Lens film pasting equipment

By designing an automated lens film application device, the problems of pollution and low efficiency caused by manual film application in the remote control signal lens area were solved, realizing a highly efficient automated film application process and improving production efficiency.

CN121105378AActive Publication Date: 2025-12-12HIMIT (SHENZHEN) TECH CO LTD
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Patent Information

Application Number
CN202511606566.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-05
Publication Date
2025-12-12
Estimated Expiration
2045-11-05

AI Technical Summary

Technical Problem

In existing technologies, the process of applying film to the signal lens area of ​​remote controls relies on manual cutting and application, resulting in hand contamination marks and low efficiency, which limits production capacity.

Method used

An automated lens film application device was designed, comprising a support platform, a loading and unloading device, a conveying device, a film cutting device, and a film application device. Through automated loading and unloading, cutting, and film application, the device achieves efficient film application to the remote control signal lens area.

Benefits of technology

The system enables automated film application to the remote control signal lens area, avoiding hand contamination and improving production efficiency and capacity.

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Abstract

The invention provides lens film pasting equipment. The lens film pasting equipment comprises a supporting table, a feeding and discharging device, a conveying device, a film cutting device and a film pasting device. The first tray assembly and the second tray assembly are movably arranged on the supporting table and used for moving on the supporting table in a crossed mode, the feeding and discharging device is correspondingly located at one end of the conveying device, and the film cutting device is arranged on the supporting table and correspondingly located at the other end of the conveying device. The film pasting device is arranged on the supporting table and correspondingly located above the film cutting device and the conveying device. Automatic feeding and discharging of the remote controller can be achieved through cooperation of the feeding and discharging device and the conveying device, the film cutting device can achieve automatic cutting to obtain a film matched with the size of a signal lens of the remote controller, and the film pasting device can achieve automatic adsorption of the cut film to be attached to the signal lens of the remote controller. Therefore, through sequential cooperation of a series of procedures, automatic film pasting on the signal lens of the remote controller is achieved, the advantages of high efficiency and convenience are achieved, and the productivity can be effectively improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of film pasting equipment, and in particular to a lens film pasting equipment. BACKGROUND

[0002] After the remote controller is assembled and produced, the signal lens area of the remote controller needs to be pasted with a film before it can be shipped. The core of this film pasting process is to protect the signal lens area from being scratched. Because the signal lens area is prone to being contaminated with dust and oil, or being rubbed and scratched during storage and transportation of the remote controller, the film pasting can form a physical barrier to avoid surface defects of the signal lens area from affecting the appearance and use.

[0003] Currently, when pasting a film on the signal lens area of a remote controller, a film piece with a size suitable for the signal lens area is usually cut by hand, and then the cut film piece is pasted on the signal lens area of the remote controller by hand. This way of cutting the film by hand and then pasting the film has the problems that the hand of the worker is prone to leaving contamination marks on the film, and the efficiency of pasting the film by hand is low, which limits the production capacity. SUMMARY

[0004] The present application aims to provide a lens film pasting equipment to solve the above-mentioned problems in the background art that when pasting a film on the signal lens area of a remote controller, a film piece with a size suitable for the signal lens area is usually cut by hand, and then the cut film piece is pasted on the signal lens area of the remote controller by hand. This way of cutting the film by hand and then pasting the film has the problems that the hand of the worker is prone to leaving contamination marks on the film, and the efficiency of pasting the film by hand is low, which limits the production capacity.

[0005] The technical solution adopted by the present application to solve the technical problems is as follows: a lens film pasting equipment, comprising a support table, a feeding and discharging device, a conveying device, a film cutting device, and a film pasting device; the conveying device comprises a first tray assembly and a second tray assembly, the first tray assembly and the second tray assembly are movably arranged on the support table and are used to move across the support table, the feeding and discharging device is located at one end of the conveying device, the film cutting device is arranged on the support table and located at the other end of the conveying device, and the film pasting device is arranged on the support table and located above the film cutting device and the conveying device.

[0006] In some embodiments, the side of the support table is provided with a support frame, and the feeding and discharging device is arranged on the support frame to correspond to one end of the conveying device.

[0007] In some embodiments, the feeding and discharging device comprises a first support, a first linear module, a second support, a first sliding rail, a second linear module, a third linear module and a pneumatic gripper; the first support and the second support are symmetrically arranged on the support frame, the first linear module is arranged on the first support, the first sliding rail is arranged on the second support, one end of the second linear module is movably connected to the first linear module, the other end of the second linear module is slidably connected to the first sliding rail, the third linear module is vertically movably connected to the second linear module, the pneumatic gripper is movably connected to the third linear module, the pneumatic gripper is connected with a gas source, and the pneumatic gripper has a plurality of clamping positions.

