Cable arrangement device
By setting a limiting part and a locking part adjustment mechanism in the cavity, the problems of low maintenance efficiency and insulation wear caused by traditional cable fixing methods are solved, and the orderly arrangement and uniform fixing of cables are realized, thereby improving safety and maintenance efficiency.
Patent Information
- Application Number
- CN202520744152.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-18
- Publication Date
- 2026-04-14
- Estimated Expiration
- 2035-04-18
AI Technical Summary
Traditional cable fixing methods result in low maintenance efficiency and are prone to insulation wear, making it impossible to achieve uniform stress and orderly cable arrangement.
It adopts a cavity composed of a base plate, a top plate and a connecting plate, and has a cable laying mechanism inside, including a limiting part and a locking part. The locking part is driven to move by an adjustment mechanism to selectively fix the cable. The distance between the locking part and the limiting part is adjusted by a threaded rod and a movable rod to achieve uniform fixing and independent disassembly of the cable.
This achieves orderly arrangement and uniform fixation of cables, improves maintenance efficiency, reduces the risk of insulation wear, and ensures the safety of cables during long-term operation.
Smart Images

Figure CN224123823U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of cable arrangement technology, and in particular to a cable arrangement device. Background Technology
[0002] In cable laying operations, how to achieve orderly arrangement and reliable fixation of cables is directly related to the quality, safety, and efficiency of cable construction and subsequent maintenance.
[0003] Traditional cable management primarily uses simple clamps or cable ties to secure cables. While this method effectively secures the cables, in practice, it often requires bundling multiple cables together according to their specific routes.
[0004] With this fixing method, multiple cables need to be disconnected for maintenance, resulting in low maintenance efficiency. Furthermore, this method can lead to uneven stress on the cables, potentially causing insulation wear and other safety hazards over long-term operation. Utility Model Content
[0005] To address the shortcomings of existing technologies, this utility model provides a cable routing device. To achieve the above objectives, this utility model adopts the following technical solution:
[0006] A cable routing device includes a cavity formed by a base plate, a top plate, and a connecting plate. Several cable routing mechanisms for clamping cables are disposed within the cavity.
[0007] The cable routing mechanism includes a limiting part and a locking part disposed opposite to the limiting part. The locking part is configured to allow movement relative to the limiting part and is used to fix the cable disposed between the limiting part and the locking part in a selective manner.
[0008] Furthermore, the limiting part is constructed as a rod-shaped structure and a first slot is provided on the limiting part, and the engaging part is constructed as a rod-shaped structure and a second slot is provided on the engaging part. The first slot and the second slot are used together to form a cavity for accommodating the cable.
[0009] Furthermore, the cable routing device also includes an adjustment mechanism connected to the locking part. The adjustment mechanism is disposed on the top plate and is used to drive the locking part to move closer to the limiting part or to drive the locking part to move away from the limiting part.
[0010] Furthermore, the adjustment mechanism includes a sleeve disposed on the top plate and a threaded rod passing through the sleeve and extending into the cavity. The threaded rod is threadedly engaged with the sleeve, and the engaging portion is coupled to the free end of the threaded rod, thereby allowing the engaging portion to move as the threaded rod rotates along the sleeve.
[0011] Furthermore, the adjustment mechanism also includes a first movable rod that is inclinedly disposed between the top plate and the engaging part and is hinged to the top plate and the engaging part respectively, and a connecting block disposed at the free end of the threaded rod. A connecting rod is hinged to the connecting block, and the free end of the connecting rod is configured to be hinged to the first movable rod, so that the threaded rod drives the connecting rod to move the first movable rod as it rotates along the sleeve, thereby adjusting the included angle between the first movable rod and the engaging part, and thus promoting the vertical movement of the engaging part.
[0012] Furthermore, the engaging part, the first movable rod, and the connecting rod are all provided in pairs, and are distributed symmetrically along the connecting block to jointly fix the cable.
[0013] Furthermore, the adjustment mechanism also includes a second movable rod that is inclinedly disposed between the top plate and the engaging part and is hinged to the top plate and the engaging part respectively, such that the first movable rod and the second movable rod located on the same side are parallel to each other.
[0014] Furthermore, the adjustment mechanism also includes a hinge seat, which is respectively disposed on the top plate and the engaging part, and is configured to allow the ends of the first movable rod and the second movable rod to be accommodated. A fixing pin is also provided on the hinge seat so that the first movable rod and the second movable rod can rotate along the fixing pin.
