Inclined film pasting device and film pasting suite

By using a tilted film applicator design, the pressure area is gradually increased through the tilted inner cavity and film limiting components, which solves the problem of air bubble residue in existing film applicators and achieves a more efficient film application effect.

CN223703120UActive Publication Date: 2025-12-23SHENZHEN JUHE PACKAGE DESIGN CO LTD
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Patent Information

Application Number
CN202520243069.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-14
Publication Date
2025-12-23
Estimated Expiration
2035-02-14

AI Technical Summary

Technical Problem

Existing screen protector applicators press the wide edge of the protective film onto the screen simultaneously during the application process, resulting in a high risk of air bubble residue and making it difficult to effectively remove air bubbles.

Method used

A tilted film applicator is designed. By setting an inclined accommodating cavity and a film limiting component on the housing, the protective film is tilted in the direction of the housing. The film pressing component slides along the first direction and gradually presses a local area of ​​the protective film to gradually increase the pressure area and reduce air bubble residue.

Benefits of technology

It effectively reduces the risk of air bubble residue, improves the success rate of film application, and makes the application process more convenient.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223703120U_ABST
    Figure CN223703120U_ABST
Patent Text Reader

Abstract

The utility model provides an inclined film pasting device and a film pasting suite, and the device comprises a housing which has a first direction, the housing is internally provided with a containing inner cavity, the groove length direction of the containing inner cavity is inclined to the first direction of the housing, and the containing inner cavity is used for containing a mobile terminal to be pasted with a film, so that the mobile terminal is inclined to the housing; the diaphragm limiting assembly is arranged on the shell and is used for being connected with the protective film, so that the protective film is inclined to the first direction of the shell and is opposite to the mobile terminal; the film pressing piece is arranged on the shell in a sliding mode in the first direction. The problem that in the prior art, in the film pasting process, the whole wide edge of a protective film is pressed to a screen at the same time at the beginning stage of sliding, and consequently the bubble residual risk is large is solved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of film sticking tools, and more particularly to an oblique placement type film sticking device and a film sticking kit. BACKGROUND

[0002] In order to protect the screen of a terminal device such as a mobile phone or a tablet, a user usually sticks a protective film such as a tempered film or a soft film on the planar surface of the terminal device, so that the touch screen is not easily scratched. In the process of sticking the film, in order to pursue the flatness of the lines and to prevent air bubbles from being generated, the appearance of the terminal device is kept beautiful. Therefore, a film sticking device is usually used to assist the user in accurate positioning and film sticking during the process of sticking the film, so that the film sticking effect can be improved.

[0003] In the process of sticking a film on a mobile phone, some film sticking devices press the film by using a pressing member such as a scraper or a roller. During the pressing, the pressing member is moved along the pressing direction, so that the protective film is sequentially adhered to the screen of the mobile terminal in a predetermined direction, and air bubbles are conveniently discharged. However, the existing pressing member is usually moved and pressed along the length direction of the shell, and the long edges of the protective film and the mobile terminal are kept in the same direction as the length direction of the shell. Therefore, at the beginning stage of the sliding process, the entire wide edge of the protective film is pressed onto the screen at the same time, which results in a large pressing area at the same time. As a result, a small amount of air bubbles still remain under the extrusion of a large area, and the problem of high risk of air bubble residue occurs.

[0004] Therefore, the prior art still needs to be improved and developed. CONTENT OF THE UTILITY MODEL

[0005] The present application aims to provide an oblique placement type film sticking device and a film sticking kit, which solve the problem of high risk of air bubble residue in the prior art, that is, at the beginning stage of the sliding process, the entire wide edge of the protective film is pressed onto the screen at the same time.

[0006] To achieve the above-mentioned purpose, the technical scheme adopted by the present application is as follows:

[0007] On the one hand, the present application provides an oblique placement type film sticking device, which comprises a shell, the shell has a first direction, a containing cavity is arranged in the shell, the slot length direction of the containing cavity is inclined to the first direction of the shell, the containing cavity is used for containing a mobile terminal to be stuck with a film, so that the mobile terminal is arranged obliquely to the shell;

[0008] A film piece limiting assembly is arranged on the shell and is used for connecting the protective film, so that the protective film is inclined to the first direction of the shell and is opposite to the mobile terminal;

[0009] A film pressing member is arranged on the shell and is slidably arranged along the first direction.

