Network cabling equipment for light source positioning operation and maintenance management
Through the suspended installation bracket and light guide cable, combined with the light guide wire and traction components, the problems of large space occupied by network wiring equipment and low maintenance efficiency are solved, and the computer room is regular and rapid fault positioning is achieved, and the operation and maintenance efficiency is improved.
Patent Information
- Application Number
- CN202411746931.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-02
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2044-12-02
AI Technical Summary
The existing network wiring equipment occupies a large space, affecting the daily movement and maintenance efficiency of operation and maintenance personnel. The messy network wiring layout leads to a long time to confirm the fault line.
The installation bracket and light guide cable are arranged in the air, and light guide wires are used to transmit light to quickly determine the faulty line. The wiring components can be stored in the storage area, the active operation area leaves work space, the core combing components ensure the smoothness of the network cable, and the traction components are easy to repair and reset.
提高了运维检修效率,机房更为规整,线路占用空间更小,布线更稳定,检修更高效。
Smart Images

Figure CN119231401B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of wiring equipment, and particularly to a network integrated wiring equipment for light source positioning operation and maintenance management. Background Art
[0002] Network integrated wiring is a key component in constructing modern communication infrastructure, which involves the use of various devices and materials to ensure efficient and stable transmission of information. Network integrated wiring equipment mainly includes the following categories: RJ45, patch panel and module, RJ45 modular patch panel, switch and router:
[0003] Most network wiring equipment is centrally installed in the computer room. The current computer room network wiring equipment has the following problems in actual use:
[0004] 1. Since the computer room is relatively narrow, most of the current network wiring equipment is floor-mounted, occupying a large space and affecting the daily movement and maintenance of maintenance personnel;
[0005] 2. The network cables are laid in a messy manner in the wiring equipment. When a certain line fails, the inspection personnel need to repeatedly check at the input end and output end of the line to confirm the faulty line, resulting in a long maintenance time.
[0006] In summary, there is a need for a network integrated wiring equipment with more regular wiring and higher maintenance efficiency at present. Summary of the Invention
[0007] In view of the deficiencies of the prior art, the present invention provides a network integrated wiring equipment for light source positioning operation and maintenance management, which solves the problems mentioned in the background art.
[0008] To achieve the above objectives, the present invention is realized through the following technical solutions:
[0009] A network integrated wiring equipment for light source positioning operation and maintenance management includes a suspended installation bracket. The installation bracket includes support side plates, which are installed on both sides of the wall network cable reserved opening. At the top of the two groups of support side plates, a top plate is vertically provided. On the top surface of the top plate, a storage rack for placing a switch is provided, and the switch is connected to the network cable in the wall network cable reserved opening;
[0010] The outer top of the installation bracket is a storage area, and the outer bottom is an active operation area; a plurality of traction components are installed on the bottom surface of the top plate. The bottom end of each traction component is connected to a wiring component. Each group of wiring components is arranged staggeredly, and the inner end of the wiring component is vertically slidably installed between the two groups of support side plates;
[0011] The wiring component includes a wiring board and a panel. A plurality of wiring boards are provided at intervals from the inside to the outside. A set of panels is provided at the bottom end of each wiring board. A linear array of internal connection terminals is provided on the back of each panel. The input end of the internal connection terminal is connected to a network cable, and the output end is connected to a light guide cable. The output end of the light guide cable is connected to a user network panel; the network cable is arranged along the wiring board, and the input end of the network cable is plugged into a switch;
[0012] Both the input end and the output end of the light guide cable are configured with crystal heads. The light guide cable includes an outer sheath. A flat intermediate body is provided in the middle of the inside of the outer sheath. Side constraint covers are provided at both ends of the intermediate body. Light guide filaments penetrate through the inside of the side constraint covers. Shielding covers are provided on both the upper surface and the lower surface of the intermediate body. A shielding cavity is formed between the shielding cover and the intermediate body. The inside of the shielding cavity is divided into four independent placement cavities by a partition. A set of inner conductors penetrates through each placement cavity;
[0013] A core combing component is provided in the middle between two groups of support side plates. The core combing component is used to comb the eight core wires of the network cable into a flat state, so as to facilitate the quick insertion of the network cable into the internal connection terminal;
[0014] When the equipment is not under maintenance, the traction component pulls the wiring component into the storage area, and the movable operation area is used as the machine room activity area for the operation and maintenance personnel;
[0015] When the equipment is under maintenance, a lamp is turned on at the user network panel, and the light is transmitted through the light guide filaments of the light guide cable. The operation and maintenance personnel pull down the lit wiring component.
[0016] Further, both the upper surface and the lower surface of the intermediate body are concave arc surface structures, the shielding cover is an arc surface structure, an insulating paste is filled between the outside of the shielding cover and the outer sheath, and an insulating and flame-retardant composite paste is filled inside the shielding cover.
[0017] Further, the wiring board includes a guide rail frame, a partition board, and a transverse plate body. The partition board is horizontally arranged. Guide rail frames are vertically symmetrically provided at the bottom surface of the outer end of the partition board. The inner end of the partition board is vertically slidably installed between two groups of installation brackets; a stop block is provided on the outer wall of the top end of each group of guide rail frames. The bottom ends of the two guide rail frames are connected to the panel. A transverse plate body is provided in the middle of the two groups of guide rail frames. A plurality of wire clips are provided on the outer wall of the transverse plate body, and the network cable penetrates through the wire clips.
