Material film pasting and winding equipment
By designing material film winding equipment to realize segmented film and film rolling heads, the problem of material waste and cleaning difficulties is solved, and production efficiency and film tearing convenience are improved.
Patent Information
- Application Number
- CN202422324885.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-23
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-09-23
AI Technical Summary
In the production of existing electronic products, the whole protective film is attached to the side of the frame, resulting in increased material waste and cleaning difficulty, and the function of no film roll head increases the difficulty of tearing the film.
Design material film winding equipment, including substrate, film patching mechanism, positioning transportation mechanism, film cutting mechanism and film rolling head mechanism, realize segmented film and film rolling head, positioning materials by positioning transportation mechanism, cutting mechanism cutting mechanism cuts protective film, and the film rolling head mechanism winds the end of the protective film to form a film head.
Reduce material waste, reduce production costs, improve cleaning efficiency, simplify the film tearing process, and improve work efficiency.
Smart Images

Figure CN223072827U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of film laminating equipment, and particularly to a material film laminating and winding equipment.
Background Art
[0002] During the production process of electronic products, a protective film is pasted on the side of the electronic product frame to provide protection and reduce the possibility of collision and scratching. The existing methods all involve pasting a whole protective film on the side. However, since parts such as side holes on the side of the frame do not need to be laminated, the method of pasting a whole protective film will cause material waste and increase production costs. At the same time, since the protective film needs to be removed after production, the method of pasting a whole protective film also increases the cleaning difficulty.
Utility Model Content
[0003] The main purpose of this application is to provide a material film laminating and winding equipment, aiming to segmentally laminate materials by setting a film cutting mechanism and a film winding head mechanism, and after each cutting of the protective film, the end of each section of the protective film can be wound to form a film head, improving the efficiency of subsequent removal of the protective film.
[0004] To achieve the above object, this application provides a material film laminating and winding equipment, which includes:
[0005] A substrate;
[0006] A film laminating mechanism arranged on the substrate for laminating a protective film;
[0007] A positioning and transportation mechanism arranged on one side of the substrate for positioning the material to be laminated and driving the material to move at the film laminating mechanism so that the protective film is laminated on the side of the material;
[0008] A film cutting mechanism arranged on the substrate, which is used to cut the connection between the protective film attached to the material and the protective film on the film laminating mechanism; and
[0009] A film winding head mechanism arranged on the substrate, which is used to wind the cut end of the protective film attached to the material.
[0010] In some embodiments, the film winding head mechanism includes a bracket, a linear motion driving assembly, a rotary motion driving assembly, and a winding member. The linear motion driving assembly is disposed on the substrate through the bracket; the rotary motion driving assembly is connected to the linear motion driving assembly, and two ends of the winding member are respectively rotatably connected to the linear motion driving assembly and the rotary motion driving assembly. The linear motion driving assembly is configured to drive the rotary motion driving assembly and the winding member to perform linear motion, the rotary motion driving assembly is configured to drive the winding member to perform rotary motion, and the winding member is configured to wind the cut end of the protective film attached to the side of the material.
[0011] In some embodiments, the linear motion driving assembly includes a first telescopic cylinder, a linear slide rail, a sliding block, and a first bearing. The first telescopic cylinder is installed on the substrate through a bracket. The linear slide rail is disposed on the substrate. The sliding block is slidably connected to the linear slide rail. The first bearing is disposed on the sliding block. The rotary motion driving assembly is connected to the first telescopic cylinder, and two ends of the winding member are respectively rotatably connected to the rotary motion driving assembly and the first bearing.
[0012] In some embodiments, the rotary motion driving assembly includes a mounting plate and a rotary cylinder. The mounting plate is connected to the first telescopic cylinder. The rotary cylinder is installed on the mounting plate. Two ends of the winding member are respectively connected to the rotary cylinder and the first bearing.
[0013] In some embodiments, the film cutting mechanism includes a cutting driving assembly and a cutting member. The cutting driving assembly is disposed on the substrate. The cutting member is connected to the cutting driving assembly. The cutting driving assembly is configured to drive the cutting member to move, and the cutting member is configured to cut the connection between the protective film attached to the material and the protective film on the film attaching mechanism.
