A multi-directional processing device and process for the power button slot of a smart phone

By designing a multi-directional processing device, using components such as adjustment cylinders, rotary motors and drive motors, the precise processing of the complex slot walls of the mobile phone power key slots is achieved, solving the problem of low applicability of existing devices and improving processing efficiency and effect.

CN120080226BActive Publication Date: 2025-07-11SHENZHEN JINGERMEI TECH CO LTD
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Patent Information

Application Number
CN202510586154.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-05-08
Publication Date
2025-07-11
Estimated Expiration
2045-05-08

AI Technical Summary

Technical Problem

The existing mobile phone power key card slot processing device cannot adapt to the adjustment of complex special slot walls, resulting in low processing applicability.

Method used

A multi-directional processing device for the card slot of the power key of a smartphone is designed, including a mounting base, a horizontal moving seat, a processing adjustment structure, a rotary structure and a secondary adjustment structure. By adjusting components such as electric cylinder, rotary motor and drive motor, multi-angle polishing and processing of the card slot slot wall is realized.

Benefits of technology

The comprehensive processing of different types of slot walls is achieved, which can adapt to the precise polishing of beveled, straight, rounded corners and curved sides, and improve the applicability and efficiency of processing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a multi-directional processing device and its process for a smartphone power button slot, belonging to the technical field of mobile phone power button slot processing. It includes an installation base and a slot processing structure. A horizontal moving seat that moves horizontally back and forth is provided on the installation base, and the horizontal moving seat is slidably matched with the installation base. A processing adjustment structure is provided on the horizontal moving seat, and the processing adjustment structure is slidably matched with the horizontal moving seat. The processing adjustment structure can drive the position of the slot processing structure to be adjusted. A secondary adjustment structure for driving the position of the slot processing structure to be adjusted again is provided on the rotating end of the processing rotation structure, and the slot processing structure is located on the adjustment end of the secondary adjustment structure. A horizontally arranged processing conveyor line is provided beside the installation base. The present invention can realize different types of processing operations on the smartphone power button slot, thereby realizing multi-directional processing of the smartphone power button slot.
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Description

Technical Field

[0001] The present invention belongs to the technical field of mobile phone power button slot processing, and particularly relates to a multi-directional processing device and process for a smart phone power button slot. Background Art

[0002] With the continuous development of the mobile phone industry, the way of operating machines with physical power buttons has gradually been replaced by touch screens. Most mainstream products on the market only retain power buttons such as volume buttons, and these power buttons are generally installed in slots opened on the side of the mobile phone.

[0003] However, the specifications of the slot walls of existing mobile phone power button slots are generally of various types, such as bevel + straight edge, straight edge + arc edge, arc edge + bevel, or rounded corners are guided between adjacent two edges; existing patents can only process some straight edges during the processing of the slot, and the processing device can only move linearly for processing. During the processing of the slot walls of some complex and special slots of existing slots, the position of the processing head cannot be adjusted and cannot adjust the processing position and angle according to the different types of slot walls, resulting in low applicability for slot processing.

[0004] Therefore, a multi-directional processing device for a smart phone power button slot needs to be provided for use. Summary of the Invention

[0005] The embodiments of the present invention provide a multi-directional processing device and process for a smart phone power button slot to solve the problems in the prior art.

[0006] The embodiments of the present invention adopt the following technical solutions: A multi-directional processing device for a smart phone power button slot includes a mounting base and a slot processing structure. A horizontal moving seat that moves horizontally back and forth is provided on the mounting base, and the horizontal moving seat is slidably engaged with the mounting base;

[0007] A processing adjustment structure is provided on the horizontal moving seat, and the processing adjustment structure is slidably engaged with the horizontal moving seat. The processing adjustment structure can drive the position of the slot processing structure to be adjusted;

[0008] A processing rotation structure that can drive the slot processing structure to rotate is provided on the processing adjustment structure;

[0009] A secondary adjustment structure for driving the position of the slot processing structure to be adjusted again is provided on the rotation end of the processing rotation structure, and the slot processing structure is located on the adjustment end of the secondary adjustment structure;

[0010] A horizontally arranged processing conveyor line is provided beside the mounting base. The present invention can realize different types of processing operations on the mobile phone power button slot, thereby realizing multi-directional processing of the mobile phone power button slot.