[0008] In some embodiments, the support table is symmetrically provided with two second sliding rails and two third sliding rails, and the two third sliding rails are respectively located on the two sides of the two second sliding rails; the first tray assembly comprises a lifting motor, a first supporting tray and a first belt transmission assembly, the first supporting tray is arranged on the top output end of the lifting motor, a plurality of first placing positions are arranged on the first supporting tray, the bottom of the lifting motor is slidably connected to the two second sliding rails, and the first belt transmission assembly is arranged on the support table and is drivingly connected to the bottom of the lifting motor; the second tray assembly comprises a third support, a second supporting tray and a second belt transmission assembly, the second supporting tray is arranged on the third support, a plurality of second placing positions are arranged on the second supporting tray, the bottom of the third support is slidably connected to the two third sliding rails, and the second belt transmission assembly is arranged on the support table and is drivingly connected to the bottom of the third support.

[0009] In some embodiments, the bottom of the lifting motor is provided with a first fixed clamping block, and the side of the third support is provided with a second fixed clamping block; the first belt transmission assembly comprises a first motor, a first bearing shaft and a first transmission belt, the first motor is arranged in the interior of the support table, the output end of the first motor extends to the top of the support table, the first bearing shaft is arranged on the top of the support table and away from the output end of the first motor, the first transmission belt is connected between the output end of the first motor and the first bearing shaft, and the bottom of the lifting motor is fixedly connected with the first transmission belt through the first fixed clamping block; the second belt transmission assembly comprises a second motor, a second bearing shaft and a second transmission belt, the second motor is arranged in the interior of the support table, the output end of the second motor extends to the top of the support table, the second bearing shaft is arranged on the top of the support table and away from the output end of the second motor, the second transmission belt is connected between the output end of the second motor and the second bearing shaft, and the side of the third support is fixedly connected with the second transmission belt through the second fixed clamping block.

[0010] In some embodiments, the cutting film device comprises a mounting plate, a transmission motor, a reel, a guide shaft, a fourth linear module, a moving plate, a fourth slide rail, a suction cylinder, a cutting assembly, a clamping assembly and a cover plate; the reel is arranged on one side of the mounting plate, the transmission motor is arranged on the other side of the mounting plate, the transmission motor is in transmission connection with the reel, the guide shaft is rotatably connected on one side of the mounting plate and located at the front end of the reel, the moving plate is arranged on one side of the mounting plate and located at the front end of the guide shaft, the fourth linear module is arranged on the other side of the mounting plate, the side of the mounting plate is provided with a moving hole, the side of the moving plate penetrates through the moving hole to movably connect with the fourth linear module, the top of the moving plate is transversely provided with a passing groove, the fourth slide rail is arranged on the inner bottom of the mounting plate, the bottom of the moving plate is slidably connected on the fourth slide rail, the suction cylinder is arranged on the inner side of the mounting plate and communicates with the passing groove, the cutting assembly is arranged on the moving plate and located at the front end of the moving plate, the clamping assembly is arranged on one side of the mounting plate and located at the front end of the cutting assembly, and the cover plate is arranged on the other side of the mounting plate to cover the transmission motor and the fourth linear module.

[0011] In some embodiments, the cutting assembly comprises a push cylinder and a cutter; the cutter is arranged on the top output end of the push cylinder.

[0012] In some embodiments, the clamping assembly comprises a connecting plate, a push cylinder and a support; the push cylinder and the support are both arranged on the connecting plate, the output end of the push cylinder is provided with a pressing plate, and the pressing plate corresponds to the support in up and down directions.

[0013] In some embodiments, the film pasting device comprises a fourth support, a fifth slide rail, a fifth support, a fifth linear module, a sixth linear module, a seventh linear module and a film pasting assembly; the fourth support and the fifth support are symmetrically arranged on the support table, the fifth slide rail is arranged on the fourth support, the fifth linear module is arranged on the fifth support, one end of the sixth linear module is slidably connected on the fifth slide rail, the other end of the sixth module is movably connected on the fifth linear module, the seventh linear module is vertically movably connected on the sixth linear module, and the film pasting assembly is movably connected on the seventh linear module.

[0014] In some embodiments, the film pasting assembly comprises a push-stretch motor, a mounting frame, an angle adjusting motor, a rotating shaft and a suction head; the mounting frame is arranged at the output end of the push-stretch motor, the angle adjusting motor is arranged at the upper part of the mounting frame, the rotating shaft is rotatably connected to the lower part of the mounting frame, the angle adjusting motor and the rotating shaft are belt transmission connected, the suction head is arranged at the bottom of the rotating shaft, the suction head is connected with an air source, the bottom end of the suction head is provided with a plurality of suction holes, and the suction head is made of soft material.

