A Mylar attachment device

By designing a Mylar bonding device, intelligent operation of the entire Mylar roll process was realized, solving the problem of low efficiency in existing technologies and improving production efficiency and product quality consistency.

CN224279284UActive Publication Date: 2026-05-26CONNOR MACHINERY MANUFACTURING (SUZHOU) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CONNOR MACHINERY MANUFACTURING (SUZHOU) CO LTD
Filing Date
2025-06-17
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

In existing technologies, Mylar bonding efficiency is low, manual operation is difficult to meet the needs of large-scale production, and manual bonding errors lead to unstable product quality.

Method used

Design a Mylar bonding device, including a mounting frame component, a feeding component, a conveying roller component, a pressing and positioning component, a film removal and feeding component, a film suction and feeding component, a first winding component, and a second winding component. Through the automated control of the control component, the entire process is intelligently operated to ensure stable material supply, precise flattening, non-destructive peeling, and accurate bonding.

Benefits of technology

It realizes intelligent operation of the entire process of Mylar material roll from feeding to precision bonding, which improves bonding efficiency and ensures product quality consistency and production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model relates to a Mylar bonding device, including a mounting frame component, a feeding component, a conveying roller component, a pressing and positioning component, a delamination and feeding component, a suction and feeding component, a first winding component, a second winding component, and a control component. Its advantages lie in the fact that, through the integrated design of the mounting frame component and the automated control of the control component, it achieves intelligent operation of the entire Mylar roll process from feeding, conveying, double-sided processing of the centrifuged paper, to precision bonding; the feeding component ensures stable material supply; the pressing and positioning component uses an array of elastic rollers to precisely flatten the front centrifuged paper; the delamination and feeding component uses an adjustable-angle peeling knife to achieve non-destructive peeling of the reverse release paper; the suction and feeding component uses vacuum adsorption and servo drive technology to achieve precise bonding; and the dual winding system of the first and second winding components uses constant tension and differential speed control to achieve efficient recycling of waste materials.
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Description

Technical Field

[0001] This utility model relates to the field of electronic manufacturing technology, and in particular to a Mylar attachment device. Background Technology

[0002] Mylar (a polyester film material with excellent properties such as insulation, heat resistance, and moisture resistance) is widely used in the field of electronic equipment manufacturing. The Mylar bonding process has a significant impact on the performance and quality of electronic equipment.

[0003] In early electronics manufacturing, Mylar bonding relied heavily on manual operation. However, the inherent limitations of human hand stability and precision make it difficult to guarantee accurate placement every time. For example, when bonding Mylar to small electronic components, errors in manual application can lead to incomplete coverage or placement beyond the designated area, affecting the product's insulation performance and appearance. Furthermore, manual operation is slow and inefficient, making it unsuitable for large-scale production. In mass production, manual bonding is far less efficient than automated equipment, increasing production costs and timelines.

[0004] Currently, no effective solutions have been proposed for the problems of low Mylar adhesion efficiency in related technologies. Utility Model Content

[0005] The purpose of this invention is to address the shortcomings of existing technologies by providing a Mylar attachment device to solve problems such as low Mylar attachment efficiency in related technologies.

[0006] To achieve the above objectives, the technical solution adopted by this utility model is as follows:

[0007] This utility model provides a Mylar attachment device, comprising:

[0008] Mounting bracket component, the mounting bracket component being used to mount components;

[0009] A feeding component, which is disposed on the mounting frame component, is used to install Mylar rolls and feed Mylar rolls;

[0010] A conveyor roller assembly, which is disposed on the mounting frame assembly, is used to convey Mylar material belt;

[0011] A pressing and positioning component is disposed on the mounting frame component and is used to flatten the centrifugal paper on the front side of the Mylar roll;

[0012] A stripping and feeding component is disposed on the mounting frame component and located downstream of the clamping and positioning component, and is used to peel the centrifugal paper off the reverse side of the Mylar roll;

[0013] A film suction feeding component is disposed on the mounting frame component and located downstream of the film removal feeding component, and is used to absorb Mylar and press it down to adhere to the product;

[0014] A first winding component is disposed on the mounting frame component and is used to wind up the lower rubber sheet.

[0015] The second winding component is disposed on the mounting frame component and is used to wind up the edge of the rubber material.

[0016] A control component is disposed on the mounting bracket component and is respectively connected to the feeding component, the pressing and positioning component, the film removal feeding component, the film suction feeding component, the first winding component, and the second winding component for controlling the feeding component, the pressing and positioning component, the film removal feeding component, the film suction feeding component, the first winding component, and the second winding component.

[0017] In some embodiments, the feeding component includes:

[0018] A first support component is disposed on the mounting bracket component and is used to install components;

[0019] A feeding roller assembly, rotatably connected to the first support assembly, is used to mount Mylar rolls;

[0020] A first driving member is disposed on the first support member and connected to the control member. The output shaft of the first driving member is coaxially connected to the feeding roller member and is used to drive the feeding roller member to rotate in order to feed the Mylar roll.

[0021] In some embodiments, the conveyor roller assembly includes:

[0022] A first conveyor, rotatably mounted on the mounting frame component, is used to convey Mylar material belt;

[0023] The second conveyor, rotatably mounted on the mounting frame component, is used to convey Mylar material belt;

[0024] A third conveyor, which is slidably connected to the mounting bracket component and located between the first and second conveyors, is used to convey Mylar material belt.

[0025] In some embodiments, the conveyor roller assembly further includes:

[0026] The first slide rail component is disposed on the mounting bracket component and is vertically arranged;

[0027] The first slider component is slidably connected to the first slide rail component and rotatably connected to the third conveyor component;

[0028] At least one fixing member is provided on the mounting frame component for fixing the third conveying member.

