Auxiliary installation carrier for data line port iron shell
By designing a data cable port metal shell auxiliary installation carrier, mechanized assembly of the upper and lower metal shells was achieved, solving the problems of low efficiency and wear in manual assembly, and improving production efficiency and product standardization.
Patent Information
- Application Number
- CN202422872861.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-22
- Publication Date
- 2025-11-14
- Estimated Expiration
- 2034-11-22
AI Technical Summary
The existing data cable port metal casing is inefficient to assemble manually and is prone to wear due to improper clamping force, making it difficult to achieve efficient and standardized production.
Design a data cable port metal shell auxiliary installation carrier, including an upper carrier, a lower carrier, and a driving component. The upper and lower metal shells are precisely aligned and snapped together using a mechanized method. The assembly accuracy and stability are improved by using structures such as limiting grooves, guide surfaces, and guide blocks.
This improved the assembly efficiency and accuracy of the upper and lower iron shells, reduced the risk of wear, and ensured the stability of the production process and product quality.
Smart Images

Figure CN223552846U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of data cable processing, and in particular to an auxiliary mounting carrier for the iron shell of a data cable port. Background Technology
[0002] With the increasing prevalence of mobile phones, computers, and other electronic devices in people's lives and work, data cables used for charging and data transmission have become indispensable electronic accessories. Currently, data cable production mainly relies on manual labor to complete each process, resulting in low efficiency and a low degree of product standardization. With the advent of Industry 2.0, the demand for automation and standardization in data cable production is growing, placing higher demands on data cable manufacturing equipment.
[0003] The data cable port includes an upper metal shell, a lower metal shell, and an interface located between the two. The lower metal shell is generally rectangular with curved sides, while the upper metal shell is square with a top cover. The sides of the upper metal shell are curved, corresponding to the sides of the lower metal shell. The bottom wall and side walls of the upper metal shell are rounded. The upper metal shell is placed directly opposite the lower metal shell, and then the upper and lower metal shells are moved closer to each other, so that the upper and lower metal shells are interference-fitted, making them difficult to separate. This clamps the interface and other parts between them. The interface is already assembled to the end of the data cable before the upper and lower metal shells are spliced together. Therefore, after the upper and lower shells are spliced together, the data cable assembly is basically complete.
[0004] Regarding the aforementioned technologies, the applicant believes that the following defects exist: both the upper and lower iron shells are small items, and manual assembly requires the assistance of tools for clamping. The upper and lower iron shells are prone to falling off the tools, and the upper or lower iron shells may be worn down when the clamping force is too great. In addition, the efficiency of manual assembly is low. Summary of the Invention
[0005] To improve the efficiency of assembling the upper and lower metal shells, this application provides an auxiliary installation carrier for data cable port metal shells, which can assist the machine in assembling the upper and lower metal shells.
[0006] The data cable port metal shell auxiliary installation carrier provided in this application adopts the following technical solution:
[0007] A data cable port metal shell auxiliary installation carrier includes an upper carrier, a lower carrier, and a driving component. The bottom of the upper carrier is provided with a setting part for setting the upper metal shell, and the top of the lower carrier is provided with a limiting groove for limiting the movement of the lower metal shell in the horizontal direction. The lower carrier is also provided with a limiting component for limiting the displacement of the lower metal shell in the vertical direction. The upper carrier is located above the lower carrier, and the driving component drives the upper carrier to move in a direction closer to or farther from the lower carrier.
[0008] By adopting the above technical solution, the upper iron shell is placed in the setting part, and then the lower iron shell is placed in the limiting groove. The limiting groove restricts the horizontal movement of the lower iron shell, and the limiting member restricts the vertical movement of the lower iron shell in the limiting groove, so that the lower iron shell is stably set in the limiting groove. The driving member is activated, so that the upper carrier carries the upper iron shell close to the lower iron shell, so that the upper iron shell is directly opposite the lower iron shell and the upper iron shell is engaged with the outer periphery of the lower iron shell, thereby completing the assembly of the two. The engagement assembly of the two can be completed mechanically, which is beneficial to improving the efficiency of the assembly.
[0009] Preferably, the limiting member includes multiple blocks disposed at the top of the limiting groove, the multiple blocks being disposed on both sides of the limiting groove, the blocks protruding from the inner wall of the limiting groove, and when the lower iron shell is installed in the limiting groove, the top wall of the lower iron shell abuts against the bottom wall of the block.
