Wire harness bunching device for computer

By designing a reasonable cable harness and combining a clamping plate with fixing components, the problem of cables sagging due to gravity affecting user comfort and replacement efficiency has been solved. This achieves stable cable fixing and classified management, improving replacement efficiency and user comfort.

CN224138629UActive Publication Date: 2026-04-17李瑾
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
李瑾
Filing Date
2025-05-15
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

In the current computer cable harness, the cables tend to sag and pull on external devices due to their own weight, affecting user comfort and efficiency. Furthermore, locating the cables is difficult when replacing devices, resulting in low replacement efficiency.

Method used

A cable harness organizer was designed, comprising a cable box, a mounting base, a bracket, a wire clamping assembly, and a fixing assembly. Through the cooperation of the wire clamping plate and the fixing assembly, the cable can be classified, managed, and fixed. The matching setting of protrusions and fixing holes prevents the cable from falling, and the wire clamping assembly can be rotated to accommodate cables of different diameters.

Benefits of technology

It achieves secure cable fixing, improves user comfort and replacement efficiency, has a wide range of applications, is suitable for fixing cables of different diameters, and significantly improves user work efficiency and comfort.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a wire harness bunching device for a computer, which comprises a threading box, a fixing seat arranged on the upper portion of the threading box, a support fixedly connected between the threading box and the fixing seat, a fixing assembly fixedly connected to the top end of the fixing seat, a through hole penetrating through the center position of the fixing assembly, and a receiving groove downwards formed in the center position of the fixing seat from the top. The size of the inner diameter of the through hole is the same as that of the inner diameter of the bearing groove, a wire pressing assembly is arranged in the bearing groove and rotationally connected with the fixing base, the top of the wire pressing assembly is sleeved with a fixing cover, the fixing cover is fixedly connected with the fixing assembly, and a plurality of evenly-formed strip-shaped limiting holes are formed in the bottom end of the fixing cover; the top surface of the fixing plate is uniformly provided with base baffle plates of which the number corresponds to that of the wire pressing plates, the middle parts of the base baffle plates are provided with guide grooves in a penetrating manner, and the wire pressing plates rotate along the guide grooves. The cable fixing device is reasonable in design and good in cable fixing effect, realizes classified management of cables, is high in replacement efficiency, and improves the working efficiency and the use comfort of a user.
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Description

Technical Field

[0001] This utility model belongs to the field of computer equipment technology, and specifically relates to a wire harness harness for computers. Background Technology

[0002] A computer cable harness is a hardware accessory that typically consists of an outer panel, a frame, cable clips, and fixing components. It is used to neatly bundle and secure the power and data cables inside a computer, preventing them from becoming tangled or loose. At the same time, the cable harness can also organize the cables connecting external devices such as monitors, keyboards, and mice, avoiding messy cables and effectively improving the aesthetics of the office desk.

[0003] However, in existing cable management products, desktop cable organizers are only used to collect and organize cables from external devices such as monitors, keyboards, and mice to prevent them from becoming tangled. During use, however, each cable will sag due to its own weight, pulling on frequently used external devices like the keyboard and mouse. This can lead to issues such as the mouse unexpectedly leaving the mousepad, or difficulty pulling the keyboard and mouse out. These problems arise because the cables are not properly secured, causing them to sag and significantly impacting usability. To improve user efficiency and comfort, and considering that existing cable bundlers are mostly single-hole designs, where all cables are tightly confined to a single hole, it can be time-consuming to locate the cable needed to replace a faulty external device. Forceful pulling can also cause internal breakage of other cables, severely impacting replacement efficiency and potentially shortening the lifespan of other devices. Therefore, it is essential to provide a computer cable bundler that is rationally designed, provides good securing performance, facilitates classification and management, and improves replacement efficiency. Utility Model Content

[0004] The purpose of this invention is to overcome the shortcomings of the prior art and provide a computer wire harness bundler that is reasonably designed, has a good fixing effect, is convenient for classification and management, and improves replacement efficiency.

