Machining auxiliary device for mobile phone camera production

By designing a mobile phone camera processing auxiliary device that coordinates the clamping and moving components, the problems of inaccurate positioning and vibration were solved, achieving automated clamping and unloading, and improving processing accuracy and efficiency.

CN223961159UActive Publication Date: 2026-03-03DONGGUAN ZHANXIN ELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202423212953.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-25
Publication Date
2026-03-03
Estimated Expiration
2034-12-25

AI Technical Summary

Technical Problem

In the manufacturing process of mobile phone cameras, inaccurate positioning and shaking issues lead to poor product quality and imaging effects, which are difficult to effectively solve with existing technologies.

Method used

Design a processing auxiliary device including a clamping component, a moving component, a photoelectric sensor, and a control panel. The device achieves automatic clamping and release of a mobile phone camera through the coordinated work of a rotary motor, a lead screw, and a nut, and achieves automatic material discharge by combining a photoelectric sensor and an electric push rod.

Benefits of technology

It enables flexible clamping and automatic unloading of different camera models, improving processing accuracy and work efficiency, and ensuring the quality of finished products and imaging effects.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of camera processing, and particularly relates to a processing auxiliary device for mobile phone camera production, which comprises a base, a top plate is arranged on the top of the base, a sliding plate is obliquely arranged on the right side of the top plate, sliding rails are symmetrically arranged on the top of the top plate front and back, and sliding blocks are arranged on the sliding rails. Clamping assemblies used for fixing the mobile phone camera are arranged on the sliding blocks correspondingly, and a moving assembly driving the two clamping assemblies to conduct clamping operation is arranged on the middle side of the bottom of the top plate. By adjusting the position of the ejector plate, the device can flexibly adapt to square focusing motors of different sizes, so that the machining requirements of various mobile phone camera models are met, and automatic clamping and releasing of the mobile phone camera are achieved through cooperative work of the rotating motor, the lead screw, the nut, the mounting block, the sliding block and other assemblies.
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Description

Technical Field

[0001] This utility model belongs to the field of camera processing technology, and in particular relates to a processing auxiliary device for mobile phone camera production. Background Technology

[0002] With the rapid advancement of smartphone technology, the performance of mobile phone cameras has become a crucial factor for consumers when making purchasing decisions. To improve photo quality, modern mobile phones generally employ multi-camera configurations. This not only requires each camera to possess excellent optical performance such as high resolution and low noise, but also places extremely high demands on the precision of its manufacturing process. In the production of mobile phone cameras, processing precision is a key factor affecting the quality of the finished product and the final image effect. Generally speaking, processing precision is a common challenge in mobile phone camera manufacturing. These issues encompass inaccurate positioning or vibrations that may occur during the initial processing of the product. These problems negatively impact product quality and image quality. Therefore, it is necessary to design a processing auxiliary device for mobile phone camera production that can adjust, clamp, and fix the camera according to its dimensions, facilitating subsequent processing operations. Utility Model Content

[0003] In order to overcome the shortcomings of inaccurate positioning or vibration that may be encountered in the processing of mobile phone cameras, the technical problem of this utility model is to provide a processing auxiliary device for the production of mobile phone cameras.

[0004] A processing auxiliary device for mobile phone camera production includes a base, a top plate, a sliding plate, a slide rail, a slider, a clamping assembly, a moving assembly, a moving rod, a baffle, an elastic element, and a control panel. The base has a top plate on top, a sliding plate inclined to the right side of the top plate, slide rails symmetrically arranged front and back on the top of the top plate, each slide rail having a slider, and each slider having a clamping assembly for fixing the mobile phone camera. A moving assembly for driving the two clamping assemblies to perform clamping operations is located on the bottom center of the top plate. A moving rod symmetrically slides front and back on the left side of the top plate, with a baffle between the tops of the moving rods. A square groove for the baffle to slide downwards is opened on the top plate. An elastic element is sleeved on the moving rod, one end of which is connected to the bottom of the top plate, and the other end of which is connected to a protrusion at the bottom of the moving rod. A control panel is located on the top left side of the top plate, containing a controller connected to the moving assembly's power component via wiring.

[0005] In a preferred embodiment of this utility model, the clamping assembly includes a fixing block, a clamping block, a sliding shaft, a top plate, a horizontal plate, and a locking screw. The slider is provided with a fixing block, and a clamping block is provided on the side of the two fixing blocks that are close to each other. A slotted hole is symmetrically opened on the clamping block, and a sliding shaft is slidably arranged in the slotted hole of the clamping block. A top plate is arranged between the bottom of the two sliding shafts on the same side, and a horizontal plate is arranged between the top of the two sliding shafts on the same side. A locking screw is vertically screwed into the middle of the horizontal plate.