[0015] Furthermore, a screwing head is provided at the end of the threaded rod, and the screwing head is configured in any way that facilitates the application of force to it.
[0016] Furthermore, the base plate is also provided with fixing holes, which are used to fix the base plate relative to the horizontal surface in a selective manner.
[0017] Compared with the prior art, the present invention has the following beneficial effects:
[0018] This invention provides a cavity comprised of a base plate, a top plate, and a connecting plate, within which are several cable routing mechanisms for securing cables. Each cable routing mechanism includes a limiting part and a locking part opposite to the limiting part. The locking part is configured to allow movement relative to the limiting part, enabling selective fixing of cables positioned between the limiting part and the locking part. This allows each cable routing mechanism to individually secure individual cables, arranging multiple cables within the cavity. Consequently, when specific cables require maintenance, they can be easily removed. Furthermore, individual cable securing ensures even stress distribution across all cables. Attached Figure Description
[0019] The present invention will be further described below with reference to the accompanying drawings and embodiments:
[0020] Figure 1 This is a schematic diagram of the overall structure of the cable routing device according to an embodiment of the present invention;
[0021] Figure 2 This is a schematic diagram of the overall structure of the cable routing device according to another embodiment of the present utility model;
[0022] Figure 3 This is a schematic diagram of the overall structure of the cable routing device adjustment mechanism and the cable routing mechanism in an embodiment of this utility model.
[0023] Figure 4 This is a schematic diagram of the overall structure of the cable routing device adjustment mechanism and the locking part in an embodiment of the present invention.
[0024] In the above figures: cable routing device 100, base plate 1, fixing hole 11, top plate 2, connecting plate 3, cavity 4, cable routing mechanism 5, limiting part 51, first slot 511, engaging part 52, second slot 521, chamber 522, rubber strip 523, adjusting mechanism 6, sleeve 61, threaded rod 62, screw head 621, first movable rod 63, connecting block 64, connecting rod 65, second movable rod 66, hinge seat 67, fixing pin 671. Detailed Implementation
[0025] The technical solution of this utility model will be further described below with reference to the accompanying drawings and embodiments.
[0026] To better understand the purpose, structure, and function of this utility model, the following detailed description of a cable routing device is provided in conjunction with the accompanying drawings.
[0027] For convenience, the movement parallel to the base plate is called "lateral movement", "horizontal movement" or similar terminology; the direction perpendicular to "lateral movement" is called "vertical movement", "vertical motion" or similar terminology; the movement in the vertical direction close to the top plate is called "upward" or similar terminology; and the movement in the vertical direction close to the base plate is called "downward" or similar terminology.
[0028] Figure 1 The schematic diagram illustrates the overall structure of the cable routing device according to this utility model. In such a way... Figure 1 In the illustrated embodiment, the cable routing device 100 includes a base plate 1, a top plate 2 disposed opposite to the base plate 1, and a connecting plate 3 disposed between the base plate 1 and the top plate 2 for connecting the base plate 1 and the top plate 2 together. In this way, the base plate 1, the top plate 2, and the connecting plate 3 can together form a cavity 4.
[0029] In this embodiment, as Figure 1 , 2 As shown, a plurality of cable routing mechanisms 5 are provided within the cavity 4. The cable routing mechanisms 5 are configured to allow for the snapping of cables (not shown in the figure). It should be noted that the plurality of cable routing mechanisms 5 provided within the cavity 4 are evenly distributed within the cavity 4.
[0030] In this way, when cables (not shown in the figure) need to be laid out, each cable can pass through its respective cable routing mechanism 5 and be fixed in place by the respective cable routing mechanism 5. This allows the cables to be evenly distributed within the cavity 4, resulting in a neat and orderly cable arrangement.
[0031] In one embodiment, such as Figure 3 As shown, the cable routing mechanism 5 includes a limiting part 51 and an engaging part 52 disposed opposite to the limiting part 51. In this embodiment, the engaging part 52 is configured to allow movement relative to the limiting part 51. In this way, the cable disposed between the limiting part 51 and the engaging part 52 can be secured in a selective manner.
