Multi-station mobile phone battery pressing equipment

The automated design of the multi-station mobile phone battery pressing equipment solves the problems of uneven battery pressing and low efficiency in manual operation, and achieves uniform pressing and high-efficiency production.

CN223917171UActive Publication Date: 2026-02-17四川华平通讯设备有限公司
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Patent Information

Application Number
CN202520599872.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-01
Publication Date
2026-02-17
Estimated Expiration
2035-04-01

AI Technical Summary

Technical Problem

The existing manual battery pressing process suffers from uneven force, leading to product quality issues. Furthermore, the dual-station operation is inefficient, causes high employee fatigue, and results in long waiting times.

Method used

The multi-station mobile phone battery pressing equipment includes a flipping feeding module, a multi-station transverse pressing module, and an automatic pick-and-place module. Through the coordinated work of the flipping component, transverse component, pressing component, pick-and-place component, and unloading component, the fully automated pressing process is achieved.

Benefits of technology

This achieved uniform battery bonding, reduced product return rate, improved production efficiency, and reduced employee fatigue and wasted working hours.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of electronic equipment production, in particular to multi-station mobile phone battery pressing equipment. The device comprises a turning and feeding module, a multi-station transverse movement press-fit module and an automatic material taking and placing module, the automatic material taking and placing module is in butt joint with the turning and feeding module and the multi-station transverse movement press-fit module, the turning and feeding module comprises a turning assembly and a feeding assembly, and the multi-station transverse movement press-fit module comprises a transverse movement assembly and a press-fit assembly. The automatic material taking and placing module comprises a material taking assembly and a discharging assembly, the overturning assembly overturns materials and then feeds the materials into the feeding assembly, the material taking assembly transfers the materials from the feeding assembly to the transverse moving assembly, the transverse moving assembly feeds the materials into the pressing assembly, and the discharging assembly sends out the materials pressed on the transverse moving assembly. According to the equipment, a full-automatic pressing scheme is adopted, the problem of non-uniform manual operation strength is solved, the product repair rate is effectively reduced, and the product quality is greatly improved.
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Description

Technical Field

[0001] This utility model relates to the field of electronic equipment manufacturing technology, and in particular to a multi-station mobile phone battery pressing device. Background Technology

[0002] After the mobile phone battery is assembled, it needs to be pressed together to ensure that the battery is not loose. Currently, the battery pressing process is done manually, resulting in uneven pressing force and quality issues such as battery loosening. Furthermore, the current pressing process uses a dual-station operation with frequent manual loading of equipment and fixtures, leading to increased employee fatigue and reduced production efficiency. The long waiting time for dual-station pressing also wastes employee time, requiring optimization and improvement. Utility Model Content

[0003] This utility model provides a multi-station mobile phone battery pressing device, which aims to solve the technical problems existing in the manual operation of battery pressing.

[0004] This utility model provides a multi-station mobile phone battery pressing device, including a flipping feeding module, a multi-station transverse pressing module, and an automatic material handling module. The automatic material handling module is connected to the flipping feeding module and the multi-station transverse pressing module respectively. The flipping feeding module includes a flipping component and a feeding component. The multi-station transverse pressing module includes a transverse component and a pressing component. The automatic material handling module includes a material handling component and a material unloading component. The flipping component flips the material and feeds it into the feeding component. The material handling component transfers the material from the feeding component to the transverse component. The transverse component feeds the material into the pressing component. The material unloading component discharges the pressed material from the transverse component.

[0005] As a further improvement of this utility model, the flipping component includes a flipping cylinder, a flipping swing arm, and a flipping adsorption panel. The flipping cylinder is installed at one end of the feeding component, one end of the flipping swing arm is connected to the output end of the flipping cylinder, and the other end of the flipping swing arm is connected to the flipping adsorption panel. The flipping cylinder drives the flipping adsorption panel to flip the material onto the feeding component through the flipping swing arm.

[0006] As a further improvement of this utility model, the feeding assembly includes a feeding conveyor belt, a guide plate, a positioning baffle, and a clamping and positioning cylinder. The positioning baffle is installed at the end of the feeding conveyor belt, the guide plate is installed on one side of the feeding conveyor belt, and the clamping and positioning cylinder is installed on the other side of the feeding conveyor belt. The clamping and positioning cylinder pushes the material to the guide plate.

