Optimized structure of network comprehensive wiring cabinet

By introducing support mechanisms into the wiring cabinet, the coordination of support rods, adjustment components and fixed components, the problem of low manual regularization of network cables is solved, the neat arrangement of network cables and signal stability is achieved, and the stability and maintenance convenience of wiring systems are improved.

CN120456483APending Publication Date: 2025-08-08新疆准能投资有限公司
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Patent Information

Application Number
CN202510613910.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-13
Publication Date
2025-08-08

AI Technical Summary

Technical Problem

The manual regularization of the network cables in the existing wiring cabinet is inefficient, making it difficult to ensure the uniform placement length of multiple network cables, which is time-consuming and labor-intensive and inefficient.

Method used

A support mechanism is adopted, including a support rod, an adjustment assembly and a fixing assembly. The support rod is arranged in the network cable. The adjustment assembly and the fixing assembly are used to adjust the position of the support rod to ensure that the network cables are arranged uniformly and neatly on the wiring frame.

Benefits of technology

It realizes the neat arrangement of network cables and the stability of signal transmission, improves the space utilization and adaptability of the wiring frame, reduces network cable interference and signal attenuation, and facilitates post-maintenance and troubleshooting.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the field of wiring cabinets, and discloses a network comprehensive wiring cabinet optimization structure, which comprises a mounting beam arranged in a wiring cabinet and wiring frames detachably arranged on the mounting beam at intervals and used for placing network cables, and further comprises a supporting mechanism, comprising a supporting rod, adjusting assemblies, connecting assemblies and fixing assemblies, wherein the supporting rod penetrates through a network cable and is used for supporting and limiting the network cable; the adjusting assemblies are adjustably arranged on the two sides of the supporting rod; the connecting assemblies are arranged on the sides, away from the supporting rod, of the adjusting assemblies; the fixing assembly fixes the connecting assembly when the supporting rod moves towards the side far away from the wiring frame, the network cables are effectively supported and limited, so that the radian and the length of the mounting positions of the multiple network cables on the wiring frame are the same, the multiple network cables can be uniformly and neatly arranged on the wiring frame, and the wiring efficiency is improved. And neat arrangement of network cables and stability of signal transmission are ensured.
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Description

Technical Field

[0001] The present invention relates to the technical field of wiring cabinets, in particular to an optimized structure of a network integrated wiring cabinet. Background Art

[0002] With the rapid development of information technology, the importance of network cabling systems as the infrastructure for information transmission has become increasingly prominent. In data centers, enterprise network centers, and intelligent buildings, network cabling cabinets are key equipment for centralized cable management and distribution. The rationality of their internal structure directly affects cable routing efficiency, ease of maintenance, and system stability.

[0003] The existing equipment has the following shortcomings: In traditional wiring cabinets, when connecting network cables to the interface of the wiring cabinet, the network cables need to be manually straightened to ensure that the network cables can be neatly arranged inside the wiring cabinet to facilitate subsequent maintenance and inspection. However, due to the large number of network cables, the efficiency of manual straightening is low, and it is difficult to ensure that the lengths of multiple network cables are consistent, which is not only time-consuming and labor-intensive but also inefficient.

[0004] Therefore, the present application proposes an optimized structure of a network integrated wiring cabinet to solve the above-mentioned problems. Summary of the Invention

[0005] The purpose of the present invention is to provide an optimized structure of a network integrated wiring cabinet to solve the above-mentioned problem that due to the large number of network cables, the efficiency of manual arrangement is low, and it is difficult to ensure that the lengths of multiple network cables are consistent, which is not only time-consuming and labor-intensive but also inefficient.

[0006] To achieve the above-mentioned object, the present invention provides the following technical solution: an optimized structure of a network integrated wiring cabinet, comprising a mounting beam disposed inside the wiring cabinet and a wiring rack detachably disposed on the mounting beam at intervals for placing network cables, and further comprising:

[0007] The support mechanism includes a support rod passed through the network cable for supporting and limiting the network cable, an adjustment component adjustably arranged on both sides of the support rod, a connecting component arranged on the side of the adjustment component away from the support rod for connecting the support rod to the wiring rack, and a fixing component arranged on the connecting component for fixing the installation position of the support rod, and the fixing component fixes the connecting component when the support rod moves to the side away from the wiring rack.