[0010] The top of the block is provided with an inclined guide surface, which extends in the direction pointing towards the bottom wall of the limiting groove. The side of the block away from the limiting groove is provided with a clearance space for the block to deform.
[0011] By adopting the above technical solution, the upper iron shell is moved closer to the lower iron shell until it contacts the stop block. The upper iron shell pushes the stop block away along the guide surface, causing the stop block to deform towards the clearance space, thus allowing the stop block to avoid the movement of the upper iron shell. Then, the upper iron shell is pressed down further, causing it to engage with the outer periphery of the lower iron shell, completing the alignment and assembly of the upper and lower iron shells. The guide surface makes it easier for the upper iron shell to move into the space aligned with the lower iron shell, restricting the movement of the lower iron shell while guiding the movement of the upper iron shell.
[0012] Preferably, the limiting groove includes a first surface, a second surface, a third surface, and a fourth surface located at the bottom. The first surface and the third surface are arranged facing each other. The fourth surface is also integrally connected with a blocking surface. The blocking surface is arranged to avoid the wire. The blocking surface is connected to the first surface and is located on the side of the fourth surface away from the second surface. When the lower iron shell is placed in the limiting groove, both ends of the lower iron shell along the length of the wire abut against the second surface and the blocking surface, respectively.
[0013] By adopting the above technical solution, the blocking surface blocks one end of the lower iron shell connecting wire, so that the lower iron shell can be installed more stably in the limiting groove, which helps to improve the stability of the limiting groove installation.
[0014] Preferably, the upper vehicle has a guide block on its side wall, and the lower vehicle has a guide groove for the guide block to be inserted into.
[0015] By adopting the above technical solution, the guide block is inserted into the guide groove, which can help align the upper and lower iron shells, making the assembly accuracy of the upper and lower iron shells higher.
[0016] Preferably, the downloading device is further provided with a wire groove, and the wire portion is snapped into the wire groove, the length direction of the wire groove being consistent with the extension direction of the fourth surface.
[0017] By adopting the above technical solution, fixing part of the wire can prevent bending between the wire and the lower iron shell, which could lead to breakage at the connection between the lower iron shell and the wire, thus protecting the connection between the wire and the lower iron shell.
[0018] Preferably, the download fixture is also hinged with a cover plate, which is used to press down the wire.
[0019] By adopting the above technical solution, the cover plate is pressed on the wire, so that the wire is stably installed in the wire groove, making it difficult for the wire to shift along the length of the wire groove and pull off the iron shell.
[0020] Preferably, the top wall of the downloader is also provided with a hook, and the cover plate is provided with a groove that cooperates with the hook.
[0021] By adopting the above technical solution, the cover plate is rotated so that it presses onto the wire and the hook engages in the slot, making the cover plate more securely pressed onto the wire.
[0022] In summary, this utility model has the following beneficial technical effects:
[0023] The upper iron shell is placed in the setting part, and then the lower iron shell is placed in the limiting groove. The limiting groove restricts the lower iron shell from moving horizontally, and the limiting component restricts the lower iron shell from moving vertically within the limiting groove, so that the lower iron shell is stably set in the limiting groove. The driving component is activated, so that the upper carrier carries the upper iron shell close to the lower iron shell, so that the upper iron shell is directly facing the lower iron shell and is engaged with the outer periphery of the lower iron shell, thereby completing the assembly of the two. The engagement assembly of the two can be completed mechanically, which helps to improve the efficiency of the assembly.
[0024] The blocking surface blocks one end of the lower iron shell connecting wire, allowing the lower iron shell to be installed more securely in the limiting groove, which helps to improve the stability of the limiting groove installation. Attached Figure Description
[0025] Figure 1 This is a schematic diagram of the overall structure of a data cable port metal shell auxiliary installation carrier according to this application.
[0026] Figure 2 yes Figure 1 Enlarged schematic diagram of part A in the middle.
[0027] Figure 3 It is a schematic diagram used to show the relative positions of the vehicle after the upper and lower iron shells are assembled.
[0028] Explanation of reference numerals in the attached drawings: 1. Upper carrier; 2. Lower carrier; 3. Setting part; 4. Restriction groove; 5. Upper iron shell; 6. Lower iron shell; 7. Stop block; 8. Guide surface; 9. Second surface; 10. Blocking surface; 11. Wire; 12. Guide block; 13. Guide groove; 14. Wire groove; 15. Cover plate; 16. Hook. Detailed Implementation
[0029] The following is in conjunction with the appendix Figure 1-3 This application will be described in further detail.
