Electronic product screen separating machine

By using an electromagnet locking structure and a vacuum adsorption device in the electronic product screen separation machine, the operation process is simplified, the locking reliability is improved, and it can adapt to different product models. This solves the problems of complex structure and inconvenient locking in the existing technology, and achieves efficient and reliable screen disassembly.

CN224360094UActive Publication Date: 2026-06-16DONGGUAN XINCHENGFA TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
DONGGUAN XINCHENGFA TECHNOLOGY CO LTD
Filing Date
2025-04-21
Publication Date
2026-06-16

AI Technical Summary

Technical Problem

Existing screen separation machines for electronic products are complex in structure, large in size, inconvenient to operate, and have poor locking effect, which affects maintenance efficiency and increases the risk of screen damage.

Method used

Electromagnets are used to lock the rotating and swaying support structure, combined with vacuum adsorption and adjustable clamping devices, which simplifies the operation process and improves the reliability of locking.

Benefits of technology

It reduces the skill requirements for operation, improves the efficiency of screen disassembly, reduces the risk of screen damage, adapts to different models of electronic products, and extends the service life of the equipment.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to an electronic product screen separating machine, and the separating machine includes a casing, a working structure, a rotary support structure and a swing support structure or a stand column support structure or a vertical plate support structure, the swing support structure or the stand column support structure or the vertical plate support structure is installed together with the casing, the rotary support structure is installed together with the swing support structure or the stand column support structure or the vertical plate support structure, a first electromagnet for fixing the rotary support structure is installed on the rotary support structure, and the working structure is installed on the rotary support structure. The utility model locks the operation of the rotating structure through the electromagnet, not only slows down the locking operation process, but also makes the locking operation more reliable, and the product service life is longer. The utility model adopts the flat structure and the light body design, and the maintenance personnel is convenient to operate, whether in the fixed maintenance place or the emergency maintenance outside, can easily carry and use.
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Description

Technical Field

[0001] This utility model relates to a separator, and more particularly to an electronic product screen separator, belonging to the technical field of electronic product repair tools. Background Technology

[0002] With the increasing prevalence of mobile phones, tablets, and similar smart electronic devices in people's lives, they have become almost an indispensable part of daily life. During use, these electronic products are inevitably subject to bumps and knocks, necessitating repairs. The repair process often requires separating the screen from the casing, a process currently handled using screen separation machines. These machines, also known as screen disassembly machines, are mostly complex in structure and large in size. When placed on a table, their work platform is too high, making manual operation difficult. Repair personnel often need to spend considerable time and effort on complex operations, which not only affects repair efficiency but also demands a high level of skill from the repair personnel. Furthermore, improper operation during the process can frequently lead to screen damage.

[0003] Furthermore, in current electronic product screen separators, the rotating parts can only be locked manually by operating the brake device if locking is required. This makes the structure relatively complex and inconvenient to operate. After prolonged use, wear and tear can easily occur, resulting in poor locking performance. Summary of the Invention

[0004] In view of the shortcomings of the existing screen separator products mentioned above, such as the relatively complex locking structure and inconvenience of use, this utility model provides a new type of screen separator for electronic products, which uses an electromagnet to lock the rotating structure, which not only slows down the locking process, but also makes the locking operation more reliable.

[0005] The technical solution adopted by this utility model to solve its technical problem is: an electronic product screen separator, the separator includes a housing, a working structure, a rotating support structure and a swing support structure or a column support structure or a plate support structure, the swing support structure or the column support structure or the plate support structure is installed together with the housing, the rotating support structure is installed together with the swing support structure or the column support structure or the plate support structure, a first electromagnet for fixing the rotating support structure is installed on the rotating support structure, and the working structure is installed on the rotating support structure.

[0006] The technical solution adopted by this utility model to solve its technical problem further includes:

[0007] The rotary support structure includes a fixed mounting plate and a main shaft. The fixed mounting plate is mounted on a rocking support structure, a column support structure, or a vertical plate support structure. The main shaft is inserted into the fixed mounting plate. The working structure is mounted on the top of the main shaft. A first electromagnet is embedded in the fixed mounting plate, and the first electromagnet is positioned corresponding to the working structure. Alternatively, the rotary support structure includes a heat insulation plate, a fixed mounting plate, and a main shaft. The heat insulation plate is mounted on a rocking support structure, a column support structure, or a vertical plate support structure. The main shaft is inserted into the fixed mounting plate and the heat insulation plate. The working structure is mounted on the top of the main shaft. The heat insulation plate is positioned below the fixed mounting plate. A first electromagnet is embedded in the fixed mounting plate and the heat insulation plate, and the first electromagnet is positioned corresponding to the working structure.

[0008] The working structure includes a working platform. When the working platform is made of a material that cannot be attracted by a magnet, an iron plate is installed below the working platform. The working platform is provided with a vacuum hole, which is connected to a vacuum pump through a vacuum tube.

[0009] The swing support structure includes a support frame, a support plate, and a rotating mounting plate. The support frame is inserted into the rotating mounting plate, and the rotating mounting plate is correspondingly arranged with the support plate. A second electromagnet is embedded in the support plate, and the second electromagnet is arranged corresponding to the rotating mounting plate.

[0010] The support plate is fitted with a first rotating shaft, and the support frame is mounted on the first rotating shaft.

[0011] The base plate is fixedly installed with two support bars, which are arranged in parallel, and a support plate is installed on the support bars.