[0005] The purpose of this utility model is achieved as follows: A wire harness for computers includes a wire-passing box, a fixing base on the upper part of the wire-passing box, a bracket fixedly connected between the wire-passing box and the fixing base, a fixing component fixedly connected to the top of the fixing base, a through hole through the center of the fixing component, and a receiving groove formed from the top downwards at the center of the fixing base, the through hole and the receiving groove having the same inner diameter, a wire-pressing component disposed in the receiving groove, the wire-pressing component being rotatably connected to the fixing base, and a top sleeve of the wire-pressing component. The assembly includes a fixed cover, which is fixedly connected to a fixing component. The bottom end of the fixed cover has several evenly arranged strip-shaped limiting holes. The pressing component includes a body, and the side wall of the body is evenly provided with pressing plates corresponding to the strip-shaped limiting holes one by one. The pressing plates are just stuck in the limiting holes and can rotate circumferentially within the limiting holes. The fixing component includes a fixing plate, and the top surface of the fixing plate is evenly provided with a number of base baffles corresponding to the pressing plates. The center of the base baffle has a guide groove, and the pressing plates rotate along the guide groove.

[0006] Preferably, there are four brackets, which extend from the four corners of the junction box to the fixed base, and the four brackets form a triangular structure with each other and one side of the junction box.

[0007] Preferably, the inner wall of the receiving groove has several evenly distributed fixing holes, and the top surface of the inner wall of the fixing hole has two semi-circular grooves. The central angle of the arc cross-section of the semi-circular groove is 160° to 175°. The fixing seat also includes a reset push rod corresponding to each fixing hole. The reset push rod is slidably disposed in the fixing hole. The inner wall of the receiving groove also has a fixing groove, which is disposed at the lower part of the fixing hole.

[0008] Preferably, the reset push rod includes a protrusion A and a compression spring. The top surface of the protrusion A is semi-circular, and the diameter of the semi-circular top surface of the protrusion A is the same as the diameter of the semi-circular groove. The arc angle of the cross section of the semi-circular top surface of the protrusion A is 180°. A groove A is provided inside the reset push rod, and the protrusion A is disposed inside the groove A. A compression spring is connected between the bottom end of the protrusion A and the bottom surface inside the groove A. The compression spring pushes the semi-circular top surface of the protrusion A out from the top surface of the groove A and protrudes above the top surface of the reset push rod. At this time, the lower shoulder of the protrusion A is just stuck by the inner top surface of the protrusion A.

[0009] Preferably, the fixing cover includes a collar and a stop block, the stop block is fixed to the bottom surface of the collar, the inner side wall of the base baffle is tightly fixedly connected to the outer side wall of the collar and the stop block, the bottom plane of the stop block is fixedly connected to the upper surface of the fixing plate, and the strip-shaped limiting hole penetrates through the side wall around the stop block.

[0010] Preferably, a semi-circular wire-bundling hole is provided at the left end of the base baffle away from the center of the fixing plate.

[0011] Preferably, the crimping assembly further includes a knob, an annular protrusion, protrusion B, a torsion spring, a compression spring, a control shaft, a fixing shaft, and a pin. The knob is fixedly disposed at the center of the top surface of the main body. The annular protrusion is fixed on the side wall of the lower part of the main body. The annular protrusion has the same size as the fixing groove. Protrusion B is located above the annular protrusion. The outer diameter of the main body has the same size as the inner diameter of the receiving groove. Protrusion B is on the same plane as the fixing hole, and the outer diameter of protrusion B has the same size as the inner diameter of the fixing hole. A groove B is provided at the connection between protrusion B and the main body. Protrusion B is disposed inside the groove B. Protrusion B includes a boss, and the compression spring is disposed on the boss. Between the bottom end and the inner bottom surface of the groove B, the compression spring pushes the top surface of the protrusion B out from the top surface of the groove B and protrudes outside the body. At this time, the lower shoulder of the protrusion B is just stuck by the inner top surface of the protrusion B. The bottom end of the boss is fixed with a connecting shaft. The end of the connecting shaft is provided with a connecting hole. The connecting shaft passes through the inside of the body and can move along the axial direction of the connecting shaft inside the body. The control shaft passes through the knob and extends into the inside of the body. The bottom end of the control shaft just passes through the connecting hole and is movably connected to the connecting shaft. The compression spring is provided on the upper side of the body and has a rotating groove corresponding to the number of pressure plates. The pressure plates are set in the rotating groove and are rotatably connected to the fixed plate.

