A scanning cartridge assembly multi-axis tapping device

By using the flipping and vibration components of the multi-axis tapping device assembled with a scanning box to remove debris from the hole, the problem of difficult cleaning after tapping with a scanning box is solved, and the processing efficiency is improved.

CN224309752UActive Publication Date: 2026-06-02KUNSHAN TOPBAO METAL PLASTIC CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
KUNSHAN TOPBAO METAL PLASTIC CO LTD
Filing Date
2025-06-04
Publication Date
2026-06-02

AI Technical Summary

Technical Problem

After tapping, residual debris tends to adhere to the inside of the scanning box, making cleaning difficult and reducing processing efficiency.

Method used

Design a scanning box assembly multi-axis tapping device, including a flipping component and a vibration component. The flipping and vibration remove debris from the hole, and the clamping component is used to fix the workpiece and perform machining.

Benefits of technology

It enables rapid cleaning of debris inside the scanning box holes, improving processing efficiency and productivity.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224309752U_ABST
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Abstract

The utility model provides a scanning box assembly multi -shaft tapping device relates to scanning box field, include: workstation, the one side of workstation top is fixed with multi -shaft tapping machine main part, both sides of workstation top all are fixed with support plate, and the rotatory connection with the discharge frame between two support plates, based on the scanning box assembly multi -shaft tapping device of the embodiment of the application, when scanning box tapping is completed, under the movement of turnover subassembly, the rotation of discharge frame is driven, and discharge frame drives the rotation of scanning box, makes the position of the hole part of scanning box downward, then under the movement of vibration subassembly, the continuous vibration of connecting plate is driven, and the continuous vibration of knock plate is driven by connecting plate, and knock plate can knock scanning box in the vibration process, and the residual broken slag in the hole of scanning box can be shaken out under the knocking vibration effect, so the quick cleaning of the broken slag in the hole of scanning box is convenient, thereby the processing of scanning box is convenient, and the processing efficiency of scanning box is improved.
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Description

Technical Field

[0001] This utility model relates to the field of scanning boxes, and in particular to a multi-axis tapping device for assembling scanning boxes. Background Technology

[0002] Scanning boxes are devices that play an important role in various fields. They mainly include resonant scanning Sutter scanning boxes, high-voltage scanning boxes, TH9010216 channel high-voltage scanners, QR code scanning boxes, etc. In the assembly of scanning boxes, it is necessary to tap and drill holes to make internal threads.

[0003] The related technology includes a base and a tapping body. The tapping body is located on the top right side of the base, and a first column is located on the top right side of the base. A round shaft is axially connected to the left side of the first column. A rectangular block is installed on the outer wall of the round shaft. A second groove is formed on the top of the rectangular block along the front-back direction, and a fixing structure is provided in the inner cavity of the second groove. This multi-axis tapping device, by rotating the screw clockwise, can drive the threaded cylinder to move inward simultaneously, causing the clamping plate to move inward as well, clamping and fixing the workpiece. By pressing the rectangular plate inward, the spring is compressed, causing the clamping block to disengage from the inner cavity of the clamping groove, allowing the round shaft to rotate normally, thereby changing the angle of the workpiece. This ensures that the device can adjust the angle of the workpiece according to the needs, making it relatively simple when processing workpieces at other angles is required. It can also fix workpieces of different sizes, making it widely applicable.

[0004] However, after the scanning box is tapped, residual debris tends to adhere to the holes inside. Since the holes are generally small, cleaning the debris inside is quite troublesome, which makes it difficult to clean the scanning box and reduces the processing efficiency.

[0005] Therefore, it is necessary to provide a scanning box assembly multi-axis tapping device to solve the above-mentioned technical problems. Utility Model Content

[0006] To solve the above-mentioned technical problems, this utility model provides a scanning box assembly multi-axis tapping device.

[0007] This utility model provides a scanning box assembly multi-axis tapping device, comprising: a worktable, a multi-axis tapping machine body fixed to one side of the top of the worktable, support plates fixed to both sides of the top of the worktable, a feeding frame rotatably connected between the two support plates, feeding plates fixed to the bottom of both sides of the inner wall of the feeding frame, side plates fixed to the bottom of the two feeding plates, a connecting plate slidably provided between the two side plates, and a striking plate fixed to the top of the connecting plate;

[0008] A flipping assembly is disposed on one side of the support plate and is connected to the feeding frame to drive the rotation of the feeding frame;

[0009] A vibration assembly is disposed on one side of the side plate and is connected to the connecting plate to drive the vibration of the connecting plate.

[0010] Preferably, the flipping assembly includes a motor base fixedly disposed on one side of the support plate, a first drive motor fixedly disposed at the top of the motor base, a drive wheel fixedly disposed on the output shaft of the first drive motor, and a driven wheel meshing with the drive wheel fixedly disposed at one end of the rotating shaft of the feeding frame.