[0012] The swing support structure includes a first support foot, a second support foot, a first support plate, a second support plate, a second rotating shaft, and a third rotating shaft. The first support foot and the second support foot are respectively fixedly installed on the face shell. The first support plate is installed on the first support foot through the second rotating shaft. The second support plate is installed on the second support foot through the third rotating shaft. The rotating support structure is installed above the first support plate and the second support plate.

[0013] The first support foot has a through hole, and the second electromagnet is installed in the through hole on the first support foot.

[0014] The swing support structure includes a mounting base, a transverse rotating shaft, a bearing housing, a second electromagnet, and a swing block. The bearing housing is fixedly installed inside the housing, and a bearing or bushing is installed inside the bearing housing. The transverse rotating shaft is inserted into the bearing or bushing. The mounting base is fixedly installed at one end of the transverse rotating shaft, and the swing block is fixedly installed at the other end of the transverse rotating shaft. The second electromagnet is set corresponding to the swing block, and the rotating support structure is installed on the mounting base.

[0015] A fixed iron plate is installed inside the casing. The fixed iron plate is positioned opposite to the rocking iron block. A spring groove is provided on the rocking iron block. A second spring is installed in the spring groove. One end of the second spring abuts against the rocking iron block, and the other end abuts against the fixed iron plate.

[0016] The beneficial effects of this utility model are as follows: This utility model uses an electromagnet to lock the rotating structure, which not only slows down the locking process but also makes the locking operation more reliable and extends the product's lifespan. This utility model adopts a flat structure and lightweight body design, making it convenient for maintenance personnel to operate. It can be easily carried and used whether in a fixed maintenance location or for emergency repairs. This utility model reduces the distance between the work platform and the desktop, making it more suitable for simple manual operation, lowering the skill requirements for maintenance personnel. Only simple training is needed to operate it, greatly improving screen disassembly efficiency and reducing screen damage during operation. This utility model uses an adjustable clamping device, allowing the screen disassembly machine to adapt to the disassembly of screens of different models and sizes of mobile phones and other electronic products, making it more versatile.

[0017] The present invention will be further described below with reference to the accompanying drawings and specific embodiments. Attached Figure Description

[0018] Figure 1 This is a three-dimensional structural diagram of Embodiment 1 of the present utility model.

[0019] Figure 2 This is a schematic diagram of the exploded state structure of Embodiment 1 of this utility model.

[0020] Figure 3 This is a three-dimensional structural diagram of another perspective of Embodiment 1 of this utility model.

[0021] Figure 4 This is a schematic diagram of the exploded state structure from another perspective of Embodiment 1 of this utility model.

[0022] Figure 5 This is a schematic diagram of the exploded state of the second clamping structure in this utility model.

[0023] Figure 6 This is a schematic diagram of the exploded state of the working structure in this utility model.

[0024] Figure 7 This is a schematic diagram of the exploded structure of the rotating part of the support plate in this utility model.

[0025] Figure 8 This is a three-dimensional structural diagram of Embodiment 2 of the present invention.

[0026] Figure 9 This is a schematic diagram of the exploded state structure of Embodiment 2 of this utility model.

[0027] Figure 10 This is a three-dimensional structural schematic diagram of another perspective of Embodiment 2 of this utility model.

[0028] Figure 11 This is a schematic diagram of the exploded state structure from another perspective of Embodiment 2 of this utility model.

[0029] Figure 12 This is a schematic diagram of the exploded state of the rocking support structure in Embodiment 2 of this utility model.

[0030] Figure 13 This is a three-dimensional structural diagram of Embodiment 3 of the present utility model.

[0031] Figure 14 This is a schematic diagram of the exploded state structure of Embodiment 3 of this utility model.

[0032] Figure 15 This is a three-dimensional structural diagram of another perspective of Embodiment 3 of this utility model.

[0033] Figure 16 This is a schematic diagram of the exploded state structure from another perspective of Embodiment 3 of this utility model.

[0034] Figure 17 This is a schematic diagram of the exploded state of the rocking support structure in Embodiment 3 of this utility model.

[0035] Figure 18 This is a three-dimensional structural diagram of Embodiment 4 of the present utility model.

[0036] Figure 19 This is a schematic diagram of the exploded state structure of Embodiment 4 of this utility model.

[0037] Figure 20 This is a three-dimensional structural diagram of Embodiment 5 of the present utility model.

[0038] Figure 21 This is a schematic diagram of the exploded state structure of Embodiment 5 of this utility model.

[0039] In the diagram, 1-face shell, 2-base plate, 3-lower cover, 4-support frame, 5-support bar, 6-support plate, 7-rotating mounting plate, 8-first friction plate, 9-vacuum pump, 10-first rotating shaft, 11-bearing, 12-working platform, 13-iron plate, 14-fixed mounting plate, 15-heat insulation plate, 16-spindle, 17-first clamping block, 18-first mounting pin, 19-clamping block fixing block, 20-second clamping block, 21-clamping top rod, 22-guide rod, 23-second mounting pin, 24-limiting screw, 25-second electromagnet, 26-first electromagnet, 27-limiting hole, 28-first spring, 29-air guide. 30-Mobile phone, 31-First support foot, 32-Second support foot, 33-First support plate, 34-Second support plate, 35-Second rotating shaft, 36-Third rotating shaft, 37-Second friction plate, 38-Limiting shaft, 39-Electromagnet mounting hole, 40-Cover plate, 41-Side baffle, 42-Mounting base, 43-Horizontal rotating shaft, 44-Bearing seat, 45-Electromagnet fixing base, 46-Electromagnet clamp, 47-Fixing iron plate, 48-Swinging iron block, 49-Second spring, 50-Spring groove, 51-Vacuum pump clamp, 52-Vacuum tube, 53-Disassembly suction cup structure, 54-Upright plate support structure, 55-Column support structure. Detailed Implementation

[0040] 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.