[0029] In some embodiments, the clamping and positioning component includes:

[0030] The second bracket is disposed on the mounting bracket component and is used to install components;

[0031] A clamping station component is disposed on the mounting bracket component, and the clamping station component has a groove for supporting the Mylar material strip;

[0032] The second slide rail is disposed on the second bracket and is arranged in the vertical direction;

[0033] The second slider component is slidably connected to the second slide rail component;

[0034] A clamping element, wherein the clamping element is connected to the second slider element;

[0035] The second driving component is disposed on the second support component and connected to the control component. The output shaft of the second driving component is connected to the pressing component and is used to drive the pressing component to reciprocate in the vertical direction to achieve the operation of flattening the centrifugal paper on the front side of the Mylar roll.

[0036] In some embodiments, the demolding feeding component includes:

[0037] The third slide rail component is disposed on the mounting bracket component and is arranged along the length direction of the mounting bracket component;

[0038] The third slider component is slidably connected to the third slide rail component;

[0039] The third support component is connected to the third slider component and is used to install parts;

[0040] A stripping feeder, which is disposed on the third support member, is used to peel the centrifugal paper off the reverse side of the Mylar roll;

[0041] The third driving component is disposed on the mounting bracket component and connected to the control component. The output shaft of the third driving component is connected to the demolding feeding component and is used to drive the demolding feeding component to reciprocate along the third slide rail component.

[0042] The fourth conveyor is rotatably mounted on the third support member and is used to convey the Mylar material belt;

[0043] The fifth conveyor is rotatably mounted on the third support member and is used to convey Mylar material belt.

[0044] In some embodiments, the film feeding component includes:

[0045] The fourth support component is disposed on the mounting bracket component and is used to install parts;

[0046] A fourth slide rail component is disposed on the fourth support component and is arranged along the length direction of the fourth support component;

[0047] The fourth slider component is slidably connected to the fourth slide rail component;

[0048] The fourth driving component is disposed on the fourth slider component and connected to the control component;

[0049] The fifth support component is connected to the output shaft of the fourth drive component and is used for reciprocating lifting and lowering under the action of the fourth drive component;

[0050] A film suction feeding component is disposed on the fifth support component and connected to the control component. It is used to absorb Mylar and press it onto the product under the action of the fourth driving component.

[0051] The fifth driving component is disposed on the mounting bracket component and connected to the control component. The output shaft of the fifth driving component is connected to the fourth slider component and is used to drive the film feeding component to reciprocate along the length direction of the fourth slide rail component.

[0052] In some embodiments, the first winding member includes:

[0053] The sixth support component is disposed on the mounting bracket component and is used to install parts;

[0054] The sixth driving component is disposed on the sixth bracket and connected to the control component;

[0055] The first winding member is coaxially connected to the output shaft of the sixth drive member and is used to wind up the lower rubber sheet under the action of the control component.

[0056] In some embodiments, the second winding member includes:

[0057] The seventh support component is disposed on the mounting bracket component and is used to install parts;

[0058] The seventh driving component is disposed on the seventh support component and connected to the control component;

[0059] The second winding member is coaxially connected to the output shaft of the seventh drive member and is used to wind up the edge of the rubber material under the action of the control component.

[0060] In some embodiments, the second winding component further includes:

[0061] Two fixing plates are disposed on the mounting frame component and symmetrically arranged along the second winding member;

[0062] Two anti-loosening components are rotatably connected to the corresponding fixing plates to press the rubber material edges on the second winding component.

[0063] Two eccentric wheels are respectively rotatably connected to the corresponding fixed plate to support the fixed plate.

[0064] Two elastic elements are respectively sleeved on the round shaft that is rotatably connected to the corresponding eccentric wheel and the fixed plate, and are used to drive the eccentric wheel to rotate.

[0065] In some embodiments, the control component includes:

[0066] A communication component, which is disposed on the mounting bracket component and connected to an external remote control device, is used to receive and transmit signals.

[0067] A control component is disposed on the mounting bracket component and connected to the communication component, the feeding component, the pressing and positioning component, the film removal feeding component, the film suction feeding component, the first winding component, and the second winding component, respectively, for controlling the feeding component, the pressing and positioning component, the film removal feeding component, the film suction feeding component, the first winding component, and the second winding component.

[0068] The present invention adopts the above technical solution and has the following technical effects compared with the prior art:

[0069] This utility model discloses a Mylar bonding device. Through the integrated design of the mounting frame components and the automated control of the control components, it realizes the intelligent operation of the entire process of Mylar roll from feeding, conveying, double-sided processing of centrifuged paper to precision bonding. The feeding component ensures stable feeding, the pressing and positioning component uses an elastic roller array to precisely flatten the front centrifuged paper, the film removal feeding component uses an angle-adjustable peeling knife to achieve non-destructive peeling of the reverse release paper, the film suction feeding component uses vacuum adsorption and servo drive technology to achieve precise bonding, and the dual winding system of the first winding component and the second winding component uses constant tension and differential speed control to achieve efficient recycling of waste materials. Attached Figure Description

[0070] Figure 1 This is a schematic diagram of the Mylar attachment device according to an embodiment of the present invention;

[0071] Figure 2 This is a schematic diagram of the feeding component and the conveying roller component according to an embodiment of the present utility model;

[0072] Figure 3 This is a schematic diagram of the clamping and positioning component according to an embodiment of the present utility model;

[0073] Figure 4 This is a schematic diagram (a) of the film removal and feeding component, the film suction and feeding component, the first storage component, and the second winding component according to an embodiment of the present utility model;

[0074] Figure 5 This is a schematic diagram (II) of the film removal and feeding component, the film suction and feeding component, the first storage component and the second winding component according to an embodiment of the present utility model;

[0075] Figure 6 This is a schematic diagram of the frame of the Mylar attachment device according to an embodiment of the present utility model.