[0014] In some embodiments, the cutting driving assembly includes a second telescopic cylinder and a lifting cylinder. The lifting cylinder is disposed on the substrate. The second telescopic cylinder is connected to the lifting cylinder;
[0015] The cutting member is disposed on the second telescopic cylinder. The lifting cylinder is configured to drive the second telescopic cylinder to perform lifting motion, and the second telescopic cylinder is configured to drive the cutting member to move in the width extension direction of the substrate.
[0016] In some embodiments, the film attaching mechanism includes an adsorption plate. The adsorption plate is disposed on the substrate, and a fitting portion and a receiving groove are provided on the adsorption plate. The fitting portion is configured to adsorb and fix the protective film, and the receiving groove is configured to receive the winding member.
[0017] In some embodiments, the fitting portion includes a first fitting section and a second fitting section. The accommodating groove is provided between the first fitting section and the second fitting section. An avoidance groove is further provided on the adsorption plate. The avoidance groove is provided between the first fitting section and the second fitting section and is located on one side of the accommodating groove close to the first fitting section. The avoidance groove is used for avoiding the cutting member.
[0018] In some embodiments, the film attaching mechanism further includes a roller. The roller is provided on the substrate, and the roller is located at one end of the second fitting section away from the accommodating groove. The roller is used for pressing the protective film attached to the material.
[0019] In some embodiments, the positioning and transporting mechanism includes a first moving component, a second moving component, a rotating component, and a positioning component. The first moving component is connected to the second moving component. The first moving component is used for driving the second moving component to move in the width extension direction of the substrate. The second moving component is connected to the rotating component. The second moving component is used for driving the rotating component to move in the length extension direction of the substrate. The rotating component is connected to the positioning component. The rotating component is used for driving the positioning component to perform a rotating motion. The positioning component is used for fixing the material.
[0020] After adopting the above technical solutions, the beneficial effects are as follows: The material film attaching and winding device includes a substrate, a positioning and transporting mechanism, a film attaching mechanism, a film cutting mechanism, and a film winding head mechanism. The film attaching mechanism is provided on the substrate and is used for attaching the protective film. The positioning and transporting mechanism is provided on one side of the substrate. The positioning and transporting mechanism is used for positioning the material to be film-attached and driving the material to move at the film attaching mechanism so that the protective film is attached to the side edge of the material. Such a setting can maintain the stability of the material to be film-attached during the film attaching process, thereby improving the working efficiency. The film cutting mechanism is provided on the substrate. The film cutting mechanism is used for cutting the connection between the protective film attached to the material and the protective film located on the film attaching mechanism. The film winding head mechanism is provided on the substrate. The film winding head mechanism is used for winding the cut end of the protective film attached to the material. The present application transports the material to be film-attached to the starting point of the film attaching mechanism through the positioning and transporting mechanism, so that the protective film is attached to one side edge of the material to be film-attached, and as the positioning and transporting mechanism moves, the protective film is attached to the area where the side edge of the material needs to be film-attached. Then, the film cutting mechanism cuts the protective film, and then the film winding head mechanism winds the cut end of the protective film attached to the material, generating a film head at the cut end, reducing the possibility of this part of the protective film adhering to other parts of the material and improving the working efficiency of subsequent processing of the protective film.
Description of the Drawings
[0021] To more clearly illustrate the technical solutions of the embodiments of the present application, the accompanying drawings required for the embodiments will be briefly introduced below. Obviously, the accompanying drawings in the following description are only some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other accompanying drawings can be obtained based on these drawings.