[0032] In this configuration, such as Figure 3 As shown, when it is necessary to install a cable (not shown in the figure), the relative distance between the limiting part 51 and the engaging part 52 can be adjusted first, so that the relative distance between the limiting part 51 and the engaging part 52 facilitates cable installation. Then, the cable is placed between the limiting part 51 and the engaging part 52, and the engaging part 52 moves towards the limiting part 51, thereby fixing the cable. This achieves the cable fixing operation. This method facilitates cable installation.
[0033] According to a preferred embodiment of the present invention, such as Figure 3As shown, the limiting part 51 is constructed as a rod-shaped structure, and a first slot 511 is provided on the limiting part 51. At the same time, the engaging part 52 is also constructed as a rod-shaped structure, and a second slot 521 is provided on the engaging part 52.
[0034] The first slot 511 and the second slot 521 are configured to correspond to each other, together forming a cavity 522 for accommodating the cable. In this way, the cable can be placed in the cavity 522, and the cable can be further fixed by adjusting the relative distance between the engaging part 52 and the limiting part 51.
[0035] In one embodiment, such as Figure 1 , 2 As shown, the cable routing device 100 also includes an adjustment mechanism 6 connected to the locking part 52. The adjustment mechanism 6 is disposed on the top plate 2 and is used to drive the locking part 52 to move closer to the limiting part 51 or to drive the locking part 52 to move away from the limiting part 51.
[0036] In this embodiment, as Figure 2 As shown, the adjusting mechanism 6 includes a sleeve 61 disposed on the top plate 2, and a threaded rod 62 passing through the sleeve 61 and extending into the cavity 4. In the illustrated embodiment, the threaded rod 62 and the sleeve 61 are configured to be threadedly engaged. Specifically, the length of the threaded rod 62 within the cavity 4 can be adjusted as the threaded rod 62 rotates along the sleeve 61.
[0037] Meanwhile, the engaging portion 52 is coupled to the free end of the threaded rod 62. In this way, as the threaded rod 62 rotates along the sleeve 61, the engaging portion 52 can move closer to the limiting portion 51 or away from the limiting portion 51. This arrangement allows the limiting portion 51 and the engaging portion 52 to secure the cable in a selectable manner.
[0038] In one embodiment, such as Figure 4 As shown, the adjustment mechanism 6 further includes a first movable rod 63 disposed between the top plate 2 and the engaging portion 52, and hinged to both the top plate 2 and the engaging portion 52. It should be noted that the axial length of the first movable rod 63 is greater than the vertical height between the top plate 2 and the engaging portion 52. This allows the first movable rod 63 to be disposed at an angle on the top plate 2 and the engaging portion 52.
[0039] In this configuration, the relative distance between the engaging part 52 and the limiting part 51 can be adjusted by changing the angle between the first movable rod 63 and the engaging part 52. Furthermore, when the engaging part 52 and the limiting part 51 abut against each other, the first movable rod 63 can also support the engaging part 52, ensuring a tight fit between them and thus securing the cable between them.
[0040] In addition, such as Figure 4 As shown, the adjustment mechanism 6 further includes a connecting block 64 disposed at the free end of the threaded rod 62, and a connecting rod 65 is hinged to the connecting block 64. The free end of the connecting rod 65 is configured to be hinged together with the first movable rod 63.
[0041] In this way, when the threaded rod 62 moves vertically within the cavity 4, it drives the connecting rod 65 to move the first movable rod 63. However, during the movement of the first movable rod 63, the angle between the first movable rod 63 and the engaging part 52 can be adjusted. This allows for adjustment of the relative distance between the engaging part 52 and the limiting part 51, thereby securing the cable.
[0042] According to a preferred embodiment of the present invention, such as Figure 4 As shown, the engaging part 52, the first movable rod 63, and the connecting rod 65 are all provided in pairs, and the engaging part 52, the first movable rod 63, and the connecting rod 65 are distributed symmetrically along the connecting block 64 to jointly fix the cable.
[0043] Specifically, connecting rods 65 are hinged at both ends of the connecting block 64, and the connecting rods 65 at both ends of the connecting block 64 are respectively hinged to the first movable rod 63. In this way, when the threaded rod 62 moves vertically in the cavity 4, the engaging parts 52, the first movable rod 63, and the connecting rods 65 located on both sides of the connecting block 64 can move synchronously. Thus, the two engaging parts 52 can jointly fix the cable, thereby further fixing the cable between the engaging parts 52 and the limiting part 51.