[0015] Compared with the prior art, the present application has the following advantages:

[0016] In the present application, the cooperation of the feeding and discharging device and the conveying device can realize automatic feeding and discharging of the remote controller, the cutting film device can realize automatic cutting of film pieces with sizes matching the signal lens of the remote controller, and the film pasting device can realize automatic pasting of the cut film pieces on the signal lens of the remote controller, so that the film pasting on the signal lens of the remote controller is realized through the cooperation of the series processes, which has the advantages of high efficiency and convenience and can effectively improve the production capacity. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is a schematic structural view of the whole lens pasting film equipment without the supporting frame and the feeding and discharging device;

[0018] Figure 2 It is a schematic structural view of the lens pasting film equipment without the supporting frame and the feeding and discharging device;

[0019] Figure 3 It is a schematic structural view of the supporting frame and the feeding and discharging device; Figure 2 It is an enlarged schematic structural view of position A in the middle;

[0020] Figure 4 It is a schematic structural view of the supporting frame and the feeding and discharging device;

[0021] Figure 5 It is a schematic structural view of the pneumatic clamping hand;

[0022] Figure 6 It is a schematic structural view of the whole conveying device;

[0023] Figure 7 It is a schematic structural view of the split conveying device;

[0024] Figure 8 It is a schematic structural view of the cutting film device from one side view;

[0025] Figure 9 It is a schematic structural view of the cutting film device from another side view;

[0026] Figure 10It is a structure schematic view of the film pasting device.

[0027] Figure 11 It is a structure schematic view of the film pasting assembly.

[0028] Explanation of reference signs:

[0029] 100, lens film pasting device; 10, support table; 101, second slide rail; 102, third slide rail; 20, support frame; 30, feeding and discharging device; 301, first support; 302, first linear module; 303, second support; 304, first slide rail; 305, second linear module; 306, third linear module; 307, pneumatic clamping hand; 3071, clamping position; 40, conveying device; 401, first tray assembly; 4011, lifting motor; 40111, first fixed clamping block; 4012, first bearing tray; 40121, first placing position; 4013, first belt transmission assembly; 40131, first motor; 40132, first bearing shaft; 40133, first transmission belt; 402, second tray assembly; 4021, third support; 40211, second fixed clamping block; 4022, second bearing tray; 40221, second placing position; 4023, second belt transmission assembly; 40231, second motor; 40232, second bearing shaft; 40233, second transmission belt; 403, remote controller; 4031, signal lens; 50, film cutting device; 501, mounting plate; 5011, hole for moving; 502, transmission motor; 503, reel; 504, guide shaft; 505, fourth linear module; 506, moving plate; 5061, slot for passing through; 507, fourth slide rail; 508, suction cylinder; 509, cutting assembly; 5091, pushing cylinder; 5092, cutting knife; 510, clamping assembly; 5101, connecting plate; 5102, pushing cylinder; 51021, pressing plate; 5103, support; 511, cover plate; 512, film roll; 513, film strip; 60, film pasting device; 601, fourth support; 602, fifth slide rail; 603, fifth support; 604, fifth linear module; 605, sixth linear module; 606, seventh linear module; 607, film pasting assembly; 6071, pushing motor; 6072, mounting frame; 6073, angle adjusting motor; 6074, rotating shaft; 6075, suction head; 60751, suction hole. DETAILED DESCRIPTION

[0030] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0031] In addition, in the present application, the description involving "first", "second" and the like is only for the purpose of description, and cannot be understood as indicating or implying the relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined with "first", "second" can explicitly or implicitly include at least one of the features.

[0032] Please refer to Figures 1 to 11 As shown in the drawings, the present application provides the following technical solutions: a lens film pasting device 100, comprising a support table 10, a feeding and discharging device 30, a conveying device 40, a film cutting device 50 and a film pasting device 60; the conveying device 40 comprises a first tray assembly 401 and a second tray assembly 402, the first tray assembly 401 and the second tray assembly 402 are movably arranged on the support table 10 and are used to move crosswise on the support table 10, the feeding and discharging device 30 is correspondingly located at one end of the conveying device 40, the film cutting device 50 is arranged on the support table 10 and correspondingly located at the other end of the conveying device 40, and the film pasting device 60 is arranged on the support table 10 and correspondingly located above the film cutting device 50 and the conveying device 40.

[0033] The lens film pasting device 100 provided by the embodiment is used to automatically paste the film on the signal lens 4031 of the remote controller 403, so that the film can be effectively prevented from being scratched and damaged when pasted on the signal lens 4031 of the remote controller 403.

[0034] In the lens film equipment 100 provided by the embodiment, the conveying device 40 is composed of the first tray assembly 401 and the second tray assembly 402 which can cross-move on the support table 10. When the signal lens 4031 of the remote controller 403 is pasted with the film, the first tray assembly 401 and the second tray assembly 402 cross-move to the lower side of the film pasting device 60 to receive the film pasting process of the film pasting device 60, and the first tray assembly 401 and the second tray assembly 402 cross-move to the loading and unloading device 30 to receive the clamping and unloading of the loading and unloading device 30 and then be loaded. When the film pasting device 60 pastes the film on the remote controller 403 carried by the first tray assembly 401 or the second tray assembly 402, the film strip 513 of the film roll 512 is automatically cut into a film piece which can match the size of the signal lens 4031 of the remote controller 403 by the film cutting device 50, and the film pasting device 60 absorbs the cut film piece, and the film pasting device 60 automatically pastes the absorbed film piece on the signal lens 4031 of the remote controller 403 to realize the film pasting on the signal lens 4031 of the remote controller 403. In the application, through the setting of the loading and unloading device 30, the conveying device 40, the film cutting device 50 and the film pasting device 60, the cooperation of the loading and unloading device 30 and the conveying device 40 can realize the automatic loading and unloading of the remote controller 403, the film cutting device 50 can automatically cut the film piece which can match the size of the signal lens 4031 of the remote controller 403, and the film pasting device 60 can automatically absorb the cut film piece and paste it on the signal lens 4031 of the remote controller 403, so that the film pasting on the signal lens 4031 of the remote controller 403 is realized through the cooperation of the series processes, which has the advantages of high efficiency and convenience and can effectively improve the production capacity.