[0008] Among them, the wiring rack includes a network cable connector rack set on the mounting beam and a network cable harness rack set on the mounting beam. The network cable connector rack and the network cable harness rack are connected to the mounting beam at a position where a fixing groove for placing the connection component is opened. The connector end of the network cable is plugged into the network cable connector rack, and the network cable passes through the mesh of the network cable harness rack.

[0009] Among them, the adjustment component includes adjustment rods passing through both sides of the support rod, a limit block arranged on one side of the adjustment rod located inside the support rod, and a mounting plate arranged on the other side of the adjustment rod. A movable groove for the limit block to move is provided on the support rod, a through hole for the adjustment rod to move is provided on the support rod, and the adjustment rod is symmetrically arranged about the support rod.

[0010] Wherein, a first elastic member is sleeved on a portion of the adjusting rod located between the through hole and the limiting block.

[0011] The connection assembly includes a connection plate provided on a side of the mounting plate close to the wiring rack and a fixing plate provided on a side of the connection plate close to the wiring rack, and the fixing plate is clamped in the fixing groove.

[0012] Among them, the fixing assembly includes a telescopic plate passing through the connecting plate and connected to the mounting plate, and a fixing member arranged inside the telescopic plate for fixing the telescopic plate to the connecting plate. A slot for the telescopic plate to move is provided on the connecting plate.

[0013] The fixing part includes a second elastic part arranged inside the telescopic plate and a fixing block arranged on the side of the second elastic part close to the slot. A movable groove for the fixing block to move is provided on the telescopic plate, and a fixing hole for fixing the fixing block is provided at the position corresponding to the fixing block inside the connecting plate.

[0014] Wherein, a traction rope is provided on a side of the fixing block away from the fixing hole, and the traction rope passes through the telescopic plate and the mounting plate.

[0015] Wherein, a pulling block is provided on the side of the traction rope away from the fixing block.

[0016] Wherein, the side of the support rod in contact with the network cable is configured to be a semicircular arc structure.

[0017] Compared with the prior art, the present invention has the following beneficial effects:

[0018] The support rods of the present invention are passed between the network cables to effectively support and restrict the network cables, so that the curvature and length of the installation positions of multiple network cables on the wiring rack are the same, and thus multiple network cables can be evenly and neatly arranged on the wiring rack, ensuring the neat arrangement of the network cables and the stability of signal transmission. The setting of the adjustment component allows the position of the support rods to be adjusted according to actual needs, so as to flexibly adapt to the laying requirements of network cables of different specifications and quantities, improve the space utilization and adaptability of the wiring rack, and by optimizing the internal structure of the wiring cabinet, reduce interference and signal attenuation between network cables, and improve the stability and reliability of the entire network integrated wiring system. At the same time, the neat and orderly laying of network cables also facilitates later maintenance and troubleshooting. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 This is a schematic diagram of the main structure of an embodiment of the present invention;

[0020] Figure 2 It is a schematic structural diagram of an embodiment of the present invention;

[0021] Figure 3 This is a schematic diagram of the structure of the connection between the wiring rack and the mounting beam in one embodiment of the present invention;

[0022] Figure 4 This is a structural diagram of a support mechanism restricting a network cable in one embodiment of the present invention;

[0023] Figure 5 This is a structural schematic diagram of a support mechanism inserted into a network cable in one embodiment of the present invention;

[0024] Figure 6 This is a schematic structural diagram of a support mechanism in one embodiment of the present invention;

[0025] Figure 7 This is a schematic structural diagram of a fixing assembly in one embodiment of the present invention;

[0026] Figure 8 for Figure 3 The enlarged structural diagram of the middle part A;

[0027] Figure 9 for Figure 4 Schematic diagram of the structure with an enlarged view of part B in the middle.