[0022] Figure 1 Schematic diagram of the overall structure of the material film pasting and winding equipment provided by the embodiment of the present application;
[0023] Figure 2 For Figure 1 Schematic diagram of the structure of the positioning and transportation mechanism in
[0024] Figure 3 For Figure 2 Schematic diagram of the structure of the positioning fixture in
[0025] Figure 4 For Figure 1 Schematic diagram of the structure of the film pasting mechanism in
[0026] Figure 5 For Figure 4 Partial enlarged view of
[0027] Figure 6 For Figure 1 Schematic diagram of the structure of the film cutting mechanism in
[0028] Figure 7 For Figure 1 Schematic diagram of the structure of the film winding head mechanism in
[0029] Reference signs in the drawings:
[0030] 1. Substrate; 2. Film laminating mechanism; 21. Suction plate; 211. Laminating part; 211a. First laminating section; 211b. Second laminating section; 212. Accommodating groove; 213. Avoidance groove; 22. Roller; 23. Unwinding assembly; 24. Tensioning wheel; 3. Positioning and transporting mechanism; 31. First moving assembly; 311. First slide rail; 312. First driving motor; 313. First slider; 32. Second moving assembly; 321. Second slide rail; 322. Second driving motor; 323. Second slider; 33. Rotating assembly; 331. Mounting frame; 332. Third driving motor; 333. Reducer; 334. Second bearing; 34. Positioning assembly; 341. Positioning fixture; 341a. Support plate; 341b. Suction cup hole; 341c. Guide block; 342. Vacuum suction cup; 4. Film cutting mechanism; 41. Cutting driving assembly; 411. Second telescopic cylinder; 412. Lifting cylinder; 42. Cutting piece; 5. Film winding head mechanism; 51. Linear motion driving assembly; 511. First telescopic cylinder; 512. Linear slide rail; 513. Sliding block; 514. First bearing; 52. Rotary motion driving assembly; 521. Mounting plate; 522. Rotary cylinder; 53. Winding piece; 54. Bracket; 100. Protective film.
Detailed implementation manners
[0031] In order to make the purpose, technical solutions and advantages of the present application clearer, the following further details the present application in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and are not used to limit the present application.
[0032] In the description of the present application, unless otherwise clearly defined and limited, the terms "first" and "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance; unless otherwise specified or stated, the term "plural" means two or more; the terms "connection", "fixation", etc. should be understood in a broad sense. For example, "connection" can be a fixed connection, a detachable connection, an integral connection, or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium. For those of ordinary skill in the art, the specific meanings of the above terms in the present application can be understood according to specific circumstances. The movement of each moving part and the control of sensors, etc. in the present application are implemented by a PLC controller (programmable logic controller). The specific implementation manner is a conventional technical means in the art and will not be elaborated herein.
[0033] In the description of this specification, it should be understood that the orientation terms such as "upper" and "lower" described in the embodiments of this application are described from the angles shown in the drawings and should not be construed as limitations on the embodiments of this application. In addition, in the context, it should also be understood that when it is mentioned that one component is connected "on" or "under" another component, it can not only be directly connected "on" or "under" another component, but also be indirectly connected "on" or "under" another component through an intermediate component.
[0034] During the production process of certain materials (such as mobile phone frames), side film sticking is required to protect the materials and prevent them from being scratched. Currently, the side film sticking of materials is usually to stick a whole piece of film, which cannot be segmented and the film head cannot be wound, which may cause waste of materials and is not conducive to subsequent film tearing, increasing the difficulty of subsequent film tearing. In order to save costs, reduce the difficulty of film tearing, and improve the efficiency of film tearing, the inventor has proposed a material film sticking and winding device, which can be used for film sticking around the material, can realize segmented film sticking and winding of the film head of the material, has good versatility for materials that require segmented film sticking and winding of the film head, and this device can save costs and reduce the difficulty of film tearing.
[0035] An embodiment of the present application discloses a material film sticking and winding device, which can be used for segmented film sticking of materials, that is, it can respectively perform film sticking on each area of the material that needs to be film stuck, and areas that do not need to be film stuck can also not be film stuck, thus saving materials. At the same time, after the protective film is stuck on the side of the material, the end of the protective film can be wound to facilitate subsequent film tearing operations. Among them, the material can be a mobile phone frame.