[0011] Furthermore, the processing adjustment structure includes an adjustment electric cylinder located on the horizontal moving seat; a horizontally arranged horizontal column is provided on the horizontal moving seat, two sliders are provided on the horizontal column, a sliding sleeve slidably engaged with the two sliders is provided on the horizontal column, the bottom of the sliding sleeve is connected to the telescopic end of the adjustment electric cylinder, a vertical plate is provided at the top of the sliding sleeve, an adjustment plate is provided at the end of the horizontal column, the adjustment plate is rotatably connected to the horizontal column, and a transmission plate is hinged between the adjustment plate and the vertical plate.

[0012] Furthermore, two symmetrically arranged driving electric cylinders are provided on the installation base, and the telescopic ends of the two driving electric cylinders are connected to the horizontal moving seat.

[0013] Furthermore, the processing rotation structure includes a rotation motor, a motor mounting seat is provided at the bottom of the adjustment plate, and the rotation motor is located within the motor mounting seat.

[0014] Furthermore, the secondary adjustment structure includes a rotation mounting seat, an arc plate, and two arc sliders. The rotation mounting seat is connected to the main shaft of the rotation motor, and four mounting ears connected to the rotation mounting seat are provided on the motor mounting seat; two arc sliders are provided at the bottom of the arc plate, an arc groove slidably engaged with the arc plate is provided on the rotation mounting seat, the arc plate is snap-fitted with the arc groove, an arc rack is provided at the middle position of the bottom of the arc plate, a rotation motor is provided on the rotation mounting seat, a rotation gear roller is provided on the main shaft of the rotation motor, the rotation gear roller is rotatably connected to the rotation mounting seat, and the rotation gear roller is in transmission connection with the arc rack.

[0015] Furthermore, the card slot processing structure includes a mounting shaft, a grinding wheel roller is provided on the mounting shaft, a horizontally arranged circular baffle is provided on the grinding wheel roller, the grinding wheel roller is slidably engaged with the mounting shaft, two driving members are provided on the arc plate, and the two driving members are distributed at a ninety-degree angle on the grinding wheel roller and are respectively located on the outer sides of the grinding wheel roller.

[0016] Furthermore, the driving member includes a driving motor and a driving plate. A mounting plate is provided on the arc plate, the driving motor is located on the mounting plate, one end of the driving plate is connected to the main shaft of the driving motor, and the other end of the driving plate is rotatably connected to the grinding wheel roller.

[0017] Furthermore, a power supply limiting structure is provided at the middle position of the processing conveyor line. The power supply limiting structure includes a first limiting seat horizontally arranged on the processing conveyor line, a second limiting seat is provided on the opposite side of the first limiting seat, a limiting electric cylinder is provided on the second limiting seat, and a limiting block is provided on the telescopic end of the limiting electric cylinder.

[0018] Further, a partition net is provided at the middle position of the processing conveyor line at the power limit structure, and a dust suction fan is provided at the bottom of the partition net.

[0019] A multi-directional processing technology for a multi-directional processing device of a power button slot of a smart phone, the multi-directional processing technology includes the following steps:

[0020] S1: Place the power button slot of the mobile phone between the limit block and the first limit seat on the processing conveyor line, and then drive the position of the limit block to move through the work of the limit electric cylinder to limit and fix the position of the power button slot of the mobile phone;

[0021] S2: After limiting the position of the power button slot of the mobile phone, when processing the slot, the two drive motors on the slot processing structure work simultaneously and will drive the positions of the two drive plates to rotate respectively. The rotation of the two drive plates will drive the position of the grinding wheel roller to rotate slightly on the mounting shaft, and while the grinding wheel roller is rotating, it can also drive the position of the grinding wheel roller to slide slightly on the mounting shaft. When the grinding wheel roller rotates and slides on the mounting shaft, it can perform grinding operations on the slot and grind the burrs left due to processing on the slot;

[0022] S3: While grinding, drive the sliding sleeve to move horizontally on the two sliders of the horizontal column through the adjustment electric cylinder. The movement of the sliding sleeve will drive the position of the vertical plate to move, thereby driving the angle of the transmission plate to rotate. The rotation of the transmission plate will drive the adjustment plate to rotate on the horizontal column, thereby driving the angular position of the adjustment plate to change, enabling the angle of the grinding wheel roller at the bottom of the adjustment plate to change. When processing slots at different angles of the power button slot of the mobile phone, the angle of the grinding wheel roller can be adjusted according to the position of the slot to grind the horizontal side and the straight side. When processing the inclined side of the slot, the adjustment plate also rotates on the horizontal column, and while rotating, it can drive the grinding operation on the inclined side of the slot;