[0012] Preferably, the pressure plate includes a pressure rod, and a semi-circular pressure hole is provided through the right side of the end of the pressure plate away from the main body. The pressure rod is located at the end of the pressure plate close to the main body. A pin is provided at the connection between the pressure rod and the rotating groove. The pressure rod can rotate around the pin. A fixed shaft is provided between the right side wall of the pressure rod and the left side wall of the rotating groove. The upper and lower ends of the fixed shaft are fixedly connected to the main body. A torsion spring is sleeved on the fixed shaft. One end of the torsion spring is fixed to the right side wall of the pressure rod, and the other end is fixed to the left side wall of the rotating groove.

[0013] Preferably, the knob has vertical striped grooves on its side wall.

[0014] Preferably, the inner diameter of the crimping hole is the same as that of the wire bundle hole.

[0015] The beneficial effects of this utility model are as follows:

[0016] 1. This utility model uses a combination of a wire clamping component and a fixing component. The wire clamping holes on the base baffle and the wire clamping holes on the wire clamping plate form several through spaces, which can place each cable in different through spaces to achieve classified management of cables of different external devices. When it is necessary to replace a certain external device, it is convenient to find it and improves the replacement efficiency. At the same time, the matching setting of protrusion B and fixing holes allows the cable to be fixed by rotating the wire clamping component, preventing the cable from falling due to its own weight and causing external devices such as mice and keyboards to be pulled or moved. This improves the cable fixing effect and also significantly improves the user's work efficiency and comfort.

[0017] 2. This utility model uses a torsion spring installed in the rotating groove, which can fix cables of different diameters separately. When the rotating wire pressing assembly fixes the large-diameter cable, although the wire pressing plate that fixes the cable is not fixed, there is still a gap between the wire pressing plate and the side wall of the rotating groove. The knob of the wire pressing assembly can be rotated. Due to the existence of the gap, the knob will drive the body to rotate, which in turn drives the wire pressing plate corresponding to the small-diameter cable to press and fix it. Thus, cables of different diameters can be fixed, the fixing effect is better, and the application range is wide.

[0018] In summary, this utility model has a reasonable design, provides good cable fixing effect, realizes classified management of cables, has high replacement efficiency, and improves the user's work efficiency and comfort. Attached Figure Description

[0019] Figure 1 This is a three-dimensional schematic diagram of the present invention.

[0020] Figure 2 This is a three-dimensional schematic diagram of the pressure wire assembly of this utility model.

[0021] Figure 3 This is a schematic diagram of the internal structure of the pressure wire assembly body of this utility model.

[0022] Figure 4 This is a utility model Figure 3 A magnified view of a portion of point A in the middle.

[0023] Figure 5 This is a cross-sectional schematic diagram of protrusion B of this utility model.

[0024] Figure 6 This is a schematic diagram of the structure of the control shaft and the connecting shaft of this utility model.

[0025] Figure 7 This is a three-dimensional schematic diagram of the connection between the fixing base and the fixing component of this utility model.

[0026] Figure 8This is a three-dimensional schematic diagram of the fixing component of this utility model.

[0027] Figure 9 This is a three-dimensional schematic diagram of the fixing cover of this utility model.

[0028] Figure 10 This is a three-dimensional schematic diagram of the fixing base of this utility model.

[0029] Figure 11 This is a three-dimensional schematic diagram of the resetting push rod of this utility model.

[0030] Figure 12 This is a cross-sectional schematic diagram of the fixing hole of this utility model.

[0031] Figure 13 This is a cross-sectional schematic diagram of the reset push rod of this utility model.

[0032] In the diagram: 1. Cable box 2. Bracket 3. Fixing base 301. Fixing hole 302. Fixing groove 303. Reset push rod 3031. Protrusion A 3032. Groove A 304. Semicircular groove 4. Fixing cover 401. Collar 402. Stop block 403. Strip-shaped limiting hole 5. Fixing assembly 501. Fixing plate 502. Cable bundle hole 503. Base baffle 504. Guide groove 6. Wire pressing assembly 601. Knob 602. Body 6021. Groove B 603. Annular protrusion 604. Protrusion B 6041. Boss 605. Wire pressing plate 6051. Wire pressing hole 6052. Pressure rod 606. Torsion spring 607. Fixing shaft 608. Pin 609. Rotation groove 610. Control shaft 611. Connecting shaft 612. Connecting hole 7. Compression spring 8. Through hole 9. Receiving groove. Detailed Implementation

[0033] The following are specific embodiments of the present invention, and the technical solution of the present invention will be further described in conjunction with the accompanying drawings. However, the present invention is not limited to these embodiments.