[0028] In the figure: 1. Cabinet; 2. Mounting beam; 3. Wiring rack; 31. Network cable connector rack; 3101. Fixed slot; 32. Network cable harness rack; 4. Network cable; 5. Support mechanism; 51. Support rod; 5101. Movable slot; 5102. Perforation; 52. Adjustment assembly; 521. Adjustment rod; 522. Limit block; 523. First elastic member; 524. Mounting plate; 53. Connecting assembly; 531. Connecting plate; 53101. Slot; 53102. Fixed hole; 532. Fixed plate; 54. Fixed assembly; 541. Telescopic plate; 54101. Movable slot; 542. Fixing member; 5421. Fixed block; 5422. Second elastic member; 543. Traction rope; 544. Pull block. DETAILED DESCRIPTION

[0029] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0030] See also Figure 1-9 The present invention provides a technical solution: an optimized structure of a network integrated wiring cabinet, comprising a mounting beam 2 arranged inside a wiring cabinet 1 and a wiring rack 3 detachably arranged at intervals on the mounting beam 2 for placing network cables 4, and further comprising:

[0031] The supporting mechanism 5 includes a supporting rod 51 that is passed through the network cable 4 and is used to support and limit the network cable 4, an adjusting component 52 that is adjustably arranged on both sides of the supporting rod 51, a connecting component 53 that is arranged on the side of the adjusting component 52 away from the support rod 51 and is used to connect the support rod 51 to the wiring rack 3, and a fixing component 54 that is arranged on the connecting component 53 and is used to fix the installation position of the support rod 51. The fixing component 54 fixes the connecting component 53 when the support rod 51 moves to the side away from the wiring rack 3.

[0032] It should be noted that during work, the network cable 4 is installed on the wiring rack 3, and then the support rod 51 is inserted into the gap between the network cable 4 and the wiring rack 3, and then the adjusting component 52 is pulled out from both sides of the support rod 51, so that the connecting component 53 is clamped and fixed to the wiring rack 3. At this time, the position of the support rod 51 in the X direction on the wiring rack 3 is fixed, and then the support rod 51 is pulled to the side away from the wiring rack 3. When it moves to the set position, the fixing component 54 fixes the support rod 51. At this time, the position of the support rod 51 in the Y direction on the wiring rack 3 is fixed, and then the worker pulls the network cable 4 so that the network cable 4 fits with the surface of the support rod 51, and thus completes the wiring work of the network cable 4 on the wiring rack 3 back and forth. After the position of the network cable 4 on a group of wiring racks 3 is adjusted, the restriction of the fixing component 54 on the support rod 51 in the Y direction is released, and then the support rod 51 is pressed to one side of the wiring rack 3. , and then pull the adjusting component 52 outward to remove the support rod 51 from the wiring rack 3, and then arrange the network cables 4 on another group of wiring racks 3. The support rod 51 is passed through the network cables 4 to effectively support and restrict the network cables 4, so that the installation positions of multiple network cables 4 on the wiring rack 3 have the same curvature and length, thereby allowing multiple network cables 4 to be evenly and neatly arranged on the wiring rack 3, ensuring the neat arrangement of the network cables 4 and the stability of signal transmission. The setting of the adjusting component 52 makes the position of the support rod 51 adjustable according to actual needs, thereby flexibly adapting to the laying requirements of network cables 4 of different specifications and quantities, improving the space utilization and adaptability of the wiring rack 3, and by optimizing the internal structure of the wiring cabinet 1, reducing interference and signal attenuation between the network cables 4, and improving the stability and reliability of the entire network integrated wiring system. At the same time, the neat and orderly laying of the network cables 4 is also convenient for later maintenance and troubleshooting.

