Mobile phone screen dismounting suction cup support and separator

By using a lever structure and a vacuum suction cup bracket for removing the phone screen, the problem of laborious separation of the phone screen from the casing and low yield rate has been solved, achieving a labor-saving and efficient screen removal process.

CN223917852UActive Publication Date: 2026-02-17DONGGUAN XINCHENGFA TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520167853.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-24
Publication Date
2026-02-17
Estimated Expiration
2035-01-24

AI Technical Summary

Technical Problem

In existing technologies, separating the mobile phone screen from the phone casing is laborious, has a low yield rate, and can easily damage the display screen.

Method used

The suction cup bracket for removing the phone screen uses a lever structure. By leveraging the principle of leverage, the suction cup is lifted upwards. Combined with vacuum adsorption and clamping mechanisms, the phone screen can be easily separated from the casing.

Benefits of technology

This technology enables effortless separation of the phone screen from the casing, improving ease of operation and yield, and reducing the risk of damage to the display screen.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223917852U_ABST
    Figure CN223917852U_ABST
Patent Text Reader

Abstract

The utility model relates to a mobile phone screen dismounting suction cup support and separator, the suction cup support comprises a separation support plate, a separation support rod, a main support plate, a lever support plate, a lever and a suction cup, the separation support plate and the main support plate are installed together through a first rotating shaft, the lever support plate is installed on the main support plate, and the lever support plate is installed on the suction cup. The lever and the lever supporting plate are installed together through the second rotating shaft, the separation supporting rod is inserted into the lever supporting plate and corresponds to one end of the lever, the other end of the lever is directly or indirectly connected with the separation supporting plate, and the suction cup is installed below the separation supporting plate. According to the utility model, the suction cup is lifted upwards through the lever structure, and the lever principle is utilized, so that the separation operation of the mobile phone screen and the mobile phone shell is more labor-saving and easy, and the purpose of high yield is achieved.
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Description

Technical Field

[0001] This utility model relates to a rotary separator, and more particularly to a suction cup bracket and separator for disassembling mobile phone screens, belonging to the technical field of electronic product repair equipment for mobile phones, tablets and other electronic products. Background Technology

[0002] Mobile phones, tablets and other electronic products are being used more and more widely in people's lives, and have almost become indispensable.

[0003] During use, electronic products such as mobile phones and tablets are inevitably damaged due to accidental drops, which requires repair. Repairing electronic product screens requires removing the glass cover on the screen. This usually requires a screen removal machine or a screen separator, especially when operating manually, where a screen separator is more likely to be used.

[0004] Existing separation machines typically use a manual screw to pull the suction cup structure upwards, or the rotation of the separation rod (micrometer) generates upward pulling force on the suction cup to separate the phone screen from the phone casing. Regardless of the separation method, a considerable amount of force is required for the separation operation, which is time-consuming and laborious. Furthermore, the aforementioned violent screen removal methods can easily damage the display screen, resulting in a low yield rate. Summary of the Invention

[0005] In view of the shortcomings of the existing separation machines mentioned above, such as the laborious operation and low yield when separating the mobile phone screen from the mobile phone casing, this utility model provides a mobile phone screen disassembly suction cup bracket and separation machine. It uses a lever structure to lift the suction cup upward. By utilizing the lever principle, the separation operation of the mobile phone screen from the mobile phone casing can be made more labor-saving and easy, achieving the goal of high yield.

[0006] The technical solution adopted by this utility model to solve its technical problem is: a suction cup bracket for disassembling a mobile phone screen. The suction cup bracket includes a separation support plate, a separation rod, a main support plate, a lever support plate, a lever, and a suction cup. The separation support plate is installed together with the main support plate through a first rotating shaft. The lever support plate is installed on the main support plate. The lever is installed together with the lever support plate through a second rotating shaft. The separation rod is inserted into the lever support plate. The separation rod is set at one end of the lever. The other end of the lever is directly or indirectly connected to the separation support plate. The suction cup is installed below the separation support plate.

[0007] A separator includes a working platform and a disassembly suction cup bracket as described above, the disassembly suction cup bracket being directly or indirectly mounted to the working platform.