[0036] Refer to Figure 1 As shown, the material film sticking and winding device includes a substrate 1, a film sticking mechanism 2, a positioning and transporting mechanism 3, a film cutting mechanism 4, and a film head winding mechanism 5. The film sticking mechanism 2 is arranged on the substrate 1 and is used for adsorbing and fixing the protective film 100. The positioning and transporting mechanism 3 is arranged on one side of the substrate 1 and is used for positioning the material to be film stuck and driving the material to move at the film sticking mechanism 2 and cooperate with the film sticking mechanism 2 so that the protective film 100 is attached to the material. The film cutting mechanism 4 is arranged on the substrate 1 and is used for cutting the connection between the protective film 100 attached to the material and the protective film 100 located on the film sticking mechanism 2. Exemplarily, the cut end of the protective film 100 attached to the material can protrude beyond the side of the material. The film head winding mechanism 5 is arranged on the substrate 1 and is used for winding the cut end of the protective film 100 attached to the material.
[0037] When applying the film, the positioning and transporting mechanism 3 can drive the material to move along the film applying mechanism 2 to cooperate with the film applying mechanism 2 for film application, so that the protective film 100 on the film applying mechanism 2 adheres to one side edge of the material. After the protective film 100 adheres to this side edge of the material, the cutting mechanism 4 can cut off the protective film 100, and then the winding head mechanism 5 winds up the part of the protective film 100 that extends beyond the side edge of the material and adheres to the side edge of the material to form a winding head.
[0038] In this application, by adopting a segmented method for film application to the material, the length of the film required for each material can be reduced, thereby saving materials and costs. At the same time, the part of the protective film 100 that extends beyond the material and adheres to the material is wound up to form a winding head, which facilitates the subsequent film tearing operation.
[0039] Refer to Figure 2 As shown, the positioning and transporting mechanism 3 includes a first moving component 31, a second moving component 32, a rotating component 33, and a positioning component 34. The first moving component 31 is connected to the second moving component 32, and the first moving component 31 is used to drive the second moving component 32 to move in the width extension direction of the substrate 1 ( Figure 1 the X direction in it). The second moving component 32 is connected to the rotating component 33, and the second moving component 32 is used to drive the rotating component 33 to move in the length extension direction of the substrate 1 ( Figure 1 the Y direction in it). The rotating component 33 is connected to the positioning component 34, and the rotating component 33 is used to drive the positioning component 34 to perform a rotational motion, and the positioning component 34 is used to fix and position the material.
[0040] When applying the film, the material can be placed on the positioning component 34, the material is adsorbed and positioned by the positioning component 34, and then through the coordinated movement of the first moving component 31, the second moving component 32, and the rotating component 33, the side edge of the material to be film applied faces the film applying mechanism 2 and cooperates with the film applying mechanism 2 to achieve the film application operation.
[0041] Exemplarily, the first moving component 31 may include a first slide rail 311, a first driving motor 312, and a first slider 313. The second moving component 32 may include a second slide rail 321, a second driving motor 322, and a second slider 323. The rotating component 33 may include a mounting bracket 331, a third driving motor 332, a speed reducer 333, and a second bearing 334. The first slide rail 311 is disposed on one side of the substrate 1, and the length of the first slide rail 311 extends along the width extension direction of the substrate 1. The first slider 313 is slidably connected to the first slide rail 311. The first driving motor 312 is connected to the first slider 313 so that the first driving motor 312 can drive the first slider 313 to move along the width extension direction of the substrate 1. The second slide rail 321 is connected to the first slider 313, and the length of the second slide rail 321 extends along the length extension direction of the substrate 1. The second slider 323 is slidably connected to the second slide rail 321. The second motor is connected to the second slider 323 so that the second driving motor 322 can drive the second slider 323 to move along the length extension direction of the substrate 1. The mounting bracket 331 is connected to the second slider 323. The third driving motor 332 is installed on the mounting bracket 331, and the output end of the third driving motor 332 is connected to the second bearing 334 through the speed reducer 333. The second bearing 334 is connected to the positioning component 34 so that the third driving motor 332 can drive the positioning component 34 to rotate, and thus the first driving motor 312 can drive the positioning component 34 to move along the width extension direction of the substrate 1, the second driving motor 322 can drive the positioning component 34 to move along the length extension direction of the substrate 1, and the third driving motor 332 can drive the positioning component 34 to rotate.
