Aluminum profile film pasting equipment

By designing automated aluminum profile filming equipment, the problems of high labor intensity and poor quality in the aluminum profile filming process are solved, and an efficient and lossless film coating process is achieved, and the surface cleanliness and film quality of aluminum profiles are improved.

CN223291227UActive Publication Date: 2025-09-02GUANGDONG TIANMA ALUMINUM IND CO LTD
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Patent Information

Application Number
CN202422837663.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-20
Publication Date
2025-09-02
Estimated Expiration
2034-11-20

AI Technical Summary

Technical Problem

The existing aluminum profile filming process requires multiple people to operate, which is very labor-intensive, which can easily damage the aluminum profile, and fail to effectively clean it, resulting in poor film quality.

Method used

An aluminum profile filming equipment is designed, including a limiting mechanism, a traction mechanism, a cleaning mechanism, a transverse and longitudinal filming mechanism. Through the automatic operation of the controller and foot switch, the limiting, cleaning and filming of the aluminum profile are realized.

Benefits of technology

It improves the quality and efficiency of aluminum profile film, reduces damage caused by manual operation, ensures the surface of aluminum profiles, and improves the flatness and consistency of the film.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of aluminum profile machining, in particular to aluminum profile film pasting equipment which comprises a machine table, and a limiting mechanism, a traction mechanism, a cleaning mechanism, a transverse film pasting mechanism, a longitudinal film pasting mechanism, a controller and a foot switch are arranged on the machine table. The traction mechanism and the cleaning mechanism are located between the two limiting mechanisms, the transverse film pasting mechanism is located in the middle of the machine table, and the longitudinal film pasting mechanism is located between the transverse film pasting mechanism and the traction mechanism. According to the aluminum profile automatic film pasting equipment, a worker starts the equipment through a controller and a foot switch, the limiting mechanism on the machine table conducts limiting protection on the aluminum profile moving and conveying process, the traction mechanism drives the aluminum profile to actively move, the cleaning mechanism cleans the surface of the aluminum profile, and the transverse film pasting mechanism and the longitudinal film pasting mechanism conduct film pasting on the peripheral side of the aluminum profile; the aluminum profile can be automatically cleaned, the film pasting procedure can be rapidly completed, the situation that the aluminum profile is damaged due to long-time high-strength action is reduced, and therefore the film pasting quality is improved.
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Description

Technical Field

[0001] The present application relates to the technical field of aluminum profile processing, and in particular to an aluminum profile film laminating device. Background Art

[0002] Aluminum profile refers to aluminum alloy profile. Aluminum alloy is an alloy with aluminum as the base and a certain amount of other alloying elements added. It is one of the light metal materials. In addition to the general properties of aluminum, aluminum alloy has some specific characteristics of alloys due to the different types and quantities of added alloying elements. The density of aluminum alloy is 2.63~2.85g / cm3, with high strength, specific strength close to high alloy steel, specific stiffness exceeding steel, good casting performance and plastic processing performance, good electrical and thermal conductivity, good corrosion resistance and weldability, and can be used as structural material.

[0003] Currently, in many manufacturers' workshop packaging processes, the film laminating process for aluminum profiles requires two or more workers to complete simultaneously. These workers must manually apply the film and move the material. This manual operation is labor-intensive and can easily damage the aluminum profile, reducing production efficiency and quality. Furthermore, due to different divisions of labor or limited manpower, the aluminum profile surface is not dusted before laminating. This can lead to uneven film application, poor laminating results, and compromised film quality. Therefore, further improvements are needed. Utility Model Content

[0004] In order to improve the quality and efficiency of film lamination of aluminum profiles, the present application provides an aluminum profile film lamination device.

[0005] The present application provides an aluminum profile film laminating device that adopts the following technical solution: an aluminum profile film laminating device, comprising a machine platform, the machine platform being provided with a limiting mechanism for limiting and protecting the aluminum profile during conveyance, a traction mechanism for actively driving the aluminum profile to move, a cleaning mechanism for cleaning the aluminum profile before laminating, a transverse laminating mechanism for laminating the aluminum profile on both transverse sides, a longitudinal laminating mechanism for laminating the aluminum profile on both longitudinal sides, a controller for controlling the operation of the device, and a foot switch for starting the operation of the device;

[0006] There are at least two groups of the limiting mechanism, each of which includes a limiting base, and two limiting rollers are arranged vertically and spaced apart on the top of the limiting base;

[0007] The traction mechanism includes two active traction rollers that are horizontal and spaced apart, the active traction rollers being arranged on the top of the machine platform, a traction driving member being provided in the machine platform, the traction driving member being rotatably connected to the two active traction rollers, traction brackets being provided on both sides of the two active traction rollers, a driven traction pressure roller being provided on the traction brackets, and the driven traction pressure roller being located above the active traction rollers;