[0034] like Figure 1-13As shown, a wire harness for computers includes a cable management box 1, a mounting base 3 on the upper part of the cable management box 1, a bracket 2 fixedly connected between the cable management box 1 and the mounting base 3, a fixing component 5 fixedly connected to the top of the mounting base 3, a through hole 8 penetrating the center of the fixing component 5, and a receiving groove 9 extending downwards from the top of the center of the mounting base 3. The through hole 8 and the receiving groove 9 have the same inner diameter. A wire clamping component 6 is disposed in the receiving groove 9 and is rotatably connected to the mounting base 3. A fixing cover 4 is fitted on the top of the wire clamping component 6 and is fixedly connected to the fixing component 5. The bottom end of the fixed cover 4 is provided with several evenly arranged strip-shaped limiting holes 403. The wire pressing assembly 6 includes a body 602. The side wall of the body 602 is evenly provided with wire pressing plates 605 corresponding to the strip-shaped limiting holes 403. The wire pressing plates 605 are just stuck in the limiting holes and can rotate circumferentially in the limiting holes. The fixed assembly 5 includes a fixed plate 501. The top surface of the fixed plate 501 is evenly provided with a number of base baffles 503 corresponding to the wire pressing plates 605. The middle of the base baffles 503 is provided with a guide groove 504. The wire pressing plates 605 rotate along the guide groove 504.

[0035] The base baffle 503 has a guide groove 504 running through the middle, which can accommodate the wire pressing plate 605. When the wire pressing assembly 6 is rotated, the wire pressing plate 605 can enter the guide groove 504. The side wall of the wire pressing plate 605 can fix and squeeze the cable, ensuring the fixing effect.

[0036] The bracket 2 consists of four brackets, which extend from the four corners of the cable box 1 to the fixing base 3. Each pair of brackets 2 forms a triangular structure with one side of the cable box 1. The triangular structure of the brackets 2 can improve the stability of the cable tie.

[0037] The receiving groove 9 has several evenly distributed fixing holes 301 penetrating its inner wall. The top surface of the inner wall of the fixing hole 301 has two semi-circular grooves 304. The central angle of the arc cross section of the semi-circular groove 304 is 160° to 175°. The fixing seat 3 also includes a reset push rod 303 corresponding to the fixing hole 301. The reset push rod 303 is slidably disposed in the fixing hole 301. The inner wall of the receiving groove 9 also has a fixing groove 302, which is disposed at the lower part of the fixing hole 301.

[0038] The semi-circular groove 304 is used to fix the reset push rod 303, and the fixing groove 302 is used to accommodate and fix the annular protrusion 603 on the wire pressing assembly 6.

[0039] The reset push rod 303 includes a protrusion A3031 and a compression spring 7. The top surface of the protrusion A3031 is semi-circular, and the diameter of the semi-circular top surface of the protrusion A3031 is the same as the diameter of the semi-circular groove 304. The arc angle of the cross section of the semi-circular top surface of the protrusion A3031 is 180°. A groove A3032 is provided inside the reset push rod 303. The protrusion A3031 is set inside the groove A3032. A compression spring 7 is connected between the bottom end of the protrusion A3031 and the bottom surface inside the groove A3032. The compression spring 7 pushes the semi-circular top surface of the protrusion A3031 out from the top surface of the groove A3032 and protrudes above the top surface of the reset push rod 303. At this time, the lower shoulder of the protrusion A3031 is just stuck by the inner top surface of the protrusion A3031.