[0018] Further, the traction component includes a traction wheel and a traction rope. The traction wheel is installed on the bottom surface of the top plate and a torsion spring is provided at the installation position. The traction rope is wound around the outer wall of the traction wheel. The bottom end of the traction rope is connected to the surface of the partition board; positioning side plates are vertically symmetrically provided on the outer wall of the support side plate. The positioning side plates are arranged on both sides of the storage area. An upper positioning groove is opened in the middle of the outer wall of each guide rail frame, and a lower positioning groove is opened at the bottom of the outer wall. Elastic clamping heads that are engaged with the upper positioning groove or the lower positioning groove are provided on the outer wall of the positioning side plate;
[0019] When the wiring component is stored, the panel abuts against the bottom surface of the positioning side plate, and the elastic chuck is engaged in the lower positioning groove;
[0020] When the wiring component is pulled down, the elastic chuck is engaged with the upper positioning groove, and the stopper abuts against the top surface of the positioning side plate.
[0021] Furthermore, the core combing component includes a rear plate body, a scissor frame, a front plate body and inner clamping plates. The rear plate body is arranged between two supporting side plates. A scissor frame is arranged on the outer wall of the rear plate body. A front plate body is arranged at the outer end of the scissor frame. The hinged part of the scissor frame is a damping rotation structure. A guide rail seat is arranged at the top of the outer wall of the front plate body. A moving seat is slidably mounted on the surface of the guide rail seat. Two groups of sliding plates are slidably and dampedly embedded in the surface of the moving seat. The outer ends of the two groups of sliding plates are vertically connected with inner clamping plates. Two groups of outer clamping plates are symmetrically hinged at both ends of the outer wall of the inner clamping plates. A plurality of inner clamping grooves are formed in the side wall of the inner clamping plates. Outer clamping grooves are formed in the side wall of the outer clamping plates. The inner clamping grooves and the outer clamping grooves are used to cooperate to clamp and position the network cable. When the core combing component is not in use, the scissor frame is folded up, so that the whole core combing component is received between the two supporting side plates, and the two groups of outer clamping plates are closed outside the inner clamping plates;
[0022] The using steps of the core combing component are as follows: externally rotate to open the two groups of outer clamping plates; place the eight core wires of the network cable in the inner clamping grooves; rotate the two groups of outer clamping plates to cover the outer wall of the inner clamping plates to synchronously cut each core wire flat.
[0023] Furthermore, a group of inner constraint components are arranged at the bottom of each inner clamping groove. The inner constraint components include inner half tubes. A plurality of inner half tubes are linearly arrayed and fixed on a first positioning frame. The first positioning frame is fixedly arranged at the bottom of the inner clamping groove. The top and bottom of the inner half tube are both open structures, and the inner half tube is semicircular; a group of outer constraint components are arranged at the bottom of each outer clamping groove. The outer constraint components include outer half tubes. A plurality of outer half tubes are linearly arrayed and fixed on a second positioning frame. The second positioning frame is fixedly arranged at the bottom of the outer clamping groove; the outer half tubes and the inner half tubes cooperate to position each core wire.
[0024] Furthermore, a storage box is arranged on the outer side of the inner half tube. The storage box is fixedly arranged on the bottom surface of the inner clamping plate through a first vertical rod. An upper rack is horizontally slidably mounted on the inner top of the storage box. A lower rack is horizontally slidably mounted on the inner bottom of the storage box. A transfer gear is arranged between the upper rack and the lower rack. A cooperation plate is arranged at one end of the upper rack close to the inner half tube. A second vertical rod extending downward is vertically arranged at one end of the lower rack close to the inner half tube. A first cutter is vertically arranged at the bottom end of the second vertical rod. The first cutter is placed at the bottom of the inner half tube.
[0025] Further, a second cutter is provided at the bottom end of each of the outer half tubes, and a plurality of outer half tubes are symmetrically provided with abutting rods in the middle. The abutting rods are L-shaped; when the outer clamping plates rotate inwards and close, the second cutter gradually cuts off the core wire. At the same time, the abutting rod abuts against the matching plate to move the first cutter, and the first cutter and the second cutter cooperate to cut off the extended part of the core wire.
[0026] Further, the outer ends of the two groups of outer clamping plates are respectively hinged to the outer ends of the inner clamping plates. Each group of outer clamping plates corresponds to two inner clamping grooves. An inner end of the outer wall of one group of outer clamping plates is provided with a first retaining frame, and an inner end of the outer wall of the other group of outer clamping plates is provided with a second retaining frame and a rotatably arranged locking rod. The locking rod is arranged inside the second retaining frame; when the two groups of outer clamping plates rotate outwards and open, the locking rod is clamped in the second retaining frame; when the two groups of outer clamping plates rotate inwards and close, the locking rod is clamped in the first retaining frame.
[0027] Further, an arc-shaped walking groove is formed in the outer ring of the interior of the top plate. A toothed ring is provided on the bottom surface of the top plate. The toothed ring is arranged inside the walking groove. The walking monitoring component is meshed and embedded in the walking groove. The walking monitoring component includes a lower walking plate and an upper walking plate. The lower walking plate and the upper walking plate are clamped on the upper and lower side surfaces of the top plate. A driven gear is installed on the surface of the lower walking plate. The driven gear meshes with the outer wall of the toothed ring. A driving motor for driving the driven gear to rotate is installed on the bottom surface of the lower walking plate. The top end of the driven gear is connected to the upper walking plate; a camera is provided on the outer wall of the lower walking plate, and a sound-sensing lighting lamp is installed on the bottom surface of the lower walking plate.