[0006] In a preferred embodiment of this utility model, the moving component includes a lead screw, a nut, a mounting block, and a rotary motor. The lead screw is rotatably mounted on the bottom center of the top plate, with opposite patterns on the front and rear parts of the lead screw. A nut is screwed onto the lead screw, and a mounting block is mounted on each nut. The mounting block is connected to a nearby slider. A rotary motor is mounted on the top of the base and is connected to the end of the lead screw that is near the top of the base. The control panel is connected to the rotary motor via wiring.

[0007] In a preferred embodiment of the present invention, the device further includes wedges and top shafts. Wedges are provided on both the front and rear sides of the right side wall of the baffle, and top shafts are provided on both sides of the right side wall of the mounting block. The top shafts cooperate with the adjacent wedges.

[0008] In a preferred embodiment of this utility model, it further includes an electric push rod, a connecting block, and a push column. The top plate has symmetrical sliding holes at the top center. An electric push rod is provided on the top left side of the base. The push rod of the electric push rod is connected to the connecting block. The top of the connecting block is symmetrically provided with push columns. The push columns pass through the sliding holes at the top center of the top plate. The control panel is connected to the electric push rod through a wire.

[0009] In a preferred embodiment of this utility model, it further includes a photoelectric sensor and a metal sheet. The photoelectric sensors are symmetrically arranged on the top of the baffle. The photoelectric sensors are connected to the controller of the control panel through a circuit. A metal sheet is arranged on the right end of the top shaft. The metal sheet cooperates with the photoelectric sensor.

[0010] The beneficial effects of this utility model are as follows: 1. By adjusting the position of the top plate, this device can flexibly adapt to focusing motors of different sizes, thereby meeting the processing requirements of various mobile phone camera models. Through the coordinated work of components such as the rotary motor, lead screw, nut, mounting block, and slider, this device realizes the automatic clamping and release of mobile phone cameras. After processing, the rotary motor can be reversed to release the clamping, facilitating the automatic unloading of the mobile phone cameras.

[0011] 2. The photoelectric sensor can intelligently detect the position of the metal sheet. When the metal sheet is detected, the controller controls the electric push rod to extend, pushing the mobile phone camera to the right and sliding it into the collection frame. This design not only improves the accuracy of material output but also automates the operation. After the mobile phone camera is pushed out, the elastic element drives the baffle and photoelectric sensor to reset, preparing for the next processing. This design allows the device to be reused, improving work efficiency. Attached Figure Description

[0012] Figure 1 This is a three-dimensional structural diagram of the present invention.

[0013] Figure 2 This is a schematic diagram of the installation structure of the clamping component and the moving component of this utility model.

[0014] Figure 3 This is a three-dimensional structural diagram of the first part of this utility model.

[0015] Figure 4 This is a three-dimensional structural diagram of the second part of this utility model.

[0016] Figure 5 This is a schematic diagram of the installation structure of the electric push rod, connecting block and push column of this utility model.

[0017] The components are as follows: 1-base, 2-top plate, 21-slide plate, 3-slide rail, 4-slider, 5-clamping assembly, 51-fixing block, 52-clamping block, 53-slot hole, 54-slide shaft, 55-top plate, 56-horizontal plate, 57-locking screw, 6-moving assembly, 61-lead screw, 62-nut, 63-mounting block, 64-rotary motor, 7-moving rod, 8-baffle, 9-elastic element, 10-wedge block, 11-top shaft, 12-control panel, 13-slide hole, 14-electric push rod, 15-connecting block, 16-push column, 17-photoelectric sensor, 18-metal sheet. Detailed Implementation

[0018] The present invention will now be described in detail with reference to the accompanying drawings.