[0008] The technical solution adopted by this utility model to solve its technical problem further includes:

[0009] The suction cup and the suction cup support are installed together, and the suction cup support is installed on the separation support plate by suction cup mounting screws.

[0010] The separation support plate is provided with strip-shaped through holes, and suction cup mounting screws are installed at the strip-shaped through holes. There is one or more strip-shaped through holes. When there are two or more strip-shaped through holes, the two or more strip-shaped through holes are arranged in parallel.

[0011] The lever is equipped with a lifting rod via a third pivot, and the bottom of the lifting rod is mounted on the separation support plate via a fourth pivot.

[0012] The main support plate has mounting holes, and the end of the separation support plate is set in the mounting holes.

[0013] The suction cup is a vacuum suction cup, which is connected to a first vacuum pump through a first vacuum tube.

[0014] The separator also includes a first clamping mechanism and a second clamping mechanism, which are respectively installed at both ends of the working platform.

[0015] The working platform is directly or indirectly installed above the locking mechanism and the support foot mechanism. The locking mechanism includes a first support foot and a first support plate installed together. An electromagnet is installed on the first support foot. The electromagnet directly or indirectly corresponds to the first support plate. When the electromagnet indirectly corresponds to the first support plate, an iron sheet is embedded in the first support plate.

[0016] The second clamping mechanism includes a flip support block, a fifth rotating shaft, and a second clamping block. The flip support block is mounted on the work platform via the fifth rotating shaft, and the second clamping block is mounted on the flip support block. The flip support block has an insertion slot, and the main support plate is inserted into the insertion slot. A vacuum connection channel is provided inside the flip support block. One end of the first vacuum tube is connected to the suction cup, and the other end of the first vacuum tube is connected to one connection port of the vacuum connection channel inside the flip support block. A second vacuum tube is connected to the other connection port of the vacuum connection channel inside the flip support block. The second vacuum tube passes through the main rotating shaft and is connected to the first vacuum pump located inside the main unit chassis. Alternatively, the other end of the first vacuum tube is connected to the first vacuum pump located inside the main unit chassis via a channel located inside the work platform or at the bottom of the work platform.

[0017] The beneficial effects of this utility model are: this utility model uses a lever structure to lift the suction cup upwards, and by utilizing the lever principle, the separation of the mobile phone screen from the mobile phone casing can be made more labor-saving and easier, achieving a high yield rate.

[0018] The present invention will be further described below with reference to the accompanying drawings and specific embodiments. Attached Figure Description

[0019] Figure 1 This is a three-dimensional structural diagram of the separator in this utility model.

[0020] Figure 2 This is a schematic diagram of the separator in the decomposition state of this utility model.

[0021] Figure 3 This is a two-dimensional structural diagram of the separator in this utility model from a second perspective.

[0022] Figure 4 This is a schematic diagram of the separator in the second perspective of the exploded state structure in this utility model.

[0023] Figure 5 This is a schematic diagram of the disassembled structure of the first clamping mechanism in this utility model.

[0024] Figure 6 This is a schematic diagram of the first clamping mechanism in this utility model from a second-view exploded state.

[0025] Figure 7 This is a schematic diagram of the disassembled structure of the second clamping mechanism in this utility model.

[0026] Figure 8 This is a schematic diagram of the second clamping mechanism in the second perspective exploded state of the present invention.

[0027] Figure 9 This is a schematic diagram of the third-view exploded structure of the second clamping mechanism in this utility model.

[0028] Figure 10 This is a schematic diagram of the disassembled suction cup bracket structure in this utility model.

[0029] Figure 11 This is a second-view exploded view structural diagram of the disassembled suction cup bracket in this utility model.