[0023] S4: The two drive electric cylinders work simultaneously to drive the horizontal moving seat to move horizontally on the mounting base, which will drive the position of the grinding wheel roller to move horizontally, thereby performing grinding processing operations on the horizontal side of the slot;

[0024] S5: The rotation motor works to drive the rotating tooth roller to rotate on the rotating mounting seat, which will drive the arc plate to rotate through the two arc sliders in the arc groove of the rotating mounting seat. The sliding of the arc plate and the cooperation of the rotating motor to drive the rotating mounting seat to rotate can change the angle according to the position of the slot and perform grinding operations on the rounded corners of the slot;

[0025] S6: During grinding, the dust suction fan on the processing conveyor line works to adsorb the dust generated by grinding.

[0026] The above at least one technical solution adopted in the embodiments of the present invention can achieve the following beneficial effects:

[0027] First, when the present invention processes the wall specifications of different types of slots on different slots of the mobile phone power button slot, it can control the processing operations of different types of slot walls for the slots, thereby realizing the comprehensiveness of slot processing.

[0028] Second, when the present invention grinds the straight edge on the slot in the moving direction of the horizontal moving seat, the two driving electric cylinders work simultaneously to drive the horizontal moving seat to move horizontally on the installation base, which will drive the position of the grinding wheel roller to move horizontally, thereby grinding the horizontal edge of the slot.

[0029] Third, the adjusting electric cylinder of the present invention drives the sliding sleeve to move horizontally on the two sliders of the horizontal column. The movement of the sliding sleeve will drive the position of the vertical plate to move, thereby driving the angle of the transmission plate to rotate. The rotation of the transmission plate will drive the adjusting plate to rotate on the horizontal column, thereby driving the angular position of the adjusting plate to change, enabling the angle of the grinding wheel roller at the bottom of the adjusting plate to change. When processing slots at different angles of the mobile phone power button slot, it is possible to adjust the angle of the grinding wheel roller according to the position of the slot to grind the horizontal edge and the straight edge. When processing the inclined edge of the slot, the adjusting plate also rotates on the horizontal column, and while rotating, it can drive the grinding operation of the inclined edge on the slot.

[0030] Fourth, the rotating motor of the present invention works to drive the rotating tooth roller to rotate on the rotating mounting seat, which will drive the arc plate to rotate in the arc groove on the rotating mounting seat through two arc sliders. The sliding of the arc plate and the cooperation of the rotating motor to drive the rotating mounting seat to rotate can change the angle according to the position of the slot, and grind the fillet on the slot. According to the different angles of the fillet and the arc edge on the slot, the angular position of the grinding wheel roller is adjusted in a timely manner to process fillets and arc edges at different angles. BRIEF DESCRIPTION OF THE DRAWINGS

[0031] The drawings described herein are used to provide a further understanding of the present invention and form a part of the present invention. The schematic embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an improper limitation of the present invention. In the drawings:

[0032] Figure 1 is the three-dimensional structure schematic of the present invention Figure 1 ;

[0033] Figure 2 Schematic diagram of the three-dimensional structure of the present invention Figure 2 ;

[0034] Figure 3 Schematic diagram of the partial three-dimensional structure of the present invention;

[0035] Figure 4 is Figure 3 The enlarged view of part A in

[0036] Figure 5 is Figure 3 The enlarged view of part B in

[0037] Figure 6 Schematic diagram of the three-dimensional structure of the secondary adjustment structure in the present invention;

[0038] Figure 7 Schematic diagram of the three-dimensional structure of the card slot processing structure in the present invention;

[0039] Figure 8 Schematic diagram of the three-dimensional structure of the power supply limit structure in the present invention;

[0040] Reference numerals

[0041] Installation base 1, horizontal moving seat 11, limit slide bar 13, card slot processing structure 2, installation shaft 21, grinding wheel roller 22, circular baffle 23, drive motor 24, drive plate 25, adjusting electric cylinder 31, horizontal column 32, slider 33, sliding sleeve 34, vertical plate 35, adjusting plate 36, transmission plate 37, processing rotation structure 4, rotation motor 41, motor mounting seat 42, mounting ear 421, secondary adjustment structure 5, rotation mounting seat 51, arc plate 52, arc slider 53, arc groove 54, rotation motor 55, rotation gear roller 56, arc tooth plate 57, mounting plate 58, processing conveyor line 6, drive electric cylinder 7, power supply limit structure 8, first limit seat 81, second limit seat 82, limit electric cylinder 83, limit block 84. Detailed description of the specific implementation mode

[0042] In order to make the purpose, technical solution and advantages of the present invention clearer, the technical solution of the present invention will be clearly and completely described below in conjunction with the specific embodiments of the present invention and the corresponding drawings. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative work belong to the scope of protection of the present invention.