[0042] Continue to refer to Figure 2 As shown, the positioning component 34 includes a positioning jig 341 and a vacuum chuck 342. The positioning jig 341 is connected to the second bearing 334. The vacuum chuck 342 is disposed on the positioning jig 341 so that the positioning jig 341 can position the material, and the vacuum chuck 342 can adsorb and fix the material, thereby realizing the precise positioning and adsorption of the material.
[0043] Refer to Figure 3 As shown, the positioning jig 341 includes a support plate 341a and two guide blocks 341c. The support plate 341a is connected to the second bearing 334, and a plurality of suction cup holes 341b are provided on the peripheral side of the support plate 341a. A plurality of vacuum chucks 342 are respectively installed in the suction cup holes 341b. The two guide blocks 341c are respectively connected to the support plate 341a and are located at both ends of the support plate 341a. When positioning, adsorbing, and fixing the material, the material can be placed on the support plate 341a, so that the two guide blocks 341c are located inside the material (for example, inside the frame, that is, the frame is sleeved on the guide blocks 341c), and the material is adsorbed and fixed by the plurality of vacuum chucks 342.
[0044] The existing film pasting fixture has no material guiding and positioning function. Before the manipulator feeds the material, it needs to go through primary and secondary positioning, resulting in low efficiency. The positioning and transportation mechanism 3 in this embodiment has a newly added material guiding function, which has extremely strong guiding properties. Moreover, using the vacuum suction cup 342 to adsorb the material can firmly fix the material. The manipulator can directly place the material in the tray into this positioning component 34. Through the positioning component 34, the material taken out from the tray can be quickly corrected and precisely positioned without going through secondary positioning midway, shortening the feeding time and improving the feeding efficiency. At the same time, the guiding block 341c that plays a guiding role is detachably connected to the support plate 341a, facilitating the replacement of the guiding block 341c, and having convenience and versatility.
[0045] Referring to Figure 4 As shown in the figure, the film pasting mechanism 2 includes an unwinding component 23, a tension wheel 24, an adsorption plate 21, and a roller 22. The adsorption plate 21 is arranged on the substrate 1, and the adsorption plate 21 is provided with a fitting portion 211. The fitting portion 211 is used for adsorbing and fixing the protective film 100. For example, the fitting portion 211 can adsorb and fix the protective film 100 by means of vacuum adsorption. The roller 22 is arranged on the substrate 1 and is located at the end of the fitting portion 211, and the roller 22 is used for pressing the protective film 100 attached to the material. The unwinding component 23 is arranged on the substrate 1 and is used for positioning and fixing the rolled protective film 100. The tension wheel 24 is arranged on the substrate 1. When pasting the film, the rolled protective film 100 can be placed on the unwinding component 23, and the protective film 100 is adsorbed and fixed to the fitting portion 211 of the adsorption plate 21 after passing around the tension wheel 24.
[0046] In some embodiments, there can be multiple unwinding components 23 and tension wheels 24, so that they can be used alternately.
[0047] Referring to Figure 5 As shown in the figure, the fitting portion 211 includes a first fitting section 211a and a second fitting section 211b. In the initial state, the end of the protective film 100 is adsorbed and fixed to the first fitting section 211a. The adsorption plate 21 is also provided with a receiving groove 212 and an avoidance groove 213. Both the receiving groove 212 and the avoidance groove 213 are arranged between the first fitting section 211a and the second fitting section 211b, and the avoidance groove 213 is located on the side of the receiving groove 212 close to the first fitting section 211a. The roller 22 is located at one end of the second fitting section 211b away from the receiving groove 212. Among them, the receiving groove 212 is used for accommodating the winding member of the film winding head mechanism 5, and the avoidance groove 213 is used for avoiding the cutting member 42 of the film cutting mechanism 4.