[0008] The cleaning mechanism includes a cleaning bracket, on which two cleaning brushes are arranged horizontally and spaced apart along one side of the aluminum profile conveying direction, and a cleaning drive member is also provided on the cleaning bracket, and the cleaning drive member is rotatably connected to the cleaning brushes;

[0009] The transverse film laminating mechanism includes two transverse unwinding rods for placing the film roll, and the two transverse unwinding rods are in a vertical state and are spaced apart and arranged on the machine platform;

[0010] The longitudinal film laminating mechanism includes two longitudinal unwinding rods for placing the film roll, and the two longitudinal unwinding rods are in a horizontal state and are spaced apart and arranged on the machine platform;

[0011] The traction mechanism and the cleaning mechanism are located between the two groups of limiting mechanisms, the transverse film-laminating mechanism is located in the middle of the machine, and the longitudinal film-laminating mechanism is located between the transverse film-laminating mechanism and the traction mechanism.

[0012] By adopting the above technical solution, workers start the equipment through the controller and foot switch, use the limit mechanism on the machine to limit the movement and transportation process of the aluminum profile, use the traction mechanism to drive the aluminum profile to actively move, use the cleaning mechanism to clean the surface of the aluminum profile, and use the horizontal and vertical film-laminating mechanisms to apply film to the outer peripheral side of the aluminum profile. Compared with traditional manual operation, the aluminum profile can be cleaned automatically and the film-laminating process can be completed quickly, reducing the damage to the aluminum profile caused by long-term high-intensity action, thereby improving the quality of film laminating.

[0013] Optionally, the limit base is arranged on the top of the machine, and a limit movement groove is provided on the top of the limit base along its length direction, a rotatable threaded rod is provided in the limit movement groove, and two threaded blocks are provided on the threaded rod in the limit base, which can be threadably rotated, and the two limit rollers are respectively rotatably arranged on the top of the two threaded blocks, and the two ends of the threaded rod have opposite threaded rotation directions, and the two threaded blocks are respectively threadedly connected to the two ends of the threaded rod with different threaded rotation directions.

[0014] By adopting the above technical solution, a limiting movement groove is opened on the top of the limiting base, and a threaded rod and a threaded block are arranged inside the limiting movement groove. The threaded rod and the threaded block are threadedly matched, so that the limiting roller located on the threaded block moves in the limiting movement groove, thereby increasing the adaptability of the two limiting rollers to pass through aluminum profiles of different sizes.

[0015] Optionally, a limit adjustment handwheel is provided at the end of one end of the threaded rod passing through one side of the limit base. The limit adjustment handwheel drives the threaded rod to rotate by rotating, so that the threaded blocks located at different ends of the threaded rod drive the limit rollers to move closer or farther away in the limit moving groove.

[0016] By adopting the above technical solution, when the distance between the two limiting rollers located in the limiting movable groove needs to be adjusted, the worker turns the limiting adjustment handwheel, and the rotating limiting adjustment handwheel drives the threaded rod to rotate, and the threaded blocks with opposite thread rotation directions at both ends of the threaded rod can move closer to or away from each other, thereby making the two limiting rollers on the two threaded blocks adaptable to aluminum profiles of different sizes.

[0017] Optionally, two vertical adjusting screws are respectively provided on both sides of the traction bracket, and the two adjusting screws are respectively threadedly connected with adjusting blocks, and the two ends of the driven traction roller can be rotatably arranged between the two adjusting blocks, and a rotating shaft is provided at the top of the traction bracket, and driven bevel gears are respectively provided at both ends of the rotating shaft. The tops of the two adjusting screws pass through the top of the traction bracket and are provided with active bevel gears, and the two active bevel gears are respectively located on both sides of the top of the traction bracket, and the driven bevel gears at both ends of the rotating shaft are respectively connected to the active bevel gears on both sides of the top of the traction bracket.

[0018] By adopting the above technical solution, two adjusting screws are arranged in the traction bracket, so that the two ends of the driven traction pressure roller are set on the adjusting screws through the adjusting block thread, and a rotating shaft, an active bevel gear and a driven bevel gear are arranged on the top of the traction bracket to cooperate, so that the driven traction pressure roller can be raised and lowered in the traction bracket, and the spacing adjustment function between the driven traction pressure roller and the active traction roller is increased. This increases the adaptability of aluminum profiles of different sizes passing between the active traction roller and the driven traction pressure roller.

[0019] Optionally, a spacing adjustment handwheel is provided on the top of the active bevel gear of one of the tops of the traction brackets. The spacing adjustment handwheel drives the active bevel gear to drive the driven bevel gear and the rotating shaft to rotate, thereby causing the adjustment block on the adjustment screw and the driven traction pressure roller to rise and fall.

[0020] By adopting the above technical solution, when the distance between the driven traction roller and the active traction roller below it needs to be adjusted, the worker can turn the distance adjustment handwheel. The rotating distance adjustment handwheel drives the active bevel gear to drive the driven bevel gear and the rotating shaft to rotate, thereby causing the adjustment block on the adjusting screw and the driven traction roller to rise and fall, thereby realizing the distance adjustment between the driven traction roller and the active traction roller.