[0043] The following will detail the technical solutions provided by each embodiment of the present invention with reference to the drawings.

[0044] Refer to Figures 1 to 8As shown in the figure, an embodiment of the present invention provides a multi-directional processing device for a smartphone power button card slot, including an installation base 1 and a card slot processing structure 2. A horizontal moving seat 11 that moves horizontally back and forth is provided on the installation base 1, and the horizontal moving seat 11 is slidably matched with the installation base 1; a processing adjustment structure 3 is provided on the horizontal moving seat 11, and the processing adjustment structure 3 is slidably matched with the horizontal moving seat 11. The processing adjustment structure 3 can drive the position of the card slot processing structure 2 to be adjusted; a processing rotation structure 4 that can drive the card slot processing structure 2 to rotate is provided on the processing adjustment structure 3; a secondary adjustment structure 5 that drives the position of the card slot processing structure 2 to be adjusted again is provided on the rotation end of the processing rotation structure 4, and the card slot processing structure 2 is located on the adjustment end of the secondary adjustment structure 5; a horizontally arranged processing conveyor line 6 is provided beside the installation base 1.

[0045] During the processing, the smartphone power button card slot is placed on a specific jig, and then the smartphone power button card slot can be moved to the lower part of the grinding wheel roller 22 to perform grinding operations on the smartphone power button card slot.

[0046] Preferably, the processing adjustment structure 3 includes an adjustment electric cylinder 31, and the adjustment electric cylinder 31 is located on the horizontal moving seat 11; a horizontal column 32 is horizontally provided on the horizontal moving seat 11, two sliders 33 are provided on the horizontal column 32, a sliding sleeve 34 that is slidably matched with the two sliders 33 is provided on the horizontal column 32, the bottom of the sliding sleeve 34 is connected to the telescopic end of the adjustment electric cylinder 31, a vertical plate 35 is provided on the top of the sliding sleeve 34, an adjustment plate 36 is provided at the end of the horizontal column 32, the adjustment plate 36 is rotatably connected to the horizontal column 32, and a transmission plate 37 that is hinged is provided between the adjustment plate 36 and the vertical plate 35.

[0047] In this embodiment, the adjustment electric cylinder 31 drives the sliding sleeve 34 to move horizontally on the two sliders 33 on the horizontal column 32. When the sliding sleeve 34 moves, it will drive the position of the vertical plate 35 to move, thereby driving the angle of the transmission plate 37 to rotate. When the transmission plate 37 rotates, it will drive the adjustment plate 36 to rotate on the horizontal column 32, thereby driving the angular position of the adjustment plate 36 to change. It can make the angle of the grinding wheel roller 22 at the bottom of the adjustment plate 36 change. When processing card slots at different angles of the smartphone power button card slot, the angle of the grinding wheel roller 22 can be adjusted according to the position of the card slot to perform grinding work on the horizontal side and the straight side. When processing the bevel edge of the card slot, the adjustment plate 36 also rotates on the horizontal column 32, and while rotating, it can drive the bevel edge on the card slot to perform grinding operations.

[0048] Two symmetrically arranged driving electric cylinders 7 are provided on the installation base 1, and the telescopic ends of the two driving electric cylinders 7 are connected to the horizontal moving seat 11.

[0049] In this embodiment, when grinding the horizontal edge of the card slot, the two driving electric cylinders 7 work simultaneously to drive the horizontal moving seat 11 to move horizontally on the mounting base 1, which will drive the position of the grinding wheel roller 22 to move horizontally, so as to grind the horizontal edge of the card slot.

[0050] Preferably, the processing rotation structure 4 includes a rotation motor 41. A motor mounting seat 42 is provided at the bottom of the adjusting plate 36, and the rotation motor 41 is located within the motor mounting seat 42.

[0051] In this embodiment, when grinding the arc-shaped fillet or arc-shaped edge, the rotation motor 41 can work to drive the position of the rotation mounting seat 51 to rotate for processing the card slot.

