device body (1); a discharge roller (6) is rotatably connected between the two roller locking blocks (3); two gear bar protrusions (35) are welded on the outer wall of the coating device body (1); a film blocking rod ( 10), the inner side wall of the coating device body (1) is rotatably connected to a receiving roller (14), the side wall of the discharge roller (6) is provided with a material film (20), one end of the material film (20) is fixedly connected to the discharge roller (6), the coating device body (1) is provided with a material film through hole (37) on two opposite side walls, the side wall of the coating device body (1) close to the receiving roller (14) is provided with a material film through hole (37), the other end of the material film (20) passes through the material film through hole (37) on the upper side of the partition (7) and is connected to the recovery roller.
3. The aluminum plate laminating equipment for real aluminum automobile interior parts according to claim 1, characterized in that: The pressing assembly includes a first cylinder (16), a film pressing plate (5), a sliding rod (4), a guide groove (43), and a guide buffer unit. The first cylinder (16) is respectively provided at the four corners of the bottom of the coating device body (1). The output ends of the four first cylinders (16) are fixedly connected to the film pressing plate (5) through the partition (7). The interior of the film pressing plate (5) is slidably connected to the sliding rod (4). The film pressing plate (5) is respectively provided with a guide buffer unit on the lower side of the four corresponding corners. The side wall of the film pressing plate (5) is provided with a guide groove (43) that cooperates with the guide buffer unit.
4. The aluminum plate laminating equipment for real aluminum automobile interior parts according to claim 3, characterized in that: The guide buffer unit comprises a guide column (29), a sleeve (30), a material discharge plate (8), a cutting hole (34), a sleeve spring (32), and a sleeve spring groove (31). The guide column (29) is welded to the top of the partition (7). The sleeve spring groove (31) is provided on the side wall of the guide column (29). The sleeve spring groove (31) is slidably connected to the sleeve (30). One end of the sleeve spring (32) is welded to the top of the partition (7). The other end of the sleeve spring (32) is welded to the sleeve (30). The cutting hole (34) slidably connected to the sleeve (30) is provided on the side wall of the guide column (29).
5. The aluminum plate laminating equipment for real aluminum automobile interior parts according to claim 1, characterized in that: The mold conversion assembly includes a first motor (21), a first sliding cylinder (17), a second sliding cylinder (19), a driving chamber (18), a second air cylinder (13), a mold conversion frame (9), a finished product lifting unit, and a gear rod engaging unit. The inner side wall of the coating device body (1) is fixedly connected to the first sliding cylinder (17), the output end of the first sliding cylinder (17) is connected to the driving chamber (18) by bolts, the interior of the driving chamber (18) is connected to the first motor (21) by bolts, the output end of the first motor (21) is welded to the mold conversion frame (9), and the coating device body (1) and the first motor (21) are connected. The inner side wall of the pair is fixedly connected with a second sliding cylinder (19), the side wall of the mold conversion frame (9) is rotatably connected to the output end of the second sliding cylinder (19), and the two sides of the mold conversion frame (9) are respectively provided with a second cylinder (13), and the two second cylinders (13) are fixedly installed with the inner side wall of the laminating equipment body (1) by bolts, and the output end of the second cylinder (13) can be separated or engaged with the mold conversion frame (9), and the mold conversion frame (9) is provided with four mounting surfaces, and the four mounting surfaces of the mold conversion frame (9) are respectively provided with a finished product lifting unit, and the four mounting surfaces of the mold conversion frame (9) are respectively provided with a gear rod engaging unit.
6. The aluminum plate laminating equipment for real aluminum automobile interior parts according to claim 5, characterized in that: The finished product lifting unit comprises a mold through hole (36), a mold (11), a cutter (12), a gear rod (28), a push block (22), and a push rod through hole (15); the mold conversion frame (9) is fixedly connected to the mold (11) by bolts; the cutter (12) is welded to the side wall of the mold (11); the mold (11) is provided with a push rod through hole (15); the side wall of the push rod through hole (15) is slidably connected to a gear rod (28) that cooperates with the sliding limit assembly; the end of the gear rod (28) is welded with a push block (22); and the partition (7) is provided with a mold through hole (36) that cooperates with the mold (11).
7. The aluminum plate laminating equipment for real aluminum automobile interior parts according to claim 6, characterized in that: The gear rod engaging unit comprises an engaging groove (38), an engaging spring (39), an engaging block (40), an engaging through hole (41), and an engaging push rod (42). The side wall of the mold conversion frame (9) is provided with an engaging groove (38). One end of the engaging spring (39) is welded to the inner side wall of the engaging groove (38). The other end of the engaging spring (39) is welded to the engaging block (40). The side wall of the engaging groove (38) is provided with an engaging through hole (41). One end of the engaging block (40) is used to engage and lock with the gear rod (28). The other end of the engaging block (40) passes through the engaging through hole (41). The engaging block (40) and the engaging through hole (41) are rotatably connected via a rotating shaft. The side wall of the engaging block (40) is welded with an engaging push rod (42) that cooperates with the limiting assembly.
8. The aluminum plate laminating equipment for real aluminum automobile interior parts according to claim 7, characterized in that: The sliding limit assembly comprises a third sliding cylinder (24), a limit bin (25), a limit block (33), a second motor (23), a rotary rod (26), and a gear (27). The bottom of the partition (7) is fixedly connected to the third sliding cylinder (24). The end of the third sliding cylinder (24) is connected to the limit bin (25). The limit block (33) is welded to the side wall of the limit bin (25). The interior of the limit bin (25) is fixedly connected to the second motor (23) by bolts. The output end of the second motor (23) passes through the limit bin (25) and is fixedly connected to the rotary rod (26) through a coupling. One end of the rotary rod (26) passes through the limit block (33) and is welded with a gear (27). The gear (27) is meshed with the gear rod (28).
Citation Information
Patent Citations
Tectorial membrane aluminum plate die cutting machine
CN206810939U