Network communication line protection device

The detachable lower and upper shell splicing structure and the heat dissipation system solve the problem of inconvenient wire assembly in the prior art, achieve rapid assembly and heat dissipation, improve assembly efficiency, and reduce fire risks.

CN120603166APending Publication Date: 2025-09-05ANHUI JIAFAN COMM ENG CO LTD
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Patent Information

Application Number
CN202510875570.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-27
Publication Date
2025-09-05

AI Technical Summary

Technical Problem

The existing network communication line protection device is integrated and small in size, which makes the wire assembly inconvenient and the space is insufficient, affecting the assembly efficiency.

Method used

A detachable lower shell and upper shell are spliced ​​together through a fixing mechanism to form a hollow structure, which is combined with the fixing mechanism and the heat dissipation mechanism, including a card seat, an upper support seat, a No. 1 plug rod, a card block and a No. 2 plug rod. Spring fixation and heat dissipation holes, semiconductor coolers, cooling pipes and micro air pumps are used to achieve rapid assembly and heat dissipation.

Benefits of technology

It achieves rapid assembly and heat dissipation of wires, improves assembly efficiency, prevents fire risks, and facilitates later maintenance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a network communication line protection device. The network communication line protection device comprises a protection shell formed by detachably splicing a lower shell and an upper shell through a fixing mechanism; the fixing mechanism comprises a clamping base, an upper supporting base, a first inserting rod, a clamping block and a second inserting rod. A plurality of clamping seats are horizontally and fixedly arranged on the two sides of the lower shell at intervals, a clamping groove is formed in the upper end of each clamping seat, an upper supporting seat is horizontally and fixedly arranged on the upper shell located above each clamping seat, and a first inserting rod is vertically arranged on each upper supporting seat in a liftable mode; a clamping block capable of being inserted into the clamping groove is horizontally and fixedly arranged at the bottom end of the clamping seat, an inserting hole is horizontally formed in the clamping block in a penetrating mode, and a second inserting rod capable of extending into the clamping groove from the side wall of the clamping seat and horizontally penetrating through the inserting hole is horizontally and movably arranged in the clamping seat. According to the network communication line protection device, splicing of the protection shell can be rapidly completed through the fixing mechanism so that the electric wire can be rapidly assembled in the protection shell, the assembly efficiency is improved, and later maintenance is facilitated.
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Description

Technical Field

[0001] The present invention relates to the technical field of network communications, and in particular to a network communication line protection device. Background Art

[0002] Communication lines are the pathways that ensure information transmission. Currently, long-distance trunk lines primarily utilize high-fiber-count fiber optic cables, with satellite, microwave, and other wireless lines also being used. Interprovincial and intraprovincial long-distance lines also primarily utilize fiber optic cables, with microwave and satellite lines also being used. As one of the four elements of a network, communication lines play a critical role in its construction. Protecting and maintaining the normal operation of these lines is a fundamental requirement for network stability.

[0003] A search revealed Chinese patent application number CN202021229786.1, which discloses a network communication line protection device. The device includes a port pad, with a protective sleeve fixedly connected to the end of the port pad away from the support spring. A protective bottom shell is fixedly connected to both ends of the protective bottom shell. A connecting block is movably connected to the interior of the protective bottom shell. A connecting spring is fixedly connected to one end of the connecting block, and a closed housing is fixedly connected to the end of the connecting spring away from the connecting block. This network communication line protection device forms a closed structure with the closed housing and the protective housing.

[0004] The inventors discovered the following problems in the prior art during the implementation of the present invention: Since the existing protective device is integrated and relatively small in size, when assembling the wires, the internal space of the protective device is only slightly larger than the wires, which makes it inconvenient to assemble the wires into the protective device.

[0005] Therefore, providing a network communication line protection device that can quickly complete the splicing of the protective shell through a fixing mechanism during use to quickly assemble the wires inside it, thereby improving assembly efficiency and facilitating subsequent maintenance is an urgent problem to be solved by the present invention. Summary of the Invention

[0006] In response to the above technical problems, the purpose of the present invention is to overcome the problem in the prior art that the existing protective device is integrated and has a small size. When assembling the wires, the internal space of the protective device is only slightly larger than the wires, which makes it inconvenient to assemble the wires into the protective device. Thus, a network communication line protection device is provided which can quickly complete the splicing of the protective shell through a fixing mechanism during use to quickly assemble the wires inside it, thereby improving assembly efficiency and facilitating subsequent maintenance.