[0021] Optionally, the cleaning bracket includes an upper cleaning cross bar and cleaning legs respectively located at both ends of the upper cleaning cross bar, a lower cleaning cross bar is provided between the two cleaning legs, a cleaning movable groove is provided at the bottom of the upper cleaning cross bar and the top of the lower cleaning cross bar along the length direction thereof, two cleaning blocks are provided at a distance between the upper cleaning cross bar and the lower cleaning cross bar, and the cleaning blocks can be slidably provided between the upper cleaning cross bar and the lower cleaning cross bar through the cleaning movable groove;

[0022] The cleaning brush is arranged on one side of the cleaning block, and the cleaning driving member is arranged on the other side of the cleaning block. The movable end of the cleaning driving member passes through the cleaning block and is rotatably connected to the cleaning brush.

[0023] By adopting the above technical solution, cleaning movement grooves are opened on both the upper cleaning cross bar and the lower cleaning cross bar, leaving sufficient space for the movement of the cleaning block, so that the distance between the two cleaning brushes installed on the two cleaning blocks can be adjusted to adapt to aluminum profiles of different sizes.

[0024] Optionally, the cleaning block is provided with movable parts on both sides close to the cleaning movable groove, and the movable parts are arranged in the cleaning movable groove. The movable parts include a mounting block, and mounting plates are provided on both sides of the mounting block. A movable wheel is rotatably provided between the two mounting plates. The cleaning block can slide in the cleaning movable groove through the movable wheel to realize the movement and adjustment of the cleaning block. Locking blocks are provided on both sides of the mounting block in the cleaning movable groove, and the top of the locking block can be slidably set in the cleaning movable groove. The two ends of the locking block are tightened to the outer side of the cleaning movable groove by bolt threads.

[0025] By adopting the above technical solution, the two cleaning blocks slide in the cleaning moving groove through the moving wheel in the moving part, thereby adjusting the distance between the two cleaning blocks. After adjusting to the appropriate distance, the moving wheel is locked using the locking block to achieve the distance adjustment between the two cleaning brushes, thereby adapting to aluminum profiles of different sizes and increasing the adaptability and flexibility of the cleaning brushes.

[0026] Optionally, the cleaning brush includes a fixed sleeve, the interior of the fixed sleeve is threadedly connected to a cleaning screw, the outer peripheral side of the fixed sleeve is provided with bristles, and the movable end of the cleaning drive member is passed through a cleaning block and fixedly connected to the cleaning screw.

[0027] By adopting the above technical solution, the cleaning screw is driven to rotate by the movable end of the cleaning drive member, thereby causing the fixed sleeve threadedly connected to the cleaning screw to rotate, thereby causing the bristles on the outer peripheral side of the fixed sleeve to rotate, thereby realizing the cleaning action of the bristles on the aluminum profile when the aluminum profile passes between the two cleaning brushes.

[0028] In summary, this application includes at least one of the following beneficial technical effects:

[0029] 1. The worker starts the equipment through the controller and foot switch, uses the limit mechanism on the machine to limit the movement and conveying process of the aluminum profile, uses the traction mechanism to drive the aluminum profile to move actively, uses the cleaning mechanism to clean the surface of the aluminum profile, and uses the horizontal and vertical film-applying mechanisms to apply film to the outer side of the aluminum profile. Compared with traditional manual operation, the aluminum profile can be cleaned automatically and the film-applying process can be completed quickly, reducing the possibility of damage to the aluminum profile caused by long-term high-intensity movement, thereby improving the quality of film application;

[0030] 2. A limit movement groove is provided on the top of the limit base, and a threaded rod and a threaded block are provided inside the limit movement groove. The threaded rod and the threaded block are threadedly engaged with each other, so that the limit roller located on the threaded block moves within the limit movement groove, thereby increasing the adaptability of the two limit rollers to pass through aluminum profiles of different sizes;

[0031] 3. Two adjusting screws are set in the traction bracket, so that the two ends of the driven traction pressure roller are set on the adjusting screws through the adjusting block threads, and a rotating shaft, a driving bevel gear and a driven bevel gear are set on the top of the traction bracket to cooperate, so that the driven traction pressure roller can be raised and lowered in the traction bracket, increasing the distance adjustment function between the driven traction pressure roller and the active traction roller, and increasing the adaptability of different sizes of aluminum profiles passing between the active traction roller and the driven traction pressure roller. BRIEF DESCRIPTION OF THE DRAWINGS

[0032] Figure 1 It is a schematic diagram of the overall structure in the embodiment of this application.

[0033] Figure 2 It is a partial structural diagram of the limiting mechanism in the embodiment of the present application.

[0034] Figure 3 It is a schematic cross-sectional view of the overall structure in an embodiment of the present application.