[0076] The attached figures are labeled as follows: 100, mounting bracket component;

[0077] 200. Feeding component; 210. First support component; 220. Feeding roller component; 230. First driving component;

[0078] 300. Conveyor roller assembly; 310. First conveyor component; 320. Second conveyor component; 330. Third conveyor component; 340. First slide rail component; 350. First slider component; 360. Fixing component;

[0079] 400. Clamping and positioning component; 410. Second support component; 420. Clamping station component; 430. Second slide rail component; 440. Second slider component; 450. Clamping component; 460. Second driving component;

[0080] 500. Demolding and feeding component; 510. Third slide rail component; 520. Third slider component; 530. Third support component; 540. Demolding and feeding component; 550. Third drive component; 560. Fourth conveyor component; 570. Fifth conveyor component;

[0081] 600. Film suction feeding component; 610. Fourth support component; 620. Fourth slide rail component; 630. Fourth slider component; 640. Fourth drive component; 650. Fifth support component; 660. Film suction feeding component; 670. Fifth drive component;

[0082] 700. First winding component; 710. Sixth support component; 720. Sixth drive component; 730. First winding component;

[0083] 800. Second winding component; 810. Seventh support component; 820. Seventh drive component; 830. Second winding component; 840. Fixing plate; 850. Anti-loosening component; 860. Eccentric wheel component;

[0084] 900. Control components; 910. Communication components; 920. Control components. Detailed Implementation

[0085] To make the objectives, technical solutions, and advantages of this application clearer, the application is described and illustrated below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the scope of this application. All other embodiments obtained by those skilled in the art based on the embodiments provided in this application without inventive effort are within the scope of protection of this application.

[0086] Obviously, the accompanying drawings described below are merely some examples or embodiments of this application. Those skilled in the art can apply this application to other similar scenarios based on these drawings without any inventive effort. Furthermore, it is understood that although the efforts made in this development process may be complex and lengthy, for those skilled in the art related to the content disclosed in this application, any changes to design, manufacturing, or production based on the technical content disclosed in this application are merely conventional technical means and should not be construed as insufficient disclosure of the content of this application.

[0087] In this application, the reference to "embodiment" means that a specific feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of this application. The appearance of this phrase in various places in the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment that is mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described in this application may be combined with other embodiments without conflict.

[0088] An illustrative embodiment of this utility model, such as Figure 1 As shown, a Mylar bonding device includes a mounting frame component 100, a feeding component 200, a conveying roller component 300, a pressing and positioning component 400, a film removal feeding component 500, a film suction feeding component 600, a first winding component 700, a second winding component 800, and a control component 900. The mounting frame component 100 is used to mount parts; the feeding component 200 is disposed on the mounting frame component 100 and is used to mount and feed the Mylar material roll; the conveying roller component 300 is disposed on the mounting frame component 100 and is used to convey the Mylar material strip; the pressing and positioning component 400 is disposed on the mounting frame component 100 and is used to flatten the centrifugal paper on the front side of the Mylar material roll; the film removal feeding component 500 is disposed on the mounting frame component 100 and is located downstream of the pressing and positioning component 400, and is used to peel off the centrifugal paper on the back side of the Mylar material roll; the film suction feeding component 600 is disposed on the mounting frame component 100 and is located downstream of the film removal feeding component 500, and is used to suction... The rubber sheet is attached to the product by pressing and pressing. A first winding component 700 is disposed on the mounting frame component 100 for winding the lower rubber sheet. A second winding component 800 is disposed on the mounting frame component 100 for winding the edge of the rubber sheet. A control component 900 is disposed on the mounting frame component 100 and is connected to the feeding component 200, the pressing and positioning component 400, the demolding feeding component 500, the film suction feeding component 600, the first winding component 700, and the second winding component 800 to control the feeding component 200, the pressing and positioning component 400, the demolding feeding component 500, the film suction feeding component 600, the first winding component 700, and the second winding component 800.

[0089] like Figure 1 As shown, the mounting bracket component 100 includes a base plate and a vertical plate. The vertical plate is mounted on the base plate by welding, bolting, or integral molding, and provides mounting conditions for components such as the feeding component 200, the conveying roller component 300, the pressing and positioning component 400, the demolding feeding component 500, the film suction feeding component 600, the first winding component 700, the second winding component 800, and the control component 900.

[0090] It should be noted that the shape and structure of the mounting bracket component 100 can be set according to the actual needs of the installed parts, and no further restrictions are imposed here.

[0091] like Figure 2 As shown, the feeding component 200 includes a first support member 210, a feeding roller member 220, and a first drive member 230. The first support member 210 is disposed on the mounting frame component 100 and is used to mount components; the feeding roller member 220 is rotatably connected to the first support member 210 and is used to mount Mylar rolls; the first drive member 230 is disposed on the first support member 210 and connected to the control component 900, and the output shaft of the first drive member 230 is coaxially connected to the feeding roller member 220, used to drive the feeding roller member 220 to rotate and feed the Mylar rolls.

[0092] Specifically, the first bracket 210 is installed on the top of the mounting frame component 100 by means of welding, riveting or bolting, and the first bracket 210 can provide installation conditions for the feeding roller component 220 and the first drive component 230.

[0093] In some of these embodiments, the first support member 210 includes, but is not limited to, a U-shaped plate.

[0094] Specifically, the central shaft of the feeding roller 220 is rotatably connected to the first support member 210 through bearings and other components, and the end of the feeding roller 220 is coaxially connected to the output shaft of the first drive member 230 by welding, riveting or bolting. It should be noted that the axial direction of the feeding roller 220 is the same as the width direction of the mounting bracket member 100.

[0095] In some embodiments, the feeding roller 220 includes, but is not limited to, a circular roller.

[0096] Specifically, the first driving component 230 is installed on the first bracket component 210 by means of welding, riveting or bolting, and the first driving component 230 is connected to the control component 900 by means of wire connection, and the first driving component 230 can drive the rotation of the feeding roller component 220.

[0097] In some of these embodiments, the first drive element 230 includes, but is not limited to, a motor.

[0098] like Figure 2 As shown, the conveyor roller assembly 300 includes a first conveyor 310, a second conveyor 320, and a third conveyor 330. The first conveyor 310 is rotatably mounted on the mounting frame assembly 100 and is used to convey the Mylar material belt; the second conveyor 320 is rotatably mounted on the mounting frame assembly 100 and is used to convey the Mylar material belt; the third conveyor 330 is slidably connected to the mounting frame assembly 100 and located between the first conveyor 310 and the second conveyor 320, and is used to convey the Mylar material belt.

