Film bin mechanism of mobile terminal film sticking machine and mobile terminal film sticking machine
By designing a multi-layer film compartment structure and lifting drive components, the problem of existing film applicators being unable to adapt to different terminal models has been solved, realizing efficient storage and retrieval of various protective films and expanding the applicator's compatibility range.
Patent Information
- Application Number
- CN202422351085.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-25
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-09-25
AI Technical Summary
The existing automatic mobile terminal film applicator has a simple film compartment structure, which makes it difficult to store different types of protective films separately, resulting in a limited number of compatible film applicator models.
A multi-layer membrane storage structure is designed, including a frame, a membrane storage moving module, and multiple membrane storage compartments. The lifting and moving of the membrane storage compartments is achieved through a lifting drive component and a compartment retrieval component. The membrane storage compartments are gripped and placed by an electromagnet module and an elastic buffer module, which supports the storage of various types of protective films.
It enables efficient storage and retrieval of various types of protective films, expands the range of models that the film applicator can be adapted to, and improves the efficiency and flexibility of film application.
Smart Images

Figure CN223574806U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to screen protection technical field, concretely relates to a film bin mechanism of mobile terminal film sticking machine and mobile terminal film sticking machine. BACKGROUND
[0002] With the development of science and technology, electronic products are widely popular, and people's production and life are inseparable from various electronic equipment, such as smart mobile terminal such as mobile terminal such as smart mobile terminal or tablet computer, the screen of mobile terminal is an important component of the whole mobile phone, is easily damaged and is expensive, once not heart falls, is easy to break the screen, causes the user to cause greater loss, therefore, there is need to protect the electronic screen of mobile device, people usually paste a layer of protective film on the surface of the screen of smart mobile terminal or tablet computer, thereby protecting the display screen of mobile terminal, avoiding that the display screen is scratched and broken by accident, and in order to improve the film sticking efficiency, the automatic mobile terminal film sticking machine can replace manual film sticking.
[0003] Because the screen size and shape of different models of mobile terminal are also different, leading to the difficulty of generalization of the protective film, and the film bin structure of the automatic mobile terminal film sticking machine is single, it is difficult to separately accommodate a large number of different types of protective film by arranging a single film bin, leading to that the automatic mobile terminal film sticking machine is less suitable for film sticking models. UTILITY MODEL CONTENTS
[0004] The utility model aims at overcoming the shortcomings and deficiencies in the prior art, and provides a film bin mechanism of mobile terminal film sticking machine and mobile terminal film sticking machine.
[0005] One embodiment of the utility model provides a film bin mechanism of mobile terminal film sticking machine, which comprises a rack, a film bin moving module and a plurality of film bins.
[0006] A plurality of storage cavities are arranged on the rack, and the plurality of storage cavities are arranged in sequence from bottom to top, and one side of the storage cavity is provided with a bin opening.
[0007] The film bin moving module comprises a lifting frame, a lifting drive assembly and a bin taking assembly, the lifting frame is arranged on one side of the bin opening in a lifting manner through the lifting drive assembly, and the bin taking assembly is arranged on the lifting frame and / or the rack.
[0008] The film bin is movably accommodated in the storage cavity, and the film bin is configured to be driven by the bin taking assembly to move from the storage cavity to the lifting frame and from the lifting frame to the storage cavity.
[0009] In some alternative embodiments, the film warehouse taking assembly comprises a film warehouse translation assembly and a plurality of electromagnet modules, the film warehouse translation assembly is arranged on the lifting frame and is in driving connection with the electromagnet modules, after the electromagnet modules abut against the film warehouse under the driving of the film warehouse translation assembly, the electromagnet modules are in magnetic attraction with the film warehouse to grab the film warehouse.
[0010] In some alternative embodiments, the film warehouse taking assembly further comprises a movable seat, the electromagnet modules are mounted on the movable seat, an elastic buffer module is arranged between the electromagnet modules and the movable seat, and the film warehouse translation assembly is in driving connection with the movable seat.