[0035] Figure 4 It is a partial structural diagram of the traction mechanism in an embodiment of the present application.

[0036] Figure 5 It is a schematic diagram of the partial structure of the cleaning mechanism in the embodiment of the present application.

[0037] Figure 6 It is a cross-sectional schematic diagram of the cleaning mechanism in the embodiment of the present application.

[0038] Description of reference numerals:

[0039] 1. Machine platform; 2. Limiting mechanism; 21. Limiting base; 22. Limiting movable groove; 23. Threaded rod; 24. Threaded block; 25. Limiting adjustment wheel; 26. Limiting roller; 3. Traction mechanism; 31. Active traction roller; 32. Traction drive member; 33. Traction bracket; 331. Adjusting screw; 332. Adjusting block; 333. Driven traction roller; 334. Rotating shaft; 335. Driven bevel gear; 336. Active bevel gear; 337. Spacing adjustment handwheel; 338. Adjusting limiting groove; 4. Cleaning mechanism; 41. Cleaning bracket; 411. Upper cleaning crossbar; 412. Cleaning legs; 413. Lower cleaning crossbar; 42. Cleaning movable groove; 43. Cleaning block; 44. Cleaning brush; 441. Fixing sleeve; 442. Cleaning screw; 443. Bristles; 45. Cleaning drive member; 46. Protective shell; 47. Moving member; 471. Mounting block; 472. Shock-absorbing mounting seat; 473. Telescopic rod; 474. Shock-absorbing spring; 475. Mounting plate; 476. Moving wheel; 48. Locking block; 5. Horizontal film-laminating mechanism; 51. Horizontal unwinding rod; 6. Vertical film-laminating mechanism; 61. Vertical unwinding rod; 7. Controller; 8. Foot switch. DETAILED DESCRIPTION

[0040] The following is combined with Figure 1-6 This application is described in further detail.

[0041] The embodiment of the present application discloses an aluminum profile film laminating device.

[0042] Reference Figure 1 , an aluminum profile film laminating device includes a rectangular machine platform 1, on which a limit mechanism 2, a traction mechanism 3, a cleaning mechanism 4, a transverse film laminating mechanism 5, a longitudinal film laminating mechanism 6, a controller 7 and a foot switch 8 are installed;

[0043] Among them, there are four groups of limiting mechanisms 2, two groups of traction mechanisms 3, and one group each of the cleaning mechanism 4, the horizontal film-laminating mechanism 5 and the longitudinal film-laminating mechanism 6. The horizontal film-laminating mechanism 5 and the controller 7 are fixedly arranged at the middle position of the top of the machine 1. The four groups of limiting mechanisms 2 are arranged on both sides of the top of the machine 1 with the horizontal film-laminating mechanism 5 as the center, and the two groups of traction mechanisms 3 are respectively arranged on both sides of the top of the machine 1, and are respectively located between the two groups of limiting mechanisms 2 on the same side. The longitudinal film-laminating mechanism 6 is arranged between the traction mechanism 3 on one side of the top of the machine 1 and the limiting mechanism 2 close to the side of the horizontal film-laminating mechanism 5. The cleaning mechanism 4 is arranged between the traction mechanism 3 on the other side of the top of the machine 1 and the limiting mechanism 2 away from the side of the horizontal film-laminating mechanism 5. The foot switch 8 is arranged at one end of the bottom of the machine 1, and the foot switch 8 is electrically connected to the machine 1.

[0044] During the actual processing, workers start the equipment through the controller 7 and the foot switch 8, use the limit mechanism 2 on the machine 1 to limit the movement and transportation process of the aluminum profile, use the traction mechanism 3 to drive the aluminum profile to move actively, use the cleaning mechanism 4 to clean the surface of the aluminum profile, and use the horizontal film-laminating mechanism 5 and the vertical film-laminating mechanism 6 to apply film to the outer peripheral side of the aluminum profile. Compared with traditional manual operation, the aluminum profile can be cleaned automatically and the film-laminating process can be completed quickly, reducing the damage to the aluminum profile caused by long-term high-intensity action, thereby improving the quality of film-laminating.

[0045] Reference Figure 1 、 2 Specifically, in this embodiment, the limit mechanism 2 includes a rectangular limit base 21, which is horizontal and fixedly installed on the top of the machine platform 1 at right angles to the length direction of the machine platform 1. A limited movement groove 22 is provided on the top of the limit base 21 along its length. A threaded rod 23 is rotatably provided in the limit movement groove 22 along its length direction. Two threaded blocks 24 that can be threaded and rotatably provided are provided on the threaded rod 23 at intervals. One end of the threaded rod 23 is passed through the limit movement groove 22 and a limit adjustment wheel 25 is provided at the end of one end of the limit base 21. The threaded rod 23 can be rotated by rotating the limit adjustment wheel 25. The two ends of the threaded rod 23 have opposite thread rotation directions, and the two threaded blocks 24 are respectively threadedly connected to the opposite ends of the threaded rod 23. The tops of the two threaded blocks 24 are respectively rotatably provided with vertical limit rollers 26, and the aluminum profile can pass through the middle position of the two limit rollers 26.