[0033] In one embodiment, the wiring rack 3 includes a network cable connector rack 31 arranged on the mounting beam 2 and a network cable harness rack 32 arranged on the mounting beam 2. A fixing groove 3101 for placing the connection component 53 is provided at the position where the network cable connector rack 31 and the network cable harness rack 32 are connected to the mounting beam 2. The connector end of the network cable 4 is plugged into the network cable connector rack 31, and the network cable 4 passes through the mesh of the network cable harness rack 32.

[0034] This design, see Figure 8 ,as well as Figure 9By subdividing the wiring rack 3 into a network cable connector rack 31 and a network cable harness rack 32, the connector part and the harness part of the network cable are clearly distinguished and managed. This design not only improves the wiring efficiency, but also makes subsequent maintenance and troubleshooting more convenient, and enhances the connection stability: the fixing groove 3101 opened at the position where the network cable connector rack 31 and the network cable harness rack 32 are connected to the mounting beam 2 provides a stable placement space for the connection component 53. This design ensures that the connection between the support mechanism 5 and the wiring rack 3 is more firm, and improves the subsequent sorting efficiency of the network cable 4.

[0035] In one embodiment, the adjustment assembly 52 includes an adjustment rod 521 passing through both sides of the support rod 51, a limit block 522 arranged on one side of the adjustment rod 521 located inside the support rod 51, and a mounting plate 524 arranged on the other side of the adjustment rod 521. A movable groove 5101 for the limit block 522 to move is provided on the support rod 51, and a through hole 5102 for the adjustment rod 521 to move is provided on the support rod 51. The adjustment rod 521 is symmetrically arranged about the support rod 51.

[0036] This design, see Figure 6 ,as well as Figure 9 , pull out the adjusting rod 521 from the inside of the movable groove 5101, and then allow the mounting plate 524 to drive the connecting assembly 53 to move to the fixed groove 3101 on the wiring rack 3, and then fix the connecting assembly 53 in the fixed groove 3101 to complete the fixing of the support rod 51. The adjusting rod 521 is symmetrically arranged about the support rod 51. This design enables the supporting force to be evenly distributed on both sides, effectively preventing the support rod 51 from tilting or deforming due to excessive force on one side. At the same time, the setting of the limit block 522 also limits the moving range of the adjusting rod 521, avoiding the problem of unstable support caused by excessive movement. The fixing and disassembly of the support rod 51 can be quickly completed through the adjusting assembly 52.

[0037] In one embodiment, a portion of the adjustment rod 521 between the through hole 5102 and the limiting block 522 is sleeved with a first elastic member 523 , and the first elastic member 523 is made of a spring or elastic pad to be damped.

[0038] This design, see Figure 9 When the adjusting rod 521 moves out from the inside of the movable groove 5101, the limit block 522 squeezes the first elastic member 523, and when the connecting assembly 53 is fixed in the fixed groove 3101, the first elastic member 523 can elastically support the limit block 522, so that the adjusting rod 521 can be adjusted according to the length of the wiring rack 3, thereby improving the applicability of the entire support rod 51.

[0039] In one embodiment, the connection assembly 53 includes a connection plate 531 disposed on a side of the mounting plate 524 close to the wiring rack 3 and a fixing plate 532 disposed on a side of the connection plate 531 close to the wiring rack 3 , and the fixing plate 532 is snapped into the fixing groove 3101 .

[0040] This design, see Figure 9 The design of the fixing plate 532 being clipped into the fixing groove 3101 makes the connection between the connecting component 53 and the wiring rack 3 more stable. This clipping method not only improves the strength of the connection, but also prevents the support structure from failing due to loosening or falling off, thereby ensuring the support and restriction effect of the network cable 4.

[0041] In one embodiment, the fixing assembly 54 includes a telescopic plate 541 that passes through the connecting plate 531 and is connected to the mounting plate 524, and a fixing member 542 that is arranged inside the telescopic plate 541 for fixing the telescopic plate 541 to the connecting plate 531. A slot 53101 is provided on the connecting plate 531 for the telescopic plate 541 to move.