[0035] Please refer to Figure 1 In some embodiments, the side of the support table 10 is provided with a support frame 20, and the loading and unloading device 30 is arranged on the support frame 20 to correspond to one end of the conveying device 40.

[0036] In specific implementation, the loading and unloading device 30 is arranged on the support frame 20, so that the loading and unloading device 30 can correspond to one end of the conveying device 40, and then the loading and unloading device 30 can load and unload the first tray assembly 401 and the second tray assembly 402 in the conveying device 40. Through such arrangement, the loading and unloading device 30 can be stably installed on the support frame 20 for application.

[0037] Please refer to Figure 1 , Figure 4 and Figure 5As shown, in some embodiments, the feeding and discharging device 30 comprises a first support 301, a first linear module 302, a second support 303, a first sliding rail 304, a second linear module 305, a third linear module 306, and a pneumatic gripper 307; the first support 301 and the second support 303 are symmetrically arranged on the support frame 20, the first linear module 302 is arranged on the first support 301, the first sliding rail 304 is arranged on the second support 303, one end of the second linear module 305 is movably connected to the first linear module 302, the other end of the second linear module 305 is slidably connected to the first sliding rail 304, the third linear module 306 is vertically movably connected to the second linear module 305, and the pneumatic gripper 307 is movably connected to the third linear module 306; the pneumatic gripper 307 is connected with a gas source, and the pneumatic gripper 307 has a plurality of clamping positions 3071.

[0038] In specific implementation, when the feeding and discharging device 30 performs the clamping operation on the remote controller 403, the pneumatic gripper 307 is driven by the first linear module 302 to move linearly in the longitudinal direction on the first support 301 and the second support 303, and the pneumatic gripper 307 is driven by the second linear module 305 to move linearly in the transverse direction on the first support 301 and the second support 303, and the pneumatic gripper 307 is driven by the third linear module 306 to move linearly in the vertical direction on the first support 301 and the second support 303, so as to realize the position adjustment of the pneumatic gripper 307 in the transverse direction, the longitudinal direction, and the vertical direction, so that the pneumatic gripper 307 can be adjusted to clamp the remote controller 403 to be pasted with a film and load the remote controller 403 on the first tray assembly 401 or the second tray assembly 402, or so that the pneumatic gripper 307 can be adjusted to clamp the remote controller 403 pasted with a film on the first tray assembly 401 or the second tray assembly 402 and discharge the remote controller 403, and the pneumatic gripper 307 has a plurality of clamping positions 3071, so that the pneumatic gripper 307 can clamp a plurality of remote controllers 403 at one time when clamping the remote controllers 403 for feeding or discharging. Through such a design, the feeding and discharging device 30 can clamp the remote controller 403 to be pasted with a film and load the remote controller 403 on the first tray assembly 401 or the second tray assembly 402, or the feeding and discharging device 30 can clamp the remote controller 403 pasted with a film on the first tray assembly 401 or the second tray assembly 402 and discharge the remote controller 403.

[0039] Please refer to Figure 1 , Figure 6 and Figure 7As shown, in some embodiments, two second sliding rails 101 are symmetrically arranged on the support table 10, and two third sliding rails 102 are symmetrically arranged on the support table 10, and the two third sliding rails 102 are respectively located on the two sides of the two second sliding rails 101; the first tray assembly 401 comprises a lifting motor 4011, a first supporting tray 4012 and a first belt drive assembly 4013, the first supporting tray 4012 is arranged on the top output end of the lifting motor 4011, a plurality of first placing positions 40121 are arranged on the first supporting tray 4012, the bottom of the lifting motor 4011 is slidably connected to the two second sliding rails 101, and the first belt drive assembly 4013 is arranged on the support table 10 and is drivingly connected to the bottom of the lifting motor 4011; the second tray assembly 402 comprises a third support 4021, a second supporting tray 4022 and a second belt drive assembly 4023, the second supporting tray 4022 is arranged on the third support 4021, a plurality of second placing positions 40221 are arranged on the second supporting tray 4022, the bottom of the third support 4021 is slidably connected to the two third sliding rails 102, and the second belt drive assembly 4023 is arranged on the support table 10 and is drivingly connected to the bottom of the third support 4021.