[0048] Referring to Figure 6As shown in the figure, the film cutting mechanism 4 includes a cutting drive assembly 41 and a cutting member 42. The cutting drive assembly 41 is arranged on the substrate 1, and the cutting member 42 is connected to the cutting drive assembly 41. Among them, the cutting drive assembly 41 is used to drive the cutting member 42 to move towards the direction close to the protective film 100, so that the cutting member 42 can cut the connection part of the protective film 100 pasted on the material and the protective film 100 located on the film pasting mechanism 2. The cutting member 42 can be set as a blade.
[0049] Exemplarily, the cutting drive assembly 41 may include a second telescopic cylinder 411 and a lifting cylinder 412. The lifting cylinder 412 is arranged on the substrate 1, the second telescopic cylinder 411 is connected to the lifting cylinder 412, and the cutting member 42 is connected to the second telescopic cylinder 411. Among them, the lifting cylinder 412 is used to drive the second telescopic cylinder 411 to perform a lifting motion, and the second telescopic cylinder 411 is used to drive the cutting member 42 to move towards or away from the film pasting mechanism 2.
[0050] In some embodiments, when one side of the material is pasted with the protective film 100 and it is necessary to cut off the protective film 100, the lifting cylinder 412 and the second telescopic cylinder 411 can be controlled to retract simultaneously, so as to drive the cutting member 42 to move obliquely downward to cut off the protective film 100. After cutting off the protective film 100, the lifting cylinder 412 and the second telescopic cylinder 411 extend simultaneously to reset the cutting member 42, without affecting the subsequent film pasting operation.
[0051] In some other embodiments, in order to avoid the side holes of the material, the protective film 100 can also be pasted on other areas of the side of the material except the side hole area, without pasting the protective film 100 on the entire side of the material, saving materials and reducing costs. Exemplarily, when performing segmented film pasting on the same side of the material, when the second moving assembly 32 drives the material to move along the fitting part 211 so that a certain side of the material is pasted with the required area of the protective film 100, the first moving assembly 31 and the second moving assembly 32 can be used in a coordinated movement to drive the material to pull out a certain length of the protective film 100, and then through the coordinated movement of the lifting cylinder 412 and the second telescopic cylinder 411, drive the cutting member 42 to cut off the protective film 100. Of course, the cutting member 42 can also be pre-located in the avoidance groove 213, and then drive the cutting member 42 to move out of the avoidance groove 213 to cut the protective film 100.
[0052] Refer to Figure 7As shown, the roll film head mechanism 5 includes a bracket 54, a linear motion drive assembly 51, a rotary motion drive assembly 52, and a winding member 53. The linear motion drive assembly 51 is disposed on the substrate 1 through the bracket 54. The rotary motion drive assembly 52 is connected to the linear motion drive assembly 51. Both ends of the winding member 53 are rotatably connected to the linear motion drive assembly 51 and the rotary motion drive assembly 52 respectively. Among them, the linear motion drive assembly 51 is used to drive the rotary motion drive assembly 52 and the winding member 53 to perform linear motion. The rotary motion drive assembly 52 is used to drive the winding member 53 to perform rotary motion. The winding member 53 is used to wind the extended part of the protective film 100 attached to the material.
[0053] In some embodiments, the linear motion drive assembly 51 includes a first telescopic cylinder 511, a linear slide rail 512, a sliding block 513, and a first bearing 514. The rotary drive assembly includes a mounting plate 521 and a rotary cylinder 522. The first telescopic cylinder 511 is installed on the substrate 1 through the bracket 54. The linear slide rail 512 is disposed on the substrate 1. The sliding block 513 is slidably connected to the linear slide rail 512. The first bearing 514 is disposed on the sliding block 513. The mounting plate 521 is connected to the first telescopic cylinder 511. The rotary cylinder 522 is installed on the mounting plate 521. Both ends of the winding member 53 are respectively connected to the rotary cylinder 522 and the first bearing 514. When the winding member 53 is in the non-working state, the winding member 53 is received in the receiving groove 212. When the winding member 53 is in the working state, the first telescopic cylinder 511 drives the mounting plate 521 and the rotary cylinder 522 to move in the width extension direction of the substrate 1, so that the winding member 53 moves out of the receiving groove 212, and then the rotary cylinder 522 drives the winding member 53 to rotate, so as to wind the protective film 100 that extends out of the material after cutting through the winding member 53.