[0010] Optionally, the inner wall of the accommodating inner cavity is provided with a supporting and limiting part for supporting and limiting the movement of the mobile terminal to be pasted.

[0011] Optionally, the inner wall of the slot length direction of the accommodating inner cavity is provided with a taking and placing slot opening, which is communicated with the accommodating inner cavity.

[0012] Optionally, the film pressing member comprises a film pressing roller member, which is slidingly arranged on the shell in the first direction;

[0013] The film pressing roller member comprises a sliding frame, the two ends of which are movably connected to the shell;

[0014] A roller part is rotatably arranged on the sliding frame.

[0015] Optionally, the film pressing roller member is reversibly arranged at one end of the first direction of the shell, so as to have a side turning state and a film pressing state;

[0016] In the side turning state, the roller part of the film pressing roller member is turned to the outside of the film limiting assembly;

[0017] In the film pressing state, the roller part of the film pressing roller member is turned above the film limiting assembly and can move in the first direction to press the protective film.

[0018] Optionally, the side of the shell is provided with a turning groove, the turning groove forms a sliding exit at one end of the first direction and is closed at the other end to form a turning stop, and the turning groove is further provided with an import and export opening upward;

[0019] The sliding frame comprises at least two guide columns arranged at intervals in the first direction, when the sliding frame moves into the turning groove, one of the guide columns is located on the turning stop as a rotating shaft, and the other guide column is turned out of the import and export opening, so as to turn the sliding frame from above the shell to the side of the shell.

[0020] Optionally, the side of the shell in the width direction is provided with a guide rail, the guide rail is arranged in extension in the first direction, and the turning groove is located at one side of the guide rail in the first direction and forms the import and export opening at intervals with the guide rail;

[0021] The sliding exit of the turning groove is located in the lower direction of the guide rail, and the at least two guide columns abut against the lower surface of the guide rail for sliding.

[0022] Optionally, the sliding frame is provided with a limiting matching face, the limiting matching face is spaced apart from the guide column by a predetermined distance to form a guide matching position, and the sliding frame is matched with the shell through the guide matching position to make the sliding frame slide directionally on the shell.

[0023] Optionally, the film limiting assembly comprises a first limiting part and a second limiting part, both of which are arranged on the shell and respectively located outside the two ends of the slot length direction of the accommodating inner cavity.

[0024] The first limiting part and the second limiting part are respectively used for connecting two ends of the protective film, so that the protective film is positioned above the accommodating inner cavity.

[0025] On the other hand, the application also provides a film pasting kit, which comprises the film pasting device and the protective film.

[0026] The protective film comprises a film pasting layer, a positioning release layer and a tearing release layer, and the positioning release layer is connected to the shell of the film pasting device by the film sheet limiting assembly.

[0027] The film pasting device and the film pasting kit have at least the following beneficial effects: the groove length direction of the accommodating inner cavity is inclined to the first direction of the shell, the mobile terminal to be pasted with the film is positioned in the accommodating inner cavity, and the mobile terminal is inclined to the shell. The film sheet limiting assembly is also inclined to the first direction of the shell, so that the protective film is inclined to the first direction of the shell and is positioned above the screen of the mobile terminal when the protective film is connected to the film sheet limiting assembly. When the film pressing piece slides on the shell along the first direction, the film pressing piece first contacts the local position of the wide side of the protective film at the beginning stage of contacting and pressing the protective film downward, the position of the corner of the protective film closest to the film pressing piece is pressed onto the screen by the film pressing piece, and then the protective film is gradually pressed and adhered to the screen below along the predetermined first direction. Thus, only a small pressing area is adhered to the screen at the beginning stage of adhesion, and the pressing area is gradually increased, so that the air between the protective film and the screen can be effectively discharged, the risk of air bubble residue is greatly reduced, the film pasting is more convenient, and the film pasting success rate is improved. BRIEF DESCRIPTION OF DRAWINGS

[0028] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiments or prior art description. Obviously, the drawings in the following description only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor.