[0028] Further, vertical plates are symmetrically provided at the inner end of the top surface of the upper walking plate. A smoke detector is provided at the center of the top surface of the upper walking plate. A flap is rotatably connected to the outer end of the top surface of the upper walking plate. A driving rod is installed between the vertical plate and the flap. One end of the driving rod is rotatably connected to the top side wall of the vertical plate, and the other end of the driving rod is rotatably connected to the bottom of the inner wall of the flap. A heptafluoropropane fire extinguisher is installed on the top of the flap. The driving rod is used to drive the flap to flip to adjust the fire extinguishing angle of the heptafluoropropane fire extinguisher.
[0029] The present invention provides a network cabling device for light source positioning operation and maintenance management. Compared with the prior art, it has the following beneficial effects:
[0030] 1. By arranging light guide filaments in the light guide cable, when the maintenance personnel shine light at the user network panel, the light can be transmitted to the other end through the light guide filaments. In this way, the maintenance personnel can quickly determine the faulty line by observing which internal connection terminal has light in the computer room, effectively improving the operation and maintenance efficiency.
[0031] 2. The entire cabling device is arranged in a suspended manner, and the following effects can be achieved:
[0032] 2.1. The installation brackets are suspended, which is convenient for the routing of network cables and light guide cables, with higher integration, making the computer room more regular and the space occupied by the lines smaller;
[0033] 2.2. The lines of the mounting bracket are mainly laid at the top, and an activity operation area is left at the outer bottom of the mounting bracket. Staff can walk back and forth in the activity operation area for computer room operations, and can also lay network cables and perform maintenance in the activity operation area.
[0034] 3. The setting of the wiring component can achieve stable and regular laying of network cables; when maintenance is required, the wiring component can be pulled down, and then the traction component can be pulled down. After the maintenance is completed, the traction component can pull the wiring component up to reset, so that each wiring component is stored in the storage area. BRIEF DESCRIPTION OF THE DRAWINGS
[0035] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings.
[0036] Figure 1 Shows the structural schematic diagram of the network integrated wiring device of the present invention;
[0037] Figure 2 Shows the side cross-sectional structural schematic diagram of the network integrated wiring device of the present invention;
[0038] Figure 3 Shows the structural schematic diagram of the wiring component of the present invention;
[0039] Figure 4 Shows the structural schematic diagram of the connection between the positioning side plate and the guide rail frame of the present invention;
[0040] Figure 5 Shows the structural schematic diagram of the core combing component of the present invention;
[0041] Figure 6 Shows the structural schematic diagram of the connection of the moving seat of the present invention;
[0042] Figure 7 Shows the structural schematic diagram of the connection between the inner clamping plate and the outer clamping plate of the present invention;
[0043] Figure 8 Shows Figure 6 The enlarged structural schematic diagram at A of
[0044] Figure 9 Shows the structural schematic diagram of the inner restraint component of the present invention;
[0045] Figure 10 Shows the structural schematic diagram of the outer restraint component of the present invention;
[0046] Figure 11 shows a schematic structural diagram of the first cutter layout structure of the present invention;
[0047] Figure 12 shows a schematic structural diagram of the cutting state of the first cutter and the second cutter of the present invention;
[0048] Figure 13 shows a schematic structural diagram of the walking monitoring component of the present invention;
[0049] As shown in the figure:
[0050] 1. Mounting bracket, 11. Support side plate, 12. Elastic chuck, 13. Storage rack, 14. Positioning side plate, 15. Top plate, 151. Walking groove, 152. Tooth ring, 2. Wiring component, 21. Guide rail frame, 211. Upper positioning groove, 212. Lower positioning groove, 213. Stopper, 22. Partition board, 23. Panel, 24. Inward terminal, 25. Horizontal plate body, 26. Wire clip, 3. Traction component, 31. Traction wheel, 32. Traction rope, 4. Core combing component, 41. Rear plate body, 42. Scissor frame, 43. Front plate body, 44. Guide rail seat, 45. Moving seat, 46. Inner clamping plate, 461. Inner clamping groove, 462. Slide plate, 47. Outer clamping plate, 471. Outer clamping groove, 48. Inner constraint component, 481. Inner half tube, 4811. First positioning frame, 482. First vertical rod, 483. Storage box, 4831. Upper rack, 4832. Intermediate gear, 4833. Lower rack, 484. First cutter, 4841. Second vertical rod, 485. Matching plate, 49. Outer constraint component, 491. Outer half tube, 4911. Second positioning frame, 492. Second cutter, 493. Contact rod, 410. First stop frame, 411. Locking rod, 412. Second stop frame, 5. Walking monitoring component, 51. Lower walking plate, 52. Upper walking plate, 521. Vertical plate, 53. Flap, 55. Smoke detector, 56. Camera, 57. Driving motor, 571. Driven gear, 58. Heptafluoropropane fire extinguisher, 59. Sound-activated lighting lamp, 6. Network cable, 61. Core wire, 7. Light guide cable, 71. Outer sheath, 72. Insulating paste, 73. Support body, 74. Side constraint cover, 75. Light guide wire, 76. Shielding cover, 77. Partition board, 78. Insulating and flame-retardant composite paste, 79. Inner conductor. Specific embodiments
[0051] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention are described clearly and completely. Obviously, the described embodiments are some, but not all, of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0052] To solve the technical problems in the background art, the following network integrated wiring equipment for light source positioning operation and maintenance management is provided:
[0053] Combined with Figures 1-13 As shown in the figure, the network integrated wiring equipment for light source positioning operation and maintenance management provided by the present invention includes an installation bracket 1 suspended and arranged. The installation bracket 1 includes support side plates 11, and the support side plates 11 are installed on both sides of the wall network cable reserved port. The top ends of the two groups of support side plates 11 are vertically provided with a top plate 15, and a storage rack 13 for placing a switch is arranged on the top surface of the top plate 15. The switch is connected to the network cable in the wall network cable reserved port;