[0040] In the embodiment, when the first tray assembly 401 and the second tray assembly 402 move crosswise, the lifting motor 4011 is driven by the first belt transmission assembly 4013 to move linearly on the two second sliding rails 101. When the lifting motor 4011 moves linearly, the first supporting tray 4012 moves linearly. The lifting motor 4011 drives the first supporting tray 4012 to move downward by a distance, so that the height of the first supporting tray 4012 is lower than the height of the second supporting tray 4022. Meanwhile, the third support 4021 is driven by the second belt transmission assembly 4023 to move linearly on the two third sliding rails 102. When the third support 4021 moves linearly, the second supporting tray 4022 moves linearly. The first supporting tray 4012 and the second supporting tray 4022 move relatively. When the first supporting tray 4012 and the second supporting tray 4022 move relatively, the first supporting tray 4012 passes below the second supporting tray 4022, so that the first supporting tray 4012 and the second supporting tray 4022 move crosswise. Then, one of the first supporting tray 4012 and the second supporting tray 4022 carries the remote controller 403 with the film pasted by the film pasting device 60 to the feeding and discharging device 30 to be fed and discharged. The other one of the first supporting tray 4012 and the second supporting tray 4022 carries the remote controller 403 to be pasted with the film to the film pasting device 60 to be pasted with the film. The first supporting tray 4012 is provided with a plurality of first placing positions 40121 for containing a plurality of remote controllers 403 to be pasted with the film. The second supporting tray 4022 is provided with a plurality of second placing positions 40221 for containing a plurality of remote controllers 403 to be pasted with the film. Through the above arrangement, the first tray assembly 401 and the second tray assembly 402 of the conveying device 40 can effectively carry the remote controllers 403 to move crosswise to be pasted with the film by the film pasting device 60.

[0041] Please refer to Figure 7As shown, in some embodiments, the bottom of the lifting motor 4011 is provided with a first fixed clamping block 40111, and the side of the third support 4021 is provided with a second fixed clamping block 40211; the first belt transmission assembly 4013 includes a first motor 40131, a first shaft bearing 40132 and a first transmission belt 40133, the first motor 40131 is arranged in the interior of the support table 10, the output end of the first motor 40131 extends to the top of the support table 10, the first shaft bearing 40132 is arranged on the top of the support table 10 and away from the output end of the first motor 40131, the first transmission belt 40133 is connected between the output end of the first motor 40131 and the first shaft bearing 40132, and the bottom of the lifting motor 4011 is fixedly connected with the first transmission belt 40133 through the first fixed clamping block 40111; the second belt transmission assembly 4023 includes a second motor 40231, a second shaft bearing 40232 and a second transmission belt 40233, the second motor 40231 is arranged in the interior of the support table 10, the output end of the second motor 40231 extends to the top of the support table 10, the second shaft bearing 40232 is arranged on the top of the support table 10 and away from the output end of the second motor 40231, the second transmission belt 40233 is connected between the output end of the second motor 40231 and the second shaft bearing 40232, and the side of the third support 4021 is fixedly connected with the second transmission belt 40233 through the second fixed clamping block 40211.

[0042] In implementation: when the first belt transmission assembly 4013 drives the first supporting tray 4012 on the lifting motor 4011 to move linearly, one end of the first transmission belt 40133 is driven by the first motor 40131 to rotate clockwise or counterclockwise, and the other end of the first transmission belt 40133 is supported by the first supporting shaft 40132, so that when the first transmission belt 40133 rotates clockwise or counterclockwise, the first transmission belt 40133 drives the lifting motor 4011 to move linearly on the two second sliding rails 101 in the forward or reverse direction, so that the lifting motor 4011 and the first supporting tray 4012 move linearly in the forward or reverse direction. When the second belt transmission assembly 4023 drives the second supporting tray 4022 on the third support 4021 to move linearly, one end of the second transmission belt 40233 is driven by the second motor 40231 to rotate clockwise or counterclockwise, and the other end of the second transmission belt 40233 is supported by the second supporting shaft 40232, so that when the second transmission belt 40233 rotates clockwise or counterclockwise, the second transmission belt 40233 drives the third support 4021 to move linearly on the two third sliding rails 102 in the forward or reverse direction, so that the third support 4021 and the second supporting tray 4022 move linearly in the forward or reverse direction. Through such a setting, the first belt transmission assembly 4013 can effectively drive the first supporting tray 4012 to move linearly, and the second belt transmission assembly 4023 can effectively drive the second supporting tray 4022 to move linearly, so that the first supporting tray 4012 and the second supporting tray 4022 can move crosswise.