[0044] According to a preferred embodiment of the present invention, such as Figure 4 As shown, the adjustment mechanism 6 further includes a second movable rod 66 that is inclinedly disposed between the top plate 2 and the engaging part 52 and is hinged to the top plate 2 and the engaging part 52 respectively, such that the first movable rod 63 located on the same side of the connecting block 64 and the second movable rod 66 are parallel to each other.
[0045] In this way, when the threaded rod 62 moves vertically within the cavity 4, the first movable rod 63 and the second movable rod 66 can move synchronously, thereby synchronously adjusting the angle between the first movable rod 63, the second movable rod 66, and the engaging part 64. In this way, the adjusted first movable rod 63 and the second movable rod 66 can jointly support the engaging part 52, thereby further securing the cable located between the engaging part 52 and the limiting part 51.
[0046] In one embodiment, such as Figure 4 As shown, the adjustment mechanism 6 also includes a hinge seat 67, which is fixed relative to the top plate 2 and the engaging part 52, and is configured to accommodate the ends of the first movable rod 63 and the second movable rod 66. A fixing pin 671 is also provided on the hinge seat 67, which passes through the hinge seat 67 and through the first movable rod 63 and the second movable rod 66, allowing the first movable rod 63 and the second movable rod 66 to rotate along the fixing pin 671.
[0047] In this way, the first movable rod 63 and the second movable rod 66 can rotate stably along the fixed pin 671, thereby stably and synchronously adjusting the angle between the first movable rod 63, the second movable rod 66 and the engaging part 64.
[0048] According to a preferred embodiment of the present invention, such as Figure 4 As shown, a screwing head 621 is also provided at the end of the threaded rod 62. The screwing head 621 is constructed in any way that facilitates the application of force. In this way, when it is necessary to drive the threaded rod 62 to rotate along the sleeve 61, it is easy to apply force, thereby efficiently driving the threaded rod 62 to rotate.
[0049] In one embodiment, such as Figure 1 , 2 As shown, a fixing hole 11 is also provided on the base plate 1. The fixing hole 11 is used to fix the base plate 1 relative to a horizontal plane (distribution cabinet or similar object) in a selective manner. In this way, the device 100 can be fixed, thereby enabling the device 100 to stably arrange cables.
[0050] According to a preferred embodiment of the present invention, such as Figure 3 As shown, at least one rubber strip 523 is also provided in the first slot 511 and the second slot 521, and the rubber strip 523 is distributed along the axis of the first slot 511 and the second slot 521.
[0051] In this way, when the cable is located in the chamber 522, the rubber strip 523 can increase the friction between itself and the cable, thereby allowing the cable to be stably positioned in the chamber 522. At the same time, when the limiting part 51 and the engaging part 52 apply force to the cable, the rubber strip 523 can also undergo elastic deformation, thereby reducing the compressive force exerted on the cable by the limiting part 51 and the engaging part 52.
[0052] The operation of the cable routing device 100 according to this utility model is as follows.
[0053] First, the device 100 is placed on a horizontal plane (distribution cabinet or similar object), and the device 100 is fixed to the horizontal plane relative to it through the fixing holes 11. Thus, the arrangement of the device 100 is completed.
[0054] When it is necessary to arrange cables (not shown in the figure), an upward force is applied to the screw head 621. During this process, the threaded rod 62 located in the cavity 4 will continue to move upward, and at this time the threaded rod 62 will drive the connecting rod 65 to drive the first movable rod 63 and the second movable rod 66 to move synchronously.
[0055] During the synchronous movement of the first movable rod 63 and the second movable rod 66, the angle between the first movable rod 63, the second movable rod 66 and the engaging part 52 can be adjusted. This allows the engaging part 52 to move away from the limiting part 51, thereby adjusting the relative distance between the engaging part 52 and the limiting part 51 until the relative distance between the engaging part 52 and the limiting part 51 is convenient for cable installation.
[0056] Simultaneously, the cable is positioned within the cavity 522 formed between the engaging portion 52 and the limiting portion 51. Then, a downward force is applied to the screw head 621.
[0057] During this process, the threaded rod 62 located in the cavity 4 will continue to move downwards. At this time, the threaded rod 62 will drive the connecting rod 65 to drive the first movable rod 63 and the second movable rod 66 to move synchronously.