[0052] Preferably, the secondary adjustment structure 5 includes a rotation mounting seat 51, an arc-shaped plate 52 and two arc-shaped sliders 53. The rotation mounting seat 51 is connected to the main shaft of the rotation motor 41. Four mounting ears 421 connected to the rotation mounting seat 51 are provided on the motor mounting seat 42; screws are provided on the mounting ears 421 for mounting the motor mounting seat 42 on the rotation mounting seat 51. Two arc-shaped sliders 53 are provided at the bottom of the arc-shaped plate 52. An arc-shaped groove 54 slidably matched with the arc-shaped plate 52 is provided on the rotation mounting seat 51. The arc-shaped plate 52 is in snap-fit with the arc-shaped groove 54. An arc-shaped toothed plate 57 is provided at the middle position of the bottom of the arc-shaped plate 52. A rotation motor 55 is provided on the rotation mounting seat 51. A rotation toothed roller 56 is provided on the main shaft of the rotation motor 55. The rotation toothed roller 56 is rotatably connected to the rotation mounting seat 51, and the rotation toothed roller 56 is in transmission connection with the arc-shaped toothed plate 57.

[0053] In this embodiment, when the rotation motor 55 works to drive the rotation toothed roller 56 to rotate on the rotation mounting seat 51, it will drive the arc-shaped plate 52 to rotate in the arc-shaped groove 54 of the rotation mounting seat 51 through the two arc-shaped sliders 53, and can drive the position of the arc-shaped plate 52 to rotate and swing in an arc, adapting to the grinding operation at the arc-shaped edge and fillet of the card slot.

[0054] Preferably, the card slot processing structure 2 includes a mounting shaft 21, a grinding wheel roller 22 is provided on the mounting shaft 21, a horizontally arranged circular baffle 23 is provided on the grinding wheel roller 22, and the circular baffle 23 can block and protect dust. The grinding wheel roller 22 is slidably engaged with the mounting shaft 21. Two driving members are provided on the arc plate 52, and the two driving members are distributed at a right angle on the grinding wheel roller 22 and are respectively located on the outer side of the grinding wheel roller 22. The driving member includes a driving motor 24 and a driving plate 25. A mounting plate 58 is provided on the arc plate 52. The driving motor 24 is located on the mounting plate 58. One end of the driving plate 25 is connected to the main shaft of the driving motor 24, and the other end of the driving plate 25 is rotatably connected to the grinding wheel roller 22.

[0055] In this embodiment, when the two driving motors 24 on the card slot processing structure 2 work simultaneously, they will drive the positions of the two driving plates 25 to rotate respectively. When the two driving plates 25 rotate, they will drive the position of the grinding wheel roller 22 to rotate slightly on the mounting shaft 21. At the same time as the grinding wheel roller 22 rotates, it can also drive the position of the grinding wheel roller 22 to slide slightly on the mounting shaft 21. When the grinding wheel roller 22 rotates and slides on the mounting shaft 21, it can perform grinding operations on the card slot, grind the burrs left due to processing on the card slot, and grind the burrs clean. At the same time of grinding, it can also perform reaming and expanding operations on the card slot, grind and ream the redundant iron blocks and burrs generated due to injection molding and casting, so that the mobile phone power button card slot can be better used subsequently.

[0056] Preferably, a power supply limiting structure 8 is provided at the middle position of the processing conveyor line 6. The power supply limiting structure 8 includes a first limiting seat 81 horizontally arranged on the processing conveyor line 6. A second limiting seat 82 is provided on the opposite side of the first limiting seat 81. A limiting electric cylinder 83 is provided on the second limiting seat 82, and a limiting block 84 is provided on the telescopic end of the limiting electric cylinder 83.

[0057] In this embodiment, the mobile phone power button card slot is placed between the limiting block 84 and the first limiting seat 81 on the processing conveyor line 6. Then, the limiting electric cylinder 83 works to drive the position of the limiting block 84 to move, and the position of the mobile phone power button card slot is limited and fixed, preventing the position of the mobile phone power button card slot from shifting during the processing of the mobile phone power button card slot and affecting the processing effect of the card slot.

[0058] Preferably, a partition net is provided at the middle position of the processing conveyor line 6 at the power supply limiting structure 8, and a dust suction fan is provided at the bottom of the partition net.

[0059] The partition net can carry the fixture for placing the card slot of the mobile phone power button. During the processing, the dust suction fan works to adsorb the dust generated during processing, preventing the dust generated by grinding from adhering to the card slot and affecting the grinding effect.