[0030] In the diagram, 1-Main unit, 11-Chassis, 12-First support foot, 13-Second support foot, 14-First support plate, 15-Second support plate, 16-Electromagnet, 17-Main shaft, 18-Brake device, 19-Main support plate, 110-Sealing plate, 111-Main pad plate, 112-Working platform, 113-Vacuum suction port, 114-Second vacuum tube, 115-First vacuum pump, 116-Second vacuum pump, 117-Iron sheet. 2-First clamping mechanism, 21-Clamping block fixing block, 22-First clamping block, 23-Guide rod, 24-First support rod, 25-Clamping top rod, 26-Retaining ring, 3-Second clamping mechanism, 31-Flipping support block, 32-Fifth rotating shaft, 33-Second clamping block, 34-Insertion slot, 35-Fixing screw, 36-Insertion rod, 37-Vacuum connection channel, 4-Disassemble suction cup bracket, 41-Separation support plate, 42-Separation support rod, 43-Suction cup, 44-Suction cup support seat, 45-Suction cup mounting screw, 46-Strip through hole, 47-Main support plate, 48-Mounting hole, 49-First rotating shaft, 410-Lever support plate, 411-Second rotating shaft, 412-Lever, 413-Lifting rod, 414-Third rotating shaft, 415-First vacuum tube, 416-Fourth rotating shaft, 5-Mobile phone. Detailed Implementation

[0031] This embodiment is a preferred embodiment of the present invention. All other embodiments that are the same as or similar to this embodiment in principle and basic structure are within the protection scope of the present invention.

[0032] Please refer to the appendix. Figure 10 and attached Figure 11 This utility model mainly protects a suction cup bracket for removing a mobile phone screen, which mainly includes a separation support plate 41, a separation rod 42 (the separation rod 42 adopts a micrometer structure), a main support plate 47, a lever support plate 410, a lever 412, and a suction cup 43. The separation support plate 41 is installed together with the main support plate 47 through a first rotating shaft 49. The lever support plate 410 is installed on the main support plate 47. The lever 412 is installed together with the lever support plate 410 through a second rotating shaft 411. The separation rod 42 is inserted into the lever support plate 410 and is set corresponding to one end of the lever 412. The other end of the lever 412 is directly or indirectly connected to the separation support plate 41. The suction cup 43 is installed below the separation support plate 41.

[0033] In this embodiment, the main support plate 47 is provided with a mounting hole 48, and the end of the separation support plate 41 is disposed in the mounting hole 48. The end of the separation support plate 41 is installed together with the main support plate 47 through the first rotating shaft 49, so that it can rotate along the first rotating shaft 49.

[0034] In this embodiment, the suction cup 43 and the suction cup support base 44 are installed together. The suction cup support base 44 is mounted on the separation support plate 41 by suction cup mounting screws 45. The separation support plate 41 has a strip-shaped through hole 46. The suction cup mounting screws 45 are installed at the strip-shaped through hole 46. The position of the suction cup 43 can be adjusted by the suction cup mounting screws 45 to accommodate different mobile phone models. In this embodiment, three strip-shaped through holes 46 are provided, and the three strip-shaped through holes 46 are arranged in parallel. In specific implementation, one, two, or more strip-shaped through holes 46 can also be provided. When there are two or more strip-shaped through holes 46, the two or more strip-shaped through holes 46 are arranged in parallel.

[0035] In this embodiment, the suction cup 43 is a vacuum suction cup, which has a better adsorption effect. The suction cup 43 is directly or indirectly connected to the first vacuum pump 115 through the first vacuum tube 415. The first vacuum pump 115 can be set in the host or set separately. In specific implementation, the suction cup 43 can also adopt other forms of suction cup structure.

[0036] In this embodiment, a lifting rod 413 is installed on the lever 412 via a third pivot 414. The bottom of the lifting rod 413 is installed together with the separation support plate 41 via a fourth pivot 416. The lever 412 can pull the separation support plate 41 upward via the lifting rod 413, pull the suction cup 43 upward via the separation support plate 41, and pull the mobile phone screen via the suction cup 43, thereby separating the mobile phone screen from the mobile phone casing.

[0037] Please refer to the appendix for details. Figure 1 To be continued Figure 6 This utility model also protects a mobile phone screen separator, which mainly includes a host 1, a first clamping mechanism 2, a second clamping mechanism 3 and a disassembly suction cup bracket 4. The first clamping mechanism 2 and the second clamping mechanism 3 are respectively installed on the host 1, and the first clamping mechanism 2 and the second clamping mechanism 3 are arranged opposite to each other. The disassembly suction cup bracket 4 is installed on the host 1.