[0043] Please refer to Figure 1 , Figure 8 and Figure 9As shown, in some embodiments, the cutting film device 50 includes a mounting plate 501, a transmission motor 502, a reel 503, a guide shaft 504, a fourth linear module 505, a moving plate 506, a fourth sliding rail 507, a suction cylinder 508, a cutting assembly 509, a clamping assembly 510, and a cover plate 511; the reel 503 is arranged on one side of the mounting plate 501, the transmission motor 502 is arranged on the other side of the mounting plate 501, the transmission motor 502 is in transmission connection with the reel 503, the guide shaft 504 is rotatably connected to one side of the mounting plate 501 and located at the front end of the reel 503, the moving plate 506 is arranged on one side of the mounting plate 501 and located at the front end of the guide shaft 504, the fourth linear module 505 is arranged on the other side of the mounting plate 501, the side of the mounting plate 501 is provided with a moving hole 5011, the side of the moving plate 506 penetrates through the moving hole 5011 to movably connect with the fourth linear module 505, the top of the moving plate 506 is transversely provided with a through slot 5061, the fourth sliding rail 507 is arranged on the inner bottom of the mounting plate 501, the bottom of the moving plate 506 is slidably connected on the fourth sliding rail 507, the suction cylinder 508 is arranged on the inner side of the mounting plate 501 and communicates with the through slot 5061, the cutting assembly 509 is arranged on the moving plate 506 and located at the front end of the moving plate 506, the clamping assembly 510 is arranged on one side of the mounting plate 501 and located at the front end of the cutting assembly 509, and the cover plate 511 is arranged on the other side of the mounting plate 501 to cover the transmission motor 502 and the fourth linear module 505.

[0044] In specific implementation, the reel 503 is sleeved with a film roll 512, the film strip 513 of the film roll 512 is wound around the guide shaft 504 and penetrates through the through slot 5061 on the moving plate 506, and then the front end of the film strip 513 reaches the front end of the moving plate 506. When the cutting film device 50 operates, the reel 503 is rotated by the transmission motor 502, the length of the film strip 513 of the film roll 512 is released when the reel 503 rotates, at this time, the moving plate 506 is driven by the fourth linear module 505 to move forward, the part of the film strip 513 in the through slot 5061 on the moving plate 506 is sucked by the suction cylinder 508, the fourth linear module 505 can drive the film strip 513 to move forward when the moving plate 506 moves forward, until the front end of the film strip 513 is driven to the clamping assembly 510 and clamped by the clamping assembly 510, then the moving plate 506 is driven by the fourth linear module 505 to move backward by a distance, at the same time, the suction cylinder 508 on the moving plate 506 cancels the suction of the part of the film strip 513 in the through slot 5061, when the moving plate 506 moves backward by a distance driven by the fourth linear module 505, the moving plate 506 will not drive the film strip 513 to move backward, then the part of the film strip 513 between the moving plate 506 and the clamping assembly 510 is sucked by the pasting film device 60, and then the part of the film strip 513 between the moving plate 506 and the clamping assembly 510 is cut by the cutting assembly 509 (see Figure 8The cutting assembly 509 is in the process of cutting the film strip 513, and the moving plate 506 and the clamping assembly 510 are clamped together, and the film strip 513 is cut into a film piece, and then the clamping assembly 510 releases the clamping of the film piece, and then the film pasting device 60 sucks the film piece and pastes it on the signal lens 4031 of the remote controller 403. The guide shaft 504 is used to guide the film strip 513 of the film roll 512 when the moving plate 506 is driven to move forward, the fourth sliding rail 507 is used to slide the moving plate 506 when the fourth linear module 505 is driven to move forward, and the cover plate 511 is used to cover the transmission motor 502 and the fourth linear module 505. Through such a design, the cutting film device 50 can effectively and automatically cut the film strip 513 of the film roll 512 into a film piece.

[0045] Please refer to Figure 8 As shown, in some embodiments, the cutting assembly 509 includes a push cylinder 5091 and a cutter 5092; the cutter 5092 is arranged at the top output end of the push cylinder 5091.

[0046] In specific implementation, when the cutting assembly 509 cuts the film strip 513 of the film roll 512, the push cylinder 5091 drives the cutter 5092 to rise (see Figure 8 The cutter 5092 is in the rising state, and the cutter 5092 rises to cut the film strip 513 of the film roll 512. Through such a design, the cutting assembly 509 can effectively cut the film strip 513 of the film roll 512.

[0047] Please refer to Figure 8 As shown, in some embodiments, the clamping assembly 510 includes a connecting plate 5101, a push cylinder 5102, and a support 5103; the push cylinder 5102 and the support 5103 are arranged on the connecting plate 5101, and the output end of the push cylinder 5102 is provided with a pressing plate 51021, and the pressing plate 51021 corresponds to the support 5103 in up and down directions.

[0048] In specific implementation, when the clamping assembly 510 clamps the front end of the film strip 513 of the film roll 512, the push cylinder 5102 drives the pressing plate 51021 to descend, and the pressing plate 51021 descends to be in close contact with the support 5103, so as to clamp the front end of the film strip 513 between the pressing plate 51021 and the support 5103. When the front end of the film strip 513 is cut into a film piece by the cutting assembly 509, the clamping assembly 510 releases the clamping of the film piece, and the push cylinder 5102 drives the pressing plate 51021 to rise, and the pressing plate 51021 rises to be away from the support 5103, so that the film piece between the pressing plate 51021 and the support 5103 is released from clamping. Through such a design, the clamping assembly 510 can effectively realize the clamping operation.