[0011] Preferably, the vibration assembly includes a first slider fixedly disposed at both ends of the connecting plate, a first slide groove for sliding of the first slider is provided on one side of each of the two side plates, the two first slide grooves are elastically connected to the first slider by springs, a second drive motor is fixedly disposed on one side of the side plate, a cam is fixedly disposed on the output shaft of the second drive motor, and a collision plate that abuts against the cam is fixedly disposed on one side of the first slider.

[0012] Preferably, the top ends of both feeding plates are slidably provided with clamping plates, and the two clamping plates are fixed with second sliders on both sides. The inner walls of the feeding frame are provided with second slide grooves for the second sliders to slide, and the second slide grooves are provided with clamping components that drive the second sliders to move.

[0013] Preferably, the clamping assembly includes a bidirectional lead screw rotatably disposed in one of the second slide grooves and threadedly connected to the second slider, and a third drive motor fixed to one side of the inner wall of the second slide groove and fixed to the bidirectional lead screw.

[0014] Preferably, rubber pads are fixed to the opposite sides of both clamps.

[0015] Compared with related technologies, the scanning box assembly multi-axis tapping device provided by this utility model has the following beneficial effects:

[0016] 1. A multi-axis tapping device for assembling a scanning box according to an embodiment of this application, wherein during the tapping of the scanning box, the scanning box is placed on the feeding plate in the feeding frame and fixed. Then, under the operation of the main body of the multi-axis tapping machine, the scanning box can be tapped in multiple axes. After the scanning box is tapped, the feeding frame is rotated by the movement of the flipping component, which in turn drives the scanning box to rotate, so that the hole of the scanning box faces downward. Then, under the movement of the vibration component, the connecting plate is continuously vibrated, and the connecting plate drives the striking plate to continuously vibrate. During the vibration, the striking plate can strike the scanning box, and under the action of the striking vibration, the residual debris in the hole of the scanning box can be shaken out. This facilitates the rapid cleaning of debris in the hole of the scanning box, thereby facilitating the processing of the scanning box and improving the processing efficiency of the scanning box.

[0017] 2. A multi-axis tapping device for assembling a scanning box according to an embodiment of this application, when tapping the scanning box, firstly places the scanning box on the feeding plate in the feeding frame, and then, under the movement of the clamping assembly, drives the two second sliders on the same side to move towards each other, thereby driving the two clamping plates to move towards each other. In this way, the scanning box can be fixed under the clamping of the clamping plates, which facilitates the processing of the scanning box and improves the processing efficiency of the scanning box. Attached Figure Description

[0018] Figure 1 A schematic diagram of a preferred embodiment of this utility model;

[0019] Figure 2 A schematic diagram of the bottom structure of the feeding frame according to a preferred embodiment of this utility model;

[0020] Figure 3 A schematic diagram of the top structure of the feeding frame according to a preferred embodiment of this utility model;

[0021] Figure 4 A preferred embodiment of the present invention is provided. Figure 3 A magnified schematic diagram of the structure at point A in the middle.

[0022] Numbered components in the diagram: 1. Workbench; 2. Main body of multi-axis tapping machine; 3. Support plate; 4. Feeding frame; 5. Feeding plate; 6. Side plate; 7. Connecting plate; 8. Striking plate; 9. Tilting assembly; 91. Motor base; 92. First drive motor; 93. Drive wheel; 94. Driven wheel; 10. Vibration assembly; 101. First slider; 102. First slide groove; 103. Spring; 104. Second drive motor; 105. Cam; 106. Impact plate; 11. Clamping plate; 12. Second slider; 13. Second slide groove; 14. Clamping assembly; 141. Bidirectional lead screw; 142. Third drive motor; 15. Rubber pad. Detailed Implementation

[0023] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0024] Please refer to the following: Figures 1 to 4 A scanning box assembly multi-axis tapping device includes: a worktable 1, a multi-axis tapping machine body 2 fixed on one side of the top of the worktable 1, support plates 3 fixed on both sides of the top of the worktable 1, a feeding frame 4 rotatably connected between the two support plates 3, feeding plates 5 fixed at the bottom of both sides of the inner wall of the feeding frame 4, side plates 6 fixed at the bottom of the two feeding plates 5, a connecting plate 7 slidably provided between the two side plates 6, and a striking plate 8 fixed at the top of the connecting plate 7.

[0025] The flipping component 9 is located on one side of the support plate 3. The flipping component 9 is connected to the feeding frame 4 and is used to drive the rotation of the feeding frame 4.

[0026] Vibration assembly 10 is disposed on one side of side plate 6 and connected to connecting plate 7 for driving vibration of connecting plate 7.