[0060] Example 1: When machining the straight edge of the card slot,

[0061] When grinding the straight edge on the card slot along the moving direction of the horizontal moving seat 11, the two driving electric cylinders 7 work to make the slide rail on the horizontal moving seat 11 move horizontally on the installation base 1, which can drive the grinding wheel roller 22 to perform grinding operations on the straight edge. When grinding the other straight edge, the processing conveyor line 6 can drive the mobile phone power button card slot on the fixture to perform grinding operations on the straight edge of the card slot.

[0062] Example 2: When machining the bevel edge of the card slot,

[0063] The adjusting electric cylinder 31 drives the sliding sleeve 34 to move horizontally on the two sliders 33 on the horizontal column 32. The movement of the sliding sleeve 34 will drive the position of the vertical plate 35 to move, thereby driving the angle of the transmission plate 37 to rotate. The rotation of the transmission plate 37 will drive the adjusting plate 36 to rotate on the horizontal column 32, thereby driving the angular position of the adjusting plate 36 to change, enabling the angle of the grinding wheel roller 22 at the bottom of the adjusting plate 36 to change. When machining card slots at different angles of the mobile phone power button card slot, the angle of the grinding wheel roller 22 can be adjusted according to the position of the card slot. When machining the bevel edge of the card slot, the adjusting plate 36 also rotates on the horizontal column 32, and while rotating, it can drive the grinding operation on the bevel edge of the card slot.

[0064] Example 3: When machining the rounded corner + arc edge of the card slot,

[0065] The rotating motor 55 works to drive the rotating gear roller 56 to rotate on the rotating mounting seat 51, which will drive the arc plate 52 to rotate in the arc groove 54 on the rotating mounting seat 51 through the two arc sliders 53. The sliding of the arc plate 52 and the cooperation of the rotating motor 41 to drive the rotating mounting seat 51 to rotate can change the angle according to the position of the card slot, perform grinding operations on the rounded corner of the card slot, and adjust the angular position change of the grinding wheel roller 22 in a timely manner according to the different angles of the rounded corner and arc edge on the card slot, and perform processing operations on the rounded corners and arc edges at different angles;

[0066] Example 4: When machining the bevel edge + straight edge of the card slot, the operations of Example 1 and Example 2 can be controlled to work successively to perform processing operations on the card slot;

[0067] Embodiment 5: When machining the bevel + rounded corner or arc edge of the card slot, the second and third embodiments can be controlled to work successively to machine the card slot;

[0068] Embodiment 6: When machining the straight edge + rounded corner or arc edge of the card slot, the first and third embodiments can be controlled to work successively to machine the card slot;

[0069] When machining the wall specifications of different types of card slots on the mobile phone power button card slot, different types of slot walls of the card slot can be controlled to be machined, so as to achieve the comprehensiveness of card slot machining.

[0070] A multi-directional machining process of a multi-directional machining device for a mobile phone power button card slot, the multi-directional machining process includes the following steps:

[0071] S1: Place the mobile phone power button card slot between the limit block 84 and the first limit seat 81 on the machining conveyor line 6, and then drive the position of the limit block 84 to move through the work of the limit electric cylinder 83 to limit and fix the position of the mobile phone power button card slot;

[0072] S2: After limiting the position of the mobile phone power button card slot, when machining the card slot, the two drive motors 24 on the card slot machining structure 2 work simultaneously to drive the positions of the two drive plates 25 to rotate respectively. The rotation of the two drive plates 25 will drive the position of the grinding wheel roller 22 to rotate slightly on the mounting shaft 21, and while the grinding wheel roller 22 is rotating, it can also drive the position of the grinding wheel roller 22 to slide slightly on the mounting shaft 21. The rotation and sliding of the grinding wheel roller 22 on the mounting shaft 21 can machine the card slot and grind the burrs left on the card slot due to machining;

[0073] S3: While grinding, drive the sliding sleeve 34 to move horizontally on the two sliders 33 of the horizontal column 32 through the adjusting electric cylinder 31. The movement of the sliding sleeve 34 will drive the position of the vertical plate 35 to move, thereby driving the angle of the transmission plate 37 to rotate. The rotation of the transmission plate 37 will drive the adjusting plate 36 to rotate on the horizontal column 32, thereby driving the angular position of the adjusting plate 36 to change, enabling the angle of the grinding wheel roller 22 at the bottom of the adjusting plate 36 to change. When machining card slots at different angles of the mobile phone power button card slot, the angle of the grinding wheel roller 22 can be adjusted according to the position of the card slot to grind the horizontal edge and the straight edge. When machining the bevel edge of the card slot, the adjusting plate 36 also rotates on the horizontal column 32, and while rotating, it can drive the grinding of the bevel edge on the card slot;