[0040] The compression spring 7 ensures that the protrusion A3031 is always in an ejected state. When the reset push rod 303 moves, it will drive the protrusion A3031 to move together. When the protrusion A3031 moves into the semi-circular groove 304 in the fixing hole 301, the protrusion A3031 will be pushed into the semi-circular groove 304 under the elastic force of the compression spring 7, thereby completing the fixation of the reset push rod 303. The top surface of the protrusion A3031 is set as a semi-circle, and the arc angle of the semi-circular top surface of the protrusion A3031 is 180°. The central angle of the arc section of the semi-circular groove 304 is 160°~175°. If an external force is applied to the reset push rod 303, the semi-circular top surface can be pushed out into the semi-circular groove 304 under the action of the external force.

[0041] The fixed cover 4 includes a collar 401 and a stop block 402. The stop block 402 is fixed to the bottom surface of the collar 401. The inner side wall of the base baffle 503 is tightly fixedly connected to the outer side wall of the collar 401 and the stop block 402. The bottom plane of the stop block 402 is fixedly connected to the upper surface of the fixed plate 501. The strip-shaped limiting hole 403 passes through the side wall around the stop block 402.

[0042] The strip-shaped limiting hole 403 can accommodate the wire clamping plate 605 to pass through and can move back and forth within the strip-shaped limiting hole 403.

[0043] The base baffle 503 has a semi-circular cable bundling hole 502 extending through its left end away from the center of the fixing plate 501. The cable bundling hole 502 is used to accommodate cables, facilitating the classification, management, and fixing of cables.

[0044] The wire pressing assembly 6 also includes a knob 601, an annular protrusion 603, a protrusion B604, a torsion spring 606, a compression spring 7, a control shaft 610, a fixed shaft 607, and a pin 608. The knob 601 is fixedly disposed at the center of the top surface of the body 602. The annular protrusion 603 is fixed on the side wall of the lower part of the body 602. The annular protrusion 603 has the same size as the fixing groove 302. The protrusion B604 is located above the annular protrusion 603. The outer diameter of the body 602 has the same size as the inner diameter of the receiving groove 9. The protrusion B604 is on the same plane as the fixing hole 301, and the outer diameter of the protrusion B604 has the same size as the inner diameter of the fixing hole 301. A groove B6021 is provided at the connection between the protrusion B604 and the body 602. The protrusion B604 is disposed inside the groove B6021. The protrusion B604 includes a boss 6041, and the compression spring 7 is disposed on the boss 604. Between the bottom end of the 1st groove and the inner bottom surface of the groove B6021, the compression spring 7 pushes the top surface of the protrusion B604 out from the top surface of the groove B6021 and protrudes outside the body 602. At this time, the lower shoulder of the protrusion B604 is just stuck by the inner top surface of the protrusion B604. The bottom end of the boss 6041 is fixed with a connecting shaft 611. The end of the connecting shaft 611 is provided with a connecting hole 612. The connecting shaft 611 passes through the interior of the body 602 and can move along the axial direction of the connecting shaft 611 inside the body 602. The control shaft 610 passes through the knob 601 and extends into the interior of the body 602. The bottom end of the control shaft 610 just passes through the connecting hole 612 and is movably connected to the connecting shaft 611. The compression spring 7 is provided on the upper side of the body 602 and has a rotating groove 609 corresponding to the number of pressure plates 605. The pressure plates 605 are provided in the rotating groove 609 and are rotatably connected to the fixed plate 501.

[0045] The annular protrusion 603 and the fixing groove 302 are the same size, ensuring that the annular protrusion 603 can be perfectly embedded in the fixing groove 302. Simultaneously, the annular protrusion 603 can rotate within the fixing groove 302. The fixing groove 302 also serves to limit the vertical movement of the wire pressing assembly 6, preventing vertical displacement. The outer diameter of the body 602 is the same as the inner diameter of the receiving groove 9, ensuring that the wire pressing assembly 6 can be inserted into the receiving groove 9 of the fixing seat 3 and rotate smoothly within it, while also achieving radial limiting of the wire pressing assembly 6. The protrusion B604 and the fixing hole 301 are on the same plane, and the outer diameter of the protrusion B604 is the same as the inner diameter of the fixing hole 301, ensuring that the protrusion B604 can be inserted into the fixing hole 301. When the protrusion B604 is inserted into the fixing hole 301, it will push out the reset push rod 303 within the fixing hole 301, and simultaneously... The pressure assembly 6 is fixed in place to prevent it from rotating further. The compression spring 7 ensures that the protrusion B604 is always under pressure. When the pressure assembly 6 rotates, it will cause the protrusion B604 to rotate as well. When the protrusion B604 rotates above the fixing hole 301, it will be pushed into the fixing hole 301 by the elastic force of the compression spring 7. The design of the control shaft 610 and the connecting shaft 611 ensures that before the pressure assembly 6 is rotated to press and fix the cable, the protrusion B604 is not yet locked into the fixing hole 301 and is in a pressed state. At this time, the bottom end of the control shaft 610 is locked in the connecting hole 612 of the connecting shaft 611, which limits and fixes the axial direction of the protrusion B604, preventing the protrusion B604 from getting stuck in any fixing hole 301 during the rotation of the pressure assembly 6 and affecting efficiency.