[0029] Figure 1 A front view of the film pasting device provided by the embodiments of the present application in use;

[0030] Figure 2 A structural schematic view of the film pasting device provided by the embodiments of the present application in use in the film pressing state;

[0031] Figure 3 An explosion view of the film pasting device provided by the embodiments of the present application in use;

[0032] Figure 4 A structure schematic diagram of a diagonal placement type film applicator in a side turning state is provided for the embodiment of the present application.

[0033] Figure 5 An exploded view of a diagonal placement type film applicator in a side turning state is provided for the embodiment of the present application.

[0034] In the drawings, various reference signs represent various objects:

[0035] 10, mobile phone; 20, protective film; 21, positioning release layer; 22, pull hole; 23, limiting hole; 24, film layer; 25, tear release layer; 100, shell; 110, accommodating inner cavity; 120, supporting limiting part; 130, taking and placing slot; 140, guide rail; 150, rear frame; 151, pull-out opening; 160, protruding table; 200, film sheet limiting assembly; 210, first limiting part; 211, first hook; 220, second limiting part; 221, second hook; 300, film pressing piece; 310, film pressing roller piece; 320, sliding frame; 321, guide column; 322, limiting matching surface; 330, roller part; 400, turning groove; 410, sliding outlet; 420, turning clamping; 430, import and export. DETAILED DESCRIPTION

[0036] In order to make the technical problems, technical solutions and beneficial effects of the present application clearer, the present application will be further described in detail below in combination with the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and not to limit the present application.

[0037] It should be noted that when a component is referred to as "fixed to" or "disposed on" another component, it can be directly or indirectly on the other component. When a component is referred to as "connected to" another component, it can be directly or indirectly connected to the other component. The terms "upper", "lower", "left", "right", "front", "back", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. indicate the orientation or position based on the orientation or position shown in the drawings, and are only for the convenience of description, and cannot be understood as a limitation on the technical solutions. The terms "first", "second" are only for the purpose of convenient description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of technical features. The meaning of "a plurality of" is two or more, unless otherwise specifically limited.

[0038] Embodiment one

[0039] As Figure 1 , Figure 3As shown, the embodiment proposes an inclined placement type film applicator for applying a film to a screen of a mobile terminal. The mobile terminal in the embodiment can be a mobile phone 10, and can also be an electronic device such as a tablet computer, an electronic book, a smart watch, etc. For the convenience of structural description of the embodiment, the long side direction of the mobile phone 10 is taken as a first direction, the short side direction is taken as a width direction, and the thickness direction is taken as an up-down direction. As shown in Figure 1 , Figure 5 As shown, the inclined placement type film applicator is used to bond a protective film 20 to the screen of the mobile phone 10. The protective film 20 mainly comprises a film layer 24, a positioning release layer 21, and a tear release layer 25. The film layer 24 is used to be attached to the surface of the mobile phone 10, thereby protecting the screen of the mobile phone 10. The positioning release layer 21 is detachably arranged on one side of the film layer 24, and is used to be connected to the inclined placement type film applicator. The tear release layer 25 is arranged on the side of the film layer 24 away from the positioning release layer 21, and faces the mobile phone 10. In use, the positioning release layer 21 and the tear release layer 25 are both pulled away from the film layer 24, and only the film layer 24 is bonded to the surface of the screen of the mobile phone 10.