[0099] Specifically, one end of the first conveying member 310 is rotatably connected to the mounting frame component 100 through bearings and other components, and the first conveying member 310 is located below the feeding roller component 220; it should be noted that the axial direction of the first conveying member 310 is the same as the axial direction of the feeding roller component 220.

[0100] In some of these embodiments, the first conveyor 310 includes, but is not limited to, a roller.

[0101] Specifically, one end of the second conveyor 320 is rotatably connected to the mounting bracket component 100 via bearings or other components, and the second conveyor 320 is spaced apart from the first conveyor 310 along the conveying direction of the Mylar belt; it should be noted that the axial direction of the second conveyor 320 is the same as that of the first conveyor 310.

[0102] In some of these embodiments, the second conveyor 320 includes, but is not limited to, a roller.

[0103] Specifically, one end of the third conveyor 330 is slidably connected to the mounting bracket component 100; it should be noted that the axial direction of the third conveyor 330 is the same as that of the second conveyor 320.

[0104] In some of these embodiments, the third conveyor 330 includes, but is not limited to, a roller.

[0105] Furthermore, the conveyor roller assembly 300 also includes a first slide rail 340, a first slider 350, and at least one fixing member 360. The first slide rail 340 is disposed on the mounting frame assembly 100 and is vertically arranged; the first slider 350 is slidably connected to the first slide rail 340 and rotatably connected to the third conveyor 330; the fixing member 360 is disposed on the mounting frame assembly 100 and is used to fix the third conveyor 330.

[0106] Specifically, the first slide rail component 340 is installed on the mounting bracket component 100 by means of welding, riveting or bolting, and the length direction of the first slide rail component 340 is set in the vertical direction.

[0107] In some of these embodiments, the first slide rail 340 includes, but is not limited to, a linear guide rail.

[0108] Specifically, the first slider 350 is slidably connected to the first slide rail 340, and the first slider 350 can provide installation conditions for the third conveyor 330, that is, the end of the third conveyor 330 is rotatably connected to the first slider 350 through bearings and other components.

[0109] In some of these embodiments, the first slider 350 includes, but is not limited to, a concave block.

[0110] Specifically, the fixing member 360 is installed on the mounting bracket component 100 by means of welding, riveting or bolting, and the fixing member 360 can be embedded and connected with the positioning rod on the first slider component 350 to fix the position of the third conveying member 330 on the mounting bracket component 100.

[0111] In some of these embodiments, the fixing member 360 includes, but is not limited to, a fixing clip.

[0112] It should be noted that there are two fixing members 360, and the two fixing members 360 are arranged at intervals along the vertical direction.

[0113] In some embodiments, the number of fixing members 360 can be set according to actual needs, and no further restrictions are imposed here.

[0114] like Figure 3 As shown, the clamping and positioning component 400 includes a second support member 410, a clamping station member 420, a second slide rail member 430, a second slider member 440, a clamping member 450, and a second drive member 460. The second support member 410 is mounted on the mounting frame member 100 for mounting components; the clamping station member 420 is mounted on the mounting frame member 100 and has a groove for supporting the Mylar tape; the second slide rail member 430 is mounted on the second support member 410 and is vertically oriented; the second slider member 440 is slidably connected to the second slide rail member 430; the clamping member 450 is connected to the second slider member 440; the second drive member 460 is mounted on the second support member 410 and connected to the control component 900, and the output shaft of the second drive member 460 is connected to the clamping member 450, driving the clamping member 450 to reciprocate vertically, thereby flattening the centrifugal paper on the front side of the Mylar tape roll.

[0115] Specifically, the second bracket 410 is connected to the mounting bracket component 100 by means of welding, riveting or bolting, and the second bracket 410 can provide installation conditions for the second slide rail 430, the second slider 440, the clamping component 450 and the second drive component 460.

[0116] In some of these embodiments, the second support member 410 includes, but is not limited to, a square plate.

[0117] Specifically, the clamping station component 420 is installed on the mounting bracket component 100 by means of welding, riveting or bolting, and the clamping station component 420 is located downstream of the second conveying component 320; it should be noted that the groove on the clamping station component 420 is opened in the same direction as the conveying direction of the Mylar belt.

[0118] In some of these embodiments, the clamping station 420 includes, but is not limited to, a grooved plate.

[0119] Specifically, the second slide rail 430 is installed on the second bracket 410 by means of welding, riveting or bolting, and the length direction of the second slide rail 430 is set in the vertical direction.

[0120] In some embodiments, the second slide rail 430 includes, but is not limited to, a linear guide rail.

[0121] Specifically, the second slider 440 is slidably connected to the second slide rail 430, and the second slider 440 can provide installation conditions for the clamping member 450.

[0122] In some of these embodiments, the second slider 440 includes, but is not limited to, a concave block.

[0123] Specifically, the clamping component 450 is connected to the second sliding component 440 by means of welding, riveting or bolting, and the clamping component 450 can flatten the centrifugal paper on the front side of the Mylar roll.

[0124] In some embodiments, the clamping element 450 includes, but is not limited to, a clamping block.

[0125] Specifically, the second drive member 460 is connected to the second bracket member 410 by welding, riveting or bolting, and is connected to the control member 900 by wire connection. The output shaft of the second drive member 460 is connected to the second slider member 440 by welding, riveting or bolting, so that the second drive member 460 can drive the clamping member 450 to move back and forth in the vertical direction.

[0126] In some of these embodiments, the second drive 460 includes, but is not limited to, a linear cylinder.