[0054] The top of the outer side of the installation bracket 1 is a storage area, and the bottom of the outer side is an active operation area; a plurality of traction components 3 are installed on the bottom surface of the top plate 15, and the bottom end of each group of traction components 3 is connected to a wiring component 2. Each group of wiring components 2 is arranged staggeredly, and the inner end of the wiring component 2 is vertically slidably installed between the two groups of support side plates 11;
[0055] The wiring component 2 includes a wiring board and a panel 23. A plurality of wiring boards are arranged at intervals from the inside to the outside. A group of panels 23 are arranged at the bottom end of each wiring board. A linear array of internal connection terminals 24 is arranged on the back of each panel 23. The input end of the internal connection terminal 24 is connected to the network cable, and the output end is connected to the light guide cable 7. The output end of the light guide cable 7 is connected to the user network panel 23; the network cable is arranged along the wiring board, and the input end of the network cable is inserted into the switch;
[0056] Both the input end and the output end of the light guide cable 7 are configured with crystal heads. The light guide cable 7 includes an outer sheath 71. A flat intermediate body 73 is arranged in the middle of the inside of the outer sheath 71. Side constraint covers 74 are arranged at both ends of the intermediate body 73. A light guide wire 75 penetrates through the inside of the side constraint cover 74. Shielding covers 76 are arranged on both the upper surface and the lower surface of the intermediate body 73. A shielding cavity is formed between the shielding cover 76 and the intermediate body 73. The inside of the shielding cavity is divided into four independent placement cavities by a partition plate 77. A group of inner conductors 79 penetrate through each placement cavity; both the upper surface and the lower surface of the intermediate body 73 are concave arc surface structures, the shielding cover 76 is an arc surface structure, insulating paste 72 is filled between the outer side of the shielding cover 76 and the outer sheath 71, and insulating and flame-retardant composite paste 78 is filled inside the shielding cover 76;
[0057] A core combing component 4 is arranged in the middle between the two groups of support side plates 11. The core combing component 4 is used to comb the eight core wires 61 of the network cable 6 into a flat state, so as to facilitate the quick insertion of the network cable into the internal connection terminal 24;
[0058] When the equipment is not under maintenance, the traction component 3 pulls the wiring component 2 into the storage area, and the active operation area is used as the machine room activity area for the operation and maintenance personnel;
[0059] When the equipment is being repaired, a light is turned on at the user network panel 23, and the light is transmitted through the light guide wire of the light guide cable. The operation and maintenance personnel pull down the wiring assembly 2 that turns on the light.
[0060] In the above scheme:
[0061] 1. By setting a light guide in the light guide cable, maintenance personnel shine light at the user network panel, and the light can be transmitted to the other end through the light guide. In this way, maintenance personnel can quickly determine the faulty line by observing which internal terminal has light in the machine room, effectively improving the operation and maintenance efficiency;
[0062] 2. The entire wiring equipment is suspended, which can achieve the following effects:
[0063] 2.1. The installation bracket is suspended in the air, which is convenient for the routing of network cables and light guide cables, with higher integration, making the equipment room more regular and the lines occupying less space;
[0064] 2.2. The lines of the mounting bracket are mainly laid out at the top, and an activity operation area is reserved at the bottom of the outer side of the mounting bracket. The staff can walk back and forth in the activity operation area to perform computer room operations, and can also lay and repair network cables in the activity operation area;
[0065] 3. The setting of the wiring components can realize the stable and regular layout of the network cables. When maintenance is needed, pull down the wiring components, and then pull down the traction components. When the maintenance is completed, the traction components can pull the wiring components up and reset them, so that each wiring component can be stored in the storage area.
[0066] 4. The design of the light guide cable can achieve the following effects:
[0067] 4.1. It has a built-in light guide to quickly identify the faulty joint;
[0068] 4.2. Setting up the side restraint cover can not only facilitate the insertion of the light guide wire, but also protect the light guide wire in the subsequent enclosure;
[0069] 4.3. Multiple partitions can be set to separate the inner conductors to avoid heat transfer and ensure the independence and anti-interference of the inner conductors;
[0070] 4.4. The shielding cover can form a shielding structure outside each inner conductor to improve the anti-interference ability of the conductor; the shielding cover can form a middle support structure with the intermediate body to improve the overall strength of the cable; the shielding cover can form a filling cavity inside, so that the insulating flame-retardant composite paste can be stably filled, so that the cable has an insulating flame-retardant effect.
[0071] In this embodiment, the wire routing board includes a guide rail frame 21, a partition board 22, and a horizontal board body 25. The partition board 22 is horizontally arranged, and guide rail frames 21 are vertically and symmetrically arranged at the bottom surface of the outer end of the partition board 22. The inner end of the partition board 22 is vertically and slidably installed between two mounting brackets 1; a stop block 213 is provided on the outer wall of the top end of each group of guide rail frames 21, the bottom ends of the two guide rail frames 21 are connected to a panel 23, a horizontal board body 25 is provided in the middle of the two groups of guide rail frames 21, and a plurality of wire clamps 26 are provided on the outer wall of the horizontal board body 25, and the network cable passes through the wire clamps 26.