[0007] To achieve the above object, the present invention provides a network communication line protection device, comprising: a lower shell and an upper shell detachably connected together by a fixing mechanism to form a protective shell with a hollow interior for protecting wires; The fixing mechanism includes: a clamping seat, an upper support seat, a No. 1 plug rod, a clamping block and a No. 2 plug rod; wherein, A number of card seats are horizontally and fixedly arranged on both sides of the lower shell body at intervals, and a card slot is provided at the upper end of each card seat, and an upper support seat is horizontally fixedly provided on the upper shell body above each card seat, and each upper support seat is vertically and liftably provided with a No. 1 plug rod, and a card block which can be inserted into the card slot is horizontally fixed at the bottom end thereof, and a hole is horizontally penetrated on the card block, and a No. 2 plug rod which can extend from its side wall into the card slot and horizontally pass through the hole is horizontally movably provided inside the card seat.

[0008] Preferably, each of the No. 1 insertion rods located above the upper support seat is sleeved with a No. 1 spring, and the two ends of each of the No. 1 springs are respectively fixed to the upper support seat and the No. 1 insertion rod, and each of the No. 2 insertion rods located outside the end of the clamping seat is sleeved with a No. 2 spring, and the two ends of each of the No. 2 springs are respectively fixed to the clamping seat and the No. 2 insertion rod.

[0009] Preferably, the length of the card slot on the card seat is equal to the length of the card block, and the width of the valley groove is equal to the width of the card block.

[0010] Preferably, a plurality of heat dissipation holes are provided on both sides of the upper shell at equal intervals.

[0011] Preferably, the device further comprises: a heat dissipation mechanism, which comprises: a semiconductor refrigerator, a cooling pipe and a micro air pump; wherein, At least one semiconductor refrigerator is fixedly installed horizontally above the upper shell, and the cooling surface of the semiconductor refrigerator faces the upper shell. A serpentine cooling pipe is fixedly installed horizontally on the cooling surface. The air inlet end of the cooling pipe is connected to the output end of a micro air pump fixed horizontally on the upper shell, and the air outlet end portion thereof extends from the top end of the upper shell into the interior of the protective shell.

[0012] Preferably, a dustproof net is fixedly provided on the port of the input end of the micro air pump.

[0013] Preferably, the device further comprises a wire clamp, the wire clamp comprising: a lower clamping plate and an upper clamping plate; wherein, A lower clamping plate is horizontally fixed on the upper end of the lower shell located inside the protective shell, and the upper end part of the lower clamping plate is recessed inward to form a No. 1 arc-shaped limiting groove adapted to the wire, and an upper clamping plate is provided below the upper shell located above the lower clamping plate, and the bottom end part of the upper clamping plate is recessed inward to form a No. 2 arc-shaped limiting groove used in conjunction with the No. 1 arc-shaped limiting groove, and the lower clamping plate and the upper clamping plate are respectively horizontally fixedly connected to the lower shell and the upper shell inside the protective shell through a number of No. 1 tensioning springs and No. 2 tensioning springs.

[0014] According to the above technical solution, the beneficial effects of the network communication line protection device provided by the present invention when used are: (1) During assembly, place the wires on the lower shell, and cover the upper shell on the lower shell, and move the No. 1 plug rod to drive the card block to move toward the card seat until the card block is stuck in the card slot of the card seat, and then move the No. 2 long ah so that it extends into the interior of the card seat from one end and passes horizontally through the socket on the card block to quickly fix the card block, so that the splicing operation of the upper shell and the lower shell can be quickly completed, the entire assembly is simple, and the assembly efficiency is improved.