[0011] In some alternative embodiments, the elastic buffer module comprises a plurality of springs and a plurality of guide columns, the guide columns are in sliding cooperation with the movable seat and are connected with the electromagnet modules, the springs are sleeved outside the guide columns, and two ends of the springs are respectively connected with the electromagnet modules and the movable seat.
[0012] In some alternative embodiments, the film warehouse is provided with a magnetic part, and the electromagnet modules are in magnetic attraction with the film warehouse through the magnetic part.
[0013] In some alternative embodiments, the film warehouse is provided with a plurality of walking wheels, and the film warehouse moves on the warehouse cavity through the walking wheels.
[0014] After the film warehouse taking assembly grabs the film warehouse, the film warehouse taking assembly drives the film warehouse away from the warehouse opening to make the film warehouse separate from the warehouse cavity, and after the film warehouse separates from the warehouse cavity, the film warehouse moves on the lifting frame through the walking wheels.
[0015] In some alternative embodiments, a plurality of first guide rails are arranged in the warehouse cavity, and the walking wheels are movable on the first guide rails.
[0016] A plurality of second guide rails are arranged on the lifting frame, after the film warehouse taking assembly grabs the film warehouse, the film warehouse taking assembly drives the film warehouse away from the warehouse opening to make the film warehouse separate from the warehouse cavity, and after the film warehouse separates from the warehouse cavity, the walking wheels are movable on the second guide rails.
[0017] In some alternative embodiments, a limiting block is arranged in the warehouse cavity, when the film warehouse is accommodated in the warehouse cavity, one side of the walking wheels or the film warehouse towards the warehouse opening abuts against the limiting block to make the film warehouse be limited in the warehouse cavity.
[0018] In some alternative embodiments, a plurality of film storage grooves are arranged on the film warehouse.
[0019] Another embodiment of this utility model provides a mobile terminal screen protector applicator, including: a clamping mechanism, a clamping and translating component, and a film storage mechanism for a mobile terminal screen protector applicator as described above. The clamping mechanism is disposed above the lifting frame, and the clamping and translating component is drivenly connected to the clamping mechanism to drive the clamping mechanism to move closer to or away from the lifting frame.
[0020] Compared to existing technologies, the film storage mechanism of the mobile terminal film applicator of this invention can hold more film storage compartments. When film needs to be retrieved, the corresponding film storage compartment is taken out by the film storage compartment moving module and transported to a suitable position for the clamping mechanism to grasp. Since a large number of film storage compartments can be installed, and multiple film storage slots can be arranged on the film storage compartments, and a single film storage compartment may also hold different types of protective films, it is convenient to store different types of protective films separately, thereby enabling the mobile terminal film applicator to be compatible with a wide range of models.
[0021] To provide a clearer understanding of this invention, the specific embodiments of this invention will be described below in conjunction with the accompanying drawings. Attached Figure Description
[0022] Figure 1 This is a schematic diagram of one side of the film compartment mechanism of a mobile terminal film applicator according to an embodiment of the present invention;
[0023] Figure 2 This is a schematic diagram of the film compartment mechanism of a mobile terminal film applicator according to an embodiment of the present invention when the film compartment is removed;
[0024] Figure 3 This is a schematic diagram of the structure of the membrane chamber, lifting frame, and retrieval assembly according to one embodiment of the present invention;
[0025] Figure 4 for Figure 3 The enlarged view at point B is shown below;
[0026] Figure 5 for Figure 1 The enlarged view at point A is shown below;
[0027] Figure 6 This is a schematic diagram of the film storage mechanism, clamping mechanism, and clamping translation component of a mobile terminal film applicator according to an embodiment of the present invention.