[0127] like Figure 4 and Figure 5As shown, the demolding and feeding component 500 includes a third slide rail component 510, a third slider component 520, a third support component 530, a demolding and feeding component 540, a third drive component 550, a fourth conveyor component 560, and a fifth conveyor component 570. The third slide rail 510 is disposed on the mounting frame 100 and is arranged along the length of the mounting frame 100; the third slider 520 is slidably connected to the third slide rail 510; the third support 530 is connected to the third slider 520 and is used to install components; the demolding feeder 540 is disposed on the third support 530 and is used to peel the centrifugal paper off the reverse side of the Mylar roll; the third drive 550 is disposed on the mounting frame 100 and is connected to the control component 900, and the output shaft of the third drive 550 is connected to the demolding feeder 540 and is used to drive the demolding feeder 540 to reciprocate along the third slide rail 510; the fourth conveyor 560 is rotatably disposed on the third support 530 and is used to convey the Mylar belt; the fifth conveyor 570 is rotatably disposed on the third support 530 and is used to convey the Mylar belt.

[0128] Specifically, the third slide rail 510 is installed on the mounting bracket component 100 by means of welding, riveting or bolting, and the length direction of the third slide rail 510 is the same as the length direction of the mounting bracket component 100.

[0129] In some embodiments, the third slide rail 510 includes, but is not limited to, a linear guide rail.

[0130] Specifically, the third slider 520 is slidably connected to the third slide rail 510, and the third slider 520 can provide installation conditions for the third bracket 530.

[0131] In some embodiments, the third slider 520 includes, but is not limited to, a rectangular block.

[0132] Specifically, the third bracket 530 is connected to the third slider 520 by means of welding, riveting or bolting, and the third bracket 530 can provide installation conditions for the components.

[0133] In some of these embodiments, the third support member 530 includes, but is not limited to, a rectangular plate.

[0134] Specifically, the stripping feeder 540 includes a stripping seat and an upper cover plate. The stripping seat is installed on the third support member 530 by welding, riveting, or bolting, and the stripping seat has a groove. The groove is opened along the length of the third slide rail member 510, that is, the groove allows the Mylar material to pass through. The upper cover plate is installed on the stripping seat by welding, riveting, or bolting, and the upper cover plate can cover the groove on the stripping seat, thereby preventing the Mylar material from detaching from the stripping seat.

[0135] In some embodiments, the demolding feeder 540 includes, but is not limited to, a conical plate.

[0136] Specifically, the third drive component 550 is installed on the side of the mounting bracket component 100 away from the third slide rail component 510 by means of welding, riveting or bolting, and is connected to the control component 900 by means of wire connection. The output shaft of the third drive component 550 is connected to the third bracket component 530 by means of welding, riveting or bolting. That is, the third drive component 550 can drive the demolding feeding component 540 to reciprocate along the length direction of the third slide rail component 510.

[0137] In some of these embodiments, the third drive element 550 includes, but is not limited to, a linear cylinder.

[0138] Specifically, one end of the fourth conveying member 560 in the length direction is connected to the third support member 530 through bearings and other components, and the axial direction of the fourth conveying member 560 is the same as the axial direction of the third conveying element.

[0139] In some of these embodiments, the fourth conveyor 560 includes, but is not limited to, a roller.

[0140] Specifically, one end of the fifth conveying member 570 in the length direction is connected to the third support member 530 through bearings and other components, and the axial direction of the fifth conveying member 570 is the same as that of the fourth conveying member 560.

[0141] In some of these embodiments, the fifth conveyor 570 includes, but is not limited to, a roller.

[0142] like Figure 4 and Figure 5As shown, the film suction feeding component 600 includes a fourth support component 610, a fourth slide rail component 620, a fourth slider component 630, a fourth drive component 640, a fifth support component 650, a film suction feeding component 660, and a fifth drive component 670. The fourth support member 610 is disposed on the mounting bracket component 100 and is used to install components; the fourth slide rail member 620 is disposed on the fourth support member 610 and is arranged along the length direction of the fourth support member 610; the fourth slider member 630 is slidably connected to the fourth slide rail member 620; the fourth drive member 640 is disposed on the fourth slider member 630 and is connected to the control component 900; the fifth support member 650 is connected to the output shaft of the fourth drive member 640 and is used to reciprocate and lift under the action of the fourth drive member 640; the film suction feeding member 660 is disposed on the fifth support member 650 and is connected to the control component 900, and is used to absorb Mylar and press it down and attach it to the product under the action of the fourth drive member 640; the fifth drive member 670 is disposed on the mounting bracket component 100 and is connected to the control component 900, and the output shaft of the fifth drive member 670 is connected to the fourth slider member 630, and is used to drive the film suction feeding member 660 to reciprocate along the length direction of the fourth slide rail member 620.

[0143] Specifically, the fourth bracket 610 is fixed to the mounting bracket component 100 by welding, riveting or bolting, and the fourth bracket 610 can provide installation conditions for the fourth slide rail 620, the fourth slider 630 and the fifth bracket 650.

[0144] In some of these embodiments, the fourth support member 610 includes, but is not limited to, a rectangular plate.

[0145] Specifically, the fourth slide rail 620 is installed on the fourth bracket 610 by means of welding, riveting or bolting, and the length direction of the fourth slide rail 620 is the same as the length direction of the third slide rail 510.

[0146] In some embodiments, the fourth slide rail 620 includes, but is not limited to, a linear guide rail.

[0147] Specifically, the fourth slider 630 is slidably connected to the fourth slide rail 620, and the fourth slider 630 can provide installation conditions for the fifth bracket 650.

[0148] In some embodiments, the fourth slider 630 includes, but is not limited to, a rectangular block.

[0149] Specifically, the fourth driving component 640 is installed on the fourth slider component 630 by means of welding, riveting or bolting, and is connected to the control component 900 by means of wire connection. The output shaft of the fourth driving component 640 is connected to the film suction feeding component 660 by means of welding, riveting or bolting, that is, the fourth driving component 640 can drive the film suction feeding component 660 to move back and forth in a vertical manner.

[0150] In some of these embodiments, the fourth drive element 640 includes, but is not limited to, a linear cylinder.

[0151] Specifically, the fifth support member 650 is installed on the fourth slider member 630 by means of welding, riveting or bolting, and the fifth support member 650 can provide installation conditions for the fourth drive member 640 and the film suction feeding member 660.