[0046] During the actual processing, a limiting movable groove 22 is provided on the top of the limiting base 21, and a threaded rod 23 and a threaded block 24 are provided inside the limiting movable groove 22. The threaded rod 23 and the threaded block 24 are threadedly engaged with each other, so that the limiting roller 26 located on the threaded block 24 can move within the limiting movable groove 22, thereby increasing the adaptability of the two limiting rollers 26 to pass through aluminum profiles of different sizes. When the spacing between the two limiting rollers 26 located in the limiting movable groove 22 needs to be adjusted, the worker rotates the limiting adjustment handwheel, and the rotating limiting adjustment handwheel drives the threaded rod 23 to rotate, so that the threaded blocks 24 with opposite thread rotation directions at both ends of the threaded rod 23 can move closer to or farther away from each other, thereby increasing the adaptability of the two limiting rollers 26 on the two threaded blocks 24 to pass through aluminum profiles of different sizes.

[0047] Reference Figure 1 、 3 4. Specifically, in this embodiment, the traction mechanism 3 includes two active traction rollers 31 that are spaced apart from each other in a horizontal state and are arranged perpendicular to the length direction of the machine 1. The two ends of the active traction roller 31 are rotatably arranged on the top of the machine 1 through bearing seats. The two active traction rollers 31 are both provided with bearing seats and gear pairs at one end on the same side. A traction drive member 32 is provided at the bottom of the machine 1. The movable end of the traction drive member 32 is also provided with a gear pair. A chain outlet is provided at the top of the machine 1. The two active traction rollers 31 are connected to the traction drive member 32 through a chain and a gear pair, so that the traction drive member 32 drives the two active traction rollers 31 to rotate synchronously. In this embodiment, the traction drive member 32 is driven by a motor.

[0048] A traction bracket 33 is provided on both sides of the two active traction rollers 31 at the top of the machine 1. Two adjusting screws 331 are provided on both sides of the traction bracket 33. The two adjusting screws 331 are respectively threadedly connected to an adjusting block 332. Bearings are provided in the two adjusting blocks 332. A connecting shaft is rotatably provided between the two adjusting blocks 332. The two ends of the connecting shaft are rotated by inserting bearings in the adjusting blocks 332. A driven traction pressure roller 333 is sleeved on the connecting shaft. The driven traction pressure roller 333 is located above the active traction roller 31.

[0049] Bearing seats are provided on both sides of the top of the traction bracket 33, and a rotating shaft 334 is rotatably provided between the two bearing seats, and the two ends of the rotating shaft 334 are respectively passed through the bearing seats. The rotating shaft 334 is rotatably provided on the top of the traction bracket 33 through the two bearing seats. The two ends of the rotating shaft 334 are respectively fixed with a driven bevel gear 335. The tops of the two adjusting screws 331 are passed through the top of the traction bracket 33, and a driving bevel gear 336 is provided at the end of the passing part. The driven bevel gears 335 at both ends of the rotating shaft 334 are located between the two driving bevel gears 336 and are located at the same The driving bevel gear 336 and the driven bevel gear 335 on the side are connected to each other in a transmission manner. In order to facilitate the rotation of the driving bevel gear 336, a spacing adjustment handwheel 337 is fixedly provided on the top of one of the driving bevel gears 336. The spacing adjustment handwheel 337 drives the driving bevel gear 336 to rotate, and drives the driven bevel gear 335 to rotate, so that the driven bevel gears 335 at both ends of the rotating shaft 334 rotate synchronously with the driving bevel gear 336, and then drive the adjusting screw 331 to rotate, so that the connecting shaft on the adjusting block 332 and the driven traction roller 333 are lifted and lowered.

[0050] In addition, adjustment limit grooves 338 are opened along the length of the two side walls of the traction bracket 33, and a limit block is set on the outer side of the adjustment block 332. The limit block can be slidably set in the adjustment limit groove 338. As the adjustment block 332 moves on the adjustment screw 331, the limit block also moves accordingly to limit the moving range of the adjustment block 332.

[0051] During the actual processing, two adjusting screws 331 are set in the traction bracket 33, so that the two ends of the driven traction pressure roller 333 are threaded on the adjusting screw 331 through the adjusting block 332, and a rotating shaft 334, an active bevel gear 336 and a driven bevel gear 335 are set at the top of the traction bracket 33 to cooperate, so that the driven traction pressure roller 333 can be raised and lowered in the traction bracket 33, increasing the distance adjustment function between the driven traction pressure roller 333 and the active traction roller 31, and increasing the adaptability of different sizes of aluminum profiles passing between the active traction roller 31 and the driven traction pressure roller 333. When the distance between the driven traction roller 333 and the active traction roller 31 below it needs to be adjusted, the worker can rotate the distance adjustment hand wheel 337. The rotating distance adjustment hand wheel 337 drives the active bevel gear 336 to drive the driven bevel gear 335 and the rotating shaft 334 to rotate, thereby causing the adjustment block 332 on the adjusting screw 331 and the driven traction roller 333 to rise and fall, thereby realizing the distance adjustment between the driven traction roller 333 and the active traction roller 31.