[0015] (2) The micro air pump is started to transport the external gas into the cooling tube on the cooling surface of the semiconductor refrigerator, and the semiconductor refrigerator is used to cool and cool the gas entering the cooling tube. The cooled gas enters the protective shell through the gas outlet end of the cooling tube to exchange heat with the working wires. The gas after heat exchange is discharged through the heat dissipation hole, thereby playing a role in heat dissipation and cooling, preventing the heat generated by the wires during operation from being unable to dissipate quickly from the protective shell and causing a fire.

[0016] Therefore, the present invention can quickly complete the splicing of the protective shell through the fixing mechanism to quickly assemble the wires therein, thereby improving assembly efficiency and facilitating subsequent maintenance.

[0017] Other features and advantages of the present invention will be described in detail in the subsequent specific implementation methods; and the parts not involved in the present invention are the same as the existing technology or can be implemented by using the existing technology. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] The accompanying drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the following detailed description, they are used to explain the present invention but do not constitute a limitation of the present invention. In the accompanying drawings: Figure 1 It is a structural diagram of a network communication line protection device provided in a preferred embodiment of the present invention; Figure 2It is a structural cross-sectional view of a network communication line protection device provided in a preferred embodiment of the present invention; Figure 3 It is a partial structural diagram of a network communication line protection device provided in a preferred embodiment of the present invention; Figure 4 It is a structural schematic diagram of a heat dissipation mechanism of a network communication line protection device provided in a preferred embodiment of the present invention.

[0019] Description of Reference Numerals 1. Lower shell; 2. Upper shell; 3. Wire clamp; 301. Lower splint; 302. Upper splint; 4. Fixing mechanism; 401. Clamping seat; 402. Upper support seat; 403. Plug rod No. 1; 404. Clamping block; 405. Plug rod No. 2; 5. Heat dissipation mechanism; 501. Semiconductor refrigerator; 502. Cooling tube; 503. Micro air pump; 6. Heat dissipation hole; 7. Spring No. 1; 8. Spring No. 2. DETAILED DESCRIPTION

[0020] The following describes the specific embodiments of the present invention in detail with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are only used to illustrate and explain the present invention and are not intended to limit the present invention.

[0021] like Figure 1-4 As shown, the present invention provides a network communication line protection device, which includes: a lower shell 1 and an upper shell 2 detachably connected together by a fixing mechanism 4 to form a protective shell with a hollow interior for protecting wires; The fixing mechanism 4 includes: a clamping seat 401, an upper support seat 402, a No. 1 insertion rod 403, a clamping block 404 and a No. 2 insertion rod 405; wherein, A number of card seats 401 are horizontally and fixedly arranged on both sides of the lower shell 1, and a card slot is provided at the upper end of each card seat 401. An upper support seat 402 is horizontally fixedly provided on the upper shell 2 located above each card seat 401. Each upper support seat 402 is vertically and liftably provided with a No. 1 plug rod 403, and a card block 404 that can be inserted into the card slot is horizontally fixed at the bottom end thereof. A socket is horizontally penetrated on the card block 404, and a No. 2 plug rod 405 that can extend from its side wall into the card slot and horizontally pass through the socket is horizontally movably provided inside the card seat 401.

[0022] In the above scheme, when used, Figure 1 and 3As shown, the wires are placed on the lower shell 1, and the upper shell 2 is covered on the lower shell 1, and the No. 1 plug rod 403 is moved to drive the card block 404 to move toward the card base 401 until the card block 404 is stuck in the card slot of the card base 401, and then the No. 2 rod 405 is moved to extend it from one end of the card base 401 into its interior and horizontally pass through the socket on the card block 404 to quickly fix the card block 404, so that the splicing operation of the upper shell 2 and the lower shell 1 can be quickly completed, the entire assembly is simple, and the assembly efficiency is improved.

[0023] In a preferred embodiment of the present invention, each of the No. 1 insertion rods 403 located above the upper support seat 402 is sleeved with a No. 1 spring 7, and the two ends of each of the No. 1 springs 7 are respectively fixed on the upper support seat 402 and the No. 1 insertion rod 403, and each of the No. 2 insertion rods 405 located outside the end of the clamping seat 401 is sleeved with a No. 2 spring 8, and the two ends of each of the No. 2 springs 8 are respectively fixed on the clamping seat 401 and the No. 2 insertion rod 405.