[0046] The pressure plate 605 includes a pressure rod 6052. A semi-circular pressure hole 6051 is provided through the right side of the end of the pressure plate 605 away from the main body 602. The pressure rod 6052 is located at the end of the pressure plate 605 near the main body 602. A pin 608 is provided at the connection between the pressure rod 6052 and the rotating groove 609. The pressure rod 6052 can rotate around the pin 608. A fixed shaft 607 is located between the right side wall of the pressure rod 6052 and the left side wall of the rotating groove 609. The upper and lower ends of the fixed shaft 607 are fixedly connected to the main body 602. A torsion spring 606 is sleeved on the fixed shaft 607. One end of the torsion spring 606 is fixed to the right side wall of the pressure rod 6052, and the other end is fixed to the left side wall of the rotating groove 609.

[0047] The fixed shaft 607 can fix the torsion spring 606 and prevent the torsion spring 606 from shifting under the compression of the body 602. One end of the torsion spring 606 is fixed to the right side wall of the pressure rod 6052 and the other end is fixed to the left side wall of the rotating groove 609, which ensures that the torsion spring 606 is always fixed in position with the pressure rod 6052 and the body 602, maximizing the elastic force of the torsion spring 606.

[0048] The knob 601 has vertical striped grooves on its side wall, which can increase the friction of the knob 601, making it easier for the user to rotate the knob 601 and improving the efficiency of fixing the cable.

[0049] The wire clamping hole 6051 has the same inner diameter as the wire bundling hole 502, which maximizes the space between the wire clamping hole 6051 and the wire bundling hole 502, thereby improving the applicability of the cable. In addition, it can better compress and fix the cable, improving the cable fixing effect.

[0050] The working principle of this utility model is as follows:

[0051] In use, firstly, press the control shaft 610 to its lowest position, so that the bottom end of the control shaft 610 is engaged in the connecting hole 612 of the connecting shaft 611. Pass the cable through the cable box 1 and place each cable into the cable bundle hole 502 of each base baffle 503. Then, rotate the knob 601 clockwise. The knob 601 drives the wire pressing assembly 6 to rotate, which in turn drives the wire pressing plate 605 and the protrusion B604 on the wire pressing assembly 6 to rotate. After the wire pressing plate 605 rotates, the wire pressing hole 6051 on the wire pressing plate 605 will form a sealed through space with the cable bundle hole 502, fixing each cable in its respective through space. Then, as the wire pressing plate 605 continues to rotate, the side wall of the wire pressing plate 605 will begin to... When the cable comes into contact with the cable running through the space, the user can adjust the cable length to the desired position according to their needs. Then, the pressure plate 605 continues to rotate, squeezing the large-diameter cable. The squeezed cable is now fixed and will not fall off. If a small-diameter cable is not yet fixed, the knob 601 can be rotated to rotate the pressure plate 605. At this point, the pressure plate 605 fixing the large-diameter cable will no longer rotate, but there will still be a gap between the pressure plate 605 and the side wall of the rotating groove 609. Due to the existence of the gap, the knob 601 will drive the body 602 to rotate, which in turn will drive the pressure plate 605 corresponding to the small-diameter cable to squeeze and fix it, thus completing the fixation of the small-diameter cable. When all the cables are fixed... After the cables are secured, lift the control shaft 610 upwards to release the fixation on the protrusion B604. Continue rotating the knob 601. The knob 601 causes the protrusion B604 on the body 602 to rotate. When the protrusion B604 rotates to the nearest fixing hole 301, it will be pressed into the fixing hole 301 by the compression spring 7. Simultaneously, the protrusion B604 in the fixing hole 301 will push the reset push rod 303 outwards under inertia, causing the protrusion A3031 on the reset push rod 303 to move into the outermost semi-circular groove 304. The outside of the reset push rod 303 will then protrude outside the body 602 of the wire clamping assembly 6. At this point, the wire clamping assembly 6 can no longer be rotated, thus completing the fixation of the wire clamping assembly 6. If it is necessary to replace one of the cables, simply press the protruding reset push rod 303. The reset push rod 303 moves inward, causing the protrusion A3031 to move into the innermost semi-circular groove 304. At the same time, the reset push rod 303 will push the protrusion B604 inward. Then, press down on the control shaft 610 to insert the bottom end of the control shaft 610 into the connecting hole 612 of the connecting shaft 611 to fix the protrusion B604. Then, turn the knob 601 counterclockwise to separate the pressure plate 605 from the base baffle 503, thus loosening the fixation of the cable inside. The user can replace the cable as needed. After the replacement is completed, the above steps can be repeated to fix the cable again.