[0019] Example: A processing auxiliary device for mobile phone camera production, such as... Figure 1-5As shown, the device includes a base 1, a top plate 2, a sliding plate 21, a slide rail 3, a slider 4, a clamping assembly 5, a moving assembly 6, a moving rod 7, a baffle 8, an elastic element 9, a wedge 10, a top shaft 11, a control panel 12, an electric push rod 14, a connecting block 15, a push column 16, a photoelectric sensor 17, and a metal sheet 18. The top plate 2 is mounted on the four corners of the base 1 via support pillars. A sliding plate 21 is inclined on the right side of the top plate 2. Slide rails 3 are symmetrically mounted on the top of the top plate 2 via bolts. Each slide rail 3 has a slider 4, and each slider 4 has a clamping assembly 5 for fixing the phone camera. A moving assembly 6 is located on the bottom center of the top plate 2, which drives the two clamping assemblies 5 to perform clamping operations. A moving rod 7 is symmetrically slidably mounted on the left side of the top plate 2. A baffle 8 is located between the top of the moving rod 7. A square groove for the baffle 8 to slide downwards is opened on the top plate 2. An elastic element 9 is sleeved on the moving rod 7, with one end of the elastic element 9 connected to the top plate 2. The bottom of plate 2 is connected, and the other end of elastic element 9 is connected to the bottom protrusion of moving rod 7. A control panel 12 is set on the top left side of top plate 2. The control panel 12 contains a controller, which is connected to the power component of moving assembly 6 through a line. Wedges 10 are set on the front and back of the right side wall of baffle 8. Top shafts 11 are set on the right side wall of mounting block 63. Top shafts 11 cooperate with the adjacent wedges 10. Sliding holes 13 are symmetrically opened in the front and back of the top center of top plate 2. An electric push rod 14 is set on the top left side of base 1. The push rod of electric push rod 14 is connected to connecting block 15. Push columns 16 are symmetrically set on the top of connecting block 15. Push columns 16 pass through the sliding holes 13 in the top center of top plate 2. Control panel 12 is connected to electric push rod 14 through a line. Photoelectric sensors 17 are symmetrically set on the front and back of top of baffle 8. Photoelectric sensors 17 are connected to the controller of control panel 12 through a line. Metal plates 18 are set on the right end of top shaft 11. Metal plates 18 cooperate with photoelectric sensors 17.

[0020] like Figure 1-2 As shown, the clamping assembly 5 includes a fixing block 51, a clamping block 52, a sliding shaft 54, a top plate 55, a horizontal plate 56, and a locking screw 57. The slider 4 is provided with a fixing block 51. A clamping block 52 is provided on the side of the two fixing blocks 51 that are close to each other. A slotted hole 53 is symmetrically opened on the left and right sides of the clamping block 52. The sliding shaft 54 ​​is slidably arranged in the slotted hole 53 of the clamping block 52. A top plate 55 is provided between the bottom of the two sliding shafts 54 on the same side. A horizontal plate 56 is provided between the top of the two sliding shafts 54 on the same side. A locking screw 57 is vertically screwed into the middle of the horizontal plate 56. The locking screw 57 is pressed and fixed to the top of the clamping block 52.

[0021] like Figure 1-2As shown, the moving assembly 6 includes a lead screw 61, a nut 62, a mounting block 63, and a rotary motor 64. The lead screw 61 is rotatably mounted on the bottom center of the top plate 2. The front and rear parts of the lead screw 61 have opposite patterns. The nut 62 is screwed onto the lead screw 61. Mounting blocks 63 are mounted on the nuts 62. The mounting blocks 63 are connected to the adjacent sliders 4 by screws. The rotary motor 64 is mounted on the top of the base 1. The end of the rotary motor 64 adjacent to the lead screw 61 is connected by a coupling. The control panel 12 is connected to the rotary motor 64 by wiring.

[0022] When processing a mobile phone camera, the position of the top plate 55 is adjusted according to the size of the square focusing motor required for the camera. The operator uses a screwdriver to loosen the locking screw 57, then moves the horizontal plate 56, which, via the sliding shaft 54, moves the top plate 55, adjusting the distance between the top plate 55 and the clamping block 52 accordingly. The locking screw 57 is then tightened again, with its bottom end abutting against the fixing block 51, thus securing the top plate 55. The operator then places the mobile phone camera on the top plate 2, with the focusing motor side against the baffle 8, and starts the rotation. When motor 64 is activated, it drives lead screw 61 to rotate. Since the threads at the front and rear ends of lead screw 61 are opposite, the two nuts 62 move towards each other. The nuts 62 drive slider 4 to move towards each other along slide rail 3 via mounting block 63. The two clamping blocks 52 then clamp the lens assembly. The adjusted top plate 55 clamps the square focusing motor, thus fixing the entire mobile phone camera. The operator can then perform processing. After the operation is completed, the operator starts the rotary motor 64 to reverse, which drives lead screw 61 to reverse. The two nuts 62 move in opposite directions, and the clamping assembly 5 no longer clamps the mobile phone camera. When the mounting block 63 moves backward and backward, the top shaft 11 on the mounting block 63 presses against the inclined surface of the wedge block 10, thereby causing the wedge block 10 to drive the baffle 8 to move downward. The elastic element 9 is compressed. When the photoelectric sensor 17 detects the position of the metal piece 18, it transmits a signal to the controller of the control panel 12. The controller controls the electric push rod 14 to extend. The electric push rod 14 drives the push column 16 to move to the right through the connecting block 15. The push column 16 pushes the mobile phone camera to the right. As the baffle 8 moves downward, the mobile phone camera that has completed the processing operation moves along the slide plate 21. Slide it into the placed collection box, and then control the rotary motor 64 via the control panel 12 to drive the lead screw 61 to rotate in the opposite direction. The top shaft 11 on the mounting block 63 no longer presses against the inclined surface of the wedge block 10. The elastic element 9 drives the baffle 8 and photoelectric sensor 17 to reset. When the photoelectric sensor 17 cannot detect the metal piece 18, it transmits a signal to the controller in the control panel 12, which in turn controls the electric push rod 14 to reset. This device has a simple structure and can perform clamping operations on mobile phone cameras of different models, which is convenient for subsequent processing and can achieve automatic material discharge.