[0074] S4: When polishing the horizontal edges of the card slot, the two driving electric cylinders 7 work simultaneously to drive the horizontal moving seat 11 to move horizontally on the mounting base 1, which will drive the position of the polishing grinding wheel roller 22 to move horizontally, so as to polish the horizontal edges of the card slot;

[0075] S5: The rotating motor 55 works to drive the rotating tooth roller 56 to rotate on the rotating mounting seat 51, which will drive the arc plate 52 to rotate in the arc groove 54 of the rotating mounting seat 51 through the two arc sliders 53. The sliding of the arc plate 52 and the cooperation of the rotating motor 41 to drive the rotating mounting seat 51 to rotate can change the angle according to the position of the card slot and polish the rounded corners of the card slot;

[0076] S6: During polishing, the dust suction fan on the processing conveyor line 6 works to adsorb the dust generated by polishing.

[0077] The above are only the embodiments of the present invention and are not used to limit the present invention. For those skilled in the art, the present invention can have various changes and modifications. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included within the scope of the claims of the present invention.

Claims

1. A multi-directional processing device for the power button slot of a smart phone, characterized in that, It includes an installation base (1) and a groove processing structure (2). A horizontal moving seat (11) that moves horizontally back and forth is provided on the installation base (1), and the horizontal moving seat (11) is slidably matched with the installation base (1). A processing adjustment structure (3) is provided on the horizontal moving seat (11), and the processing adjustment structure (3) is slidably matched with the horizontal moving seat (11). The processing adjustment structure (3) can drive the position of the groove processing structure (2) to be adjusted. A processing rotation structure (4) that can drive the groove processing structure (2) to rotate is provided on the processing adjustment structure (3). A secondary adjustment structure (5) for driving the position of the groove processing structure (2) to be adjusted again is provided at the rotation end of the processing rotation structure (4). The groove processing structure (2) is located at the adjustment end of the secondary adjustment structure (5). A horizontally arranged processing conveyor line (6) is provided beside the installation base (1). The processing adjustment structure (3) includes an adjustment electric cylinder (31), and the adjustment electric cylinder (31) is located on the horizontal moving seat (11). A horizontally arranged horizontal column (32) is provided on the horizontal moving seat (11). Two sliders (33) are provided on the horizontal column (32), and a sliding sleeve (34) that is slidably matched with the two sliders (33) is provided on the horizontal column (32). The bottom of the sliding sleeve (34) is connected to the telescopic end of the adjustment electric cylinder (31). A vertical plate (35) is provided at the top of the sliding sleeve (34). An adjustment plate (36) is provided at the end of the horizontal column (32), and the adjustment plate (36) is rotatably connected to the horizontal column (32). A transmission plate (37) that is hinged is provided between the adjustment plate (36) and the vertical plate (35). The processing rotation structure (4) includes a rotation motor. A motor mounting seat (42) is provided at the bottom of the adjustment plate (36), and the rotation motor is located inside the motor mounting seat (42). The secondary adjustment structure (5) includes a rotation mounting seat (51), an arc plate (52), and two arc sliders (53). The rotation mounting seat (51) is connected to the main shaft of the rotation motor. Two arc sliders (53) are provided at the bottom of the arc plate (52). An arc groove (54) that is slidably matched with the arc plate (52) is provided on the rotation mounting seat (51). Four mounting ears (421) that are connected to the rotation mounting seat (51) are provided on the motor mounting seat (42). The arc plate (52) is snap-fitted with the arc groove (54). An arc toothed plate (57) is provided at the middle position of the bottom of the arc plate (52). A rotation motor (55) is provided on the rotation mounting seat (51), and a rotation toothed roller (56) is provided on the main shaft of the rotation motor (55). The rotation toothed roller (56) is rotatably connected to the rotation mounting seat (51), and the rotation toothed roller (56) is in transmission connection with the arc toothed plate (57). The groove processing structure (2) includes a mounting shaft (21), and a grinding wheel roller (22) is provided on the mounting shaft (21). A circular baffle plate (23) is horizontally arranged on the grinding wheel roller (22), and the grinding wheel roller (22) is in sliding fit with the mounting shaft (21); Two driving members are arranged on the arc-shaped plate (52), and the two driving members are distributed at a right angle on the outer side of the grinding wheel roller (22); The driving member includes a driving motor (24) and a driving plate (25); A mounting plate (58) is arranged on the arc-shaped plate (52), and the driving motor (24) is located on the mounting plate (58); One end of the driving plate (25) is connected to the main shaft of the driving motor (24), and the other end of the driving plate (25) is rotatably connected to the grinding wheel roller (22).