[0072] In the above solution: when the network cable is laid, it first walks along the horizontal board, and then passes through the wire clamp and is connected to the internal connection terminal; when the wiring component descends, the baffle can stop and position the wire routing board to ensure the pulling accuracy of the wire routing board;
[0073] Exemplarily, the wire routing boards are all in the shape of "7", and three wire routing boards are arranged in sequence from the inside to the outside. The volumes of the three wire routing boards increase in sequence from the inside to the outside. When being stored, the bottom ends of the three wire routing boards are flush, and the inner ends of the three wire routing boards are slidably installed between two support side plates.
[0074] In this embodiment, the traction component 3 includes a traction wheel 31 and a traction rope 32. The traction wheel 31 is installed on the bottom surface of the top plate 15 and a torsion spring is provided at the installation position. The traction rope 32 is wound around the outer wall of the traction wheel 31, and the bottom end of the traction rope 32 is connected to the surface of the partition board 22;
[0075] Positioning side plates 14 are vertically and symmetrically provided on the outer wall of the support side plate. The positioning side plates 14 are placed on both sides of the storage area. An upper positioning groove 211 is opened in the middle of the outer wall of each guide rail frame 21, and a lower positioning groove 212 is opened at the bottom of the outer wall. An elastic chuck 12 that is engaged with the upper positioning groove 211 or the lower positioning groove 212 is provided on the outer wall of the positioning side plate 14; when the wiring component 2 is stored, the panel 23 stops at the bottom surface of the positioning side plate 14, and the elastic chuck 12 is engaged in the lower positioning groove 212; when the wiring component 2 is pulled down, the elastic chuck 12 is engaged with the upper positioning groove 211, and the stop block 213 stops at the top surface of the positioning side plate 14.
[0076] In the above solution:
[0077] 1. Three traction ropes are specifically provided. The traction rope at the innermost end first slidably passes through two groups of wire routing boards and then connects to the innermost wire routing board, and the traction rope at the outermost end can directly connect to the outermost wire routing board;
[0078] 2. When the wire routing board descends, the traction rope can be stretched and the torsion spring can be contracted. When the wire routing board is disassembled, the torsion spring drives the traction rope to retract and reset;
[0079] 3. In order to further ensure the stability of the wiring component in the two states, the elastic chuck can be engaged with the upper positioning groove or the lower positioning groove to ensure stability.
[0080] When initially connecting and later maintaining the network cable with the internal terminal, it is necessary to first strip the end of the network cable, then comb the eight core wires of the network cable, cut off the ends of the core wires to fix the length of the exposed core wires, and then insert the core wires into the internal terminal. The entire network cable connection operation is cumbersome and inconvenient for wiring. To solve the above problems, the following solution is provided:
[0081] In this embodiment, the core wire combing assembly 4 includes a rear plate body 41, a scissors frame 42, a front plate body 43, and inner clamping plates 46. The rear plate body 41 is arranged between two support side plates 11. The outer wall of the rear plate body 41 is provided with a scissors frame 42. The outer end of the scissors frame 42 is provided with a front plate body 43. The hinge of the scissors frame 42 is a damping rotation structure. The top of the outer wall of the front plate body 43 is provided with a guide rail seat 44. A moving seat 45 is slidably mounted on the surface of the guide rail seat 44. Two groups of sliding plates 462 are damped and slidably embedded on the surface of the moving seat 45. The outer ends of the two groups of sliding plates 462 are vertically connected to the inner clamping plates 46. Two groups of outer clamping plates 47 are symmetrically hinged at both ends of the outer wall of the inner clamping plates 46. A plurality of inner clamping grooves 461 are formed on the side wall of the inner clamping plates 46. Outer clamping grooves 471 are formed on the side wall of the outer clamping plates 47. The inner clamping grooves 461 and the outer clamping grooves 471 are used to cooperate with each other to clamp and position the network cable. When the core wire combing assembly 4 is not in use, the scissors frame 42 is folded up, so that the whole core wire combing assembly 4 is received between the two support side plates 11, and the two groups of outer clamping plates 47 are closed outside the inner clamping plates 46;
[0082] The usage steps of the core wire combing assembly 4 are as follows: externally rotate to open the two groups of outer clamping plates 47; comb the eight core wires of the network cable and place them in the inner clamping grooves 461; rotate the two groups of outer clamping plates 47 to cover the outer wall of the inner clamping plates 46 to synchronously cut each core wire flat.
[0083] In the above solution:
[0084] 1. Design an openable outer clamping plate to cooperate with a fixed inner clamping plate, which can cooperate with each other to clamp and position the network cable, facilitating combing and cutting processing;
[0085] 2. Design a scissors frame to adjust the position of the front plate body, so that the front plate body can be adjusted to the wire routing board where the wire is to be installed;
[0086] 3. The moving seat can move along the guide rail seat, so that the inner clamping plate and the outer clamping plate are aligned with the network cable, meeting the processing requirements of network cables at different positions.
[0087] In this embodiment, a set of inner constraint components 48 are provided at the bottom of each of the inner clamping grooves 461. The inner constraint components 48 include inner half-tubes 481. A plurality of inner half-tubes 481 are fixedly arranged in a linear array on a first positioning frame 4811. The first positioning frame 4811 is fixedly arranged at the bottom of the inner clamping groove 461. The top and bottom of the inner half-tube 481 are both open structures, and the inner half-tube 481 is semi-circular; a set of outer constraint components 49 are provided at the bottom of each of the outer clamping grooves 471. The outer constraint components 49 include outer half-tubes 491. A plurality of outer half-tubes 491 are fixedly arranged in a linear array on a second positioning frame 4911. The second positioning frame 4911 is fixedly arranged at the bottom of the outer clamping groove 471; the outer half-tubes 491 and the inner half-tubes 481 cooperate to position each core wire.