[0030] This application discloses an auxiliary installation carrier for a data cable port metal casing, referring to... Figure 1 as well as Figure 2 A data cable port metal shell auxiliary installation carrier includes an upper carrier 1, a lower carrier 2, and a driving component. The bottom of the upper carrier 1 is provided with a setting part 3 for setting the upper metal shell 5. The top of the lower carrier 2 is provided with a limiting groove 4 for limiting the movement of the lower metal shell 6 in the horizontal direction. The lower carrier 2 is also provided with a limiting component for limiting the displacement of the lower metal shell 6 in the vertical direction. The upper carrier 1 is located above the lower carrier 2. The driving component drives the upper carrier 1 to move in a direction closer to or away from the lower carrier 2.
[0031] The upper iron shell 5 is placed in the setting part 3, and then the lower iron shell 6 is placed in the limiting groove 4. The limiting groove 4 restricts the lower iron shell 6 from moving horizontally, and the limiting member restricts the lower iron shell 6 from moving vertically within the limiting groove 4, so that the lower iron shell 6 is stably set in the limiting groove 4. The driving member is activated, so that the upper carrier 1 carries the upper iron shell 5 close to the lower iron shell 6, so that the upper iron shell 5 is directly facing the lower iron shell 6, and the upper iron shell 5 is snapped onto the outer periphery of the lower iron shell 6, thereby completing the assembly of the two. The snapping assembly of the two can be completed mechanically, which is beneficial to improving the efficiency of the assembly of the two.
[0032] The driving component can be a motor, cylinder, or lead screw and slider mechanism.
[0033] The movement of the setting part 3 relative to the upper iron shell 5 can be either gripping or adsorbing.
[0034] Reference Figure 1 as well as Figure 2 In this embodiment, the limiting member includes multiple blocks 7 disposed on the top of the limiting groove 4. The multiple blocks 7 are disposed on both sides of the limiting groove 4. The blocks 7 protrude from the inner wall of the limiting groove 4. When the lower iron shell is installed in the limiting groove 4, the top wall of the lower iron shell 6 abuts against the bottom wall of the blocks 7.
[0035] The top of the stop block 7 is provided with an inclined guide surface 8, which extends in the direction pointing to the bottom wall of the limiting groove 4. The side of the stop block 7 away from the limiting groove 4 is provided with a clearance space for the deformation of the stop block 7.
[0036] The upper iron shell 5 is moved closer to the lower iron shell 6 until it contacts the stop block 7. The upper iron shell 5 pushes the stop block 7 away along the guide surface 8, causing the stop block 7 to deform towards the clearance space, thus allowing the stop block 7 to avoid the movement of the upper iron shell 5. Then, the upper iron shell 5 is pressed down further, causing it to engage with the outer periphery of the lower iron shell 6, completing the alignment and assembly of the upper iron shell 5 and the lower iron shell 6. The guide surface 8 makes it easier for the upper iron shell 5 to move into the space aligned with the lower iron shell 6, restricting the movement of the lower iron shell 6 while guiding the movement of the upper iron shell 5.
[0037] Reference Figure 1 as well as Figure 2 In this embodiment, the limiting groove 4 includes a first surface, a second surface 9, a third surface, and a fourth surface located at the bottom. The first surface and the third surface are arranged facing each other. The fourth surface is also integrally connected with a blocking surface 10. The blocking surface 10 is arranged to avoid the wire 11. The blocking surface 10 is connected to the first surface and is located on the side of the fourth surface away from the second surface 9. When the lower iron shell 6 is placed in the limiting groove 4, the two ends of the lower iron shell 6 along the length direction of the wire 11 abut against the second surface 9 and the blocking surface 10 respectively.
[0038] The blocking surface 10 blocks one end of the connecting wire 11 of the lower iron shell 6, so that the lower iron shell 6 can be installed more stably in the limiting groove 4, which helps to improve the stability of the installation of the limiting groove 4.
[0039] Reference Figure 1 as well as Figure 3 The upper carrier 1 has a guide block 12 on its side wall, and the lower carrier 2 has a guide groove 13 for the guide block 12 to be inserted into.