[0042] This design, see Figure 4-7 The telescopic plate 541 can move in the slot 53101 of the connecting plate 531. When the support rod 51 moves to the desired position, the telescopic plate 541 is fixed to the connecting plate 531 by the fixing member 542, thereby ensuring the stability and reliability of the support rod 51. The support rod 51 is fixed at the required extension length, and then the network cable 4 is pulled so that the network cable 4 contacts the side of the support rod 51 and abuts against the support rod 51, so that multiple network cables 4 can be evenly and neatly arranged on the support rod 51.

[0043] In one embodiment, the fixing member 542 includes a second elastic member 5422 arranged inside the telescopic plate 541 and a fixing block 5421 arranged on the side of the second elastic member 5422 close to the slot 53101. The telescopic plate 541 is provided with a movable groove 54101 for the fixing block 5421 to move. A fixing hole 53102 for fixing the fixing block 5421 is provided at the position of the fixing block 5421 inside the connecting plate 531. The second elastic member 5422 is made of a damped spring or an elastic pad.

[0044] This design, see Figure 6 ,as well as Figure 7The arrangement of the second elastic member 5422 enables the fixing block 5421 to produce elastic deformation when subjected to external force, thereby facilitating the insertion or withdrawal of the fixing block 5421 into or out of the fixing hole 53102. This elastic fixing method is not only convenient to operate, but also can ensure a close fit between the fixing block 5421 and the fixing hole 53102, thereby improving the reliability of the fixation. When the fixing block 5421 is inserted into the fixing hole 53102, the elastic force of the second elastic member 5422 will cause the fixing block 5421 to be tightly stuck in the fixing hole 53102, thereby preventing the telescopic plate 541 from accidentally moving in the slot 53101, so that the Y-direction distance of the support rod 51 is fixed. When the support rod 51 needs to be removed from the arranged network cable 4, it is only necessary to use external force to make the fixing block 5421 withdraw from the fixing hole 53102, and then move the telescopic plate 541 to the desired position and insert the fixing block 5421 again.

[0045] In one embodiment, a traction rope 543 is provided on a side of the fixing block 5421 away from the fixing hole 53102 , and the traction rope 543 passes through the telescopic plate 541 and the mounting plate 524 .

[0046] This design, see Figure 6 ,as well as Figure 7 The setting of the traction rope 543 allows the operator to operate it at a position away from the fixed block 5421. By pulling the traction rope 543, the fixed block 5421 can be easily withdrawn or inserted into the fixed hole 53102, thereby adjusting the position of the telescopic plate 541, and then facilitating the removal of the support rod 51 from the arranged network cable 4.

[0047] In one embodiment, a pulling block 544 is provided on a side of the traction rope 543 away from the fixing block 5421 .

[0048] This design, see Figure 6 ,as well as Figure 7 The setting of the pull block 544 allows the operator to hold and pull the traction rope 543 more conveniently. Compared with directly pulling the slender traction rope 543, the pull block 544 provides a larger contact area and a better grip, thereby reducing the difficulty of operation and improving the convenience of operation. The presence of the pull block 544 can prevent the hand or tool from slipping when pulling the traction rope 543, thereby avoiding operation failure or safety accidents caused by the slipping of the traction rope 543. This design improves the safety of operation.

[0049] In one embodiment, the side of the support rod 51 that contacts the network cable 4 is configured to be a semicircular arc structure.

[0050] This design, see Figure 8The semicircular arc structure can better fit the shape of the network cable 4, providing a larger contact area, thereby enhancing the supporting force of the support rod 51 on the network cable 4, and conveniently reducing the risk of sharp contact points between the network cable and the support rod 51 when pulling the network cable 4, causing the outer skin of the network cable 4 to be scratched or worn.

[0051] In addition, if there are descriptions of "first," "second," etc. in the embodiments, such descriptions are for descriptive purposes only and should not be understood as indicating or implying the relative importance of the description or implicitly indicating the number of the technical features indicated. Therefore, a feature specified as "first" or "second" may explicitly or implicitly include at least one of such features.