[0088] In the above solution: The inner half-tube and the outer half-tube are designed to be semi-circular. When the outer clamping plate and the inner clamping plate cooperate to clamp, they can cooperate to clamp and position the core wires of the network cable. The lengths of the inner half-tube and the outer half-tube are the same as the standard insertion length of the core wires. In this way, the core wires can be sorted and regularized, ensuring that the eight core wires are regularly arranged in a linear array, which is convenient for the operator to quickly cut the core wires; at the same time, the bottom end of the network cable abuts against the top ends of the inner half-tube and the outer half-tube; the first positioning frame is designed to fix the eight groups of inner half-tubes in the inner clamping groove, and the second positioning frame is designed to fix the eight groups of outer half-tubes in the outer clamping groove.
[0089] When the inner half-tube and the outer half-tube clamp and position the core wires, in order to eliminate the need for manual cutting and improve the cutting efficiency, the following solution is given:
[0090] In this embodiment, a storage box 483 is provided on the outer side of the inner half-tube 481. The storage box 483 is fixedly arranged on the bottom surface of the inner clamping plate 46 through a first vertical rod 482. A top rack 4831 is horizontally slidably installed at the inner top of the storage box 483, and a bottom rack 4833 is horizontally slidably installed at the inner bottom of the storage box 483. A transfer gear 4832 is installed between the top rack 4831 and the bottom rack 4833. One end of the top rack 4831 close to the inner half-tube 481 is provided with a mating plate 485. One end of the bottom rack 4833 close to the inner half-tube 481 is vertically provided with a second vertical rod 4841 extending downward. A first cutter 484 is vertically provided at the bottom end of the second vertical rod 4841. The first cutter 484 is placed at the bottom of the inner half-tube 481.
[0091] In the above solution: When the first cutter is not in use, it moves outward and disengages from the inner half-tube, which will not affect the core wire being pre-placed in the inner half-tube. When the mating plate is stressed, the mating plate moves inward to push the top rack. The top rack drives the bottom rack to move outward through the transfer gear. The bottom rack drives the second vertical rod and the first cutter to move for the cutting action; the first vertical rod can fix the storage box inside the inner half-tube.
[0092] In this embodiment, a second cutter 492 is provided at the bottom end of each of the outer half tubes 491. A plurality of outer half tubes 491 are symmetrically provided with abutting rods 493 in the middle. The abutting rods 493 are L-shaped. When the outer clamping plates 47 rotate inward to close, the second cutter 492 gradually cuts off the core wire. At the same time, the abutting rods 493 abut against the matching plate 485 to move the first cutter 484, and the first cutter 484 and the second cutter 492 cooperate to cut off the extended part of the core wire.
[0093] In the above solution: Two groups of abutting rods are arranged between the plurality of outer half tubes. In this way, when the outer clamping plates rotate to dock with the inner clamping plates and the outer half tubes dock with the inner half tubes, the abutting rods can abut against the matching plate, causing the first cutter to act. At the same time, the second cutter will directly complete the cutting operation. In this way, the extended parts of eight core wires can be cut synchronously, realizing automatic cutting, and the operator no longer needs to manually cut in a narrow space.
[0094] In this embodiment, the outer ends of the two groups of outer clamping plates 47 are respectively hinged to the outer ends of the inner clamping plate 46. Each group of outer clamping plates 47 corresponds to two inner clamping grooves. The inner end of the outer wall of one group of outer clamping plates 47 is provided with a first stop frame 410, and the inner end of the outer wall of the other group of outer clamping plates 47 is provided with a second stop frame 412 and a rotatably arranged locking rod 411. The locking rod 411 is arranged inside the second stop frame 412. When the two groups of outer clamping plates 47 rotate outward to open, the locking rod 411 is engaged in the second stop frame 412. When the two groups of outer clamping plates 47 rotate inward to close, the locking rod 411 is engaged in the first stop frame 410.
[0095] In the above solution: The rotatable locking rod is designed. When the core wire combing assembly is not in use, the locking rod is engaged in the first stop frame to fix the two groups of outer clamping plates outside the inner clamping plate. When the locking rod rotates outward into the second stop frame, the two outer clamping plates can be rotated to open.
[0096] In this embodiment, an arc-shaped walking groove 151 is formed in the inner outer ring of the top plate 15. A toothed ring 152 is provided on the bottom surface of the top plate 15. The toothed ring 152 is arranged inside the walking groove 151. The walking monitoring assembly 5 is meshed and embedded in the walking groove 151. The walking monitoring assembly 5 includes a lower walking plate 51 and an upper walking plate 52. The lower walking plate 51 and the upper walking plate 52 are clamped on the upper and lower sides of the top plate 15. A driven gear 571 is installed on the surface of the lower walking plate 51. The driven gear 571 is meshed with the outer wall of the toothed ring 152. A driving motor 57 for driving the driven gear 571 to rotate is installed on the bottom surface of the lower walking plate 51. The top end of the driven gear 571 is connected to the upper walking plate 52. A camera 56 is provided on the outer wall of the lower walking plate 51, and a sound sensor illuminating lamp 59 is installed on the bottom surface of the lower walking plate 51.
[0097] In the above solution: The driving motor can drive the driven gear to rotate. The driven gear moves along the toothed ring, thereby driving the upper walking plate and the lower walking plate to move, and then driving the camera and the sound-activated lighting lamp to rotate, so as to conduct internal monitoring and inspection of the computer room; when the operation and maintenance personnel enter the computer room, lighting can be carried out through the sound-activated lighting lamp, which is convenient for wiring operations.