[0028] Explanation of reference numerals in the attached figures:
[0029] 10, rack; 11, storage cavity; 12, first guide rail; 13, limiting block; 14, guide rod; 20, film cartridge; 21, film storage groove; 22, magnetic piece; 23, walking wheel; 30, film cartridge moving module; 31, lifting frame; 32, lifting driving assembly; 321, screw rod; 33, cartridge taking assembly; 331, cartridge taking translation assembly; 332, electromagnet module; 333, movable seat; 334, elastic buffer module; 3341, spring; 3342, guide column; 34, second guide rail; 40, clamping mechanism; 50, clamping translation assembly. DETAILED DESCRIPTION
[0030] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application. In the description of the present application, unless otherwise specified, "a plurality of" means 2 or more than 2, and "several" means 1 or more than 1. In addition, unless otherwise specified, the terms "first", "second" are only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features.
[0031] In the description of the present application, it is understood that the terms "center", "longitudinal", "transverse", "upper", "lower", "front", "rear", "left", "right", "straight", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and cannot be understood as indicating or implying that the devices or elements indicated must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application.
[0032] In the description of the present application, unless otherwise specified and limited, the terms "mounting", "connection", "connection", "fixing" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or it can be integrated; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the internal communication of two elements or the interaction relationship between two elements. For those skilled in the art, the specific meanings of the above terms in the present application can be understood according to the specific circumstances.
[0033] In the description of the utility model, the description of reference terms "one embodiment", "some optional implementation" or "some optional embodiment" means that the specific features, structures, materials or characteristics described in combination with the embodiment or example are contained in at least one embodiment or example of the utility model. In the specification, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
[0034] Please refer to Figure 1 The utility model discloses an embodiment provides a kind of film warehouse mechanism of mobile terminal film sticking machine, comprising: rack 10, film warehouse 20 mobile module and multiple film warehouses 20.
[0035] Rack 10 is provided with multiple warehouse cavities 11, and multiple warehouse cavities 11 are sequentially arranged from bottom to top, and one side of the warehouse cavity 11 is provided with a warehouse mouth;Film warehouse 20 mobile module includes lifting frame 31, lifting drive assembly 32 and take warehouse component 33, lifting frame 31 is arranged on the side of the warehouse mouth by lifting drive assembly 32, and take warehouse component 33 is arranged on lifting frame 31 and / or rack 10;Film warehouse 20 is correspondingly movably stored in the warehouse cavity 11, and film warehouse 20 is configured to be moved from the warehouse cavity 11 to the lifting frame 31 and from the lifting frame 31 to the warehouse cavity 11 under the drive of take warehouse component 33.
[0036] Each film warehouse 20 can store at least one type of protective film, so that the film warehouse mechanism of mobile terminal film sticking machine realizes the storage of multiple types of protective films, and in some optional implementation, multiple film storage grooves 21 are provided on the film warehouse 20, each film storage groove 21 can correspondingly store one type of protective film, thereby improving the type of protective film that can be stored by the film warehouse mechanism of mobile terminal film sticking machine, and increasing the model of mobile terminal film sticking machine that can be adapted to film sticking.
[0037] When protective film is needed, lifting frame 31 is moved to the side of the warehouse mouth corresponding to the warehouse cavity 11 under the drive of lifting drive assembly 32, and then take warehouse component 33 moves film warehouse 20 to lifting frame 31, and then lifting frame 31 is moved to a suitable position under the drive of lifting drive assembly 32, so as to facilitate subsequent film taking operation of the protective film in film warehouse 20. After the film taking operation is completed, lifting frame 31 is driven by lifting drive assembly 32 to return to the side of the warehouse mouth corresponding to the warehouse cavity 11, and then take warehouse component 33 moves film warehouse 20 back into the warehouse cavity 11.