[0052] Reference Figure 1 、 56. Specifically, in this embodiment, the cleaning mechanism 4 includes a cleaning bracket 41, which includes an upper cleaning cross bar 411 and cleaning legs 412 located at both ends of the upper cleaning cross bar 411. The bottoms of the cleaning legs 412 are fixedly arranged on both sides of the top of the bracket, and a lower cleaning cross bar 413 is fixedly arranged between the two cleaning legs 412. The upper cleaning cross bar 411 and the lower cleaning cross bar 413 are spaced apart and arranged in parallel with each other;

[0053] The bottom of the upper cleaning cross bar 411 and the top of the lower cleaning cross bar 413 are both provided with a cleaning movable groove 42 along their length direction. Two cleaning blocks 43 are arranged between the upper and lower groups of cleaning movable grooves 42. The top and bottom of the cleaning block 43 are respectively slidably set in the cleaning movable groove 42. The two cleaning blocks 43 are respectively provided with two cleaning brushes 44 on one side of the aluminum profile conveying direction. A cleaning drive member 45 is provided on the side of the cleaning block 43 away from the cleaning brush 44. A protective shell 46 is provided on the cleaning drive member 45. The movable end of the cleaning drive member 45 is passed through the cleaning block 43 and is rotatably connected to the cleaning brush 44. In this embodiment, the cleaning drive member 45 is driven by a motor.

[0054] During the actual processing, a cleaning moving groove 42 is opened on both the upper cleaning cross bar 411 and the lower cleaning cross bar 413 to leave enough space for the movement of the cleaning block 43, so that the distance between the two cleaning brushes 44 installed on the two cleaning blocks 43 can be adjusted to adapt to aluminum profiles of different sizes.

[0055] Reference Figure 1 Specifically, in this embodiment, a moving member 47 is provided on the top and bottom of the cleaning block 43, and the moving member 47 can be slidably disposed in the cleaning moving groove 42, so that the cleaning block 43 can be moved and adjusted;

[0056] Specifically, the movable member 47 includes a rectangular mounting block 471, which is arranged in the cleaning movable groove 42, and the width of the mounting block 471 is greater than the opening width of the cleaning movable groove 42. A rectangular shock-absorbing mounting seat 472 is provided on the side of the cleaning block 43 close to the mounting block 471. The top of the shock-absorbing mounting seat 472 is provided with a mounting opening, and a telescopic rod 473 with damping is provided in the mounting opening. The other end of the telescopic rod 473 is fixedly connected to the mounting block 471. A shock-absorbing spring 474 is sleeved on the telescopic rod 473 located in the shock-absorbing mounting seat 472, thereby increasing the shock-absorbing effect between the cleaning block 43 and the movable member 47.

[0057] There are mounting plates 475 on both sides of the mounting block 471 away from one end of the telescopic rod 473, and bearings are provided in the mounting plates 475. A moving wheel 476 is provided between the two mounting plates 475, so that the mounting plate 475 can slide in the cleaning moving groove 42 through the moving wheel 476. After the adjustment of the sliding, the moving wheel 476 needs to be locked to avoid movement during work and affecting the cleaning process. Therefore, the cleaning moving groove 42 is located on both sides of the mounting block 471. A convex locking block 48 is provided. The top raised position of the locking block 48 can be slidably set in the cleaning moving groove 42, and threaded holes are provided at both ends of the bottom of the locking block 48, which can be tightened to the outside of the moving groove through the bolt thread, so as to limit and lock the two ends of the moving wheel 476.

[0058] During the actual processing process, the two cleaning blocks 43 slide in the cleaning moving groove 42 through the moving wheel 476 in the moving part 47, thereby adjusting the distance between the two cleaning blocks 43. After adjusting to the appropriate distance, the locking block 48 is used to lock the moving wheel 476, thereby realizing the adjustment of the distance between the two cleaning brushes 44, so as to adapt to aluminum profiles of different sizes and increase the adaptability and flexibility of the cleaning brushes 44.

[0059] Reference Figure 5 、 6 Specifically, in this embodiment, the cleaning brush 44 includes a rectangular fixing sleeve 441, the inner side of the fixing sleeve 441 is provided with a thread along its length direction, the fixing sleeve 441 is internally threaded with a cleaning screw 442, the threaded end of the cleaning screw 442 is located in the fixing sleeve 441, and the other end of the cleaning screw 442 is not threaded. The fixing sleeve 441 is provided with bristles 443 along its outer circumference, and the movable end of the cleaning drive member 45 located at the other end of the cleaning block 43 passes through the cleaning block 43 and is fixedly connected to the cleaning screw 442 at the non-threaded end.