[0041] Please refer to the appendix for details. Figure 1 To be continued Figure 12This utility model protects an electronic product screen separator, which mainly includes a housing, a working structure, a rotating support structure, and a swing support structure or column support structure or plate support structure. The swing support structure or column support structure or plate support structure is installed together with the housing. A second electromagnet 25 is installed on the swing support structure for fixing the swing support structure. The second electromagnet 25 can control whether the swing support structure can swing, thereby controlling the working angle adjustment of the working structure. When angle adjustment is required, the second electromagnet 25 is de-energized, allowing the working structure to swing freely for angle adjustment. After adjustment to the appropriate position, the second electromagnet 25 is energized to lock the swing support structure. The rotating support structure is installed together with the swaying support structure, column support structure, or plate support structure. A first electromagnet 26 for fixing the rotating support structure is installed on the rotating support structure. The working structure is installed on the rotating support structure. The first electromagnet 26 can control whether the rotating support structure can swing, thereby controlling the working direction adjustment of the working structure. When direction adjustment is required, the first electromagnet 26 is de-energized, allowing the working structure to rotate freely for direction adjustment. After adjustment to the appropriate direction, the first electromagnet 26 is energized to lock the rotating support structure, thereby maintaining the working structure fixed in the set direction.

[0042] The present invention will be further described below with reference to two specific embodiments:

[0043] Example 1: Please refer to the attached document. Figure 1 To be continued Figure 7 In this embodiment, the housing includes a front cover 1 and a bottom plate 2, which are mounted together. In this embodiment, the bottom plate 2 is plate-shaped and fixedly installed at the bottom of the front cover 1. The front cover 1 has an approximately "L"-shaped structure, with one side higher and the other side lower. The higher side has a storage space for easily placing the control system and internal components of this invention. The working structure is positioned corresponding to the lower side, thus significantly reducing the height of the working structure. When in use, this invention can be placed on a table, allowing the user to easily operate the electronic products on the working structure by resting their elbows on the table. This not only reduces the skill requirements for maintenance personnel, requiring only simple training to operate, but also greatly improves screen disassembly efficiency and reduces screen damage during operation.

[0044] In this embodiment, a vacuum pump 9 is installed on the base plate 2. The vacuum pump 9 is positioned on the higher side of the face shell 1 and is located in the accommodating space on the face shell 1.

[0045] In this embodiment, a lower cover 3 is fixedly installed on the bottom of the base plate 2.

[0046] In this embodiment, the swaying support structure mainly includes a support frame 4, a support plate 6, and a rotating mounting plate 7. The support frame 4 is directly or indirectly mounted on the housing, and is inserted into the rotating mounting plate 7. The rotating mounting plate 7 and the support plate 6 are correspondingly arranged. In this embodiment, a first rotating shaft 10 is inserted into the support plate 6, and the support frame 4 is fitted onto the first rotating shaft 10. A bearing 11 is fitted onto the first rotating shaft 10, and the bearing 11 is embedded in the support frame 4, which allows for smoother rotation.

[0047] In this embodiment, support bars 5 are fixedly installed on the base plate 2. There are two support bars 5, which are arranged in parallel. In specific implementation, one or more support bars 5 can be set according to actual needs, or other structural forms can be used to support the support frame 4. Support plate 6 is installed on support bars 5.

[0048] In this embodiment, a limiting hole 27 is provided on the rotating mounting plate 7, and a limiting screw 24 is installed on the support plate 6. The limiting screw 24 is disposed in the limiting hole 27 and passes through the limiting hole 27 to be installed on the support plate 6. A first spring 28 is fitted on the limiting screw 24. One end of the first spring 28 abuts against the screw cap of the limiting screw 24, and the other end abuts against the rotating mounting plate 7. A first friction plate 8 is embedded on the support plate 6. The first friction plate 8 is located between the support plate 6 and the rotating mounting plate 7. A certain friction force can be provided by the first friction plate 8 and the first spring 28 to generate a slight resistance between the support plate 6 and the rotating mounting plate 7. This does not affect the relative rotation between the support plate 6 and the rotating mounting plate 7, but it also does not allow the support plate 6 and the rotating mounting plate 7 to rotate freely.

[0049] In this embodiment, the second electromagnet 25 is embedded in the support plate 6 and is positioned corresponding to the rotating mounting plate 7. When the second electromagnet 25 is activated, it can attract the rotating mounting plate 7, thus fixing the support plate 6 and the rotating mounting plate 7 relative to each other and preventing them from rotating relative to each other. When the second electromagnet 25 is not working, the support plate 6 and the rotating mounting plate 7 return to a state where they can rotate relative to each other.