2. The multi-directional processing device for the power button slot of a smart phone according to claim 1, wherein: Two symmetrically arranged driving electric cylinders (7) are arranged on the mounting base (1), and the telescopic ends of the two driving electric cylinders (7) are connected to the horizontal moving seat (11).

3. The multi-directional processing device for the power button slot of a smart phone according to claim 1, characterized in that: A power supply limiting structure (8) is arranged at the middle position of the processing conveyor line (6), and the power supply limiting structure (8) includes a first limiting seat (81) horizontally arranged on the processing conveyor line (6); A second limiting seat (82) is arranged on the opposite side of the first limiting seat (81), a limiting electric cylinder (83) is arranged on the second limiting seat (82), and a limiting block (84) is arranged on the telescopic end of the limiting electric cylinder (83).

4. The multi-directional processing device for the power button slot of a smart phone according to claim 1, characterized in that: A partition net is arranged at the power supply limiting structure (8) at the middle position of the processing conveyor line (6), and a dust suction fan is arranged at the bottom of the partition net.

5. The multi-directional processing technology of a multi-directional processing device for the power button slot of a smart phone according to any one of claims 1-4, characterized in that: The multi-directional processing process includes the following steps: S1: Place the mobile phone power button card slot between the limiting block (84) and the first limiting seat (81) on the processing conveyor line (6), and then drive the position of the limiting block (84) to move through the operation of the limiting electric cylinder (83) to limit and fix the position of the mobile phone power button card slot; S2: After limiting the position of the mobile phone power button card slot, when processing the card slot, the two driving motors (24) on the card slot processing structure (2) work simultaneously to drive the positions of the two driving plates (25) to rotate respectively. The rotation of the two driving plates (25) will drive the position of the grinding wheel roller (22) to rotate slightly on the mounting shaft (21). At the same time, when the grinding wheel roller (22) rotates, it can also drive the position of the grinding wheel roller (22) to slide slightly on the mounting shaft (21). When the grinding wheel roller (22) rotates and slides on the mounting shaft (21), it can perform grinding operations on the card slot to grind the burrs left on the card slot due to processing; S3: While grinding, by adjusting the electric cylinder (31), the sliding sleeve (34) is driven to move horizontally on the two sliders (33) of the horizontal column (32). The movement of the sliding sleeve (34) will drive the position of the vertical plate (35) to move, thereby driving the angle of the transmission plate (37) to rotate. The rotation of the transmission plate (37) will drive the adjusting plate (36) to rotate on the horizontal column (32), thereby driving the angular position of the adjusting plate (36) to change, enabling the angle of the grinding wheel roller (22) at the bottom of the adjusting plate (36) to change. When machining the card slots at different angles of the mobile phone power button card slot, the angle of the grinding wheel roller (22) can be adjusted according to the position of the card slot to grind the horizontal edge and the straight edge. When machining the bevel edge of the card slot, the adjusting plate (36) is also driven to rotate on the horizontal column (32), and while rotating, the grinding wheel roller (22) can be driven to grind the bevel edge of the card slot; S4: When grinding the horizontal edge of the card slot, the two driving electric cylinders (7) work simultaneously to drive the horizontal moving seat (11) to move horizontally on the mounting base (1), which will drive the position of the grinding wheel roller (22) to move horizontally, thereby grinding the horizontal edge of the card slot; S5: The rotation motor (55) works to drive the rotating tooth roller (56) to rotate on the rotating mounting seat (51), which will drive the arc-shaped plate (52) to rotate in the arc-shaped groove (54) of the rotating mounting seat (51) through the two arc-shaped sliders (53). The sliding of the arc-shaped plate (52) and the cooperation of the rotating motor to drive the rotating mounting seat (51) to rotate can change the angle according to the position of the card slot to grind the rounded corner of the card slot; S6: During grinding, the dust suction fan on the processing conveyor line (6) works to adsorb the dust generated by grinding.

Citation Information

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