[0058] During the synchronous movement of the first movable rod 63 and the second movable rod 66, the angle between the first movable rod 63, the second movable rod 66 and the engaging part 52 can be adjusted. This allows the engaging part 52 to move closer to the limiting part 51 until the engaging part 52 and the limiting part 51 abut against each other, thereby securing the cable located within the chamber 522. This completes the cable arrangement.
[0059] It should be noted that the cable arrangement mechanism 5 and the adjustment mechanism 6 are configured as several units and are evenly distributed within the cavity 4. In this way, several cables can be arranged and neatly distributed within the cavity 4.
[0060] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model and are not intended to limit it. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of this utility model without departing from the spirit and scope of the technical solutions of this utility model, and all such modifications or substitutions should be covered within the scope of the claims of this utility model.
Claims
1. A cable routing device, characterized in that, It includes a cavity (4) consisting of a base plate (1), a top plate (2) and a connecting plate (3), and a plurality of cable routing mechanisms (5) for clamping cables are provided in the cavity (4). The cable routing mechanism (5) includes a limiting part (51) and a locking part (52) disposed opposite to the limiting part (51). The locking part (52) is configured to allow movement relative to the limiting part (51) for fixing the cable disposed between the limiting part (51) and the locking part (52) in a selective manner.
2. The cable routing device according to claim 1, characterized in that, The limiting part (51) is constructed as a rod-shaped structure and a first slot (511) is provided on the limiting part (51). The engaging part (52) is constructed as a rod-shaped structure and a second slot (521) is provided on the engaging part (52). The first slot (511) and the second slot (521) are used to jointly form a cavity (522) for accommodating the cable.
3. The cable routing device according to claim 1, characterized in that, The cable arrangement device also includes an adjustment mechanism (6) connected to the locking part (52). The adjustment mechanism (6) is set on the top plate (2) to drive the locking part (52) to move closer to the limiting part (51) or to drive the locking part (52) away from the limiting part (51).
4. The cable routing device according to claim 3, characterized in that, The adjustment mechanism (6) includes a sleeve (61) disposed on the top plate (2) and a threaded rod (62) passing through the sleeve (61) and extending into the cavity (4). The threaded rod (62) is threadedly engaged with the sleeve (61), and the engaging part (52) is coupled to the free end of the threaded rod (62), thereby allowing the engaging part (52) to move as the threaded rod (62) rotates along the sleeve (61).
5. The cable routing device according to claim 4, characterized in that, The adjustment mechanism (6) further includes a first movable rod (63) that is inclinedly disposed between the top plate (2) and the engaging part (52) and is hinged to the top plate (2) and the engaging part (52) respectively, and a connecting block (64) disposed at the free end of the threaded rod (62). A connecting rod (65) is hinged to the connecting block (64). The free end of the connecting rod (65) is configured to be hinged to the first movable rod (63) so that the threaded rod (62) drives the connecting rod (65) to drive the first movable rod (63) to move during the rotation of the threaded rod (62) along the sleeve (61), thereby adjusting the included angle between the first movable rod (63) and the engaging part (52), and thus promoting the vertical movement of the engaging part (52).
6. The cable routing device according to claim 5, characterized in that, The locking part (52), the first movable rod (63), and the connecting rod (65) are all provided in pairs, and the locking part (52), the first movable rod (63), and the connecting rod (65) are distributed symmetrically along the connecting block (64) to jointly fix the cable.
7. The cable routing device according to claim 6, characterized in that, The adjustment mechanism (6) further includes a second movable rod (66) that is inclinedly disposed between the top plate (2) and the engaging part (52) and is hinged to the top plate (2) and the engaging part (52) respectively, such that the first movable rod (63) and the second movable rod (66) located on the same side are parallel to each other.
8. The cable routing device according to claim 7, characterized in that, The adjustment mechanism (6) further includes a hinge seat (67), which is respectively disposed on the top plate (2) and the engaging part (52) and is configured to allow the ends of the first movable rod (63) and the second movable rod (66) to be accommodated. A fixing pin (671) is also provided on the hinge seat (67) so that the first movable rod (63) and the second movable rod (66) can rotate along the fixing pin (671).
9. The cable routing device according to any one of claims 4-8, characterized in that, A screwing head (621) is also provided at the end of the threaded rod (62), and the screwing head (621) is constructed in any way that facilitates the application of force to it.
10. The cable routing device according to claim 1, characterized in that, A fixing hole (11) is also provided on the base plate (1), which is used to fix the base plate (1) relative to the horizontal surface in a selected manner.