[0050] In this embodiment, the rotating support structure mainly includes a fixed mounting plate 14, a heat insulation plate 15, and a main shaft 16. The fixed mounting plate 14 is directly or indirectly mounted on the support frame 4, which can provide overall support for the working structure. The main shaft 16 is inserted into the fixed mounting plate 14 and can rotate freely within the fixed mounting plate 14. The working structure is mounted on the top of the main shaft 16. The heat insulation plate 15 is located below the fixed mounting plate 14 and is mounted on the support frame 1. Since the fixed mounting plate 14 is equipped with an electric heating device (heating wire or heating block), it will generate heat during operation and the temperature will be high. Setting the heat insulation plate 15 can effectively reduce its impact on the support frame 4, etc. In specific implementation, the heat insulation plate 15 can also be omitted, and the fixed mounting plate 14 can be directly mounted on the support frame 4. In this embodiment, a first electromagnet 26 is embedded in the mounting plate 14. The first electromagnet 26 is configured corresponding to the working structure. When the first electromagnet 26 is activated, it can attract the working structure, fixing the working structure and the mounting plate 14 relative to each other, preventing relative rotation. When the first electromagnet 26 is deactivated, the working structure and the mounting plate 14 return to a state where relative rotation is possible. In this embodiment, the working structure mainly includes a working platform 12, on which the electronic equipment to be repaired can be placed and fixed. When the work platform 12 is made of iron (or steel that can be attracted by a magnet), it can be directly attracted by the first electromagnet 26. When the work platform 12 is made of aluminum alloy, stainless steel, copper or other metal or non-metal materials that cannot be attracted by a magnet, an iron plate 13 (or a steel plate that can be attracted by a magnet) can be fixedly embedded at the bottom of the work platform 12. The iron plate 13 can rotate with the work platform 12. When in use, the iron plate 13 is attracted by the first electromagnet 26, thereby fixing the work platform 12 and preventing it from rotating.

[0051] In this embodiment, a gas guide groove 29 is provided on the top of the working platform 12, and a vacuum hole is provided inside the working platform 12. The vacuum hole is connected to the vacuum pump 9 through a vacuum tube, and the vacuum pump 9 can generate a vacuum adsorption force to adsorb and fix the electronic products placed on the working platform 12. In this embodiment, the spindle 16 has a hollow structure in the middle. Vacuum tubes and heating device control wires in the working platform 12 can pass through the hollow structure in the middle of the spindle 16 and connect to the working platform 12, which can effectively reduce entanglement and damage during use.

[0052] In this embodiment, a handle (not shown in the figure) is fixedly installed on the side of the work platform 12. Since the work platform 12 gets very hot during operation, directly adjusting its position by hand poses a risk of burns. In this embodiment, a handle is fixedly installed on the side of the work platform 12, which can be easily adjusted by the handle and can effectively prevent burns.

[0053] In this embodiment, a first clamping structure and a second clamping structure are installed above the work platform 12, and the first clamping structure and the second clamping structure are arranged opposite to each other on both sides of the work platform 12.

[0054] In this embodiment, the first clamping structure includes a first clamping block 17 and a first mounting pin 18. The first mounting pin 18 is inserted into the working platform 12, and the first clamping block 17 is mounted on the first mounting pin 18.

[0055] In this embodiment, the second clamping structure includes a clamping block fixing block 19, a second clamping block 20, a clamping top rod 21, and a guide rod 22. The clamping block fixing block 19 is mounted on the working platform 12 by a second mounting pin. The clamping top rod 21 is inserted into the clamping block fixing block 19 and is mounted together with the second clamping block 20. The guide rod 22 is fixedly mounted on the second clamping block 20 and can extend and retract with the second clamping block 20. The guide rod 22 is arranged parallel to the clamping top rod 21. The structure of the guide rod 22 can increase the stability of the movement of the second clamping block 20.

[0056] In this embodiment, only one feasible structural configuration is provided for the first clamping structure and the second clamping structure. In specific implementation, the first clamping structure and the second clamping structure can also be movable at both ends. When implementing this invention, only the clamping method of the first clamping structure and the second clamping structure can be used to fix electronic products such as mobile phones, or only the vacuum adsorption method can be used to fix electronic products such as mobile phones, without providing the first clamping structure and the second clamping structure.

[0057] The embodiments and figures shown above are preferred embodiments of the present invention. The specific structures of the first clamping structure and the second clamping structure can be found in the structures of prior patents with authorization announcement numbers CN 211992651 U and CN 217890765 U, or other structures with clamping functions can also be used.

[0058] Example 2: Please refer to the appendix. Figure 8 To be continued Figure 12 In this embodiment, the housing includes a front shell 1 and a bottom plate 2, which are installed together.

[0059] In this embodiment, the base plate 2 is plate-shaped and fixedly installed at the bottom of the faceplate 1. The faceplate 1 has a shape that is high at both ends and low in the middle. In specific implementation, it can also be designed to be of the same height or a structure that is high on one side and low on the other. The higher part is provided with a storage space, which can easily place the control system and internal components of this utility model. The working structure is set at the lower middle position, which can greatly reduce the height of the working structure. When using this utility model, it can be placed on a table, and the user can rest their elbow on the table to easily operate the electronic products on the working structure. This not only reduces the skill requirements for maintenance personnel, who can operate it with only simple training, but also greatly improves the efficiency of screen disassembly and reduces damage to the screen during operation.

[0060] In this embodiment, a vacuum pump (not shown in the figure) is installed on the base plate 2. The vacuum pump is located at a higher position on the face shell 1 and is located in the accommodating space on the face shell 1.

