A straightening structure for manufacturing electronic component data cables

CN224629784UActive Publication Date: 2026-08-14SHENZHEN XINYISHENG TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-08
Publication Date
2026-08-14

AI Technical Summary

Technical Problem

[0005]本实用新型的目的是为了解决现有技术中存在以下缺点,压棒对数据线进行压紧时,无法根据数据线的直径调整压紧力,对于过粗的数据线,可能因压紧力过大导致外皮破损,对于过细的数据线,可能因压紧力不足导致拉动时打滑,影响拉直效果,而提出的一种电子元件数据线生产用拉直结构

Benefits of technology

1、通过支撑座上的调节螺杆与升降块的配合,可转动调节螺杆带动升降块上下移动,进而改变压棒的初始高度,由于移动杆上套设有伸缩弹簧,升降块的高度调整会改变压棒对数据线的压紧力,既能避免对过粗数据线因压紧力过大导致外皮破损,又能防止对过细数据线因压紧力不足出现拉动打滑,确保不同直径数据线均能获得稳定的拉直效果;

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Abstract

This utility model relates to the field of data cable manufacturing technology, and more particularly to a straightening structure for producing electronic component data cables. It includes a processing table, a horizontally slidable movable seat mounted on the processing table, a support seat fixedly mounted on the movable seat, an adjusting screw vertically rotatably mounted on the support seat, a lifting block threaded onto the adjusting screw, an mounting sleeve fixedly mounted on the lifting block, a vertically slidable movable rod inserted into the mounting sleeve, a pressure bar fixedly mounted at the lower end of the movable rod, a pull ring fixedly mounted at the upper end, and a telescopic spring sleeved on the movable rod. This utility model changes the pressure bar's clamping force on the data cable by adjusting the height of the lifting block. This avoids damage to the outer sheath of excessively thick data cables due to excessive clamping force, and also prevents slippage of excessively thin data cables due to insufficient clamping force, ensuring a stable straightening effect for data cables of different diameters.
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Description

Technical Field

[0001] This utility model relates to the field of data cable manufacturing technology, and in particular to a straightening structure for manufacturing electronic component data cables. Background Technology

[0002] Data cables are essential components for connecting hard drives and motherboards. They are usually included with the purchase of a motherboard. Each data cable can only connect two IDE devices, and a straightening structure is required during the data cable manufacturing process.

[0003] Chinese patent CN213584573U discloses a straightening structure for data cable production. It consists of a processing table, a U-shaped plate, a heating plate, an L-shaped plate, a connecting plate, a fixing sleeve, a fixing plate, a transmission mechanism, a fixing mechanism, and a straightening mechanism working together. This allows for the straightening of the remaining parts of the data cable, solving the problem that existing straightening structures, which only straighten the cable ends, often result in difficulty in straightening the remaining parts of the data cable, leading to bending of the remaining parts. This improves the practicality of the straightening structure to a certain extent.

[0004] In the aforementioned patent documents, the spring force is fixed. When the pressure bar presses the data cable, the pressure force cannot be adjusted according to the diameter of the data cable. For data cables that are too thick, the outer sheath may be damaged due to excessive pressure. For data cables that are too thin, the slippage may occur when pulling due to insufficient pressure, affecting the straightening effect. Utility Model Content

[0005] The purpose of this invention is to address the following shortcomings in the existing technology: when the pressure bar presses the data cable, it is impossible to adjust the pressing force according to the diameter of the data cable; for data cables that are too thick, the outer sheath may be damaged due to excessive pressing force; for data cables that are too thin, the slippage may occur when pulling due to insufficient pressing force, thus affecting the straightening effect. Therefore, this invention proposes a straightening structure for the production of electronic component data cables.