Claims

1. An optimized structure of a network integrated wiring cabinet, comprising a mounting beam (2) arranged inside a wiring cabinet (1) and a wiring rack (3) detachably arranged at intervals on the mounting beam (2) for placing network cables (4), characterized in that: Also includes: The support mechanism (5) comprises a support rod (51) passed through the network cable (4) for supporting and limiting the network cable (4), an adjustment assembly (52) adjustably arranged on both sides of the support rod (51), a connection assembly (53) arranged on the side of the adjustment assembly (52) away from the support rod (51) for connecting the support rod (51) with the wiring rack (3), and a fixing assembly (54) arranged on the connection assembly (53) for fixing the installation position of the support rod (51), wherein the fixing assembly (54) fixes the connection assembly (53) when the support rod (51) moves to a side away from the wiring rack (3).

2. The network integrated wiring cabinet optimization structure according to claim 1, characterized in that: The wiring rack (3) comprises a network cable connector rack (31) arranged on the mounting beam (2) and a network cable harness rack (32) arranged on the mounting beam (2); a fixing groove (3101) for placing the connection component (53) is provided at the position where the network cable connector rack (31) and the network cable harness rack (32) are connected to the mounting beam (2); the connector end of the network cable (4) is plugged into the network cable connector rack (31), and the network cable (4) passes through the mesh of the network cable harness rack (32).

3. The optimized structure of a network integrated wiring cabinet according to claim 2, characterized in that: The adjustment assembly (52) comprises adjustment rods (521) passing through both sides of the support rod (51), a limit block (522) arranged on one side of the adjustment rod (521) located inside the support rod (51), and a mounting plate (524) arranged on the other side of the adjustment rod (521); a movable groove (5101) for the limit block (522) to move is provided on the support rod (51); a through hole (5102) for the adjustment rod (521) to move is provided on the support rod (51); and the adjustment rod (521) is symmetrically arranged with respect to the support rod (51).

4. The optimized structure of a network integrated wiring cabinet according to claim 3, characterized in that: A first elastic member (523) is sleeved on the portion of the adjusting rod (521) located between the through hole (5102) and the limiting block (522).

5. The optimized structure of a network integrated wiring cabinet according to claim 3, characterized in that: The connecting assembly (53) comprises a connecting plate (531) arranged on a side of the mounting plate (524) close to the wiring rack (3) and a fixing plate (532) arranged on a side of the connecting plate (531) close to the wiring rack (3), wherein the fixing plate (532) is snap-fitted into the fixing groove (3101).

6. The network integrated wiring cabinet optimization structure according to claim 5, characterized in that: The fixing assembly (54) comprises a telescopic plate (541) passing through the connecting plate (531) and connected to the mounting plate (524), and a fixing member (542) arranged inside the telescopic plate (541) for fixing the telescopic plate (541) to the connecting plate (531). The connecting plate (531) is provided with a slot (53101) for the telescopic plate (541) to move.

7. The optimized structure of a network integrated wiring cabinet according to claim 6, characterized in that: The fixing member (542) includes a second elastic member (5422) arranged inside the telescopic plate (541) and a fixing block (5421) arranged on the side of the second elastic member (5422) close to the slot (53101), the telescopic plate (541) is provided with a movable groove (54101) for the fixing block (5421) to move, and the interior of the connecting plate (531) is provided with a fixing hole (53102) for fixing the fixing block (5421) at a position corresponding to the fixing block (5421).

8. The network integrated wiring cabinet optimization structure according to claim 7, characterized in that: A traction rope (543) is provided on a side of the fixing block (5421) away from the fixing hole (53102), and the traction rope (543) passes through the telescopic plate (541) and the mounting plate (524).

9. The network integrated wiring cabinet optimization structure according to claim 8, characterized in that: A pulling block (544) is provided on the side of the traction rope (543) away from the fixing block (5421).

10. The network integrated wiring cabinet optimization structure according to claim 1, characterized in that: The side of the support rod (51) that contacts the network cable (4) is configured to be a semicircular arc structure.