[0049] Please refer to Figure 1 、 Figure 10 and Figure 11 , in some embodiments, the film pasting device 60 comprises a fourth support 601, a fifth sliding rail 602, a fifth support 603, a fifth linear module 604, a sixth linear module 605, a seventh linear module 606 and a film pasting assembly 607; the fourth support 601 and the fifth support 603 are symmetrically arranged on the support table 10, the fifth sliding rail 602 is arranged on the fourth support 601, the fifth linear module 604 is arranged on the fifth support 603, one end of the sixth linear module 605 is slidingly connected to the fifth sliding rail 602, the other end of the sixth linear module 605 is movably connected to the fifth linear module 604, the seventh linear module 606 is movably connected to the sixth linear module 605 in a vertical direction, and the film pasting assembly 607 is movably connected to the seventh linear module 606.

[0050] In specific implementation: when the film pasting device 60 adsorbs the film piece to be attached to the signal lens 4031 of the remote controller 403, the film pasting assembly 607 is driven by the fifth linear module 604 to move linearly in a longitudinal direction on the fourth support 601 and the fifth support 603, and is driven by the sixth linear module 605 to move linearly in a transverse direction on the fourth support 601 and the fifth support 603, and is driven by the seventh linear module 606 to move linearly in a vertical direction on the fourth support 601 and the fifth support 603, so as to adjust the longitudinal, transverse and vertical positions of the film pasting assembly 607, and the film pasting assembly 607 is used to take the film piece cut by the film cutting device 50 to be moved to the first supporting tray 4012 or the second supporting tray 4022 to be attached to the signal lens 4031 of the remote controller 403. Through such a setting, the film pasting device 60 can effectively realize the film pasting process.

[0051] Please refer to Figure 3 and Figure 11 , in some embodiments, the film pasting assembly 607 comprises a push-stretch motor 6071, a mounting frame 6072, an angle-adjusting motor 6073, a rotating shaft 6074 and an adsorption head 6075; the mounting frame 6072 is arranged at the output end of the push-stretch motor 6071, the angle-adjusting motor 6073 is arranged at the upper part of the mounting frame 6072, the rotating shaft 6074 is rotatably connected to the lower part of the mounting frame 6072, the angle-adjusting motor 6073 and the rotating shaft 6074 are belt-drivenly connected, the adsorption head 6075 is arranged at the bottom of the rotating shaft 6074, the adsorption head 6075 is connected with an air source, the bottom end of the adsorption head 6075 is provided with a plurality of adsorption holes 60751, and the adsorption head 6075 is made of soft material.

[0052] In specific implementation, the suction head 6075 is connected with an air source, which can be provided by a vacuum negative pressure machine in the prior art, and the suction head 6075 realizes suction of the film by negative pressure of the suction holes 60751. When the film adhering assembly 607 adheres the suctioned film to the signal lens 4031 of the remote controller 403 in the first supporting tray 4012 or the second supporting tray 4022, the mounting frame 6072 is driven by the push motor 6071 to move downward, so that the mounting frame 6072 moves downward, and the suction head 6075 moves downward, and the suction head 6075 presses the suctioned film downward to adhere to the signal lens 4031 of the remote controller 403. At this time, the suction head 6075 stops the suction force of the film. Since the suction head 6075 is made of soft material (such as rubber or silicone material), when the suction head 6075 is driven to move downward to adhere the suctioned film to the signal lens 4031 of the remote controller 403, the suction head 6075 can deform relative to the signal lens 4031, so that the suction head 6075 can press the film to more fully contact the irregular surface of the signal lens 4031. In addition, the angle adjusting motor 6073 drives the rotating shaft 6074 to rotate forward and reverse, and when the rotating shaft 6074 is driven to rotate forward and reverse, the rotating shaft 6074 drives the suction head 6075 to rotate forward and reverse, so that the suction head 6075 changes the angle to press the film to more fully contact the irregular surface of the signal lens 4031. Through such a setting, the film adhering assembly 607 can effectively press and adhere the film to the signal lens 4031 of the remote controller 403.

[0053] The basic principles and main features of the present application and the advantages of the present application are shown and described above, although the present specification is described in terms of embodiments, but not every embodiment contains only one independent technical solution, and the description manner of the specification is only for clarity, and the person skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can be combined to form other embodiments which can be understood by the person skilled in the art.

Claims

1. A lens film application device, characterized in that, The device includes a support platform, a loading and unloading device, a conveying device, a film cutting device, and a film applying device. The conveying device includes a first tray assembly and a second tray assembly, which are movably mounted on the support platform and can move crosswise on the support platform. The loading and unloading device is located at one end of the conveying device, the film cutting device is mounted on the support platform and located at the other end of the conveying device, and the film applying device is mounted on the support platform and located above the film cutting device and the conveying device.

2. The lens film application device according to claim 1, characterized in that, The support platform is provided with a support frame on its side, and the loading and unloading device is located on the support frame and is positioned at one end of the conveying device.