[0052] In summary, this utility model has a reasonable design, provides good cable fixing effect, realizes classified management of cables, has high replacement efficiency, and improves the user's work efficiency and comfort.

[0053] Finally, it should be noted that the above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A harness bundler for a computer comprising a threading box (1), characterised in that: A fixing seat (3) is provided on the upper part of the wire box (1). A bracket (2) is fixedly connected between the wire box (1) and the fixing seat (3). A fixing component (5) is fixedly connected to the top of the fixing seat (3). A through hole (8) is provided through the center of the fixing component (5). A receiving groove (9) is provided from the top downwards at the center of the fixing seat (3). The inner diameter of the through hole (8) and the receiving groove (9) are the same. A wire pressing component (6) is provided in the receiving groove (9). The wire pressing component (6) is rotatably connected to the fixing seat (3). A fixing cover (4) is fitted on the top of the wire pressing component (6). The fixing cover (4) is fixedly connected to the fixing component (5). (4) A plurality of uniformly arranged strip-shaped limiting holes (403) are provided at the bottom end. The pressing assembly (6) includes a body (602). The side wall of the body (602) is uniformly provided with pressing plates (605) corresponding to the strip-shaped limiting holes (403). The pressing plates (605) are just stuck in the limiting holes and can rotate circumferentially in the limiting holes. The fixing assembly (5) includes a fixing plate (501). The top surface of the fixing plate (501) is uniformly provided with a number of base baffles (503) corresponding to the pressing plates (605). The base baffles (503) have a guide groove (504) penetrating through the middle of the base baffles (503). The pressing plates (605) rotate along the guide groove (504).

2. A harness tier for a computer according to claim 1, wherein: The brackets (2) consist of four pieces, which extend from the four corners of the junction box (1) to the fixing base (3). Each pair of the four brackets (2) forms a triangular structure with one side of the junction box (1).

3. A harness tier according to claim 1, wherein: The inner wall of the receiving groove (9) has several evenly distributed fixing holes (301). The top surface of the inner wall of the fixing hole (301) is provided with two semi-circular grooves (304). The central angle of the arc cross section of the semi-circular groove (304) is 160° to 175°. The fixing seat (3) also includes a reset push rod (303) corresponding to the fixing hole (301). The reset push rod (303) is slidably disposed in the fixing hole (301). The inner wall of the receiving groove (9) is also provided with a fixing groove (302). The fixing groove (302) is disposed at the lower part of the fixing hole (301).