[0006] To achieve the above objectives, the present invention adopts the following technical solution: A straightening structure for producing electronic component data cables includes a processing table, a straightening mechanism mounted on the processing table, a horizontally opening movable groove on the processing table, a movable seat horizontally slidingly mounted in the movable groove via a drive component, and a support seat fixedly mounted on the movable seat. An adjusting screw is vertically rotatably mounted on the support base. A lifting block is threaded onto the adjusting screw. A limiting component for restricting the rotation of the lifting block is provided on the support base. An installation sleeve is fixedly mounted on the lifting block. A moving rod is vertically slidably inserted into the installation sleeve. A pressure bar is fixedly mounted at the lower end of the moving rod, and a pull ring is fixedly mounted at the upper end. A telescopic spring is sleeved on the moving rod, and both ends of the telescopic spring are fixedly connected to the pressure bar and the installation sleeve, respectively.

[0007] Preferably, the lifting block has symmetrically provided limit holes, and the limiting component includes two limit rods that are vertically slidably inserted into the two limit holes and two stops that are fixedly installed on the upper ends of the two limit rods. Both limit rods are vertically fixedly installed on the support base.

[0008] Preferably, the drive assembly includes a threaded screw horizontally rotatably mounted in the moving slot and a drive motor fixedly mounted on one side of the processing table. One end of the threaded screw passes through the moving slot and is fixedly connected to the output end of the drive motor. The moving seat is threadedly sleeved on the threaded screw.

[0009] Preferably, a rotating collar is rotatably mounted on the processing table via a support assembly, a circular cleaning cotton block is fixedly mounted on the inner wall of the rotating collar, a through hole is opened in the middle of the cleaning cotton block, and a transmission assembly for driving the rotating collar to rotate is provided on the processing table.

[0010] Preferably, the support assembly includes a support ring and two support rods fixedly mounted on the support ring. Both support rods are fixedly mounted on the processing table. The rotating collar has an annular rotating groove on its surface, and the support ring is rotatably inserted into the rotating groove.

[0011] Preferably, the transmission assembly includes a main gear fixedly sleeved on a threaded screw and a driven gear fixedly sleeved on a rotating collar, wherein the main gear and the driven gear are meshed together.

[0012] The beneficial effects of this utility model are as follows: 1. By cooperating with the adjusting screw on the support base and the lifting block, the adjusting screw can be rotated to drive the lifting block to move up and down, thereby changing the initial height of the pressure bar. Since the moving rod is fitted with a telescopic spring, the height adjustment of the lifting block will change the pressure of the pressure bar on the data cable. This can prevent the outer sheath from being damaged due to excessive pressure on the data cable that is too thick, and can also prevent the data cable that is too thin from slipping due to insufficient pressure, ensuring that data cables of different diameters can obtain a stable straightening effect. 2. Under the action of the transmission component, the rotating collar rotates synchronously with the threaded screw, driving the cleaning cotton block to wipe the surface of the data cable through which it passes, which can effectively remove dust, impurities and other contaminants from the surface of the data cable. Cleaning is achieved simultaneously during the straightening process, improving the appearance quality of the data cable and its adaptability to subsequent processing. Attached Figure Description

[0013] Figure 1 This is a three-dimensional structural diagram of a straightening structure for the production of electronic component data cables proposed in this utility model. Figure 2 A three-dimensional structural diagram of the movable seat, support seat, adjusting screw, lifting block, pressure bar, support assembly, rotating collar, and cleaning cotton block; Figure 3 A three-dimensional exploded view of the rotating collar, cleaning cotton block, support assembly, and driven gear; Figure 4 for Figure 2 Enlarged view of the structure at point A in the middle.

[0014] In the diagram: 1. Processing table, 2. Straightening mechanism, 3. Moving seat, 4. Support seat, 5. Adjusting screw, 6. Lifting block, 7. Mounting sleeve, 8. Moving rod, 9. Pressure bar, 10. Pull ring, 11. Telescopic spring, 12. Limiting rod, 13. Stop block, 14. Threaded screw, 15. Drive motor, 16. Rotating collar, 17. Cleaning cotton block, 18. Support ring, 19. Support rod, 20. Main gear, 21. Driven gear. Detailed Implementation

[0015] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.

[0016] Reference Figure 1 A straightening structure for the production of electronic component data cables includes a processing table 1, a straightening mechanism 2 mounted on the processing table 1, a horizontally opening movable groove on the processing table 1, a movable seat 3 horizontally slidably mounted in the movable groove via a drive component, and a support seat 4 fixedly mounted on the movable seat 3. The straightening mechanism 2 is disclosed in Chinese Patent Publication No. CN213584573U, entitled "A Straightening Structure for the Production of Data Cables", and will not be described in detail here.