[0038] In this embodiment, the host 1 includes a chassis 11, a main support mechanism, a braking mechanism, a locking mechanism, and a support foot mechanism. The disassembly suction cup bracket 4 is installed above the main support mechanism, the locking mechanism and the support foot mechanism are respectively installed below the main support mechanism, and the support foot mechanism is installed on the chassis 11.

[0039] In this embodiment, the main support mechanism includes a main support plate 19, a sealing plate 110, a main pad plate 111, and a working platform 112. The sealing plate 110 is disposed above the main support plate 19, the main pad plate 111 is fixedly installed above the sealing plate 110, and the working platform 112 is fixedly installed on the sealing plate 110. The main pad plate 111 is disposed between the sealing plate 110 and the working platform 112. A vacuum adsorption port 113 is provided on the working platform 112, and the vacuum adsorption port 113 is connected to a second vacuum pump 116. The second vacuum pump 116 can be disposed inside the main unit chassis 11 or can be disposed separately. The main support plate 19 is installed above the locking mechanism and the support foot mechanism. In a specific implementation, the working platform 112 can also be directly installed above the locking mechanism and the support foot mechanism. In this embodiment, the locking mechanism includes a first support foot 12 and a first support plate 14 installed together. An electromagnet 16 is installed on the first support foot 12. The electromagnet 16 is directly or indirectly corresponding to the first support plate 14. In this embodiment, an iron sheet 117 is embedded on the first support plate 14. The electromagnet 16 is corresponding to the iron sheet 117. In a specific implementation, the first support plate 14 can also be made of iron plate, in which case the electromagnet 16 can be directly corresponding to the first support plate 14. The support foot mechanism includes a second support foot installed together. The support foot 13 and the second support plate 15 are provided. A spring limiting shaft (not shown in the figure) can also be installed on the second support foot 13. A spring (not shown in the figure) is fitted on the spring limiting shaft. One end of the spring abuts against the spring limiting shaft and the other end abuts against the second support plate 15. In the unlocked state, the spring provides a slight resistance state, making the rotation more stable. In specific implementation, the spring and the spring limiting shaft can also be omitted. When the electromagnet 16 is energized, the electromagnet 16 can be attracted together with the iron plate 117 or the first support plate 14 to realize the left and right locking of the locking mechanism. When the electromagnet 16 is de-energized, the electromagnet 16 can be disengaged from the iron plate 117 or the first support plate 14, and the working platform 112 can rotate freely left and right.

[0040] In this embodiment, a main rotating shaft 17 is installed inside the main support plate 19. The main rotating shaft 17 can rotate inside the main support plate 19. A sealing plate 110 is installed above the main rotating shaft 17. A braking device 18 is installed on the main support plate 19. The braking device 18 is set corresponding to the main rotating shaft 17.

[0041] In this embodiment, the first clamping mechanism 2 includes a clamping block fixing block 21, a first clamping block 22, a guide rod 23, a first support rod 24, a clamping top rod 25, and a retaining ring 26. The clamping block fixing block 21 is installed at one end of the working platform 112 via the first support rod 24. The clamping top rod 25 is inserted into the clamping block fixing block 21. In this embodiment, the clamping top rod 25 is provided with external threads, and the clamping block fixing block 21 is provided with internal threads. The clamping top rod 25 and the clamping block fixing block 21 are connected in a fixed manner. The blocks 21 are connected by threads. The first clamping block 22 is installed on the clamping block fixing block 21. In this embodiment, a retaining ring 26 is fixedly provided at the end of the clamping top rod 25. A hollow groove 11 is opened on the first clamping block 22, and the retaining ring 26 is set in the hollow groove 11. By rotating the clamping top rod 25, the first clamping block 22 can be pushed to move back and forth. In this embodiment, a guide rod 23 is installed on the first clamping block 22, and the guide rod 23 is inserted into the clamping block fixing block 21.