[0098] At the same time, since the wiring device is suspended, taking advantage of this installation position, the camera and the sound-activated lighting lamp can perform high-altitude shooting and high-altitude lighting.
[0099] In this embodiment, vertical plates 521 are symmetrically arranged at the inner ends of the top surface of the upper walking plate 52. A smoke detector 55 is arranged at the center of the top surface of the upper walking plate 52. A flap 53 is rotatably connected to the outer end of the top surface of the upper walking plate 52. A driving rod is installed between the vertical plate 521 and the flap 53. One end of the driving rod is rotatably connected to the top side wall of the vertical plate 521, and the other end of the driving rod is rotatably connected to the bottom of the inner wall of the flap 53. A heptafluoropropane fire extinguisher 58 is installed at the top of the flap 53. The driving rod is used to drive the flap 53 to flip to adjust the fire extinguishing angle of the heptafluoropropane fire extinguisher 58.
[0100] In the above solution: Taking advantage of the suspended setting feature, the smoke detector can monitor the fire situation in the computer room. When there is smoke, it can trigger the heptafluoropropane fire extinguisher for fire extinguishing treatment; the driving rod can drive the flap to rotate to change the fire extinguishing angle of the heptafluoropropane fire extinguisher.
[0101] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variant thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device. Without further limitation, an element defined by the statement "including a..." does not exclude the existence of additional identical elements in the process, method, article or device including the said element.
[0102] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that: they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements for some of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. Network integrated wiring equipment for light source positioning operation and maintenance management, characterized in that: It includes a mounting bracket arranged in a suspended manner. The mounting bracket includes support side plates, and the support side plates are installed on both sides of the wall network cable reserved opening. At the top of the two groups of support side plates, a top plate is vertically provided. On the top surface of the top plate, there is a storage rack for placing a switch, and the switch is connected to the network cable in the wall network cable reserved opening; The outer top of the mounting bracket is a storage area, and the outer bottom is an active operation area; multiple traction components are installed on the bottom surface of the top plate. The bottom end of each traction component is connected to a wiring component, and each group of wiring components is arranged staggeredly. The inner end of the wiring component is vertically slidably installed between the two support side plates; The wiring component includes a wire routing board and a panel. Multiple wire routing boards are arranged at intervals from the inside to the outside. At the bottom end of each wire routing board, a group of panels is provided. On the back of each panel, internally connected terminals are arranged in a linear array. The input end of the internally connected terminal is connected to the network cable, and the output end is connected to the light guide cable. The output end of the light guide cable is connected to the user network panel; the network cable is routed along the wire routing board, and the input end of the network cable is inserted into the switch; Both the input end and the output end of the light guide cable are configured with crystal heads. The light guide cable includes an outer sheath. In the middle of the interior of the outer sheath, there is a flat intermediate body. At both ends of the intermediate body, there are side restraint covers. A light guide wire penetrates through the interior of the side restraint covers. On the upper surface and the lower surface of the intermediate body, there are shielding covers. A shielding cavity is formed between the shielding covers and the intermediate body. The interior of the shielding cavity is divided into four independent placement cavities by a partition board, and a group of inner conductors penetrates through each placement cavity; In the middle between the two support side plates, there is a core combing component, which is used to comb the eight core wires of the network cable to be in a flat state, so as to facilitate the quick insertion of the network cable into the internally connected terminal; When the equipment is not under maintenance, the traction component pulls the wiring component into the storage area, and the active operation area is used as the activity area of the computer room for the operation and maintenance personnel; When the equipment is under maintenance, a light is turned on at the user network panel, and the light is transmitted through the light guide wire of the light guide cable. The operation and maintenance personnel pull down the illuminated wiring component; The wire routing board includes a guide rail frame, a partition board, and a horizontal plate body. The partition board is horizontally arranged. At the bottom end of the outer side of the partition board, guide rail frames are vertically symmetrically provided. The inner end of the partition board is vertically slidably installed between the two mounting brackets; at the outer wall of the top end of each guide rail frame, there is a stop block. The bottom ends of the two guide rail frames are connected to the panel. In the middle of the two guide rail frames, there is a horizontal plate body. Multiple wire clips are provided on the outer wall of the horizontal plate body, and the network cable penetrates through the wire clips.
2. The network integrated wiring device for light source positioning operation and maintenance management according to claim 1, wherein: Both the upper surface and the lower surface of the intermediate body are of an inner concave arc surface structure. The shielding cover is of an arc surface structure. An insulating paste is filled between the outer side of the shielding cover and the outer sheath, and an insulating and flame-retardant composite paste is filled inside the shielding cover.
3. The network integrated wiring device for light source positioning operation and maintenance management according to claim 1, characterized in that: The traction assembly includes a traction wheel and a traction rope. The traction wheel is installed on the bottom surface of the top plate, and a torsion spring is provided at the installation position. The traction rope is wound around the outer wall of the traction wheel, and the bottom end of the traction rope is connected to the surface of the partition plate. The outer wall of the support side plate is vertically and symmetrically provided with positioning side plates. The positioning side plates are placed on both sides of the storage area. An upper positioning groove is formed in the middle of the outer wall of each guide rail frame, and a lower positioning groove is formed at the bottom of the outer wall. The outer wall of the positioning side plate is provided with elastic chucks that are engaged with the upper positioning groove or the lower positioning groove. When the wiring assembly is stored, the panel abuts against the bottom surface of the positioning side plate, and the elastic chucks are engaged in the lower positioning groove. When the wiring assembly is pulled down, the elastic chucks are engaged with the upper positioning groove, and the block abuts against the top surface of the positioning side plate.