[0038] The specific structure of the taking bin assembly 33 can be designed according to actual needs. The taking bin assembly 33 can be realized by pushing the film bin 20. For example, the taking bin assembly 33 includes a plurality of pushing modules, and the pushing modules are respectively arranged on each bin storage cavity 11 and the lifting frame 31. The pushing module in the bin storage cavity 11 drives the push block through the telescopic rod to push the film bin 20 out to the lifting frame 31. The pushing module on the lifting frame 31 drives the push block through the telescopic rod to push the film bin 20 into the bin storage cavity 11. The taking bin assembly 33 can also be realized by grasping and locking the film bin 20 and then driving the film bin 20 to translate. For example, in the embodiment, the taking bin assembly 33 includes a taking bin translation assembly 331 and a plurality of electromagnet modules 332. The taking bin translation assembly 331 is arranged on the lifting frame 31, and the taking bin translation assembly 331 is drivingly connected with the electromagnet modules 332. After the electromagnet modules 332 abut against the film bin 20 under the driving of the taking bin translation assembly 331, the electromagnet modules 332 are powered on, and the electromagnet modules 332 are magnetically attracted to the film bin 20 to grasp the film bin 20. When it is needed to release the grasping of the film bin 20 by the taking bin assembly 33, the electromagnet modules 332 are only needed to be powered off, so that the magnetic attraction between the electromagnet modules 332 and the film bin 20 is released. Of course, the structure of the taking bin assembly 33 is not limited to this. Those skilled in the art can also select other appropriate structures according to the teachings of the present application. For example, the taking bin assembly 33 includes a taking bin translation assembly 331 and two clamping plates that are clamped together. The film bin 20 can be clamped by the two clamping plates to realize the grasping of the film bin 20, and then the taking bin translation assembly 331 drives the clamping plates to move to realize the movement of the film bin 20.
[0039] When it is needed to take the protective film, the lifting frame 31 is moved to one side of the bin opening of the corresponding bin storage cavity 11 under the driving of the lifting driving assembly 32, and then the taking bin translation assembly 331 drives the taking bin assembly 33 to move towards the bin opening until the taking bin assembly 33 grasps the film bin 20 in the bin storage cavity 11. Then the taking bin translation assembly 331 drives the taking bin assembly 33 to move away from the bin opening, so that the film bin 20 is grasped out of the bin storage cavity 11 by the taking bin assembly 33, until the film bin 20 is grasped and moved to the lifting frame 31. Subsequently, the lifting frame 31 is moved to a suitable position under the driving of the lifting driving assembly 32, thereby facilitating the subsequent film taking operation of the protective film in the film bin 20. After the film taking operation is completed, the lifting frame 31 is moved back to the side of the bin opening of the corresponding bin storage cavity 11 under the driving of the lifting driving assembly 32, and then the taking bin translation assembly 331 drives the taking bin assembly 33 to move the film bin 20 back into the bin storage cavity 11, and then the grasping of the film bin 20 by the taking bin assembly 33 is released.
[0040] When the cartridge translation assembly 331 drives the electromagnet module 332 to press against the film cartridge 20, in order to avoid the electromagnet module 332 exerting excessive pressure on the film cartridge 20 and causing the film cartridge 20 to deform, in some optional embodiments, the cartridge taking assembly 33 further comprises a movable seat 333, the electromagnet module 332 is installed on the movable seat 333, and an elastic buffer module 334 is arranged between the electromagnet module 332 and the movable seat 333, and the cartridge translation assembly 331 is drivingly connected with the movable seat 333,
[0041] When the electromagnet module 332 presses against the film cartridge 20, the electromagnet module 332 stops moving, but the movable seat 333 may move towards the film cartridge 20 under the drive of the translation driving assembly, at this time the elastic buffer module 334 will be elastically deformed under the extrusion of the movable seat 333, thereby buffering the movable seat 333, avoiding the movable seat 333 driving the electromagnet module 332 to cause impact, thereby slowing down the excessive impact force exerted by the movable seat 333 driving the electromagnet module 332 on the film cartridge 20, avoiding the electromagnet module 332 generating hard interference on the film cartridge 20, so that the cartridge translation assembly 331 will not drive the electromagnet module 332 to excessively extrude the film cartridge 20 through the movable seat 333.