[0017] Reference Figure 2 and Figure 4 An adjusting screw 5 is vertically rotatably mounted on the support base 4. A lifting block 6 is threaded onto the adjusting screw 5. The support base 4 is provided with a limiting component for limiting the rotation of the lifting block 6. An installation sleeve 7 is fixedly mounted on the lifting block 6. A moving rod 8 is vertically slidably inserted into the installation sleeve 7. A pressure bar 9 is fixedly mounted at the lower end of the moving rod 8, and a pull ring 10 is fixedly mounted at the upper end. A telescopic spring 11 is sleeved on the moving rod 8. The two ends of the telescopic spring 11 are fixedly connected to the pressure bar 9 and the installation sleeve 7, respectively.

[0018] When the adjusting screw 5 is rotated, the lifting block 6 is threadedly connected to the adjusting screw 5, which can drive the lifting block 6 to move up and down. When the lifting block 6 rises and falls, it will drive the mounting sleeve 7 to rise and fall synchronously, thereby changing the initial height of the pressure bar 9. When the lifting block 6 falls, the distance between the pressure bar 9 and the support base 4 decreases, thereby increasing the clamping force of the pressure bar 9 on the data cable. When the lifting block 6 rises, the distance between the pressure bar 9 and the support base 4 increases, and the clamping force of the pressure bar 9 on the data cable weakens. Through this adjustment, the clamping force can be flexibly adjusted according to the diameter of the data cable to avoid damage to the outer sheath of the data cable that is too thick or slippage of the data cable that is too thin.

[0019] The lifting block 6 has symmetrical limit holes. The limiting components include two limit rods 12 that are vertically slidably inserted into the two limit holes and two stops 13 that are fixedly installed on the upper ends of the two limit rods 12. Both limit rods 12 are vertically fixedly installed on the support base 4. During the up and down movement of the lifting block 6, the limit rods 12 ensure that the lifting block 6 does not deviate or rotate during the lifting process, and the stops 13 can prevent the lifting block 6 from falling off the top of the limit rods 12, thus ensuring structural stability.

[0020] The drive assembly includes a threaded screw 14 horizontally rotatably mounted in the moving slot and a drive motor 15 fixedly mounted on one side of the processing table 1. One end of the threaded screw 14 passes through the moving slot and is fixedly connected to the output end of the drive motor 15. The moving seat 3 is threadedly sleeved on the threaded screw 14. After the drive motor 15 starts, its output end drives the threaded screw 14 to rotate horizontally in the moving slot. Since the moving seat 3 is threadedly connected to the threaded screw 14 and the moving seat 3 is restricted from rotating by the moving slot, the rotation of the threaded screw 14 is converted into the horizontal sliding of the moving seat 3 along the moving slot, thereby driving the support seat 4 to move horizontally synchronously, realizing the pulling straightening of the data cable.

[0021] Reference Figure 3 A rotating collar 16 is rotatably mounted on the processing table 1 via a support assembly. A circular cleaning cotton block 17 is fixedly mounted on the inner wall of the rotating collar 16. A through hole is opened in the middle of the cleaning cotton block 17. The processing table 1 is provided with a transmission assembly for driving the rotating collar 16 to rotate. The support assembly includes a support ring 18 and two support rods 19 fixedly mounted on the support ring 18. Both support rods 19 are fixedly mounted on the processing table 1. An annular rotating groove is opened on the surface of the rotating collar 16. The support ring 18 is rotatably inserted into the rotating groove. The transmission assembly includes a main gear 20 fixedly sleeved on the threaded screw 14 and a driven gear 21 fixedly sleeved on the rotating collar 16. The main gear 20 and the driven gear 21 are meshed and connected.