[0042] In this embodiment, the second clamping mechanism 3 includes a flipping support block 31, a fifth rotating shaft 32, and a second clamping block 33. The flipping support block 31 is mounted on the other end of the work platform 112 via the fifth rotating shaft 32, and the second clamping block 33 is mounted on the flipping support block 31. In this embodiment, the flipping support block 31 has an insertion slot 34, into which the main support plate 47 is inserted. The flipping support block 31 is provided with fixing screws 35, which can be used to fix the main support plate 47. In specific implementations, the main support plate 47 can also be directly or indirectly connected to the work platform 112 in other ways.

[0043] In this embodiment, a vacuum connection channel 37 is provided inside the flip support block 31. One end of the first vacuum tube 415 is connected to the suction cup 43, and the other end of the first vacuum tube 415 is connected to one connection port of the vacuum connection channel 37 inside the flip support block 31. A second vacuum tube 114 is connected to the other connection port of the vacuum connection channel 37 inside the flip support block 31. The main rotating shaft 17 adopts a hollow structure. The second vacuum tube 114 passes through the inside of the main rotating shaft 17 and is connected to the first vacuum pump 115 set in the main chassis 11.

[0044] When the first vacuum tube 415 does not pass through the second clamping mechanism 3, the other end of the first vacuum tube 415 is connected to the first vacuum pump 115 located in the main unit chassis 11 through a channel located inside the working platform 112 or at the bottom of the working platform 112.

[0045] In this embodiment, the first vacuum pump 115 and the second vacuum pump 116 can be two different vacuum pumps, which provide vacuum suction to the suction cup 43 and the working platform 112 respectively. In specific implementation, the first vacuum pump 115 and the second vacuum pump 116 can also be the same vacuum pump, which is connected to the suction cup 43 and the working platform 112 through different control valves, respectively, to provide vacuum suction to the suction cup 43 and the working platform 112.

[0046] In this embodiment, only one feasible structural configuration is provided for the first clamping mechanism 2 and the second clamping mechanism 3. In specific implementation, the first clamping mechanism 2 or the second clamping mechanism 3 can also adopt a structure with one end fixed and the other end movable. In implementation, this utility model can use only the clamping method of the first clamping mechanism 2 and the second clamping mechanism 3 to fix the mobile phone 5, or it can use only the suction method of the vacuum adsorption port 113 to fix the mobile phone 5, without setting the first clamping mechanism 2 and the second clamping mechanism 3.

[0047] The embodiments and accompanying drawings shown above represent preferred embodiments of this utility model. The specific structures of the host 1, the first clamping mechanism 2, and the second clamping mechanism 3 can be found in the structures of prior patents with authorization publication numbers CN 211992651 U and CN217890765 U, or other structures with clamping functions can also be used. In specific implementations, the mobile phone screen removal suction cup bracket can also be applied to the structures in the patent application with application publication number CN 110524483 A or the prior patent with authorization publication number CN 214519948 U, simply by ensuring that the main support plate 47 can be directly or indirectly fixed to the working platform 112.

[0048] In use, the mobile phone 5 is placed on the working platform 112. The clamping top rod 25 is rotated to push the first clamping block 22 to clamp the mobile phone. At the same time, the mobile phone casing is suctioned through the vacuum suction hole on the working platform 112, and the mobile phone screen is suctioned through the suction cup 43 installed on the separation support plate 41. The separation support rod 42 is rotated, and the separation support rod 42 presses the lever 412 downward. The other end of the lever 412 lifts the separation support plate 41 upward through the lifting rod 413, so that the separation support plate 41 rotates along the fourth rotating shaft 416. At the same time, the suction cup 43 drives the mobile phone screen to move upward, thus peeling off the mobile phone screen.

[0049] This invention uses a lever structure to lift the suction cup upwards. By utilizing the lever principle, the separation of the mobile phone screen from the mobile phone casing can be made easier and more effortless, resulting in a high yield rate.