[0042] The specific structure of the elastic buffer module 334 can be designed according to actual needs, for example, in some optional embodiments, the elastic buffer module 334 comprises a plurality of springs 3341 and a plurality of guide columns 3342, the guide columns 3342 are in sliding fit with the movable seat 333 and are connected with the electromagnet module 332, the springs 3341 are sleeved outside the guide columns 3342, and the two ends of the springs 3341 are respectively connected with the electromagnet module 332 and the movable seat 333, when the electromagnet module 332 presses against the film cartridge 20, if the cartridge translation assembly 331 continues to drive the movable seat 333 to move towards the film cartridge 20, it will cause the movable seat 333 to move towards the film cartridge 20, so that the electromagnet module 332 and the movable seat 333 extrude the springs 3341 to make the springs 3341 elastically deform, the elastic force of the springs 3341 provides buffering for the movable seat 333, avoiding the movable seat 333 driving the electromagnet module 332 to extrude the film cartridge 20. When the springs 3341 elastically deform, the guide columns 3342 guide the springs 3341 not to easily deviate from the position, and the guide columns 3342 can guide the movable seat 333 to stably move relative to the electromagnet module 332, so that the electromagnet module 332 and the movable seat 333 are not easy to relatively tilt, thereby improving the stress uniformity of the electromagnet module 332.
[0043] The film bin 20 can be made of a material with magnetism, so as to facilitate the magnetic attraction between the film bin 20 and the electromagnet module 332. Of course, according to the actual design needs, in some optional embodiments, the film bin 20 is provided with a magnetic part 22, and the electromagnet module 332 is magnetically attracted to the film bin 20 through the magnetic part 22. At this time, the film bin 20 is not limited to the material of manufacture, and the film bin 20 can be made of a material with magnetism or other materials without magnetism.
[0044] In order to facilitate the movement of the film bin 20 and improve the smoothness of the movement of the film bin 20, in some optional embodiments, the film bin 20 is provided with a plurality of walking wheels 23, and the film bin 20 moves on the storage cavity 11 through the walking wheels 23. After the film bin 20 is grabbed by the film taking assembly 33, the film taking assembly 33 drives the film bin 20 away from the bin opening so that the film bin 20 is separated from the storage cavity 11. After the film bin 20 is separated from the storage cavity 11, the film bin 20 moves on the lifting frame 31 through the walking wheels 23. When the film bin 20 is grabbed by the film taking assembly 33 and then moves between the storage cavity 11 and the lifting frame 31, the movement stability of the film bin 20 can be improved by relying on the walking wheels 23, and the friction received by the film bin 20 is reduced. Moreover, since the stopping position of the lifting frame 31 can have errors, there can be a height difference between the position where the walking wheels 23 move on the storage cavity 11 and the position where the walking wheels 23 move on the lifting frame 31, and the walking wheels 23 can conveniently and smoothly overcome the above height difference.
[0045] In order to facilitate the movement of the film bin 20 and improve the smoothness of the movement of the film bin 20, in some optional embodiments, the film bin 20 is provided with a plurality of walking wheels 23, and the film bin 20 moves on the storage cavity 11 through the walking wheels 23. After the film bin 20 is grabbed by the film taking assembly 33, the film taking assembly 33 drives the film bin 20 away from the bin opening so that the film bin 20 is separated from the storage cavity 11. After the film bin 20 is separated from the storage cavity 11, the film bin 20 moves on the lifting frame 31 through the walking wheels 23. When the film bin 20 is grabbed by the film taking assembly 33 and then moves between the storage cavity 11 and the lifting frame 31, the movement stability of the film bin 20 can be improved by relying on the walking wheels 23, and the friction received by the film bin 20 is reduced. Moreover, since the stopping position of the lifting frame 31 can have errors, there can be a height difference between the position where the walking wheels 23 move on the storage cavity 11 and the position where the walking wheels 23 move on the lifting frame 31, and the walking wheels 23 can conveniently and smoothly overcome the above height difference.