[0007] As a further improvement of this utility model, a feeding sensor is provided at one end of the feeding conveyor belt that is connected to the flipping component.

[0008] As a further improvement of this utility model, the transverse moving assembly includes a transverse moving guide rail, a transverse moving cylinder, and a pressing carrier for placing materials. The pressing carrier is slidably connected to the transverse moving guide rail, and the output end of the transverse moving cylinder is connected to the pressing carrier. The transverse moving cylinder drives the pressing carrier to be sent under the pressing assembly or sent away from the pressing assembly.

[0009] As a further improvement of this utility model, the pressing assembly includes a pressing cylinder and a pressing mold. The pressing mold is connected to the output end of the pressing cylinder. When the pressing carrier is located below the pressing assembly, the pressing cylinder drives the pressing mold to press down the material in the pressing carrier.

[0010] As a further improvement of this utility model, the pressing assembly also includes a pressure regulating valve, which is connected to the pressing cylinder.

[0011] As a further improvement of this utility model, the automatic material handling module includes a transfer module, wherein the material handling component and the material unloading component are movably connected to the transfer module, the transfer module drives the material handling component to move between the feeding component and the traversing component, and the transfer module drives the material unloading component to move between the traversing component and the discharge station.

[0012] As a further improvement of this utility model, the material picking component includes a material picking lifting cylinder and a material picking suction cup. The material picking lifting cylinder is movably connected to the transplanting module, and the output end of the material picking lifting cylinder is connected to the material picking suction cup.

[0013] As a further improvement of this utility model, the unloading assembly includes an unloading lifting cylinder, an unloading translation cylinder, and an unloading suction cup. The unloading lifting cylinder is movably connected to the transfer module, the output end of the unloading lifting cylinder is connected to the unloading translation cylinder, and the output end of the unloading translation cylinder is connected to the unloading suction cup.

[0014] The beneficial effects of this utility model are: the equipment adopts a fully automated pressing scheme, which optimizes the problem of uneven manual operation force, effectively reduces the product rework rate, and greatly improves product quality; the equipment adopts a multi-station asynchronous pressing method to realize automatic feeding of transfer modules, which can effectively reduce employee fatigue and improve production efficiency; the multi-station pressing method can effectively reduce employee waiting time and greatly reduce the waste of time caused by waiting. Attached Figure Description

[0015] Figure 1 This is an overall structural diagram of the multi-station mobile phone battery pressing equipment of this utility model;

[0016] Figure 2 This is an overall structural diagram of the flip-feed module of this utility model;

[0017] Figure 3This is an overall structural diagram of the multi-station transverse pressing module of this utility model;

[0018] Figure 4 This is an overall structural diagram of the automatic material handling module of this utility model. Detailed Implementation

[0019] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments.

[0020] like Figure 1 As shown, this utility model discloses a multi-station mobile phone battery pressing device, including a flipping feeding module 1, a multi-station transverse pressing module 2, and an automatic picking and unloading module 3. The automatic picking and unloading module 3 is respectively connected to the flipping feeding module 1 and the multi-station transverse pressing module 2. The flipping feeding module 1 includes a flipping component 4 and a feeding component 5. The multi-station transverse pressing module 2 includes a transverse component 6 and a pressing component 7. The automatic picking and unloading module 3 includes a picking component 8 and a discharging component 9. The flipping component 4 flips the material and feeds it into the feeding component 5. The picking component 8 transfers the material from the feeding component 5 to the transverse component 6. The transverse component 6 feeds the material into the pressing component 7. The discharging component 9 discharges the pressed material from the transverse component 6.

[0021] Through the coordinated connection of the flipping component 4, feeding component 5, lateral movement component 6, pressing component 7, picking component 8, and unloading component 9, the automated processes of flipping and feeding mobile phone products, material transfer, product pressing, and material unloading are realized.