[0061] In this embodiment, the rocking support structure mainly includes a first support foot 31, a second support foot 32, a first support plate 33, a second support plate 34, a second rotating shaft 35, and a third rotating shaft 36. The first support foot 31 and the second support foot 32 are respectively fixedly installed on the face shell 1. The first support plate 33 is installed on the first support foot 31 through the second rotating shaft 35, and the second support plate 34 is installed on the second support foot 32 through the third rotating shaft 36. The second rotating shaft 35 and the third rotating shaft 36 are coaxially arranged, and the working structure is installed above the first support plate 33 and the second support plate 34.

[0062] In this embodiment, the faceplate 1 is provided with an electromagnet mounting hole 39, and the second electromagnet 25 is installed in the electromagnet mounting hole 39. The first support foot 31 is provided with a through hole, and the second electromagnet 25 is positioned relative to the through hole on the first support foot 31. In this embodiment, the first support plate 33 is embedded with a second friction plate 37, which is made of iron. The second friction plate 37 is positioned corresponding to the second electromagnet 25. In specific implementation, the first support plate 33 can also be made of iron plate, in which case the second electromagnet 25 can be directly positioned corresponding to the first support plate 33. In this embodiment, a spring limiting shaft 38 is installed on the second support foot 32, and a spring (not shown in the figure) is fitted on the spring limiting shaft 38. One end of the spring abuts against the spring limiting shaft 38, and the other end abuts against the second support plate 34. In the unlocked state, the spring provides a slight resistance state, making the rotation more stable. In specific implementation, the spring and spring limiting shaft may not be set. When in use, when the second electromagnet 25 is energized, the second electromagnet 25 can be attracted together with the second friction plate 37 or the first support plate 33 to achieve left and right locking. When the second electromagnet 25 is de-energized, the second electromagnet 25 can disengage from the second friction plate 37 or the first support plate 33, and the working structure can swing freely left and right.

[0063] In this embodiment, the rotating support structure mainly includes a fixed mounting plate 14, a heat insulation plate 15, and a main shaft 16. The fixed mounting plate 14 is directly or indirectly installed on the first support plate 33 and the second support plate 34, which can provide overall support for the working structure. The main shaft 16 is inserted into the fixed mounting plate 14 and can rotate freely within the fixed mounting plate 14. The working structure is installed on the top of the main shaft 16. The heat insulation plate 15 is located below the fixed mounting plate 14 and is installed on the support frame 1. Since the fixed mounting plate 14 is equipped with an electric heating device (heating wire or heating block), it will generate heat during operation and the temperature will be high. The heat insulation plate 15 can effectively reduce its impact on the first support plate 33 and the second support plate 34. In specific implementation, the heat insulation plate 15 may not be installed, and the fixed mounting plate 14 may be directly installed on the first support plate 33 and the second support plate 34, or the first support plate 33 and the second support plate 34 may be made of heat-insulating materials such as bakelite. In this embodiment, a first electromagnet 26 is embedded in the fixed mounting plate 14. The first electromagnet 26 is set corresponding to the working structure. When the first electromagnet 26 is activated, it can attract the working structure, so that the working structure and the fixed mounting plate 14 are relatively fixed and cannot rotate relative to each other. When the first electromagnet 26 is not working, the working structure and the fixed mounting plate 14 return to a state where they can rotate relative to each other.

[0064] In this embodiment, the working structure mainly includes a working platform 12, on which the electronic device to be repaired can be placed and fixed. When the working platform 12 is made of ferrous material (or steel material that can be attracted by a magnet), it can be directly attracted by the first electromagnet 26. When the working platform 12 is made of aluminum alloy, stainless steel, copper, or other metal or non-metal materials that cannot be attracted by a magnet, an iron plate 13 (or a steel plate that can be attracted by a magnet) can be fixedly embedded at the bottom of the working platform 12. The iron plate 13 can rotate with the working platform 12. In use, the iron plate 13 is attracted by the first electromagnet 26, thereby fixing the working platform 12 and preventing it from rotating.

[0065] In this embodiment, a gas guide groove 29 is provided on the top of the working platform 12, and a vacuum hole is provided inside the working platform 12. The vacuum hole is connected to the vacuum pump 9 through a vacuum tube, and the vacuum pump 9 can generate a vacuum adsorption force to adsorb and fix the electronic products placed on the working platform 12. In this embodiment, the spindle 16 has a hollow structure in the middle. Vacuum tubes and heating device control wires in the working platform 12 can pass through the hollow structure in the middle of the spindle 16 and connect to the working platform 12, which can effectively reduce entanglement and damage during use.

[0066] In this embodiment, a handle (not shown in the figure) is fixedly installed on the side of the work platform 12. Since the work platform 12 gets very hot during operation, directly adjusting its position by hand poses a risk of burns. In this embodiment, a handle is fixedly installed on the side of the work platform 12, which can be easily adjusted by the handle and can effectively prevent burns.

[0067] In this embodiment, a first clamping structure and a second clamping structure are installed above the work platform 12, and the first clamping structure and the second clamping structure are arranged opposite to each other on both sides of the work platform 12.

[0068] In this embodiment, the first clamping structure includes a first clamping block 17 and a first mounting pin 18. The first mounting pin 18 is inserted into the working platform 12, and the first clamping block 17 is mounted on the first mounting pin 18.