[0060] During the actual processing process, the cleaning screw 442 is driven to rotate by the movable end of the cleaning drive 45, and then the fixed sleeve 441 threadedly connected to the cleaning screw 442 is rotated, so that the bristles 443 on the outer peripheral side of the fixed sleeve 441 are rotated, thereby realizing the cleaning action of the bristles 443 on the aluminum profile when the aluminum profile passes between the two cleaning brushes 44.

[0061] Reference Figure 1 、 3Specifically, in this embodiment, the transverse film laminating mechanism 5 includes two transverse unwinding rods 51 for placing the film roll, and the two transverse unwinding rods 51 are vertically spaced apart and arranged on the top of the machine 1. The longitudinal film laminating mechanism 6 includes two longitudinal unwinding rods 61 for placing the film roll, and the two longitudinal unwinding rods 61 are horizontally spaced apart and arranged on the machine 1, wherein one longitudinal unwinding rod 61 is located on the top of the machine 1, and the other longitudinal unwinding roller is located inside the machine 1. A film unwinding port is opened on the top of the machine 1 for the film roll to pass through. Since the unwinding rod is a conventional technical means, it will not be explained in detail here.

[0062] Reference Figure 1 Specifically, in this embodiment, inspection doors and heat dissipation windows are provided on both sides of the machine 1, wherein there are two inspection doors and two heat dissipation windows on the same side, the two heat dissipation windows are located between the two inspection doors, and the two heat dissipation windows are located on one side of the traction drive component 32 in the machine 1.

[0063] During the actual processing, the operation of the equipment can be inspected and repaired through the inspection door, and the heat generated by the traction drive component 32 inside the machine 1 can be dissipated through the heat dissipation window.

[0064] The implementation principle of an aluminum profile film-laminating device in an embodiment of the present application is as follows: a worker uses a controller 7 and a foot switch 8 to make the aluminum profile first pass through a limiting mechanism 2 to limit the range of movement, and then pass through a cleaning mechanism 4 to clean the surface of the aluminum profile. The cleaned aluminum profile is then driven by a traction mechanism 3 for transportation and transported to another set of limiting mechanisms 2 for re-limiting the range of movement, and then passes through a horizontal film-laminating mechanism 5, a limiting mechanism 2 and a longitudinal film-laminating mechanism 6 in turn for film-laminating processing, and finally is driven by another set of traction mechanisms 3 to output the aluminum profile from the last set of limiting mechanisms 2.

[0065] The examples of this specific embodiment are all preferred embodiments of this application and are not intended to limit the scope of protection of this application. Identical components are represented by the same reference numerals. Therefore, any equivalent changes made based on the structure, shape, and principle of this application should be included in the scope of protection of this application.

Claims

1. An aluminum profile film laminating device, characterized by: The machine (1) comprises a limiting mechanism (2) for limiting protection during the conveying process of the aluminum profile, a traction mechanism (3) for actively driving the aluminum profile to move, a cleaning mechanism (4) for cleaning the aluminum profile before film lamination, a transverse laminating mechanism (5) for laminating the aluminum profile on both transverse sides, a longitudinal laminating mechanism (6) for laminating the aluminum profile on both longitudinal sides, a controller (7) for controlling the operation of the equipment, and a foot switch (8) for starting the operation of the equipment. The limiting mechanism (2) has at least two groups, and the limiting mechanism (2) includes a limiting base (21), and two limiting rollers (26) are arranged vertically and spaced apart on the top of the limiting base (21); The traction mechanism (3) comprises two active traction rollers (31) in a horizontal state and spaced apart from each other, the active traction rollers (31) being arranged on the top of the machine (1), a traction drive member (32) being arranged in the machine (1), the traction drive member (32) being rotatably connected to the two active traction rollers (31), traction brackets (33) being arranged on both sides of the two active traction rollers (31), a driven traction pressure roller (333) being arranged on the traction bracket (33), and the driven traction pressure roller (333) being located above the active traction roller (31); The cleaning mechanism (4) comprises a cleaning bracket (41), two cleaning brushes (44) arranged horizontally and spaced apart are arranged on one side of the cleaning bracket (41) along the conveying direction of the aluminum profile, and a cleaning driving member (45) is also arranged on the cleaning bracket (41), and the cleaning driving member (45) is rotatably connected to the cleaning brush (44); The transverse film laminating mechanism (5) comprises two transverse unwinding rods (51) for placing the film roll, and the two transverse unwinding rods (51) are in a vertical state and are spaced apart and arranged on the machine (1); The longitudinal film laminating mechanism (6) comprises two longitudinal unwinding rods (61) for placing the film roll, and the two longitudinal unwinding rods (61) are in a horizontal state and are spaced apart and arranged on the machine platform (1); The traction mechanism (3) and the cleaning mechanism (4) are located between the two sets of limiting mechanisms (2), the transverse film-laminating mechanism (5) is located in the middle of the machine (1), and the longitudinal film-laminating mechanism (6) is located between the transverse film-laminating mechanism (5) and the traction mechanism (3).