[0027] In this embodiment, when tapping the scanning box, the scanning box is placed on the feeding plate 5 inside the feeding frame 4 and fixed. Then, under the operation of the multi-axis tapping machine body 2, the scanning box can be tapped in multiple axes. After the scanning box is tapped, the feeding frame 4 is rotated by the movement of the flipping component 9. The feeding frame 4 drives the scanning box to rotate, so that the hole of the scanning box faces downward. Then, under the movement of the vibration component 10, the connecting plate 7 is driven to vibrate continuously. The connecting plate 7 drives the striking plate 8 to vibrate continuously. During the vibration, the striking plate 8 can strike the scanning box. Under the action of the striking vibration, the residual debris in the hole of the scanning box can be shaken out. This facilitates the rapid cleaning of the debris in the hole of the scanning box, thereby facilitating the processing of the scanning box and improving the processing efficiency of the scanning box.

[0028] In a further embodiment, such as Figure 3 As shown, the flipping assembly 9 includes a motor base 91 fixedly mounted on one side of the support plate 3. A first drive motor 92 is fixed to the top of the motor base 91. A drive wheel 93 is fixed to the output shaft of the first drive motor 92. A driven wheel 94 that meshes with the drive wheel 93 is fixed to one end of the rotating shaft of the feeding frame 4.

[0029] In this embodiment, after the scanning box is tapped, the first drive motor 92 drives the drive wheel 93 to rotate. The drive wheel 93 drives the driven wheel 94 to rotate, which in turn drives the feeding frame 4 to rotate. The feeding frame 4 then drives the scanning box to rotate, flipping the scanning box so that the scanning box hole faces downwards, which facilitates the discharge of debris from the scanning box hole.

[0030] In a further embodiment, such as Figure 2 As shown, the vibration assembly 10 includes a first slider 101 fixedly disposed at both ends of the connecting plate 7. Each of the two side plates 6 has a first slide groove 102 for sliding the first slider 101. Both first slide grooves 102 are elastically connected to the first slider 101 by springs 103. A second drive motor 104 is fixedly disposed on one side of the side plate 6. A cam 105 is fixedly disposed on the output shaft of the second drive motor 104. A collision plate 106 that abuts against the cam 105 is fixedly disposed on one side of the first slider 101.

[0031] In this embodiment, when the scanning box is flipped, the second drive motor 104 drives the cam 105 to rotate. The rotation of the cam 105 drives the movement of the impact plate 106, which in turn drives the first slider 101 to compress the spring 103. Thus, the reciprocating rotation of the cam 105 and the elastic cooperation of the spring 103 drive the first slider 101 to vibrate continuously. The first slider 101 drives the connecting plate 7 to vibrate continuously, which in turn drives the striking plate 8 to vibrate continuously. During the vibration, the striking plate 8 continuously strikes the scanning box, and the debris adhering to the scanning box hole is discharged under the action of the striking vibration, which facilitates the cleaning of debris.

[0032] In a further embodiment, such as Figure 3 As shown, the top of each of the two feeding plates 5 is provided with a clamping plate 11 that can slide. The two clamping plates 11 are fixed with a second slider 12 on both sides. The inner wall of the feeding frame 4 is provided with a second groove 13 on both sides for the second slider 12 to slide. The second groove 13 is provided with a clamping component 14 that drives the second slider 12 to move.

[0033] In this embodiment, when tapping the scanning box, the scanning box is first placed on the feeding plate 5 in the feeding frame 4. Then, under the movement of the clamping assembly 14, the two second sliders 12 on the same side move towards each other, thereby driving the two clamping plates 11 to move towards each other. In this way, the scanning box can be fixed under the clamping of the clamping plates 11, which facilitates the processing of the scanning box and improves the processing efficiency of the scanning box.

[0034] In a further embodiment, such as Figure 4 As shown, the clamping assembly 14 includes a bidirectional lead screw 141 rotatably disposed in one of the second slide grooves 13 and threadedly connected to the second slider 12, and a third drive motor 142 fixed to one side of the inner wall of the second slide groove 13 and fixed to the bidirectional lead screw 141.

[0035] In this embodiment, after the scanning box is placed on the feeding plate 5, the third drive motor 142 drives the bidirectional lead screw 141 to rotate. The bidirectional lead screw 141 drives the two second sliders 12 to move in opposite directions, thereby driving the two clamping plates 11 to move in opposite directions. The clamping plates 11 can clamp and fix the scanning box during the movement, which facilitates the processing of the scanning box.

[0036] In a further embodiment, such as Figure 4 As shown, rubber pads 15 are fixed to the opposite sides of the two clamping plates 11.

[0037] In this embodiment, by providing a rubber pad 15 on the clamping plate 11, the scanning box can be protected by the rubber pad 15 when the clamping plate 11 clamps and fixes it, so as to avoid damage to the scanning box.