[0069] In this embodiment, the second clamping structure includes a clamping block fixing block 19, a second clamping block 20, a clamping top rod 21, and a guide rod 22. The clamping block fixing block 19 is mounted on the working platform 12 by a second mounting pin. The clamping top rod 21 is inserted into the clamping block fixing block 19 and is mounted together with the second clamping block 20. The guide rod 22 is fixedly mounted on the second clamping block 20 and can extend and retract with the second clamping block 20. The guide rod 22 is arranged parallel to the clamping top rod 21. The structure of the guide rod 22 can increase the stability of the movement of the second clamping block 20.

[0070] In this embodiment, only one feasible structural configuration is provided for the first clamping structure and the second clamping structure. In specific implementation, the first clamping structure and the second clamping structure can also be movable at both ends. When implementing this invention, only the clamping method of the first clamping structure and the second clamping structure can be used to fix electronic products such as mobile phones, or only the vacuum adsorption method can be used to fix electronic products such as mobile phones, without providing the first clamping structure and the second clamping structure.

[0071] The embodiments and figures shown above are preferred embodiments of the present invention. The specific structures of the first clamping structure and the second clamping structure can be found in the structures of prior patents with authorization announcement numbers CN 211992651 U and CN 217890765 U, or other structures with clamping functions can also be used.

[0072] Example 3: Please refer to the appendix for details. Figure 13 To be continued Figure 17In this embodiment, the housing includes a front cover 1 and a bottom plate 2, which are mounted together. In this embodiment, the bottom plate 2 is plate-shaped and fixedly installed at the bottom of the front cover 1. The front cover 1 has an approximately "L"-shaped structure, with one side higher and the other side lower. The higher side has a storage space for easily placing the control system and internal components of this invention. The working structure is positioned corresponding to the lower side, thus significantly reducing the height of the working structure. When in use, this invention can be placed on a table, allowing the user to easily operate the electronic products on the working structure by resting their elbows on the table. This not only reduces the skill requirements for maintenance personnel, requiring only simple training to operate, but also greatly improves screen disassembly efficiency and reduces screen damage during operation.

[0073] In this embodiment, a vacuum pump 9 is installed on the base plate 2. The vacuum pump 9 is positioned on the higher side of the face shell 1. The vacuum pump 9 is located in the accommodating space on the face shell 1. The vacuum pump 9 is installed on the base plate 2 by a vacuum pump clamp 51.

[0074] In this embodiment, a lower cover 3 is fixedly installed on the bottom of the base plate 2.

[0075] In this embodiment, the swing support structure mainly includes a mounting base 42, a transverse rotating shaft 43, a bearing seat 44, a second electromagnet 25, and a swing block 48. The bearing seat 44 is fixedly installed inside the housing. In this embodiment, the bearing seat 44 is installed on the front shell 1. A bearing (not shown in the figure) or a bushing is installed inside the bearing seat 44. The transverse rotating shaft 43 is inserted into the bearing or bushing so that it can rotate inside the bearing or bushing. The mounting base 42 is fixedly installed at one end of the transverse rotating shaft 43, and the swing block 48 is fixedly installed at the other end of the transverse rotating shaft 43. The second electromagnet 25 is set corresponding to the swing block 48. The second electromagnet 25 can attract the swing block 48 and swing it to fix it. Since the swing block 48, the transverse rotating shaft 43, and the mounting base 42 are fixedly installed together, fixing the swing block 48 by the second electromagnet 25 is equivalent to fixing the mounting base 42. The rotating support structure is installed on the mounting base 42.

[0076] In this embodiment, an electromagnet mounting base 45 is fixedly installed inside the face shell 1, and an electromagnet clamp 46 is installed on the electromagnet mounting base 45. The second electromagnet 25 is installed together with the electromagnet mounting base 45 through the electromagnet clamp 46. In specific implementation, the electromagnet mounting base 45 can also be fixedly installed on the base plate 2.

[0077] In this embodiment, a fixed iron plate 47 is fixedly installed inside the faceplate 1. The fixed iron plate 47 is arranged opposite to the rocking iron block 48. A spring groove 50 is provided on the rocking iron block 48. A second spring 49 is provided in the spring groove 50. One end of the second spring 49 abuts against the rocking iron block 48 and the other end abuts against the fixed iron plate 47. A certain frictional force can be provided between the second spring 49 and the fixed iron plate 47 to generate a slight resistance between the rocking iron block 48 and the fixed iron plate 47. This does not affect the relative rotation between the rocking iron block 48 and the fixed iron plate 47, but it also does not allow the rocking iron block 48 and the fixed iron plate 47 to rotate freely.

[0078] In this embodiment, the rotating support structure mainly includes a fixed mounting plate 14, a heat insulation plate 15, and a main shaft 16. The fixed mounting plate 14 is installed on the mounting base 42 and can provide overall support for the working structure. The main shaft 16 is inserted into the fixed mounting plate 14 and can rotate freely within the fixed mounting plate 14. The working structure is installed on the top of the main shaft 16. The heat insulation plate 15 is located below the fixed mounting plate 14 and is installed on the support frame 1. Since the fixed mounting plate 14 is equipped with an electric heating device (heating wire or heating block), it will generate heat during operation and the temperature will be high. The heat insulation plate 15 can effectively reduce its impact on the mounting base 42, etc. In specific implementation, the heat insulation plate 15 can also be omitted, and the fixed mounting plate 14 can be directly installed on the mounting base 42. In this embodiment, a first electromagnet 26 is embedded in the fixed mounting plate 14. The first electromagnet 26 is set corresponding to the working structure. When the first electromagnet 26 is activated, it can attract the working structure, so that the working structure and the fixed mounting plate 14 are relatively fixed and cannot rotate relative to each other. When the first electromagnet 26 is not working, the working structure and the fixed mounting plate 14 return to a state where they can rotate relative to each other.