3. The lens film application device according to claim 1 or 2, characterized in that, The loading and unloading device includes a first support, a first linear module, a second support, a first slide rail, a second linear module, a third linear module, and a pneumatic gripper. The first support and the second support are symmetrically arranged on the support frame. The first linear module is arranged on the first support, and the first slide rail is arranged on the second support. One end of the second linear module is movably connected to the first linear module, and the other end of the second linear module is slidably connected to the first slide rail. The third linear module is vertically movably connected to the second linear module, and the pneumatic gripper is movably connected to the third linear module. The pneumatic gripper is connected to an air source and has several gripping positions.

4. The lens film application device according to claim 1, characterized in that, The support platform is symmetrically provided with two second slide rails and two third slide rails, with the two third slide rails respectively located on both sides of the two second slide rails. The first pallet assembly includes a lifting motor, a first support pallet, and a first belt drive assembly. The first support pallet is located at the top output end of the lifting motor and has several first placement positions. The bottom of the lifting motor is slidably connected to the two second slide rails. The first belt drive assembly is located on the support platform and is drivenly connected to the bottom of the lifting motor. The second pallet assembly includes a third bracket, a second support pallet, and a second belt drive assembly. The second support pallet is located on the third bracket and has several second placement positions. The bottom of the third bracket is slidably connected to the two third slide rails. The second belt drive assembly is located on the support platform and is drivenly connected to the bottom of the third bracket.

5. The lens film application device according to claim 4, characterized in that, The lifting motor has a first fixing block at its bottom and a second fixing block on its side. The first belt drive assembly includes a first motor, a first bearing, and a first drive belt. The first motor is located inside the support platform, with its output end extending to the top of the support platform. The first bearing is located at the top of the support platform and away from the output end of the first motor. The first drive belt connects the output end of the first motor and the first bearing. The bottom of the lifting motor is fixedly connected to the first drive belt via the first fixing block. The second belt drive assembly includes a second motor, a second bearing, and a second drive belt. The second motor is located inside the support platform, with its output end extending to the top of the support platform. The second bearing is located at the top of the support platform and away from the output end of the second motor. The second drive belt connects the output end of the second motor and the second bearing. The side of the third support is fixedly connected to the second drive belt via the second fixing block.

6. The lens film application device according to claim 1, characterized in that, The film cutting device includes a mounting plate, a drive motor, a roller, a guide shaft, a fourth linear module, a moving plate, a fourth slide rail, an adsorption cylinder, a cutting assembly, a clamping assembly, and a cover plate. The roller is located on one side of the mounting plate, and the drive motor is located on the other side of the mounting plate, with the drive motor being drively connected to the roller. The guide shaft is rotatably connected to one side of the mounting plate and located at the front end of the roller. The moving plate is located on one side of the mounting plate and located at the front end of the guide shaft. The fourth linear module is located on the other side of the mounting plate. The side of the mounting plate is provided with a moving hole. The side of the movable plate passes through the feeding hole and is movably connected to the fourth linear module. The top of the movable plate is provided with a horizontal feeding slot. The fourth slide rail is located at the bottom inner side of the mounting plate. The bottom of the movable plate is slidably connected to the fourth slide rail. The adsorption cylinder is located on the inner side of the mounting plate and communicates with the feeding slot. The cutting assembly is located on the movable plate and at the front end of the movable plate. The clamping assembly is located on one side of the mounting plate and at the front end of the cutting assembly. The cover plate is located on the other side of the mounting plate and is used to cover the drive motor and the fourth linear module.

7. The lens film application device according to claim 6, characterized in that, The cutting assembly includes a push cylinder and a cutter; the cutter is located at the top output end of the push cylinder.

8. The lens film application device according to claim 6, characterized in that, The clamping assembly includes a connecting plate, a pushing cylinder, and a support; the pushing cylinder and the support are both located on the connecting plate, and the output end of the pushing cylinder is provided with a pressure plate, which corresponds vertically to the support.

9. The lens film application device according to claim 1, characterized in that, The film application device includes a fourth support, a fifth slide rail, a fifth support, a fifth linear module, a sixth linear module, a seventh linear module, and a film application assembly. The fourth and fifth supports are symmetrically arranged on the support platform. The fifth slide rail is located on the fourth support. The fifth linear module is located on the fifth support. One end of the sixth linear module is slidably connected to the fifth slide rail, and the other end of the sixth module is movably connected to the fifth linear module. The seventh linear module is vertically movably connected to the sixth linear module, and the film application assembly is movably connected to the seventh linear module.

10. The lens film application device according to claim 9, characterized in that, The film application assembly includes a push-stretch motor, a mounting bracket, an angle-adjusting motor, a rotating shaft, and an adsorption head. The mounting bracket is located at the output end of the push-stretch motor, the angle-adjusting motor is located on the upper part of the mounting bracket, the rotating shaft is rotatably connected to the lower part of the mounting bracket, the angle-adjusting motor and the rotating shaft are connected by a belt drive, the adsorption head is located at the bottom of the rotating shaft, the adsorption head is connected to an air source, the bottom end of the adsorption head is provided with several adsorption holes, and the adsorption head is made of a soft material.

Citation Information

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