[0040] As shown in Figure 1 , Figure 2 , Figure 3As shown, the embodiment proposes a film applicator in an inclined manner, which mainly comprises a shell 100, a film limiting assembly 200 and a film pressing piece 300. The shell 100 can adopt a square shape, for example, a long direction structure. For the convenience of structural description, the direction of the long side of the shell 100 is taken as the length direction, the direction of the wide side is taken as the width direction, and the thickness direction is taken as the up-down direction. In the embodiment, the length direction is taken as the first direction, so the shell 100 extends along the first direction by a predetermined length. The shell 100 is provided with a containing cavity 110, which is located on the upper surface of the shell 100 and is formed by being concave downward, so the opening of the containing cavity 110 faces upward. For the convenience of structural description, the containing cavity 110 also adopts a similar rectangular structure, and the direction of the longer side of the containing cavity 110 is taken as the slot length direction, and the direction of the shorter side is taken as the slot width direction. Since the containing cavity 110 is inclinedly arranged on the surface of the shell 100, in the horizontal plane, the slot length direction of the containing cavity 110 is inclined to the first direction of the shell 100, and the containing cavity 110 is used for containing the mobile phone 10 to be pasted with the film, so that the mobile phone 10 is arranged to be inclined to the shell 100. That is, when the mobile phone 10 is placed in the containing cavity 110 for limiting, the long side of the mobile phone 10 is inclined to the length direction (the first direction) of the shell 100, and the long side of the mobile phone 10 forms an acute angle with the first direction, which can be 8-15°, for example, 10°. The film limiting assembly 200 is arranged on the shell 100 and is used for connecting the protective film 20, so that the protective film 20 is inclined to the first direction of the shell 100 and is opposite to the mobile terminal. In the specific structure, the film limiting assembly 200 is located at both ends of the shell 100, and the connecting line of the two ends is arranged to be inclined to the length direction of the shell 100. When the protective film 20 is connected to the film limiting assembly 200, the long side direction of the protective film 20 is also inclined to the first direction of the shell 100. The film pressing piece 300 is arranged to slide along the first direction on the shell 100, and when the film pressing piece 300 slides along the first direction, the protective film 20 is gradually pressed downward to be pasted on the screen of the mobile phone 10.

[0041] As Figure 1 、 Figure 2 、 Figure 3As shown, the inclined placement type film applicator of the embodiment is provided with the accommodating inner cavity 110 on the shell 100, so that the groove length direction of the accommodating inner cavity 110 is inclined to the first direction of the shell 100. Then, the mobile terminal to be pasted with the film is placed in the accommodating inner cavity 110 for limiting, and the mobile terminal is arranged to be inclined to the shell 100. Since the film limiting assembly 200 is also arranged to be inclined to the first direction of the shell 100, when the protective film 20 is connected to the film limiting assembly 200, the protective film 20 is arranged to be inclined to the first direction of the shell 100 and is located above the screen of the mobile terminal and opposite to the mobile terminal. When the film pressing piece 300 slides on the shell 100 along the first direction, in the initial stage of contacting and pressing the protective film 20 downward, the film pressing piece 300 first contacts the local position of the wide side of the protective film 20, for example, the position of the corner of the protective film 20 closest to the film pressing piece 300 is pressed onto the screen by the film pressing piece 300, and then the protective film 20 is gradually pressed and adhered to the screen below along the predetermined first direction. In this way, only a small pressing area is adhered to the screen at the beginning of the adhesion, and then the pressing area is gradually increased, so that the air between the protective film 20 and the screen can be effectively discharged, the risk of air bubble residue is greatly reduced, the film pasting is more convenient, and the film pasting success rate is improved.

[0042] As shown in Figure 2 , Figure 3 Further, the supporting and limiting part 120 is arranged on the inner wall of the accommodating inner cavity 110, and the supporting and limiting part 120 is used for supporting and limiting the mobile terminal to be pasted with the film. The supporting and limiting part is integrally formed with the shell 100, the supporting and limiting part 120 is distributed around the accommodating inner cavity 110 and forms a limiting area, and the mobile terminal is limited in the limiting area. In the specific structure, a limiting step is formed on the side of the supporting and limiting part 120 facing the limiting area, the limiting step can be an L-shaped step, and the limiting step abuts against the back and side of the mobile phone 10 respectively, so as to limit the mobile phone 10 to be pasted with the film. The limiting area surrounded by the supporting and limiting parts 120 can be different sizes, so as to adapt to different mobile phones 10.

[0043] As shown in Figure 2 , Figure 3 Further, the taking and placing groove 130 is arranged on the inner wall of the groove length direction of the accommodating inner cavity 110, and the taking and placing groove 130 is in communication with the accommodating inner cavity 110. The taking and placing groove 130 can be arranged on the inner wall of the accommodating inner cavity 110 on both sides, so as to facilitate taking and placing the mobile phone 10 from the accommodating inner cavity 110, and to avoid the key position on the mobile phone 10.