[0079] In this embodiment, the working structure mainly includes a working platform 12, on which the electronic device to be repaired can be placed and fixed. When the working platform 12 is made of ferrous material (or steel material that can be attracted by a magnet), it can be directly attracted by the first electromagnet 26. When the working platform 12 is made of aluminum alloy, stainless steel, copper, or other metal or non-metal materials that cannot be attracted by a magnet, an iron plate 13 (or a steel plate that can be attracted by a magnet) can be fixedly embedded at the bottom of the working platform 12. The iron plate 13 can rotate with the working platform 12. In use, the iron plate 13 is attracted by the first electromagnet 26, thereby fixing the working platform 12 and preventing it from rotating.

[0080] In this embodiment, a gas guide groove 29 is provided on the top of the working platform 12, and a vacuum hole is provided inside the working platform 12. The vacuum hole is connected to the vacuum pump 9 through a vacuum tube 52. The vacuum pump 9 can generate a vacuum adsorption force to adsorb and fix electronic products placed on the working platform 12. In this embodiment, the spindle 16 has a hollow structure in the middle. The vacuum tube 52 and the heating device control wires in the working platform 12 can pass through the hollow structure in the middle of the spindle 16 and connect to the working platform 12, which can effectively reduce entanglement and damage during use.

[0081] In this embodiment, a handle (not shown in the figure) is fixedly installed on the side of the work platform 12. Since the work platform 12 gets very hot during operation, directly adjusting its position by hand poses a risk of burns. In this embodiment, a handle is fixedly installed on the side of the work platform 12, which can be easily adjusted by the handle and can effectively prevent burns.

[0082] In this embodiment, a first clamping mechanism and a second clamping structure are installed above the work platform 12, and the first clamping mechanism and the second clamping structure are arranged opposite to each other on both sides of the work platform 12.

[0083] In this embodiment, the first clamping mechanism includes a first clamping block 17 and a first mounting pin 18. The first mounting pin 18 is inserted into the working platform 12, and the first clamping block 17 is mounted on the first mounting pin 18.

[0084] In this embodiment, the second clamping structure includes a clamping block fixing block 19, a second clamping block 20, a clamping top rod 21, and a guide rod 22. The clamping block fixing block 19 is mounted on the working platform 12 by a second mounting pin. The clamping top rod 21 is inserted into the clamping block fixing block 19 and is mounted together with the second clamping block 20. The guide rod 22 is fixedly mounted on the second clamping block 20 and can extend and retract with the second clamping block 20. The guide rod 22 is arranged parallel to the clamping top rod 21. The structure of the guide rod 22 can increase the stability of the movement of the second clamping block 20.

[0085] In this embodiment, only one feasible structural configuration is provided for the first clamping mechanism and the second clamping mechanism. In specific implementation, the first clamping mechanism and the second clamping mechanism can also be structures with movable ends. In implementation, this utility model can be used to fix mobile phones and other electronic products by using only the clamping method of the first clamping mechanism and the second clamping mechanism, or it can be used to fix mobile phones and other electronic products by using only vacuum adsorption, without setting up the first clamping mechanism and the second clamping mechanism.

[0086] The embodiments and figures shown above are preferred embodiments of the present invention. The specific structures of the first clamping mechanism and the second clamping mechanism can be found in the structures of prior patents with authorization announcement numbers CN 211992651 U and CN 217890765 U, or other structures with clamping functions can also be used.

[0087] Example 4: Please refer to the appendix for details. Figure 18 and attached Figure 19 The structure of this embodiment is basically the same as that of embodiment two, and the similarities will not be repeated here. The difference is that in this embodiment, the swing support structure is not set, but the upright support structure 54 is installed on the housing 1. There are two upright support structures 54. In specific implementation, the number can be set according to actual needs. The two upright support structures 54 are fixedly installed on the top of the housing 1, and the rotating support structure is fixedly installed on the top of the two upright support structures 54.

[0088] Example 5: Please refer to the appendix for details. Figure 20 and attached Figure 21 The structure of this embodiment is basically the same as that of embodiment four, and the similarities will not be repeated here. The difference is that in this embodiment, the column support structure 55 is used instead of the upright plate support structure 54 in embodiment four. There are four column support structures 55. In specific implementation, the number can also be set according to actual needs (such as six, eight, etc.). The four column support structures 55 are fixedly installed on the top of the casing 1, and the rotating support structure is fixedly installed on the top of the four column support structures 55. In this embodiment, the four column support structures 55 are respectively set at the four corner positions of the rotating support structure.

[0089] Embodiments 4 and 5 include a disassembly suction cup structure 53. This structure is not the focus of this utility model. For its specific structure, please refer to the applicant's prior patent application.

[0090] In use, this utility model places electronic products such as mobile phones 30 on the working platform 12, with one end of the mobile phone 30 abutting against the first clamping block 17. The clamping top rod 21 is rotated to push the second clamping block 20 to clamp the mobile phone or other electronic products. At the same time, the air guide groove 29 and vacuum hole on the working platform 12 are used to suction the outer shell of the mobile phone or other electronic products, and the screen is separated by other separation mechanisms.