2. The aluminum profile film laminating device according to claim 1, characterized in that: The limiting base (21) is arranged on the top of the machine (1), and a limiting movable groove (22) is provided on the top of the limiting base (21) along its length direction. A rotatable threaded rod (23) is arranged in the limiting movable groove (22). Two threaded blocks (24) are arranged on the threaded rod (23) in the limiting base (21) and can be rotatably arranged. The two limiting rollers (26) are rotatably arranged on the top of the two threaded blocks (24). The two ends of the threaded rod (23) have opposite threaded rotation directions. The two threaded blocks (24) are respectively threadedly connected to the two ends of the threaded rod (23) with different threaded rotation directions.

3. The aluminum profile film laminating device according to claim 2, characterized in that: One end of the threaded rod (23) is passed through the end of one side of the limiting base (21), and a limiting adjustment hand wheel is provided. The limiting adjustment hand wheel drives the threaded rod (23) to rotate by rotating, thereby causing the threaded blocks (24) located at different ends of the threaded rod (23) to drive the limiting rollers (26) to move closer or farther away in the limiting movable groove (22).

4. The aluminum profile film laminating device according to claim 1, characterized in that: Two vertical adjusting screws (331) are respectively provided on both sides of the traction bracket (33), and the two adjusting screws (331) are respectively threadedly connected with adjusting blocks (332). The two ends of the driven traction roller (333) are rotatably arranged between the two adjusting blocks (332). A rotating shaft (334) is provided on the top of the traction bracket (33), and driven bevel gears (335) are respectively provided on both ends of the rotating shaft (334). The tops of the two adjusting screws (331) are both passed through the top of the traction bracket (33) and provided with driving bevel gears (336). The two driving bevel gears (336) are respectively located on both sides of the top of the traction bracket (33). The driven bevel gears (335) at both ends of the rotating shaft (334) are respectively connected to the driving bevel gears (336) on both sides of the top of the traction bracket (33).

5. The aluminum profile film laminating device according to claim 4, characterized in that: A spacing adjustment hand wheel (337) is provided on the top of one of the driving bevel gears (336) at the top of the traction bracket (33). The spacing adjustment hand wheel (337) drives the driving bevel gear (336) to rotate, thereby driving the driven bevel gear (335) and the rotating shaft (334) to rotate, thereby causing the adjustment block (332) on the adjustment screw (331) and the driven traction pressure roller (333) to perform a lifting action.

6. The aluminum profile film laminating device according to claim 1, characterized in that: The cleaning support (41) comprises an upper cleaning crossbar (411) and cleaning legs (412) respectively located at both ends of the upper cleaning crossbar (411); a lower cleaning crossbar (413) is provided between the two cleaning legs (412); a cleaning movable groove (42) is provided at the bottom of the upper cleaning crossbar (411) and the top of the lower cleaning crossbar (413) along their length direction; two cleaning blocks (43) are provided at intervals between the upper cleaning crossbar (411) and the lower cleaning crossbar (413); the cleaning blocks (43) can be slidably provided between the upper cleaning crossbar (411) and the lower cleaning crossbar (413) through the cleaning movable groove (42); The cleaning brush (44) is arranged on one side of the cleaning block (43), and the cleaning driving member (45) is arranged on the other side of the cleaning block (43). The movable end of the cleaning driving member (45) passes through the cleaning block (43) and is rotatably connected to the cleaning brush (44).

7. The aluminum profile film laminating device according to claim 6, characterized in that: The cleaning block (43) is provided with movable members (47) on both sides close to the cleaning movable groove (42), and the movable member (47) is arranged in the cleaning movable groove (42). The movable member (47) includes a mounting block (471), and mounting plates (475) are provided on both sides of the mounting block (471). A movable wheel (476) is rotatably provided between the two mounting plates (475). The cleaning block (43) can slide in the cleaning movable groove (42) through the movable wheel (476) to achieve the movement and adjustment of the cleaning block (43). Locking blocks (48) are provided on both sides of the mounting block (471) in the cleaning movable groove (42). The top of the locking block (48) can be slidably arranged in the cleaning movable groove (42), and the two ends of the locking block (48) are tightly pressed against the outer side of the cleaning movable groove (42) through bolt threads.

8. The aluminum profile film laminating device according to claim 7, characterized in that: The cleaning brush (44) comprises a fixed sleeve (441), the internal thread of the fixed sleeve (441) is connected to a cleaning screw (442), the outer peripheral side of the fixed sleeve (441) is provided with bristles (443), and the movable end of the cleaning drive member (45) is penetrated by a cleaning block (43) and fixedly connected to the cleaning screw (442).