[0044] Further, the form of the film pressing piece can adopt various structures, for example, a scraper can be used, and the protective film 20 is gradually pressed and adhered to the screen below by moving the scraper from front to back along the first direction. Figure 3 ,Figure 4 As shown, the pressing film member 300 of the present embodiment can adopt a pressing film roller member 310 which is arranged on the housing 100 to slide along the first direction. The pressing film roller member 310 is rolled on the housing 100 from front to back along the first direction, so as to gradually press and adhere the protective film 20 on the screen of the mobile phone 10 below. The pressing film roller member 310 specifically comprises a sliding frame 320 and a roller part 330. The sliding frame 320 is slidingly connected on the housing 100 and slides along the length direction, and the roller part 330 is rotatably connected on the sliding frame 320. In this way, the roller part 330 forms a rolling pressing form through rotation, and the roller part 330 can be a rubber roller, a foam roller, etc., so as to be applicable to both soft film and hard film. In addition, the roller part 330 can also have a curved profile, and can press a curved screen.

[0045] In use, in the initial stage, the pressing film roller member can be connected horizontally on the front end of the housing in the first direction, and after the mobile phone and the protective film are installed, the pressing film roller member can be directly pushed from front to back along the first direction to complete the film sticking. As shown in Figure 2 , Figure 4 In another scheme, as shown, in the initial stage, the pressing film roller member 310 can also be arranged at one end of the housing 100 in the first direction in a flipped state, so as to have a film pressing state. Therefore, the pressing roller assembly can be flipped according to different requirements during film sticking. As shown in Figure 4 In the flipped state, the roller part 330 of the pressing film roller member 310 is flipped to the outside of the front end of the film limiting assembly 200, so as to avoid the area of the film limiting assembly 200 for hanging the protective film 20, thereby facilitating the hanging of the protective film 20 on the film limiting assembly 200; as shown in Figure 2 In the film pressing state, the roller part 330 of the pressing film roller member 310 is flipped above the front end of the film limiting assembly 200, so that the pressing film roller member 310 is in a state of being placed horizontally on the housing 100, thereby being movable along the first direction to press the protective film 20.

[0046] As shown in Figure 2 , Figure 3 , Figure 5As shown, further, the width direction side of the shell 100 is provided with a turning groove 400, the turning groove 400 forms a sliding exit 410 at one end in the length direction, the other end (front end) is closed to form a turning stop 420, and the turning groove 400 is further provided with an upwardly open inlet and outlet 430. The sliding frame 320 includes at least two guide columns 321 arranged at intervals in the length direction, when the sliding frame 320 moves into the turning groove 400, one of the guide columns 321 is located on the turning stop 420 as a rotating shaft, and the other guide column 321 is turned out of the inlet and outlet 430, so as to turn the sliding frame 320 from above the shell 100 to the front end outside of the film limiting assembly 200. In the specific structure, the turning groove 400 is located at the front end of the shell 100 in the first direction, and then the sliding exit 410 is arranged towards the rear end of the first direction, when the sliding frame 320 slides into the turning groove 400 for turning, so that after the film is pasted, the process of taking the mobile phone 10 does not need to take down the entire sliding frame 320; and before connecting the protective film 20, the space above the shell 100 can also be left out by turning, so as to facilitate the connection of the protective film 20 to the film limiting assembly 200 on the upper surface of the shell 100. When the guide column 321 of the sliding frame 320 slides into the turning groove 400 along the shell 100, one of the guide columns 321 is located on the turning stop 420 as a rotating shaft, and the other guide column 321 is turned out of the inlet and outlet 430, so as to turn the sliding frame 320 from above the shell 100 to the front side of the film limiting assembly 200. Thus, the turning function is realized. In this way, it is not necessary to install or dismount the film pressing roller from the shell 100, so as to make the user paste the film more conveniently.