[0091] This invention uses an electromagnet to lock the rotating structure, which not only slows down the locking process but also makes the locking operation more reliable and extends the product's lifespan. The flat structure and lightweight design make it easy for repair personnel to operate, whether in a fixed repair location or for emergency repairs. The reduced distance between the work platform and the desktop makes it more suitable for simple manual operation, lowering the skill requirements for repair personnel. Only simple training is needed to operate it, greatly improving screen removal efficiency and reducing screen damage during operation. The adjustable clamping device allows the screen removal machine to adapt to the screen removal of different models and sizes of mobile phones and other electronic products, enhancing its versatility.

Claims

1. An electronic product screen separator, characterized in that: The separator includes a housing, a working structure, a rotating support structure, and a rocking support structure or a column support structure (55) or a plate support structure (54). The rocking support structure or the column support structure (55) or the plate support structure (54) is installed together with the housing. The rotating support structure is installed together with the rocking support structure or the column support structure (55) or the plate support structure (54). A first electromagnet (26) for fixing the rotating support structure is installed on the rotating support structure. The working structure is installed on the rotating support structure.

2. The electronic product screen separator according to claim 1, characterized in that: The rotating support structure includes a fixed mounting plate (14) and a main shaft (16). The fixed mounting plate (14) is mounted on a rocking support structure, a column support structure (55), or a vertical plate support structure (54). The main shaft (16) is inserted into the fixed mounting plate (14). The working structure is mounted on the top of the main shaft (16). A first electromagnet (26) is embedded in the fixed mounting plate (14), and the first electromagnet (26) is set corresponding to the working structure. Alternatively, the rotating support structure includes a heat insulation plate (15) and a fixed mounting plate (16). Mounting plate (14) and main shaft (16), heat insulation plate (15) are mounted on swing support structure or column support structure (55) or plate support structure (54), main shaft (16) is inserted into fixed mounting plate (14) and heat insulation plate (15), working structure is mounted on top of main shaft (16), heat insulation plate (15) is set below fixed mounting plate (14), first electromagnet (26) is embedded on fixed mounting plate (14) and heat insulation plate (15), first electromagnet (26) is set corresponding to working structure.

3. The electronic product screen separator according to claim 1, characterized in that: The working structure includes a working platform (12). When the working platform (12) is made of a material that cannot be attracted by a magnet, an iron plate (13) is installed below the working platform (12). The working platform (12) is provided with a vacuum hole, which is connected to a vacuum pump through a vacuum tube.

4. The electronic product screen separator according to claim 1, 2, or 3, characterized in that: The swing support structure includes a support frame (4), a support plate (6) and a rotating mounting plate (7). The support frame (4) is inserted into the rotating mounting plate (7). The rotating mounting plate (7) is correspondingly arranged with the support plate (6). The support plate (6) is embedded with a second electromagnet (25). The second electromagnet (25) is correspondingly arranged with the rotating mounting plate (7).

5. The electronic product screen separator according to claim 4, characterized in that: The support plate (6) is fitted with a first rotating shaft (10), and the support frame (4) is fitted onto the first rotating shaft (10).

6. The electronic product screen separator according to claim 4, characterized in that: The casing includes a front shell (1) and a bottom plate (2). The front shell (1) and the bottom plate (2) are installed together. A support bar (5) is fixedly installed on the bottom plate (2). There are two support bars (5), which are arranged in parallel. A support plate (6) is installed on the support bar (5).

7. The electronic product screen separator according to claim 1, 2, or 3, characterized in that: The swing support structure includes a first support foot (31), a second support foot (32), a first support plate (33), a second support plate (34), a second rotating shaft (35), and a third rotating shaft (36). The first support foot (31) and the second support foot (32) are respectively fixedly installed on the face shell (1). The first support plate (33) is installed on the first support foot (31) through the second rotating shaft (35). The second support plate (34) is installed on the second support foot (32) through the third rotating shaft (36). The rotating support structure is installed above the first support plate (33) and the second support plate (34).

8. The electronic product screen separator according to claim 7, characterized in that: The first support foot (31) has a through hole, and the second electromagnet (25) is installed in the through hole on the first support foot (31).

9. The electronic product screen separator according to claim 1, 2, or 3, characterized in that: The swing support structure includes a mounting base (42), a transverse rotating shaft (43), a bearing housing (44), a second electromagnet (25), and a swing block (48). The bearing housing (44) is fixedly installed inside the housing, and a bearing or bushing is installed inside the bearing housing (44). The transverse rotating shaft (43) is inserted into the bearing or bushing. The mounting base (42) is fixedly installed at one end of the transverse rotating shaft (43), and the swing block (48) is fixedly installed at the other end of the transverse rotating shaft (43). The second electromagnet (25) is set corresponding to the swing block (48), and the rotating support structure is installed on the mounting base (42).

10. The electronic product screen separator according to claim 9, characterized in that: A fixed iron plate (47) is installed inside the casing. The fixed iron plate (47) is arranged opposite to the rocking iron block (48). A spring groove (50) is provided on the rocking iron block (48). A second spring (49) is provided in the spring groove (50). One end of the second spring (49) abuts against the rocking iron block (48), and the other end abuts against the fixed iron plate (47).

Citation Information

Patent Citations

  • Simple rotary glue removing and screen disassembling machine

    CN211992651U

  • Locking mechanism and rotary separator with same

    CN217890765U