[0022] like Figure 2 As shown, the flipping assembly 4 includes a flipping cylinder 41, a flipping swing arm 42, and a flipping adsorption panel 43. The flipping cylinder 41 is installed at one end of the feeding assembly 5. One end of the flipping swing arm 42 is connected to the output end of the flipping cylinder 41, and the other end of the flipping swing arm 42 is connected to the flipping adsorption panel 43. The flipping cylinder 41 drives the flipping adsorption panel 43 to flip the material onto the feeding assembly 5 via the flipping swing arm 42. The flipping cylinder 41 rotates around one end of the flipping swing arm 42, driving the flipping adsorption panel 43 at the other end of the flipping swing arm 42 to complete the product flipping action. At the same time, the flipped product is placed onto the feeding conveyor belt 51 of the feeding assembly 5, so that the side of the product to be pressed faces upward.

[0023] The front section of the feeding section can be connected to a feeding belt to match the speed of the front and rear workstations. If the product screen comes into contact with the feeding belt, there is a risk of scratching. Therefore, the product screen is conveyed facing upwards on the feeding belt. During feeding, the product is flipped over by the flipping component 4 before feeding to prevent the screen from coming into contact with the belt and causing scratches. If the efficiency of the front and rear processes is matched, the feeding belt + sorting and feeding mechanism is not required, and the feeding action can be performed manually.

[0024] The feeding assembly 5 includes a feeding conveyor belt 51, a guide plate 52, a positioning baffle 53, and a clamping and positioning cylinder 54. The positioning baffle 53 is installed at the end of the feeding conveyor belt 51, the guide plate 52 is installed on one side of the feeding conveyor belt 51, and the clamping and positioning cylinder 54 is installed on the other side of the feeding conveyor belt 51. The clamping and positioning cylinder 54 pushes the material to the guide plate 52. The feeding conveyor belt 51 is used to deliver the flipped product to a position close to the multi-station transverse pressing module 2, facilitating product grabbing and transfer by the picking assembly 8. Since the conveying distance of the feeding conveyor belt 51 is shorter than that of the feeding belt, the risk of scratching the screen can be reduced. The end of the feeding conveyor belt 51 that connects with the flipping assembly 4 is equipped with a feeding sensor 55. The feeding conveyor belt 51 will only start to convey when the feeding sensor 55 detects the presence of material. The guide plate 52 is used to guide the movement direction of the mobile phone product on the feeding conveyor belt 51 to prevent deviation. The positioning baffle 53 is used to block the product's forward movement and limit the stopping position of the product conveying. At the same time, the positioning baffle 53 is also equipped with a material sensor 56 to sense whether the product has moved into position. The clamping and positioning cylinder 54 cooperates with the guide plate 52 to clamp and position the product, which facilitates the alignment and gripping of the material picking component 8.

[0025] like Figure 3 As shown, the transverse component 6 includes a transverse guide rail 61, a transverse cylinder 62, and a pressing carrier 63 for placing materials. The pressing carrier 63 is slidably connected to the transverse guide rail 61. The output end of the transverse cylinder 62 is connected to the pressing carrier 63. The transverse cylinder 62 drives the pressing carrier 63 to be fed into or out of the pressing component 7. The transverse cylinder 62 drives the pressing carrier 63 to slide on the transverse guide rail 61. The sliding range covers the product pick-up and drop-off station and the pressing station. When loading, the pressing carrier 63 is located at the pick-up and drop-off station. The pick-up component 8 transfers the product on the feed conveyor belt 51 to the pressing carrier 63. When pressing, the transverse cylinder 62 pushes the pressing carrier 63 into the pressing station for pressing. After processing, the pressing carrier 63 is pushed out back to the pick-up and drop-off station, and the unloading component 9 transfers the product in the pressing carrier 63 out.

[0026] The pressing assembly 7 includes a pressing cylinder 71 and a pressing mold 72. The pressing mold 72 is connected to the output end of the pressing cylinder 71. When the pressing carrier 63 is located below the pressing assembly 7, the pressing cylinder 71 drives the pressing mold 72 to press down the material inside the pressing carrier 63. The pressing assembly 7 also includes a pressure regulating valve 73, which is connected to the pressing cylinder 71. The pressure regulating valve 73 can control the pressing force of the pressing cylinder 71.