[0047] As Figure 5As shown, further, the housing 100 of the present embodiment is provided with a guide rail 140 on the width direction side thereof, the guide rail 140 is arranged to extend along the first direction, the turnover groove 400 is located on the first direction side of the guide rail 140 and is spaced apart from the guide rail 140 to form the inlet and outlet 430. The sliding outlet 410 of the turnover groove 400 is located on the lower direction of the guide rail 140, and the at least two guide posts 321 abut against the lower surface of the guide rail 140 to slide. The sliding frame 320 of the present embodiment is provided with a limiting matching surface 322, the limiting matching surface 322 is spaced apart from the guide post 321 by a predetermined distance to form a guide matching position, and the guide matching position is matched with the housing 100 to enable the sliding frame 320 to slide on the housing 100 in a directional manner. In the specific structure, the guide matching position formed between the guide post 321 and the limiting matching surface 322 can be matched with the housing 100 to enable the sliding frame 320 to slide on the housing 100 in a directional manner. During the sliding process, the two guide posts 321 are located below the guide rail 140 and are attached to the guide rail 140, and the sliding outlet 410 of the turnover groove 400 is also located below the guide rail 140, so that the guide posts 321 can enter the turnover groove 400 after sliding to the end (front end) along the guide rail 140, so that stable film pressing and movement into the turnover groove 400 for turnover can be realized, and the side turnover state and the film pressing state can be smoothly switched.

[0048] As Figure 2 、 Figure 3As shown, further, the film limiting assembly 200 specifically comprises: a first limiting portion 210 and a second limiting portion 220, both of which are arranged on the shell 100 and are located outside both ends of the slot length direction of the accommodating inner cavity 110; the first limiting portion 210 and the second limiting portion 220 are respectively used for connecting both ends of the protective film 20, so that the protective film 20 is positioned above the accommodating inner cavity 110. In the specific structure, the first limiting portion 210 is arranged at the front end of the slot length direction of the accommodating inner cavity 110, and the second limiting portion 220 is arranged at the rear end of the slot length direction of the accommodating inner cavity 110. The first limiting portion 210 is arranged protruding from the upper surface of the shell 100, specifically comprising two first hooks 211 arranged side by side and spaced apart, both of which are arranged on the raised platform 160 and are used for connecting the pull hole 22 at the front end of the positioning release layer 21 of the protective film 20. The second limiting portion 220 can also be arranged protruding from the upper surface of the shell 100, specifically comprising two second hooks 221 arranged side by side and spaced apart, both of which are arranged on the rear stand 150 and are used for connecting the limiting hole 23 at the rear end of the positioning release layer 21 of the protective film 20. The rear stand 150 and the upper surface of the shell 100 are arranged with a spacing to form a pull-out opening 151, and the tear release layer 25 of the protective film 20 extends out of the pull-out opening 151 to facilitate the user to hold, so that the tear release layer 25 after being separated moves out of the pull-out opening 151 to expose the film layer 24 on the protective film 20 and aligns with the screen of the mobile phone 10 below.

[0049] By first turning the film pressing roller over to the outside of the first limiting portion 210, the space above the shell 100 is cleared, which facilitates the placement of the mobile terminal and the installation of the protective film 20. After the mobile terminal to be pasted is accommodated by the supporting limiting portion 120, the pull hole 22 at the front end of the positioning release layer 21 of the protective film 20 is connected to the first limiting portion 210, and the limiting hole 23 at the rear end of the positioning release layer 21 is connected to the second limiting portion 220, so that the entire protective film 20 is lifted and raised, thereby maintaining a predetermined distance from the mobile phone 10. In this way, a dust removal space is formed, and during the process of pulling out and moving the tear release layer 25, the tear release layer 25 can sweep across the screen of the mobile phone 10 in the dust removal space to adhere to the dust on the screen. After the tear release layer 25 is separated, the film layer 24 on the protective film 20 is exposed and aligned with the screen of the mobile phone 10 below. Then, the film pressing roller is turned over to the upper side of the shell 100 and is in a film pressing state. In the film pressing state, the roller portion 330 of the film pressing roller moves from front to back along the first direction to press the protective film 20. Thus, the film layer 24 of the protective film 20 is adhered to the screen of the mobile phone 10. Moreover, since the protective film 20 and the mobile phone 10 are both arranged obliquely, the pressing area is gradually increased during the pressing process, which facilitates air exhaust.

[0050] Example 2

[0051] like Figure 2 , Figure 3 As shown, this embodiment provides a screen protector kit, including the angled screen protector applicator described above and a protective film 20. The protective film 20 in this embodiment specifically includes: a film layer 24, a positioning release layer 21, and a peel-off release layer 25. The film layer 24 is used to adhere to the surface of the mobile phone 10, thereby protecting the screen of the mobile phone 10. The positioning release layer 21 is detachably disposed on one side of the film layer 24 and is used to connect to the angled screen protector applicator. The positioning release layer 21 has a pull hole 22 at its front end and a limiting hole 23 at its rear end. The pull hole 22 can be configured as an oblong hole, allowing it to be fitted onto the first hook 211. The limiting hole 23 is used to fit onto the second hook 221 for positioning. The peel-off release layer 25 is disposed on the side of the film layer 24 opposite to the positioning release layer 21 and facing the mobile phone 10.