[0040] The guide block 12 is inserted into the guide groove 13, which can help align the upper iron shell 5 and the lower iron shell 6, making the assembly accuracy of the upper iron shell 5 and the lower iron shell 6 higher.
[0041] Reference Figure 1 as well as Figure 2 In this embodiment, the downloader 2 is also provided with a wire groove 14, and part of the wire 11 is inserted into the wire groove 14. The length direction of the wire groove 14 is consistent with the extension direction of the fourth surface.
[0042] The fixed part of the wire 11 can prevent the connection between the lower iron shell 6 and the wire 11 from breaking due to bending between the wire 11 and the lower iron shell 6, which helps to protect the connection between the wire 11 and the lower iron shell 6.
[0043] Reference Figure 1 as well as Figure 2 In this embodiment, the download tool 2 is also hinged with a cover plate 15, which is used to press down the wire 11.
[0044] The cover plate 15 presses on the wire 11, so that the wire 11 is securely installed in the wire groove 14, making it difficult for the wire 11 to shift along the length of the wire groove 14 and pull off the iron shell 6.
[0045] Reference Figure 1 as well as Figure 2 In this embodiment, the top wall of the downloader 2 is also provided with a hook 16, and the cover plate 15 is provided with a groove that cooperates with the hook 16.
[0046] Rotate the cover plate 15 so that it presses onto the wire 11 and the hook 16 engages in the slot, making the cover plate 15 more securely pressed onto the wire 11.
[0047] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.
Claims
1. A data cable port metal shell auxiliary mounting carrier, characterized in that: The device includes an upper carrier (1), a lower carrier (2), and a driving component. The bottom of the upper carrier (1) is provided with a setting part (3) for setting the upper iron shell (5). The top of the lower carrier (2) is provided with a limiting groove (4) for limiting the lower iron shell (6). The limiting groove (4) limits the movement of the lower iron shell (6) in the horizontal direction. The lower carrier (2) is also provided with a limiting component for limiting the displacement of the lower iron shell (6) in the vertical direction. The upper carrier (1) is located above the lower carrier (2). The driving component drives the upper carrier (1) to move in a direction close to or away from the lower carrier (2).
2. The data cable port metal shell auxiliary installation carrier according to claim 1, characterized in that: The limiting component includes multiple blocks (7) disposed on the top of the limiting groove (4). The multiple blocks (7) are disposed on both sides of the limiting groove (4). The blocks (7) protrude from the inner wall of the limiting groove (4). When the lower iron shell (6) is installed in the limiting groove (4), the top wall of the lower iron shell (6) abuts against the bottom wall of the blocks (7). The top of the stop (7) is provided with an inclined guide surface (8), which extends in the direction pointing to the bottom wall of the limiting groove (4). The side of the stop (7) away from the limiting groove (4) is provided with a clearance space for the deformation of the stop (7).
3. The data cable port metal shell auxiliary installation carrier according to claim 2, characterized in that: The limiting groove (4) includes a first surface, a second surface (9), a third surface, and a fourth surface located at the bottom. The first surface and the third surface are arranged facing each other. The fourth surface is also integrally connected with a blocking surface (10). The blocking surface (10) is arranged to avoid the wire (11). The blocking surface (10) is connected to the first surface. The blocking surface (10) is located on the side of the fourth surface away from the second surface (9). When the lower iron shell (6) is placed in the limiting groove (4), the two ends of the lower iron shell (6) along the length direction of the wire (11) abut against the second surface (9) and the blocking surface (10) respectively.
4. The data cable port metal shell auxiliary installation carrier according to claim 2, characterized in that: The upper carrier (1) has a guide block (12) on its side wall, and the lower carrier (2) has a guide groove (13) for the guide block (12) to be inserted into.
5. The data cable port metal shell auxiliary installation carrier according to claim 3, characterized in that: The downloading device (2) is also provided with a wire groove (14), and the wire (11) is partially engaged in the wire groove (14). The length direction of the wire groove (14) is consistent with the extension direction of the fourth surface.
6. The data cable port metal shell auxiliary mounting carrier according to claim 5, characterized in that: The download fixture (2) is also hinged to a cover plate (15) for pressing down the wire (11).
7. The data cable port metal shell auxiliary mounting carrier according to claim 6, characterized in that: The top wall of the downloader (2) is also provided with a hook (16), and the cover plate (15) is provided with a groove that cooperates with the hook (16).