[0023] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present invention.

Claims

1. A processing auxiliary device for mobile phone camera manufacturing, characterized in that: The device includes a base (1), a top plate (2) on the top of the base (1), a sliding plate (21) inclined on the right side of the top plate (2), slide rails (3) symmetrically arranged on the top of the top plate (2), sliders (4) on each slide rail (3), and clamping components (5) for fixing the mobile phone camera on each slider (4). A moving component (6) for driving the two clamping components (5) to perform clamping operations is arranged on the middle side of the bottom of the top plate (2). A moving rod is symmetrically slidably arranged on the left side of the top plate (2). 7) A baffle (8) is provided between the top of the moving rod (7). A square groove for the baffle (8) to slide downward is opened on the top plate (2). An elastic element (9) is sleeved on the moving rod (7). One end of the elastic element (9) is connected to the bottom of the top plate (2), and the other end of the elastic element (9) is connected to the bottom protrusion of the moving rod (7). A control panel (12) is provided on the top left side of the top plate (2). The control panel (12) has a controller. The controller is connected to the power component of the moving assembly (6) through a line.

2. The processing auxiliary device for mobile phone camera production according to claim 1, characterized in that: The clamping assembly (5) includes a fixing block (51), and the fixing block (51) is provided on each of the sliders (4). A clamping block (52) is provided on the side of the two fixing blocks (51) that are close to each other. A slotted hole (53) is symmetrically opened on the clamping block (52). A sliding shaft (54) is slidably provided in the slotted hole (53) of the clamping block (52). A top plate (55) is provided between the bottoms of the two sliding shafts (54) on the same side. A horizontal plate (56) is provided between the tops of the two sliding shafts (54) on the same side. A locking screw (57) is vertically screwed into the middle of the horizontal plate (56).

3. The processing auxiliary device for mobile phone camera production according to claim 2, characterized in that: The moving component (6) includes a lead screw (61). The lead screw (61) is rotatably mounted on the bottom side of the top plate (2). The front and rear parts of the lead screw (61) have opposite patterns. A nut (62) is screwed onto the lead screw (61). Each nut (62) is provided with a mounting block (63). The mounting block (63) is connected to a nearby slider (4). A rotary motor (64) is provided on the top of the base (1). The rotary motor (64) is connected to the end of the lead screw (61) that is close to it. The control panel (12) is connected to the rotary motor (64) through a line.

4. The processing auxiliary device for mobile phone camera production according to claim 3, characterized in that: It also includes wedges (10), with wedges (10) provided on both the front and back sides of the right side wall of the baffle (8), and top shafts (11) provided on the right side wall of the mounting block (63), with the top shafts (11) cooperating with the adjacent wedges (10).

5. The processing auxiliary device for mobile phone camera production according to claim 4, characterized in that: It also includes an electric push rod (14), and the top plate (2) has symmetrical sliding holes (13) in the middle of the top. The electric push rod (14) is provided on the left side of the top of the base (1). The push rod of the electric push rod (14) is connected to a connecting block (15). The top of the connecting block (15) is symmetrically provided with push columns (16). The push columns (16) pass through the sliding holes (13) in the middle of the top of the top plate (2). The control panel (12) is connected to the electric push rod (14) through a line.

6. The processing auxiliary device for mobile phone camera production according to claim 5, characterized in that: It also includes a photoelectric sensor (17), which is symmetrically arranged on the top of the baffle (8). The photoelectric sensor (17) is connected to the controller of the control panel (12) through a line. A metal plate (18) is provided on the right end of the top shaft (11), and the metal plate (18) cooperates with the photoelectric sensor (17).