[0152] In some of these embodiments, the fifth support member 650 includes, but is not limited to, an L-shaped plate.

[0153] Specifically, the film suction feeding component 660 is lifted and connected to the fifth support component 650 via the fifth drive component 670, and is connected to the control component 900 via a wired connection. That is, the film suction feeding component 660 can adsorb and press down the Mylar peeled off by the film removal feeding component 540 and attach it to the corresponding position of the product.

[0154] In some embodiments, the film feeding component 660 includes, but is not limited to, a vacuum adsorption cylinder.

[0155] Specifically, the fifth drive component 670 is installed on the mounting bracket component 100 by means of welding, riveting or bolting, and is connected to the control component 900 by means of wire connection. The output shaft of the fifth drive component 670 is connected to the fifth bracket component 650 by means of welding, riveting or bolting. That is, the fifth drive component 670 can drive the film suction feeding component 660 to move back and forth along the length direction of the fourth slide rail component 620.

[0156] In some embodiments, the fifth drive element 670 includes, but is not limited to, a linear cylinder.

[0157] like Figure 4 and Figure 5 As shown, the first winding component 700 includes a sixth support member 710, a sixth drive member 720, and a first winding member 730. The sixth support member 710 is disposed on the mounting bracket component 100 and is used to mount components; the sixth drive member 720 is disposed on the sixth support member 710 and connected to the control component 900; the first winding member 730 is coaxially connected to the output shaft of the sixth drive member 720 and is used to wind up the lower rubber sheet under the action of the control component 900.

[0158] Specifically, the sixth bracket 710 is fixed to the mounting bracket component 100 by means of welding, riveting or bolting, and the sixth bracket 710 can provide installation conditions for the sixth drive component 720 and the first winding component 730.

[0159] In some of these embodiments, the sixth support member 710 includes, but is not limited to, an L-shaped support.

[0160] Specifically, the sixth drive component 720 is installed on the sixth bracket component 710 by means of welding, riveting or bolting, and is connected to the control component 900 by means of wired connection.

[0161] In some of these embodiments, the sixth drive element 720 includes, but is not limited to, a motor.

[0162] Specifically, the first winding member 730 is coaxially connected to the output shaft of the sixth driving member 720 by means of welding, riveting or bolting, that is, the first winding member 730 can rotate under the action of the sixth driving member 720, thereby realizing the winding of the lower rubber sheet.

[0163] In some of these embodiments, the first take-up member 730 includes, but is not limited to, a take-up roller.

[0164] like Figure 4 and Figure 5 As shown, the second winding component 800 includes a seventh support member 810, a seventh drive member 820, and a second winding component 830. The seventh support member 810 is disposed on the mounting bracket component 100 and is used to mount components; the seventh drive member 820 is disposed on the seventh support member 810 and connected to the control component 900; the second winding component 830 is coaxially connected to the output shaft of the seventh drive member 820 and is used to wind up the edge of the rubber material under the action of the control component 900.

[0165] Specifically, the seventh bracket 810 is fixed to the mounting bracket component 100 by means of welding, riveting or bolting, and the seventh bracket 810 is located on the mounting bracket component 100 below the clamping and positioning component 400.

[0166] In some of these embodiments, the seventh support member 810 includes, but is not limited to, a mounting plate.

[0167] Specifically, the seventh drive component 820 is fixed to the mounting bracket component 100 by welding, riveting or bolting, and is connected to the control component 900 by wire connection. The seventh drive component 820 is fixed on the side of the mounting bracket component 100 away from the seventh support component 810, and the output shaft of the seventh drive component 820 passes through the mounting bracket component 100.

[0168] In some of these embodiments, the seventh drive element 820 includes, but is not limited to, a motor.

[0169] Specifically, the second winding member 830 is coaxially connected to the output shaft of the seventh driving member 820 by means of welding, riveting or bolting, and the second winding member 830 can rotate under the action of the seventh driving member 820, thereby realizing the winding of the rubber material edge.

[0170] In some of these embodiments, the second take-up member 830 includes, but is not limited to, a take-up roller.

[0171] Furthermore, the second winding component 800 also includes two fixed plates 840, two anti-loosening components 850, two eccentric wheels 860, and two elastic components. The two fixed plates 840 are disposed on the mounting frame component 100 and symmetrically arranged along the second winding component 830; the two anti-loosening components 850 are rotatably connected to their respective fixed plates 840, used to press the rubber material edges on the second winding component 830; the two eccentric wheels 860 are rotatably connected to their respective fixed plates 840, used to support the fixed plates 840; and the two elastic components are respectively sleeved on the round shafts rotatably connected to the fixed plates 840 by the corresponding eccentric wheels 860, used to drive the eccentric wheels 860 to rotate.

[0172] Specifically, the fixing plate 840 includes a rectangular plate, a rotating shaft, and two oblong plates. The rectangular plate is connected to the seventh support member 810 by welding, riveting, or bolting. The rotating shaft is integrally formed on one side of the rectangular plate in the width direction, and the axis of the rotating shaft is the same as the axis of the second winding member 830. The first ends of the two oblong plates are rotatably connected to the two ends of the rotating shaft, and the second ends of the two oblong plates are rotatably connected to the two ends of the anti-loosening member 850.

[0173] In some embodiments, the fixing plate 840 includes, but is not limited to, a rectangular plate.

[0174] It should be noted that the two fixed plates 840 are symmetrically arranged along the second winding member 830.

[0175] It should be noted that the rectangular plate of the fixing plate 840 has a rectangular hole, which allows the eccentric wheel 860 to be installed.

[0176] Specifically, the two anti-loosening parts 850 are rotatably connected to the corresponding fixing plate 840, and the anti-loosening parts 850 abut against the second winding part 830, thereby clamping the edge of the rubber material wound on the second winding part 830 and preventing it from loosening.

[0177] In some of these embodiments, the anti-loosening element 850 includes, but is not limited to, a roller.