[0022] In the support assembly, the support rod 19 is fixed on the processing table 1, and the support ring 18 is rotatably connected to the rotating collar 16 through the rotating groove, which not only supports the stable placement of the rotating collar 16, but also does not affect its rotation. In the transmission assembly, when the threaded screw 14 rotates, it will drive the main gear 20 to rotate synchronously. The main gear 20 meshes with the driven gear 21, which in turn drives the rotating collar 16 to rotate. When the data cable passes through the through hole of the cleaning cotton block 17, the rotating cleaning cotton block 17 will wipe the surface of the data cable 360° to remove dust, oil and other impurities, and achieve synchronous cleaning during the straightening process.

[0023] In this invention, when straightening data cables of different diameters, rotating the adjusting screw 5 causes the lifting block 6 to move up and down due to its threaded connection with the adjusting screw 5. As the lifting block 6 moves up and down, it causes the mounting sleeve 7 to move up and down synchronously, thereby changing the initial height of the pressure bar 9. When the lifting block 6 descends, the distance between the pressure bar 9 and the support base 4 decreases, thus increasing the pressure of the pressure bar 9 on the data cable. When the lifting block 6 rises, the distance between the pressure bar 9 and the support base 4 increases, thus weakening the pressure of the pressure bar 9 on the data cable. Through this adjustment, the pressure can be flexibly adjusted according to the diameter of the data cable, preventing damage to the outer sheath of excessively thick data cables or slippage of excessively thin data cables.

[0024] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. A straightening structure for electronic component data line production, comprising a processing table (1), characterized in that, A straightening mechanism (2) is installed on the processing table (1). A moving groove is horizontally opened on the processing table (1). A moving seat (3) is horizontally slidably installed in the moving groove through a drive component. A support seat (4) is fixedly installed on the moving seat (3). An adjusting screw (5) is vertically rotatably mounted on the support base (4). A lifting block (6) is threaded onto the adjusting screw (5). A limiting component for limiting the rotation of the lifting block (6) is provided on the support base (4). An installation sleeve (7) is fixedly mounted on the lifting block (6). A moving rod (8) is vertically slidably inserted into the installation sleeve (7). A pressure bar (9) is fixedly mounted at the lower end of the moving rod (8), and a pull ring (10) is fixedly mounted at the upper end. A telescopic spring (11) is sleeved on the moving rod (8). The two ends of the telescopic spring (11) are fixedly connected to the pressure bar (9) and the installation sleeve (7) respectively.

2. The straightening structure for electronic component data line production according to claim 1, characterized by, The lifting block (6) has symmetrical limit holes. The limiting component includes two limit rods (12) that are vertically slidably inserted into the two limit holes and two stops (13) that are fixedly installed on the upper ends of the two limit rods (12). Both limit rods (12) are vertically fixedly installed on the support base (4).

3. The straightening structure for electronic component data line production according to claim 1, characterized by, The drive assembly includes a threaded screw (14) that is horizontally rotatably installed in the moving slot and a drive motor (15) that is fixedly installed on one side of the processing table (1). One end of the threaded screw (14) passes through the moving slot and is fixedly connected to the output end of the drive motor (15). The moving seat (3) is threaded onto the threaded screw (14).

4. The straightening structure for electronic component data line production according to claim 3, characterized by, A rotating collar (16) is rotatably mounted on the processing table (1) via a support assembly. A circular cleaning cotton block (17) is fixedly mounted on the inner wall of the rotating collar (16). A through hole is opened in the middle part of the cleaning cotton block (17). A transmission assembly for driving the rotating collar (16) to rotate is provided on the processing table (1).

5. The straightening structure for electronic component data line production according to claim 4, characterized by, The support assembly includes a support ring (18) and two support rods (19) fixedly installed on the support ring (18). Both support rods (19) are fixedly installed on the processing table (1). The rotating collar (16) has an annular rotating groove on its surface, and the support ring (18) is rotatably inserted into the rotating groove.

6. The straightening structure for electronic component data line production according to claim 4, wherein The transmission assembly includes a main gear (20) fixedly sleeved on a threaded screw (14) and a driven gear (21) fixedly sleeved on a rotating collar (16), wherein the main gear (20) and the driven gear (21) are meshed together.

Citation Information

Patent Citations

  • Straightening structure for data line production

    CN213584573U