[0046] In some alternative embodiments, the storage cavity 11 is provided with a limiting block 13. When the film cartridge 20 is received in the storage cavity 11, the walking wheel 23 or the side of the film cartridge 20 close to the cartridge opening abuts against the limiting block 13 so that the film cartridge 20 is limited in the storage cavity 11. When the film cartridge 20 is moved out of the storage cavity 11, a certain force needs to be exerted to overcome the limiting block 13, so that the film cartridge 20 can be better maintained in the storage cavity 11, and the film cartridge 20 is not easily moved due to the design of the walking wheel 23, and is not easily separated from the storage cavity 11 due to the vibration of the rack 10.
[0047] In the present embodiment, the limiting block 13 is arranged on the first guide rail 12. When the film cartridge 20 is received in the storage cavity 11, the limiting block 13 is located on the side of the walking wheel 23 close to the cartridge opening. When the film cartridge 20 is moved out of the storage cavity 11 by the cartridge taking assembly 33, the walking wheel 23 rolls on the first guide rail 12 and overcomes the limiting block 13.
[0048] The specific structure of the cartridge taking translation assembly 331 can be designed according to actual needs. For example, the cartridge taking translation assembly 331 can be a lead screw driving assembly, a rotary motor translation driving assembly, a belt translation driving assembly, a pneumatic cylinder translation driving assembly or a linear motor translation driving assembly. In the present embodiment, the cartridge taking translation assembly 331 is a synchronous belt translation driving assembly, which includes a synchronous belt module and a motor. The motor is drivingly connected with the synchronous belt module. The synchronous belt module is arranged on the lifting frame 31 and connected with the movable seat 333. The lifting frame 31 can further be provided with a slide rail for guiding the movement of the movable seat 333.
[0049] The specific structure of the lifting driving assembly 32 can be designed according to actual needs. For example, the lifting driving assembly 32 can be a lead screw driving assembly, a rotary motor translation driving assembly, a belt translation driving assembly, a pneumatic cylinder translation driving assembly or a linear motor translation driving assembly. In the present embodiment, the lifting driving assembly 32 includes two lead screws 321 arranged on the two sides of the lifting frame 31. The lead screws 321 are rotationally connected with the rack 10 and threadedly connected with the lifting frame 31. The lead screws 321 are driven to rotate by a power motor, thereby driving the lifting frame 31 to lift. The rack 10 is further provided with a plurality of guide rods 14. The lifting frame 31 is slidingly connected with the guide rods 14, thereby improving the stability of the lifting of the lifting frame 31.
[0050] The above-mentioned film cartridge mechanism of the mobile terminal film sticking machine can be applied to the mobile terminal film sticking machine. The mobile terminal film sticking machine includes a clamping mechanism 40, a clamping translation assembly 50 and the above-mentioned film cartridge mechanism of the mobile terminal film sticking machine. The clamping mechanism 40 is arranged above the lifting frame 31. The clamping translation assembly 50 is drivingly connected with the clamping mechanism 40 and used to drive the clamping mechanism 40 to move close to or away from the lifting frame 31.
[0051] The specific structure of the clamping mechanism 40 can be designed according to actual needs, for example, in some optional embodiments, the clamping mechanism 40 comprises a movable support connected with the translation driving assembly and a plurality of vacuum suction cups arranged on the bottom of the movable support, the vacuum suction cups generate negative pressure to realize adsorption on the top of the protective film. The clamping translation assembly 50 drives the clamping mechanism 40 to extend into the film bin 20, so as to realize clamping on the protective film in the film bin 20.
[0052] The specific structure of the clamping translation assembly 50 can be designed according to actual needs, for example, the clamping translation assembly 50 is a three-axis translation driving assembly which can realize movement of the clamping mechanism 40 in the transverse direction, the longitudinal direction and the up-down direction, the principle of the three-axis translation driving assembly is a technology known to those skilled in the art, and will not be described here.