[0038] The working principle of the multi-axis tapping device for scanning box assembly provided by this utility model is as follows: When tapping the scanning box, the scanning box is first placed on the feeding plate 5 in the feeding frame 4. Then, under the movement of the third drive motor 142, the bidirectional lead screw 141 is driven to rotate. The bidirectional lead screw 141 drives the two second sliders 12 to move in opposite directions, thereby driving the two clamping plates 11 to move in opposite directions. The clamping plates 11 can clamp and fix the scanning box during movement, which facilitates the processing of the scanning box and improves the processing efficiency of the scanning box. Then, under the operation of the multi-axis tapping machine body 2, the scanning box can be tapped in multiple axes. After the scanning box is tapped, under the movement of the first drive motor 92, the drive wheel 93 is driven to rotate. The drive wheel 93 drives the driven wheel 94 to rotate, which in turn drives the feeding frame 4 to rotate, feeding the material. The frame 4 drives the scanning box to rotate, flipping it so that the scanning box hole faces downwards. Then, under the movement of the second drive motor 104, the cam 105 rotates. The rotation of the cam 105 drives the movement of the impact plate 106, which in turn drives the first slider 101 to compress the spring 103. Thus, under the reciprocating rotation of the cam 105 and the elastic cooperation of the spring 103, the first slider 101 can be driven to vibrate continuously. The first slider 101 drives the connecting plate 7 to vibrate continuously, which in turn drives the striking plate 8 to vibrate continuously. During the vibration, the striking plate 8 can continuously strike the scanning box, and under the action of the striking vibration, the debris adhering to the scanning box hole can be discharged. This facilitates the rapid cleaning of debris in the scanning box hole, thereby facilitating the processing of the scanning box and improving the processing efficiency of the scanning box.

[0039] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the content of this utility model specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.

Claims

1. A scanning box assembly multi-axis tapping device, characterized in that, include: A workbench (1) is provided, with a multi-axis tapping machine body (2) fixed on one side of the top of the workbench (1). Support plates (3) are fixed on both sides of the top of the workbench (1). A feeding frame (4) is rotatably connected between the two support plates (3). Feeding plates (5) are fixed on the bottom of both sides of the inner wall of the feeding frame (4). Side plates (6) are fixed at the bottom of the two feeding plates (5). A connecting plate (7) is slidably provided between the two side plates (6). A striking plate (8) is fixed at the top of the connecting plate (7). A flipping assembly (9) is disposed on one side of the support plate (3). The flipping assembly (9) is connected to the feeding frame (4) and is used to drive the feeding frame (4) to rotate. A vibration assembly (10) is disposed on one side of the side plate (6) and is connected to the connecting plate (7) for driving the vibration of the connecting plate (7).

2. The scanning box assembly multi-axis tapping device according to claim 1, characterized in that, The flipping assembly (9) includes a motor base (91) fixedly disposed on one side of the support plate (3). A first drive motor (92) is fixed at the top of the motor base (91). A drive wheel (93) is fixed on the output shaft of the first drive motor (92). A driven wheel (94) meshing with the drive wheel (93) is fixed at one end of the rotating shaft of the feeding frame (4).

3. The scanning box assembly multi-axis tapping device according to claim 2, characterized in that, The vibration assembly (10) includes a first slider (101) fixedly disposed at both ends of the connecting plate (7). Each of the two side plates (6) has a first groove (102) for sliding the first slider (101). Both first grooves (102) are elastically connected to the first slider (101) by springs (103). A second drive motor (104) is fixedly disposed on one side of the side plate (6). A cam (105) is fixedly disposed on the output shaft of the second drive motor (104). A collision plate (106) that abuts against the cam (105) is fixedly disposed on one side of the first slider (101).

4. The scanning box assembly multi-axis tapping device according to claim 1, characterized in that, The top of each of the two feeding plates (5) is slidably provided with a clamping plate (11), and a second slider (12) is fixed on both sides of the two clamping plates (11). The inner wall of the feeding frame (4) is provided with a second slide groove (13) for the second slider (12) to slide. The second slide groove (13) is provided with a clamping component (14) that drives the second slider (12) to move.

5. A scanning box assembly multi-axis tapping device according to claim 4, characterized in that, The clamping assembly (14) includes a bidirectional lead screw (141) rotatably disposed in one of the second slide grooves (13) and threadedly connected to the second slider (12), and a third drive motor (142) fixed to the bidirectional lead screw (141) is fixed on one side of the inner wall of the second slide groove (13).

6. A scanning box assembly multi-axis tapping device according to claim 5, characterized in that, Rubber pads (15) are fixed to the opposite sides of the two clamps (11).