Claims

1. A suction cup holder for detaching a mobile phone screen, characterized in that: The suction cup bracket includes a separation support plate (41), a separation rod (42), a main support plate (47), a lever support plate (410), a lever (412), and a suction cup (43). The separation support plate (41) is installed together with the main support plate (47) through a first rotating shaft (49). The lever support plate (410) is installed on the main support plate (47). The lever (412) is installed together with the lever support plate (410) through a second rotating shaft (411). The separation rod (42) is inserted into the lever support plate (410). The separation rod (42) is set at one end of the lever (412). The other end of the lever (412) is directly or indirectly connected to the separation support plate (41). The suction cup (43) is installed below the separation support plate (41).

2. The mobile phone screen removal suction cup bracket according to claim 1, characterized in that: The suction cup (43) is installed together with the suction cup support (44), and the suction cup support (44) is installed on the separation support plate (41) by suction cup mounting screws (45).

3. The mobile phone screen detachment suction cup bracket according to claim 2, characterized in that: The separation support plate (41) is provided with a strip-shaped through hole (46), and the suction cup mounting screw (45) is installed at the strip-shaped through hole (46). There is one or more strip-shaped through holes (46). When there are two or more strip-shaped through holes (46), the two or more strip-shaped through holes (46) are arranged in parallel.

4. The mobile phone screen removal suction cup bracket according to claim 1, characterized in that: The lever (412) is equipped with a lifting rod (413) via a third pivot (414), and the bottom of the lifting rod (413) is mounted on the separation support plate (41) via a fourth pivot (416).

5. The mobile phone screen removal suction cup bracket according to claim 1, characterized in that: The main support plate (47) is provided with mounting holes (48), and the end of the separation support plate (41) is set in the mounting holes (48).

6. The mobile phone screen detachment suction cup bracket according to claim 1, characterized in that: The suction cup (43) is a vacuum suction cup, and the suction cup (43) is directly or indirectly connected to the first vacuum pump (115) through the first vacuum tube (415).

7. A separator, characterized in that: The separator includes a working platform (112) and a disassembly suction cup bracket (4) as described in any one of claims 1 to 6, wherein the disassembly suction cup bracket (4) is directly or indirectly mounted together with the working platform (112).

8. The separator according to claim 7, characterized in that: The separator also includes a first clamping mechanism (2) and a second clamping mechanism (3), which are respectively installed at both ends of the working platform (112).

9. The separator according to claim 7, characterized in that: The working platform (112) is directly or indirectly installed above the locking mechanism and the support foot mechanism. The locking mechanism includes a first support foot (12) and a first support plate (14) installed together. An electromagnet (16) is installed on the first support foot (12). The electromagnet (16) directly or indirectly corresponds to the first support plate (14). When the electromagnet (16) indirectly corresponds to the first support plate (14), an iron sheet (117) is embedded on the first support plate (14).

10. The separator according to claim 8, characterized in that: The second clamping mechanism (3) includes a flip support block (31), a fifth rotating shaft (32), and a second clamping block (33). The flip support block (31) is mounted on the work platform (112) via the fifth rotating shaft (32), and the second clamping block (33) is mounted on the flip support block (31). The flip support block (31) has an insertion slot (34), and the main support plate (47) is inserted into the insertion slot (34). The flip support block (31) has a vacuum connection channel (37) inside, and one end of the first vacuum tube (415) is connected to the suction cup (43). The other end is connected to one port of the vacuum connection channel (37) inside the flip support block (31). The other port of the vacuum connection channel (37) inside the flip support block (31) is connected to a second vacuum tube (114). The second vacuum tube (114) passes through the main rotating shaft (17) and is connected to the first vacuum pump (115) set in the main machine housing (11). Alternatively, the other end of the first vacuum tube (415) is connected to the first vacuum pump (115) set in the main machine housing (11) through a channel set inside the working platform (112) or at the bottom of the working platform (112).

Citation Information

Patent Citations

  • Rotary glue removing and screen disassembling machine

    CN110524483A

  • Simple rotary glue removing and screen disassembling machine

    CN211992651U

  • Movable rotary glue-removing and screen-disassembling machine

    CN214519948U

  • Locking mechanism and rotary separator with same

    CN217890765U