[0024] In the above scheme, the No. 1 spring 7 and the No. 2 spring 8 both play a tensioning role, so that the No. 2 insertion rod 405 can reliably penetrate horizontally from one end of the base 401 into its interior and be inserted into the socket of the block 404 to fix and limit the block 404.

[0025] In a preferred embodiment of the present invention, the length of the card slot on the card holder 401 is equal to the length of the card block 404 , and the width of the valley groove is equal to the width of the card block 404 .

[0026] In the above solution, the card holder 401 is limited on the card holder 401 by the card slot, which prevents the card block 404 stuck on the card holder 401 from moving, thereby limiting the card block 404.

[0027] In a preferred embodiment of the present invention, a plurality of heat dissipation holes 6 are provided on both sides of the upper shell 2 at equal intervals.

[0028] In the above solution, the heat dissipation function is played to prevent the heat of the wire from being unable to dissipate from the protective shell during operation and causing a fire.

[0029] In a preferred embodiment of the present invention, the device further comprises: a heat dissipation mechanism 5, wherein the heat dissipation mechanism 5 comprises: a semiconductor refrigerator 501, a cooling pipe 502 and a micro air pump 503; wherein, At least one semiconductor refrigerator 501 is horizontally fixedly installed above the upper shell 2, and the cooling surface of the semiconductor refrigerator 501 faces the upper shell 2. A serpentine cooling tube 502 is horizontally fixedly installed on its cooling surface. The air inlet end of the cooling tube 502 is connected to the output end of a micro air pump 503 horizontally fixed on the upper shell 2, and the air outlet end portion thereof extends from the top of the upper shell 2 into the interior of the protective shell.

[0030] In the above scheme, when in use, the micro air pump 503 is started to transport external gas to the cooling tube 502 on the cooling surface of the semiconductor refrigerator 501, and the semiconductor refrigerator 501 is used to cool and cool the gas entering the cooling tube 502. The cooled gas enters the protective shell through the air outlet end of the cooling tube 502 to exchange heat with the working wires. The gas after heat exchange is discharged through the heat dissipation hole 6, thereby playing a role in heat dissipation and cooling, preventing the heat generated by the wires during operation from being unable to dissipate quickly from the protective shell and causing a fire.

[0031] In a preferred embodiment of the present invention, a dustproof net is fixedly provided on the input port of the micro air pump 503 .

[0032] In the above solution, dust or other impurities are prevented from entering the micro air pump 503 and affecting its normal operation.

[0033] In a preferred embodiment of the present invention, the device further comprises a wire clamp 3, wherein the wire clamp 3 comprises: a lower clamping plate 301 and an upper clamping plate 302; wherein, A lower clamping plate 301 is horizontally fixed on the upper end of the lower shell 1 located inside the protective shell, and the upper end part of the lower clamping plate 301 is recessed inward to form a No. 1 arc-shaped limiting groove adapted to the wire, and an upper clamping plate 302 is provided below the upper shell 2 located above the lower clamping plate 301, and the bottom end part of the upper clamping plate 302 is recessed inward to form a No. 2 arc-shaped limiting groove used in conjunction with the No. 1 arc-shaped limiting groove, and the lower clamping plate 301 and the upper clamping plate 302 are respectively horizontally fixedly connected to the lower shell 1 and the upper shell 2 inside the protective shell through a number of No. 1 tensioning springs and No. 2 tensioning springs.

[0034] In the above solution, under the action of multiple No. 1 tension springs and No. 2 tension springs, the lower clamping plate 301 and the upper clamping plate 302 clamp the wires.

[0035] In summary, the network communication line protection device provided by the present invention overcomes the problem in the prior art that the existing protection device is integrated and has a small size. When assembling the wires, the internal space of the protection device is only slightly larger than the wires, which makes it inconvenient to assemble the wires into the protection device.

[0036] The preferred embodiments of the present invention are described in detail above in conjunction with the accompanying drawings. However, the present invention is not limited to the specific details in the above embodiments. Within the technical concept of the present invention, various simple modifications can be made to the technical solution of the present invention, and these simple modifications all fall within the scope of protection of the present invention.