[0054] When the film cutting mechanism 4 cuts off the protective film 100 and it is necessary to wind the end of the protective film 100, the first telescopic cylinder 511 can be controlled to drive the winding member 53 to move out of the receiving groove 212. After the winding member 53 is ejected, a small section of the protective film 100 near the cut edge is bent into an L shape under the action of the winding member 53, and then the rotary cylinder 522 drives the winding member 53 to rotate and squeeze the protective film 100 that has been deformed into an L shape, so that the protective film 100 adheres together under its own viscosity to form a film head.
[0055] The existing film laminating mechanism 2 does not have the function of a film winding head. Without a film head, it will increase the difficulty of subsequent film tearing operations and increase the risk of scratching during film tearing. The film winding head mechanism 5 of this embodiment rolls up the cut end of the protective film 100 through the cooperation of the first telescopic cylinder 511, the rotary cylinder 522 and the winding member 53, effectively reducing the difficulty of subsequent film tearing. At the same time, it has the advantages of high efficiency and fast speed. In addition, the winding member 53 cooperates with the first bearing 514 and is guided and limited by the linear slide rail 512. The action is simple, the film winding head has a fast speed, high repeat accuracy of the action, is easy to install and debug, has strong versatility, and can be widely used in other film laminating automation projects that require a film winding head and have strict requirements for operation efficiency.
[0056] Continue to refer to Figure 1 As shown, in a specific application scenario, the material can be placed on the positioning fixture 341, and then the material is positioned by the guide block 341c, adsorbed and fixed by the vacuum chuck 342. After that, through the combined movement of the first moving component 31, the second moving component 32 and the rotating component 33, the side of the material to be film laminated abuts against the first laminating section 211a, so that the protective film 100 on the first laminating section 211a adheres to the side of the material. Then, the second moving component 32 drives the rotating component 33 and the positioning component 34 to move along the length extension direction of the laminating portion 211 ( Figure 1 the Y direction in the figure), so as to drive the material to move from the first laminating section 211a to the second laminating section 211b and continue to move along the length extension direction of the second laminating section 211b. At this time, the protective film 100 on the adsorption plate 21 adheres to the side of the material and pulls out a longer protective film 100, while the excess protective film 100 is fixedly adsorbed on the adsorption plate 21. At the same time, when the material moves to the roller 22, the roller 22 will interact with the material to press the protective film 100 adhering to the material. When the side of the material is film laminated and the protective film 100 needs to be cut, control the second telescopic cylinder 411 and the lifting cylinder 412 to move, so as to drive the cutting member 42 to move, and the cutting member 42 cuts the protective film 100 from the avoidance groove 213. At this time, the protective film 100 adhering to the side of the material extends beyond the side of the material. After that, the first telescopic cylinder 511 can be controlled to push the rotary cylinder 522 out of the accommodation groove 212, so as to drive the winding member 53 to move out of the accommodation groove 212 and act on the cut end of the protective film 100, so that the cut end of the protective film 100 is bent into an L shape. Then, the rotary cylinder 522 drives the winding member 53 to rotate, so that the cut ends of the protective film 100 adhering to the side of the material are rolled and pressed together to form a film head. Repeat the above actions until the side of the material that needs to be film laminated is completely covered with the protective film 100, and then take the material off the positioning component 34 to complete the film laminating operation of the material.
[0057] As described above, it is only the preferred specific implementation manner of the present application. However, the protection scope of the present application is not limited thereto. Any changes or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in the present application should be covered by the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.
Claims
1. A material film laminating and winding device, characterized in that, Comprising: A substrate; A film laminating mechanism disposed on the substrate for laminating a protective film; A positioning and transporting mechanism disposed on one side of the substrate for positioning the material to be laminated with the film and driving the material to move at the film laminating mechanism so that the protective film is laminated on the side of the material; A film cutting mechanism disposed on the substrate, the film cutting mechanism being used for cutting the connection between the protective film attached to the material and the protective film located on the film laminating mechanism; And A film winding head mechanism disposed on the substrate, the film winding head mechanism being used for winding the cut end of the protective film attached to the material.