[0178] Specifically, the eccentric wheel 860 is rotatably connected to the rectangular hole on the fixed plate 840, that is, the distance between the anti-loosening member 850 and the second winding member 830 can be adjusted by rotating the eccentric wheel 860.

[0179] It should be noted that the two eccentric wheel components 860 are respectively installed in the rectangular holes on the corresponding fixed plate components 840.

[0180] It should be noted that as the second winding member 830 rotates, the edge of the rubber material on the second winding member 830 will gradually increase, that is, the diameter of the second winding member 830 will gradually increase; at the same time, the anti-loosening member 850 will always be in contact with the second winding member 830 as the diameter of the second winding member 830 changes, thereby preventing the edge of the rubber material wound on the second winding member 830 from loosening.

[0181] like Figure 6 As shown, the control component 900 includes a communication component 910 and a control component 920. The communication component 910 is disposed on the mounting bracket component 100 and connected to an external remote control device for receiving and transmitting signals. The control component 920 is disposed on the mounting bracket component 100 and connected to the communication component 910, the feeding component 200, the pressing and positioning component 400, the demolding and feeding component 500, the film suction and loading component 600, the first winding component 700, and the second winding component 800, for controlling the feeding component 200, the pressing and positioning component 400, the demolding and feeding component 500, the film suction and loading component 600, the first winding component 700, and the second winding component 800.

[0182] Specifically, the communication component 910 is fixed to the mounting bracket component 100 by means of welding, riveting or bolting, and is connected to external remote control equipment by means of wired or wireless connection.

[0183] In some embodiments, the communication device 910 includes, but is not limited to, a Bluetooth sensor, a WiFi sensor, and a ZigBee sensor.

[0184] Specifically, the control component 920 is fixed to the mounting bracket component 100 by welding, riveting, or bolting, and is connected to the communication component 910, the first drive component 230, the second drive component 460, the third drive component 550, the film suction feeding component 660, the fourth drive component 640, the fifth drive component 670, the sixth drive component 720, and the seventh drive component 820 by wired connection, for controlling the first drive component 230, the second drive component 460, the third drive component 550, the film suction feeding component 660, the fourth drive component 640, the fifth drive component 670, the sixth drive component 720, and the seventh drive component 820.

[0185] In some of these embodiments, the controller 920 includes, but is not limited to, an MCU, a Raspberry Pi, or a microcontroller.

[0186] The usage method of this embodiment is as follows:

[0187] Preparation:

[0188] The worker installs the Mylar roll on the feeding roller 220 and manually pulls the Mylar belt so that the Mylar belt passes through the first conveyor 310, the second conveyor 320, the pressing station 420, the demolding feeder 540, the fourth conveyor 560, and the fifth conveyor 570 in sequence, and winds the lower rubber sheet onto the first winding member 730 and the edge of the rubber sheet onto the second winding member 830;

[0189] The operator adjusts the position of the third conveyor 330 on the mounting frame component 100 along the first slide rail component 340, so that the third conveyor 330 comes into contact with the Mylar belt, thereby supporting the Mylar belt.

[0190] The control unit 920 starts the third drive unit 550, which drives the demolding feeding unit 540 to move along the length direction of the third slide rail 510, so that the position of the demolding feeding unit 540 on the mounting bracket component 100 meets the actual processing requirements.

[0191] The control unit 920 starts the fourth drive unit 640, which drives the film suction feeding unit 660 to move along the length direction of the fourth slide rail unit 620, so that the position of the film suction feeding unit 660 on the mounting frame component 100 meets the actual processing requirements.

[0192] Actual operation:

[0193] The control unit 920 simultaneously activates the first drive unit 230, the sixth drive unit 720, and the seventh drive unit 820, thereby enabling the Mylar belt to pass through the first conveyor 310, the second conveyor 320, the pressing station unit 420, the demolding feeding unit 540, the fourth conveyor 560, and the fifth conveyor 570, thus realizing the conveying of the Mylar belt.

[0194] When the Mylar tape passes through the pressing station 420, the control unit 920 activates the second drive unit 460, which drives the pressing unit 450 to press down, thereby achieving the flattening operation of the centrifugal paper on the front side of the Mylar tape roll.

[0195] When the Mylar conveyor belt passes through the demolding feeder 540, the control unit 920 activates the fifth drive unit 670 and the film suction feeder 660. The fifth drive unit 670 drives the film suction feeder 660 to press down, thereby causing the film suction feeder 660 to absorb the Mylar separated by the demolding feeder 540.

[0196] The control unit 920 activates the fourth drive unit 640, which in turn drives the film suction feeding unit 660 to move along the length of the fourth slide rail unit 620, so that Mylar is positioned above the product.

[0197] The control unit 920 activates the fifth drive unit 670, which in turn drives the suction film feeding unit 660 to press down, thereby enabling Mylar to be attached to the product.

[0198] The advantage of this embodiment is that, through the integrated design of the mounting frame components and the automated control of the control components, the entire process of intelligent operation of Mylar rolls, from feeding, conveying, double-sided processing of centrifuged paper to precision bonding, is realized. The feeding component ensures stable feeding, the pressing and positioning component uses an elastic roller array to precisely flatten the front centrifuged paper, the film removal feeding component uses an angle-adjustable peeling knife to achieve non-destructive peeling of the reverse release paper, the film suction feeding component uses vacuum adsorption and servo drive technology to achieve precise bonding, and the dual winding system of the first and second winding components uses constant tension and differential speed control to achieve efficient recycling of waste materials.

[0199] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0200] The embodiments described above are merely illustrative of several implementation methods of this application, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this application, and these all fall within the protection scope of this application. Therefore, the protection scope of this patent application should be determined by the appended claims.