[0037] It should also be noted that the various specific technical features described in the above specific embodiments can be combined in any appropriate manner without contradiction. In order to avoid unnecessary repetition, the present invention will not further describe various possible combinations.

[0038] In addition, the various embodiments of the present invention may be arbitrarily combined, and as long as they do not violate the concept of the present invention, they should also be regarded as the contents disclosed by the present invention.

Claims

1. A network communication line protection device, characterized in that: The device comprises: a lower shell (1) and an upper shell (2) detachably spliced ​​together via a fixing mechanism (4) to form a protective shell with a hollow interior for protecting electric wires; The fixing mechanism (4) comprises: a clamping seat (401), an upper support seat (402), a No. 1 insertion rod (403), a clamping block (404) and a No. 2 insertion rod (405); wherein, A plurality of card seats (401) are respectively arranged horizontally and fixedly at intervals on both sides of the lower shell (1), and a card slot is provided at the upper end of each card seat (401). An upper support seat (402) is fixedly arranged horizontally on the upper shell (2) above each card seat (401), and each upper support seat (402) is provided with a first plug rod (403) vertically and liftably, and a card block (404) capable of being inserted into the card slot is fixedly arranged horizontally at the bottom end thereof, and a plug hole is horizontally penetrated through the card block (404), and a second plug rod (405) capable of extending from the side wall thereof into the card slot and horizontally passing through the plug hole is movably arranged horizontally inside the card seat (401).

2. The network communication line protection device according to claim 1, characterized in that: A No. 1 spring (7) is sleeved on each of the No. 1 insertion rods (403) located above the upper support seat (402), and the two ends of each of the No. 1 springs (7) are respectively fixed to the upper support seat (402) and the No. 1 insertion rod (403), and a No. 2 spring (8) is sleeved on each of the No. 2 insertion rods (405) located outside the end of the clamping seat (401), and the two ends of each of the No. 2 springs (8) are respectively fixed to the clamping seat (401) and the No. 2 insertion rod (405).

3. The network communication line protection device according to claim 1, characterized in that: The length of the card slot on the card seat (401) is equal to the length of the card block (404), and the width of the valley groove is equal to the width of the card block (404).

4. The network communication line protection device according to claim 1, characterized in that: A plurality of heat dissipation holes (6) are provided at equal intervals on both sides of the upper shell (2).

5. The network communication line protection device according to claim 4, characterized in that: The device further comprises a heat dissipation mechanism (5), wherein the heat dissipation mechanism (5) comprises a semiconductor refrigerator (501), a cooling pipe (502) and a micro air pump (503); wherein, At least one semiconductor refrigerator (501) is fixedly arranged horizontally above the upper shell (2), and the cooling surface of the semiconductor refrigerator (501) faces the upper shell (2). A serpentine cooling pipe (502) is fixedly arranged horizontally on the cooling surface. The air inlet end of the cooling pipe (502) is connected to the output end of a micro air pump (503) fixed horizontally on the upper shell (2), and the air outlet end portion thereof extends from the top end of the upper shell (2) into the interior of the protective shell.

6. The network communication line protection device according to claim 5, characterized in that: A dustproof net is fixedly provided on the port at the input end of the micro air pump (503).

7. The network communication line protection device according to claim 1, characterized in that: The device further comprises a wire clamp (3), wherein the wire clamp (3) comprises: a lower clamping plate (301) and an upper clamping plate (302); wherein, A lower clamping plate (301) is horizontally fixedly provided at the upper end of the lower shell (1) located inside the protective shell, and the upper end portion of the lower clamping plate (301) is recessed inwardly to form a No. 1 arc-shaped limiting groove adapted to the electric wire. An upper clamping plate (302) is provided below the upper shell (2) located above the lower clamping plate (301), and the bottom end portion of the upper clamping plate (302) is recessed inwardly to form a No. 2 arc-shaped limiting groove used in conjunction with the No. 1 arc-shaped limiting groove. The lower clamping plate (301) and the upper clamping plate (302) are respectively horizontally fixedly connected to the lower shell (1) and the upper shell (2) inside the protective shell through a plurality of No. 1 tensioning springs and No. 2 tensioning springs.

Citation Information

Patent Citations

  • Network communication line protection device

    CN212648981U