2. The material film laminating and winding equipment according to claim 1, wherein The film winding head mechanism includes a bracket, a linear motion driving component, a rotary motion driving component, and a winding member. The linear motion driving component is disposed on the substrate through the bracket; the rotary motion driving component is connected to the linear motion driving component, and both ends of the winding member are respectively rotatably connected to the linear motion driving component and the rotary motion driving component. The linear motion driving component is used for driving the rotary motion driving component and the winding member to perform linear motion, the rotary motion driving component is used for driving the winding member to perform rotary motion, and the winding member is used for winding the cut end of the protective film attached to the side of the material.
3. The material film laminating and winding equipment according to claim 2, characterized in that, The linear motion driving component includes a first telescopic cylinder, a linear slide rail, a sliding block, and a first bearing. The first telescopic cylinder is installed on the substrate through a bracket, the linear slide rail is disposed on the substrate, the sliding block is slidably connected to the linear slide rail, the first bearing is disposed on the sliding block, the rotary motion driving component is connected to the first telescopic cylinder, and both ends of the winding member are respectively rotatably connected to the rotary motion driving component and the first bearing.
4. The material film laminating and winding equipment according to claim 3, characterized in that, The rotary motion driving component includes a mounting plate and a rotary cylinder. The mounting plate is connected to the first telescopic cylinder, the rotary cylinder is installed on the mounting plate, and both ends of the winding member are respectively connected to the rotary cylinder and the first bearing.
5. The material film laminating and winding equipment according to claim 2, characterized in that, The film cutting mechanism includes a cutting driving component and a cutting member. The cutting driving component is disposed on the substrate, the cutting member is connected to the cutting driving component, the cutting driving component is used for driving the cutting member to move, and the cutting member is used for cutting the connection between the protective film attached to the material and the protective film on the film laminating mechanism.
6. The material film laminating and winding equipment according to claim 5, characterized in that, The cutting driving component includes a second telescopic cylinder and a lifting cylinder. The lifting cylinder is disposed on the substrate, and the second telescopic cylinder is connected to the lifting cylinder; The cutting member is disposed on the second telescopic cylinder. The lifting cylinder is used for driving the second telescopic cylinder to perform lifting motion, and the second telescopic cylinder is used for driving the cutting member to move in the width extension direction of the substrate.
7. The material film laminating and winding equipment according to claim 5, characterized in that, The film laminating mechanism includes an adsorption plate disposed on the substrate, and a fitting portion and a receiving groove are provided on the adsorption plate. The fitting portion is used for adsorbing and fixing the protective film, and the receiving groove is used for accommodating the winding member.
8. The material film laminating and winding equipment according to claim 7, wherein, The fitting part includes a first fitting section and a second fitting section. The accommodating groove is arranged between the first fitting section and the second fitting section. An avoidance groove is also provided on the adsorption plate. The avoidance groove is arranged between the first fitting section and the second fitting section and is located on one side of the accommodating groove close to the first fitting section. The avoidance groove is used to avoid the cutting member.
9. The material film laminating and winding equipment according to claim 8, characterized in that, The film pasting mechanism further includes a roller. The roller is arranged on the substrate, and the roller is located at one end of the second fitting section far from the accommodating groove. The roller is used to press the protective film adhered to the material.
10. The material film laminating and winding equipment according to any one of claims 1 to 9, characterized in that, The positioning and transporting mechanism includes a first moving component, a second moving component, a rotating component and a positioning component. The first moving component is connected to the second moving component. The first moving component is used to drive the second moving component to move in the width extension direction of the substrate. The second moving component is connected to the rotating component. The second moving component is used to drive the rotating component to move in the length extension direction of the substrate. The rotating component is connected to the positioning component. The rotating component is used to drive the positioning component to perform a rotating motion. The positioning component is used to fix the material.