[0027] A transverse moving component 6 and a pressing component 7 work together to form a transverse moving and pressing station. Multiple sets of transverse moving components 6 and pressing components 7 can be arranged side by side in this equipment to form synchronous operation of multiple stations.

[0028] like Figure 4 As shown, the automatic material handling module 3 includes a transfer module 31, with a material handling component 8 and a material unloading component 9 movably connected to the transfer module 31. The transfer module 31 drives the material handling component 8 to move between the feeding component 5 and the traversing component 6, and drives the material unloading component 9 to move between the traversing component 6 and the discharge station. The transfer module 31 drives the material handling component 8 and the material unloading component 9 to achieve linear movement, completing the product transfer between each station.

[0029] The material handling assembly 8 includes a material handling lifting cylinder 81 and a material handling suction cup 82. The material handling lifting cylinder 81 is movably connected to the transfer module 31, and the output end of the material handling lifting cylinder 81 is connected to the material handling suction cup 82. The material handling lifting cylinder 81, in conjunction with the material handling suction cup 82, completes the height adjustment of the material handling position, thereby achieving accurate gripping and material handling of the product.

[0030] The unloading assembly 9 includes an unloading lifting cylinder 91, an unloading translation cylinder 92, and an unloading suction cup 93. The unloading lifting cylinder 91 is movably connected to the transfer module 31, the output end of the unloading lifting cylinder 91 is connected to the unloading translation cylinder 92, and the output end of the unloading translation cylinder 92 is connected to the unloading suction cup 93. The cooperation of the unloading lifting cylinder 91, the unloading translation cylinder 92, and the unloading suction cup 93 completes the height and level adjustment of the material picking position, realizing accurate gripping and unloading of the product.

[0031] The working principle of this multi-station mobile phone battery lamination equipment is as follows:

[0032] 1) Turn on the power to the equipment, and the operator presses the reset button. After the equipment has been reset normally, adjust the pressing parameters. Once the pressure value meets the pressing requirements, click the start button and the equipment will start normally.

[0033] 2) After the operator completes the battery assembly, the battery is placed into the feeding conveyor belt and fed to the flipping component 4, or the mobile phone product with the battery assembled is placed directly on the flipping mechanism by the operator. The flipping component 4 turns on the vacuum suction to flip the product 180° to the feeding conveyor belt 51.

[0034] 3) After the feeding sensor 55 senses that there is material, the feeding conveyor belt 51 starts. After the product flows to the loading area, the clamping and positioning cylinder 54 clamps and positions the product. The transfer module drives the picking component 8 to pick up the material.

[0035] 4) After the material sensor 56 in the loading area senses the presence of a product, the vacuum of the material-retrieving suction cup 82 is activated, the transfer module moves to the top of the loading area, the material-retrieving lifting cylinder 81 descends, and after the vacuum value is satisfied, the material-retrieving lifting cylinder 81 rises. After the transfer module moves above the pressing carrier 63, the material-retrieving lifting cylinder 81 descends, the vacuum is closed, the product falls into the pressing carrier 63, and the material-retrieving lifting cylinder 81 rises to repeat the material-retrieving action.

[0036] 5) After the pressing carrier 63 is loaded with material, the transverse cylinder 62 drives the pressing carrier 63 to move to the pressing area. The pressing cylinder 71 descends to perform delayed pressing. After the pressing time is over, the pressing cylinder 71 rises and the transverse cylinder 62 drives the pressing carrier 63 to move to the material handling area. After the unloading action is completed, the other stations complete the above actions.

[0037] 6) When the vacuum of the unloading tray is opened, the transfer module moves to the material pick-up and unload area, the unloading lifting cylinder 91 descends, and after the vacuum value is satisfied, the unloading lifting cylinder 91 rises, the transfer module moves to the unloading area, the unloading lifting cylinder 91 descends, the vacuum is closed, the product is unloaded, and the unloading lifting cylinder 91 rises to repeat the unloading action.

[0038] 7) The material feeding area can be equipped with a conveyor belt / slope flow strip, etc. for material feeding operations. After the next process operator takes the material to proceed to the next operation, the subsequent feeding personnel will repeat the feeding.