[0053] Although the embodiments of the present application have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and modifications can be made to these embodiments without departing from the principles and spirits of the present application, the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. A film compartment mechanism for a mobile terminal film applicator, characterized in that, The application relates to a mobile terminal film pasting machine film warehouse mechanism. The rack is provided with a plurality of warehouse cavities arranged in sequence from bottom to top, and one side of the warehouse cavities is provided with a warehouse opening. The film warehouse moving module comprises a lifting frame, a lifting driving assembly and a warehouse taking assembly, the lifting frame is arranged on one side of the warehouse opening in a lifting mode through the lifting driving assembly, and the warehouse taking assembly is arranged on the lifting frame and / or the rack. The film warehouse is correspondingly movably arranged in the warehouse cavity, and the film warehouse is configured to be moved from the warehouse cavity to the lifting frame and from the lifting frame to the warehouse cavity under the driving of the warehouse taking assembly. The warehouse taking assembly comprises a warehouse taking translation assembly and a plurality of electromagnets, the warehouse taking translation assembly is arranged on the lifting frame and is drivingly connected with the electromagnets, after the electromagnets abut against the film warehouse under the driving of the warehouse taking translation assembly, the electromagnets are magnetically attracted to the film warehouse to grab the film warehouse.
2. The film cartridge mechanism of a mobile terminal film applying machine according to claim 1, wherein: The warehouse taking assembly further comprises a movable seat, the electromagnets are mounted on the movable seat, a spring buffer module is arranged between the electromagnets and the movable seat, and the warehouse taking translation assembly is drivingly connected with the movable seat.
3. The film cartridge mechanism of a mobile terminal film applying machine according to claim 2, wherein: The spring buffer module comprises a plurality of springs and a plurality of guide columns, the guide columns are slidingly matched with the movable seat and connected with the electromagnets, the springs are sleeved outside the guide columns, and two ends of the springs are respectively connected with the electromagnets and the movable seat.
4. The film cartridge mechanism of a mobile terminal film applying machine according to claim 3, wherein: The film warehouse is provided with a magnetic piece, the electromagnets are magnetically attracted to the film warehouse through the magnetic piece.
5. The film cartridge mechanism of a mobile terminal film applying machine according to claim 2, wherein: The film warehouse is provided with a plurality of walking wheels, and the film warehouse moves on the warehouse cavity through the walking wheels.
6. The film cartridge mechanism of a mobile terminal film applying device according to any one of claims 1 to 5, characterized in that: After the warehouse taking assembly grabs the film warehouse, the warehouse taking assembly drives the film warehouse away from the warehouse opening to make the film warehouse separate from the warehouse cavity, and after the film warehouse separates from the warehouse cavity, the film warehouse moves on the lifting frame through the walking wheels. The warehouse cavity is provided with a plurality of first guide rails, and the walking wheels move on the first guide rails.
7. The film cartridge mechanism of a mobile terminal film applicator according to claim 6, wherein: The lifting frame is provided with a plurality of second guide rails, after the warehouse taking assembly grabs the film warehouse, the warehouse taking assembly drives the film warehouse away from the warehouse opening to make the film warehouse separate from the warehouse cavity, and after the film warehouse separates from the warehouse cavity, the walking wheels move on the second guide rails. The warehouse cavity is provided with a limiting block, when the film warehouse is arranged in the warehouse cavity, the walking wheels or the film warehouse abut against the limiting block on one side of the warehouse opening to limit the film warehouse in the warehouse cavity.
8. The film cartridge mechanism of a mobile terminal film applying device according to claim 6, wherein: The film warehouse is provided with a plurality of film storage grooves.
9. The film cartridge mechanism of a mobile terminal film applying apparatus according to any one of claims 1 to 5, characterized by: The application further relates to a mobile terminal film pasting machine.
10. A mobile terminal film attaching machine, characterized by,
Citation Information
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Film bin mechanism of mobile terminal film sticking machine and mobile terminal film sticking machine
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