[0052] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this application should be included within the protection scope of this application.

Claims

1. A slanted film applicator, characterized in that, include: A housing having a first orientation, and an inner cavity provided inside the housing, wherein the longitudinal direction of the inner cavity is inclined to the first orientation of the housing, and the inner cavity is used to accommodate a mobile terminal to be fitted with a film, so that the mobile terminal is tilted relative to the housing. A film-pressing component, which is slidably disposed on the housing along a first direction; A diaphragm limiting assembly is disposed on the housing and is used to connect a protective film so that the protective film is tilted in a first direction relative to the housing and is opposite to the mobile terminal.

2. The film applicator of claim 1, wherein the film applicator is configured to apply the film to the curved surface at an angle of about 45 degrees. The inner wall of the accommodating cavity is provided with a support and limiting part, which is used to support and limit the mobile terminal to be covered with film.

3. The film applicator of claim 2, wherein the film applicator is configured to apply the film to the curved surface of the curved object in a manner that the film is not stretched. The inner wall of the accommodating cavity along its length is provided with a pick-and-place slot, which is connected to the accommodating cavity.

4. The bevel prover of claim 1, wherein, The pressing component includes: a pressing roller component, which is slidably disposed on the housing along a first direction; The pressing roller component includes: a sliding frame, the two ends of which are movably connected to the housing; The roller section is rotatably mounted on the sliding frame.

5. The film applicator of claim 4, wherein the film applicator is configured to apply the film to the curved surface of the curved object in a manner that the film is not stretched. The pressure roller component can be flipped and disposed at one end of the housing in the first direction, so as to have a side-flipped state and a pressure state; In the side-tilted state, the roller portion of the pressure roller component flips to the outside of the diaphragm limiting assembly; In the pressure film state, the roller portion of the pressure film roller is flipped over above the film limiting assembly and can move along the first direction to squeeze the protective film.

6. The beveler of claim 5, wherein the beveler is configured to be used in a bevel down orientation. The side of the housing is provided with a flipping groove, one end of which forms a sliding outlet and the other end is closed to form a flipping locking position. The flipping groove is also provided with an inlet and outlet with the opening facing upward. The sliding frame includes at least two guide posts spaced apart along a first direction. When the sliding frame moves into the flipping groove, one of the guide posts is located on the flipping slot as a rotation axis, causing the other guide post to rotate out from the inlet and outlet, so as to flip the sliding frame from the top of the housing to the side of the housing.

7. The film applicator of claim 6, wherein the film applicator is configured to apply the film to the curved surface at an angle of about 45 degrees. A guide rail is provided on the side of the housing in the width direction. The guide rail extends along a first direction. The flipping groove is located on one side of the guide rail in the first direction and is spaced apart from the guide rail to form the inlet and outlet. The sliding outlet of the flipping groove is located in the lower direction of the guide rail, and at least two of the guide posts slide against the lower surface of the guide rail.

8. The film applicator of claim 7, wherein the film applicator is configured to apply the film to the curved surface at an angle of about 45 degrees. The sliding frame is provided with a limiting mating surface, which is spaced at a predetermined distance from the guide post to form a guide mating position. The guide mating position is used to engage with the housing so that the sliding frame can slide directionally on the housing.

9. The bevel prover of claim 1, wherein, The diaphragm limiting assembly includes a first limiting part and a second limiting part, both of which are disposed on the housing and located on the outer sides of both ends of the groove in the accommodating cavity along its length. The first limiting part and the second limiting part are respectively used to connect the two ends of the protective film so that the protective film is positioned above the accommodating cavity.

10. A film application kit, characterized by Includes the inclined film applicator as described in any one of claims 1-9 and the protective film; The protective film comprises a film pasting layer, a positioning release layer and a tear release layer; the positioning release layer is obliquely connected to the shell of the oblique film pasting device through a film sheet limiting component.