4. A harness tier according to claim 3, wherein: The reset push rod (303) includes a protrusion A (3031) and a compression spring (7). The top surface of the protrusion A (3031) is semi-circular, and the diameter of the semi-circular top surface of the protrusion A (3031) is the same as the diameter of the semi-circular groove (304). The arc angle of the cross-section of the semi-circular top surface of the protrusion A (3031) is 180°. A groove A (3032) is provided inside the reset push rod (303). Located inside the groove A (3032), a compression spring (7) is connected between the bottom end of the protrusion A (3031) and the bottom surface inside the groove A (3032). The compression spring (7) pushes the semi-circular top surface of the protrusion A (3031) out from the top surface of the groove A (3032) and protrudes above the top surface of the reset push rod (303). At this time, the lower shoulder of the protrusion A (3031) is just stuck by the inner top surface of the protrusion A (3031).

5. A harness bundler for a computer according to claim 4, wherein: The fixed cover (4) includes a collar (401) and a stop (402). The stop (402) is fixed to the bottom surface of the collar (401). The inner side wall of the base baffle (503) is tightly fixedly connected to the outer side wall of the collar (401) and the stop (402). The bottom plane of the stop (402) is fixedly connected to the upper surface of the fixed plate (501). The strip-shaped limiting hole (403) penetrates the side wall around the stop (402).

6. A harness bundler for a computer according to claim 5, wherein: A semi-circular wire-bundling hole (502) is provided at the left end of the base baffle (503) away from the center of the fixing plate (501).

7. A harness bundler for a computer according to claim 6, wherein: The crimping assembly (6) further includes a knob (601), an annular protrusion (603), protrusion B (604), a torsion spring (606), a compression spring (7), a control shaft (610), a fixing shaft (607), and a pin (608). The knob (601) is fixedly disposed at the center of the top surface of the body (602). The annular protrusion (603) is fixed on the side wall of the lower part of the body (602). The annular protrusion (603) has the same size as the fixing groove (302). The protrusion B (604) is located on the annular protrusion (606). The upper part of the body (602) has the same outer diameter as the inner diameter of the receiving groove (9). The protrusion B (604) and the fixing hole (301) are on the same plane and the outer diameter of the protrusion B (604) is the same as the inner diameter of the fixing hole (301). A groove B (6021) is provided at the connection between the protrusion B (604) and the body (602). The protrusion B (604) is located inside the groove B (6021). The protrusion B (604) includes a boss (6041). The compression spring (7) is provided on the protrusion. Between the bottom end of the platform (6041) and the inner bottom surface of the groove B (6021), the compression spring (7) pushes the top surface of the protrusion B (604) out from the top surface of the groove B (6021) and protrudes outside the body (602). At this time, the lower shoulder of the protrusion B (604) is just stuck by the inner top surface of the protrusion B (604). The bottom end of the platform (6041) is fixed with a connecting shaft (611). The end of the connecting shaft (611) is provided with a connecting hole (612). The connecting shaft (611) passes through the inside of the body (602) and can be connected to the body. The body (602) moves along the axial direction of the connecting shaft (611) inside. The control shaft (610) passes through the knob (601) and extends into the body (602). The bottom end of the control shaft (610) just passes through the connecting hole (612) and is movably connected to the connecting shaft (611). The compression spring (7) is provided on the upper side of the body (602) and has a rotating groove (609) corresponding to the number of pressure plates (605). The pressure plates (605) are set in the rotating groove (609) and are rotatably connected to the fixing plate (501).

8. A wire harness loader for a computer according to claim 7, characterized in that: The pressure plate (605) includes a pressure rod (6052). A semi-circular pressure hole (6051) is provided through the right side of the end of the pressure plate (605) away from the body (602). The pressure rod (6052) is located at the end of the pressure plate (605) close to the body (602). A pin (608) is provided at the connection between the pressure rod (6052) and the rotating groove (609). The pressure rod (6052) can rotate around the pin (608). The fixed shaft (607) is located between the right side wall of the pressure rod (6052) and the left side wall of the rotating groove (609). The upper and lower ends of the fixed shaft (607) are fixedly connected to the body (602). A torsion spring (606) is sleeved on the fixed shaft (607). One end of the torsion spring (606) is fixed to the right side wall of the pressure rod (6052), and the other end is fixed to the left side wall of the rotating groove (609).

9. A wire harness loader for a computer according to claim 8, characterized in that: The knob (601) has a vertical striped groove on its side wall.

10. A harness organizer for a computer according to claim 8, wherein: The inner diameter of the wire pressing hole (6051) is the same as that of the wire bundling hole (502).