Claims

1. A Mylar attachment device, characterized in that, include: Mounting bracket component, the mounting bracket component being used to mount components; A feeding component, which is disposed on the mounting frame component, is used to install Mylar rolls and feed Mylar rolls; A conveyor roller assembly, which is disposed on the mounting frame assembly, is used to convey Mylar material belt; A pressing and positioning component is disposed on the mounting frame component and is used to flatten the centrifugal paper on the front side of the Mylar roll; A stripping and feeding component is disposed on the mounting frame component and located downstream of the clamping and positioning component, and is used to peel the centrifugal paper off the reverse side of the Mylar roll; A film suction feeding component is disposed on the mounting frame component and located downstream of the film removal feeding component, and is used to absorb Mylar and press it down to adhere to the product; A first winding component is disposed on the mounting frame component and is used to wind up the lower rubber sheet. The second winding component is disposed on the mounting frame component and is used to wind up the edge of the rubber material. A control component is disposed on the mounting frame component and connected to the feeding component, the pressing and positioning component, the film removal feeding component, the film suction feeding component, the first winding component, and the second winding component, respectively, for controlling the feeding component, the pressing and positioning component, the film removal feeding component, the film suction feeding component, the first winding component, and the second winding component.

2. The Mylar attachment device according to claim 1, characterized in that, The feeding component includes: A first support component is disposed on the mounting bracket component and is used to install components; A feeding roller assembly, rotatably connected to the first support assembly, is used to mount Mylar rolls; A first driving member is disposed on the first support member and connected to the control member. The output shaft of the first driving member is coaxially connected to the feeding roller member and is used to drive the feeding roller member to rotate in order to feed the Mylar roll.

3. The Mylar attachment device according to claim 1, characterized in that, The conveyor roller component includes: A first conveyor, rotatably mounted on the mounting frame component, is used to convey Mylar material belt; The second conveyor, rotatably mounted on the mounting frame component, is used to convey Mylar material belt; A third conveyor, which is slidably connected to the mounting bracket component and located between the first and second conveyors, is used to convey Mylar material belt.

4. The Mylar attachment device according to claim 3, characterized in that, The conveyor roller assembly also includes: The first slide rail component is disposed on the mounting bracket component and is vertically arranged; The first slider component is slidably connected to the first slide rail component and rotatably connected to the third conveyor component; At least one fixing member is provided on the mounting frame component for fixing the third conveying member.

5. The Mylar attachment device according to claim 1, characterized in that, The clamping and positioning component includes: The second bracket is disposed on the mounting bracket component and is used to install components; A clamping station component is disposed on the mounting bracket component, and the clamping station component has a groove for supporting the Mylar material strip; The second slide rail is disposed on the second bracket and is arranged in the vertical direction; The second slider component is slidably connected to the second slide rail component; A clamping element, wherein the clamping element is connected to the second slider element; The second driving component is disposed on the second support component and connected to the control component. The output shaft of the second driving component is connected to the pressing component and is used to drive the pressing component to reciprocate in the vertical direction to achieve the operation of flattening the centrifugal paper on the front side of the Mylar roll.

6. The Mylar attachment device according to claim 1, characterized in that, The demolding and feeding component includes: The third slide rail component is disposed on the mounting bracket component and is arranged along the length direction of the mounting bracket component; The third slider component is slidably connected to the third slide rail component; The third support component is connected to the third slider component and is used to install parts; A stripping feeder, which is disposed on the third support member, is used to peel the centrifugal paper off the reverse side of the Mylar roll; The third driving component is disposed on the mounting bracket component and connected to the control component. The output shaft of the third driving component is connected to the demolding feeding component and is used to drive the demolding feeding component to reciprocate along the third slide rail component. The fourth conveyor is rotatably mounted on the third support member and is used to convey the Mylar material belt; The fifth conveyor is rotatably mounted on the third support member and is used to convey Mylar material belt.

7. The Mylar attachment device according to claim 1, characterized in that, The film suction feeding component includes: The fourth support component is disposed on the mounting bracket component and is used to install parts; A fourth slide rail component is disposed on the fourth support component and is arranged along the length direction of the fourth support component; The fourth slider component is slidably connected to the fourth slide rail component; The fourth driving component is disposed on the fourth slider component and connected to the control component; The fifth support component is connected to the output shaft of the fourth drive component and is used for reciprocating lifting and lowering under the action of the fourth drive component; A film suction feeding component is disposed on the fifth support component and connected to the control component. It is used to absorb Mylar and press it onto the product under the action of the fourth driving component. The fifth driving component is disposed on the mounting bracket component and connected to the control component. The output shaft of the fifth driving component is connected to the fourth slider component and is used to drive the film feeding component to reciprocate along the length direction of the fourth slide rail component.

8. The Mylar attachment device according to claim 1, characterized in that, The first winding component includes: The sixth support component is disposed on the mounting bracket component and is used to install parts; The sixth driving component is disposed on the sixth bracket and connected to the control component; A first winding member, coaxially connected to the output shaft of the sixth drive member, is used to wind up the lower rubber sheet under the action of the control component; and / or The second winding component includes: The seventh support component is disposed on the mounting bracket component and is used to install parts; The seventh driving component is disposed on the seventh support component and connected to the control component; The second winding member is coaxially connected to the output shaft of the seventh drive member and is used to wind up the edge of the rubber material under the action of the control component.

9. The Mylar attachment device according to claim 8, characterized in that, The second winding component also includes: Two fixing plates are disposed on the mounting frame component and symmetrically arranged along the second winding member; Two anti-loosening components are rotatably connected to the corresponding fixing plates to press the rubber material edges on the second winding component. Two eccentric wheels are respectively rotatably connected to the corresponding fixed plate to support the fixed plate. Two elastic elements are respectively sleeved on the round shaft that is rotatably connected to the corresponding eccentric wheel and the fixed plate, and are used to drive the eccentric wheel to rotate.

10. The Mylar attachment device according to claim 1, characterized in that, The control component includes: A communication component, which is disposed on the mounting bracket component and connected to an external remote control device, is used to receive and transmit signals. A control component is disposed on the mounting bracket component and connected to the communication component, the feeding component, the pressing and positioning component, the film removal feeding component, the film suction feeding component, the first winding component, and the second winding component, respectively, for controlling the feeding component, the pressing and positioning component, the film removal feeding component, the film suction feeding component, the first winding component, and the second winding component.