4. The network integrated wiring device for light source positioning operation and maintenance management according to claim 1, wherein: The core combing assembly includes a rear plate body, a scissors frame, a front plate body, and inner clamping plates. The rear plate body is arranged between the two support side plates. A scissors frame is provided on the outer wall of the rear plate body. The outer end of the scissors frame is provided with a front plate body. The hinge of the scissors frame is a damping rotation structure. A guide rail seat is provided at the top of the outer wall of the front plate body. A moving seat is slidably installed on the surface of the guide rail seat. Two groups of sliding plates are damped and slidably embedded on the surface of the moving seat. The outer ends of the two groups of sliding plates are vertically connected to the inner clamping plates. Two groups of outer clamping plates are symmetrically hinged at both ends of the outer wall of the inner clamping plates. A plurality of inner clamping grooves are formed in the side wall of the inner clamping plates, and outer clamping grooves are formed in the side wall of the outer clamping plates. The inner clamping grooves and the outer clamping grooves are used to cooperatively clamp and position the network cable. When the core combing assembly is not in use, the scissors frame is folded, so that the whole core combing assembly is received between the two support side plates, and the two groups of outer clamping plates are closed outside the inner clamping plates. The steps of using the core combing assembly are as follows: externally rotate to open the two groups of outer clamping plates; place the eight core wires of the network cable in the inner clamping grooves; rotate the two groups of outer clamping plates to cover the outer wall of the inner clamping plates to synchronously cut each core wire flat.
5. The network cabling device for light source positioning operation and maintenance management according to claim 4, characterized in that: A group of inner constraint components are provided at the bottom of each inner clamping groove. The inner constraint components include inner half tubes. A plurality of inner half tubes are linearly arrayed and fixed on a first positioning frame. The first positioning frame is fixedly arranged at the bottom of the inner clamping groove. The top and bottom of the inner half tube are both open structures, and the inner half tube is semicircular. A group of outer constraint components are provided at the bottom of each outer clamping groove. The outer constraint components include outer half tubes. A plurality of outer half tubes are linearly arrayed and fixed on a second positioning frame. The second positioning frame is fixedly arranged at the bottom of the outer clamping groove. The outer half tubes and the inner half tubes cooperate to position each core wire.
6. The network integrated wiring device for light source positioning operation and maintenance management according to claim 5, characterized in that: A storage box is provided on the outer side of the inner half tube. The storage box is fixedly arranged on the bottom surface of the inner clamping plate through a first vertical rod. An upper rack is horizontally slidably installed at the top of the inner part of the storage box, and a lower rack is horizontally slidably installed at the bottom of the inner part of the storage box. A transfer gear is installed between the upper rack and the lower rack. A matching plate is provided at one end of the upper rack close to the inner half tube. A second vertical rod extending downward is vertically provided at one end of the lower rack close to the inner half tube. A first cutter is vertically provided at the bottom end of the second vertical rod. The first cutter is placed at the bottom of the inner half tube. A second cutter is provided at the bottom end of each outer half tube, and a plurality of outer half tubes are symmetrically provided with a resistance rod in the middle, which is L-shaped; when the outer clamping plate rotates inward and closes, the second cutter gradually cuts off the core wire, and at the same time, the resistance rod resists the matching plate to move the first cutter, and the first cutter and the second cutter cooperate to cut off the protruding part of the core wire.
7. The network integrated wiring device for light source positioning operation and maintenance management according to claim 6, characterized in that: The outer ends of the two groups of outer splints are respectively hinged to the outer ends of the inner splints, and each group of outer splints corresponds to two inner splint grooves. A first stop frame is provided at the inner end of the outer wall of one group of outer splints, and a second stop frame and a rotatable locking rod are provided at the inner end of the outer wall of the other group of outer splints, and the locking rod is provided on the inner side of the second stop frame; when the two groups of outer splints are rotated outward to open, the locking rod is engaged in the second stop frame; when the two groups of outer splints are rotated inward to close, the locking rod is engaged in the first stop frame.
8. The network cabling equipment for light source positioning operation and maintenance management according to claim 3, characterized in that: The inner outer ring of the top plate is provided with an arc-shaped walking groove, and the bottom surface of the top plate is provided with a gear ring, which is arranged on the inner side of the walking groove. The walking monitoring component is meshed and embedded in the walking groove. The walking monitoring component includes a lower walking plate and an upper walking plate, which are clamped and placed on the upper and lower side surfaces of the top plate. A driven gear is installed on the surface of the lower walking plate, and the driven gear is meshed with the outer wall of the gear ring. A driving motor for driving the driven gear to rotate is installed on the bottom surface of the lower walking plate, and the top end of the driven gear is connected to the upper walking plate; a camera is provided on the outer wall of the lower walking plate, and a sound-sensing lighting lamp is installed on the bottom surface of the lower walking plate.
9. The network integrated wiring device for light source positioning operation and maintenance management according to claim 8, wherein: A vertical plate is symmetrically arranged at the inner end of the top surface of the upper walking plate, a smoke detector is arranged at the center of the top surface of the upper walking plate, the outer end of the top surface of the upper walking plate is rotatably connected to a flap, a driving rod is installed between the vertical plate and the flap, one end of the driving rod is rotatably connected to the top side wall of the vertical plate, and the other end of the driving rod is rotatably connected to the bottom of the inner wall of the flap, a heptafluoropropane fire extinguisher is installed on the top of the flap, and the driving rod is used to drive the flap to flip to adjust the fire extinguishing angle of the heptafluoropropane fire extinguisher.
Citation Information
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