[0039] The above description, in conjunction with specific preferred embodiments, provides a further detailed explanation of the present invention. It should not be construed that the specific implementation of the present invention is limited to these descriptions. For those skilled in the art, various simple deductions or substitutions can be made without departing from the concept of the present invention, and all such modifications and substitutions should be considered within the protection scope of the present invention.

Claims

1. A multi-station mobile phone battery pressing device, characterized in that, The device comprises a turnover feeding module, a multi-station horizontal transfer compression module and an automatic feeding and discharging module, the automatic feeding and discharging module is connected with the turnover feeding module and the multi-station horizontal transfer compression module respectively, the turnover feeding module comprises a turnover assembly and a feeding assembly, the multi-station horizontal transfer compression module comprises a horizontal transfer assembly and a compression assembly, the automatic feeding and discharging module comprises a feeding assembly and a discharging assembly, the turnover assembly sends the material to the feeding assembly after turning over, the feeding assembly transfers the material from the feeding assembly to the horizontal transfer assembly, the horizontal transfer assembly sends the material to the compression assembly, and the discharging assembly sends the material on the horizontal transfer assembly out.

2. The multi-station cell phone battery pressing apparatus of claim 1, wherein, The turnover assembly comprises a turnover cylinder, a turnover swing arm and a turnover adsorption panel, the turnover cylinder is installed at one end of the feeding assembly, one end of the turnover swing arm is connected with the output end of the turnover cylinder, and the other end of the turnover swing arm is connected with the turnover adsorption panel, and the turnover cylinder drives the turnover adsorption panel to turn over the material to the feeding assembly through the turnover swing arm.

3. The multi-station cell phone battery pressing apparatus of claim 1, wherein, The feeding assembly comprises a feeding conveyor belt, a guide plate, a positioning baffle and a clamping positioning cylinder, the positioning baffle is installed at the end of the feeding conveyor belt, the guide plate is installed on one side of the feeding conveyor belt, and the clamping positioning cylinder is installed on the other side of the feeding conveyor belt, and the clamping positioning cylinder pushes the material to the guide plate.

4. The multi-station cell phone battery pressing apparatus of claim 3, wherein, The end of the feeding conveyor belt connected with the turnover assembly is provided with a feeding sensor.

5. The multi-station cell phone battery pressing apparatus of claim 1, wherein, The horizontal transfer assembly comprises a horizontal transfer guide rail, a horizontal transfer cylinder and a compression carrier for placing the material, the compression carrier is slidingly connected with the horizontal transfer guide rail, the output end of the horizontal transfer cylinder is connected with the compression carrier, and the horizontal transfer cylinder drives the compression carrier to be sent to the lower side of the compression assembly or away from the compression assembly.

6. The multi-station cell phone battery pressing apparatus of claim 5, wherein, The compression assembly comprises a compression cylinder and a compression die, the compression die is connected with the output end of the compression cylinder, and when the compression carrier is located below the compression assembly, the compression cylinder drives the compression die to press the material in the compression carrier.

7. The multi-station cell phone battery pressing apparatus of claim 6, wherein, The compression assembly further comprises a pressure regulating valve connected with the compression cylinder.

8. The multi-station cell phone battery pressing apparatus of claim 1, wherein, The automatic feeding and discharging module comprises a transplanting module, the feeding assembly and the discharging assembly are movably connected with the transplanting module, the transplanting module drives the feeding assembly to move between the feeding assembly and the horizontal transfer assembly, and the transplanting module drives the discharging assembly to move between the horizontal transfer assembly and a discharging station.

9. The multi-station cell phone battery pressing apparatus of claim 8, wherein, The feeding assembly comprises a feeding lifting cylinder and a feeding suction cup, the feeding lifting cylinder is movably connected with the transplanting module, and the output end of the feeding lifting cylinder is connected with the feeding suction cup.

10. The multi-station cell phone battery pressing apparatus of claim 8, wherein, The discharging assembly comprises a discharging lifting cylinder, a discharging translation cylinder and a discharging suction cup, the discharging lifting cylinder is movably connected with the transplanting module, the output end of the discharging lifting cylinder is connected with the discharging translation cylinder, and the output end of the discharging translation cylinder is connected with the discharging suction cup.