High-performance content distribution network cabinet bunch structure based on edge computing
By introducing structures such as vertical racks, wire cross panels, vertical panels and numberers into the edge computer cabinet, the difficulties of wire harness identification and management are solved, convenient numbering and fire protection are provided, and the safety and maintenance of the cabinet are improved.
Patent Information
- Application Number
- CN202510792366.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-13
- Publication Date
- 2025-08-08
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
In content distribution network cabinets based on edge computing, the wiring harnesses are complex, the existing numbering methods are time-consuming and inconvenient to identify and manage, and there is a lack of effective fire protection measures.
It adopts components such as vertical frames, horizontal beams, vertical beams and numberers to achieve accurate division and convenient management of the wiring harness, and is equipped with a flame retardant box for fire protection, and quickly annotate and number through the numberer.
It realizes convenient identification and management of wire harnesses, simplifies operational processes, improves fire safety, and reduces the risk of wire harness combustion.
Smart Images

Figure CN120456485A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of wire harness structures, and in particular relates to a high-performance content distribution network cabinet wire harness structure based on edge computing. Background Art
[0002] Edge computing-based content distribution network cabinets are intelligent devices that combine edge computing technology with traditional CDN functions. Deployed at edge nodes close to users, they provide computing, storage, and network services to enable rapid caching and distribution of content. They include high-performance servers, storage devices, network equipment, and edge computing platforms. These components work together to support efficient content processing and distribution. Cabinet cable harness is a device used to organize and secure cables and wires inside a cabinet to optimize space utilization and improve safety and maintainability.
[0003] The requirements for wiring harness organization in edge computing-based content distribution network cabinets include separating power cords from network cables, properly placing equipment, and numbering management. Because there are too many devices in such cabinets, if the equipment harnesses are not numbered, it is impossible to clearly understand the source of each line in the complex harness cluster, which is very unfavorable for identification and management. In addition, the existing numbering methods are mostly recorded manually in handwriting, which requires a lot of handwritten content and is time-consuming. Summary of the Invention
[0004] The purpose of the present invention is to provide a high-performance content distribution network cabinet wiring structure based on edge computing, which can accurately sort out the corresponding wiring harnesses in the complex wiring harnesses. The installation, adjustment and disassembly of the wiring harness are simple and convenient. At the same time, it has the function of preventing the wiring harness from burning, and also provides a numberer for quick annotation.
[0005] The technical solutions adopted by the present invention are as follows: A high-performance content distribution network cabinet cable harness structure based on edge computing includes a stand and a numbering device. The stand is installed on the inner wall of the cabinet. The side walls of the stand located on the back side of the cabinet are fixedly installed with cable harness horizontal plates at equal intervals. The back side of the cabinet is also fixedly installed with a cable harness vertical plate, and the surface of the cable harness vertical plate is adjustable and assembled with multiple cable harnesses. The second numbering plate corresponds to the numbering information of the wire harness in the wire harness trough, and when the main harness plate is separated from the adjacent auxiliary harness plate, the corresponding wire harness can be separated from the harness outlet; When the plug-in board is inserted into the corresponding socket, the wiring harness base plate is fixed; when the plug-in board leaves the socket and the wedge-shaped guide block is pushed into the vertical rail groove, the wiring harness base plate can move along the vertical rail groove; When a fire occurs in the cabinet, the water-based flame retardant inside the flame retardant box will spread to the surface of the wiring harness; The numbering device is used to print numbering information on the surfaces of the numbering plate 1 and the numbering plate 2.
[0006] A transverse rail groove is provided transversely through the interior of the wiring harness horizontal plate, and a plurality of slides are assembled on the top of the wiring harness horizontal plate in a damped sliding manner through the transverse rail groove. A card hole is provided on the top of all the slides, and a number plate 1 is provided on the side walls of the slides.
[0007] The surfaces of the wire harness uprights are vertically provided with vertical rail grooves, and both ends of the top and bottom of the wire harness uprights are provided with escape openings, and one side of the wire harness uprights is vertically provided with equidistant insertion holes.
[0008] The cable harness is composed of a cable harness base plate, a cover plate and a flame retardant box. A sliding slot is provided at one end of the cable harness base plate, which forms a sliding assembly relationship with the cable harness vertical plate. Cable harness grooves are equidistantly provided on the side of the cable harness base plate. Screw holes are provided at both ends of the side of the cable harness base plate. Fixed rod holes are provided on the side of the cable harness base plate and on one side of the cable harness groove. An overflow hole is provided at the bottom of each cable harness groove. A box slot 1 is provided on the side of the cable harness base plate facing away from the cable harness groove. A plug-in plate hole and a bolt hole are provided at the end of the cable harness base plate close to the sliding slot. A box slot 2 is provided at the end of the cable harness base plate close to the sliding slot, and a socket is provided on one side of the cable harness base plate located at the top and bottom of the box slot 2.
[0009] An auxiliary bundle plate and a main bundle plate are hinged in an array between the two cover plates, and the auxiliary bundle plates and the main bundle plates are arranged alternately, wherein the cover plate and the auxiliary bundle plate, the auxiliary bundle plate and the main bundle plate, and the cover plate and the main bundle plate are hinged through a hinged body, and the cover plate is fixedly installed on one side of the wiring harness base plate by screws screwed into the screw holes, and the inner wall of the hinged body is fixedly provided with a fixed rod, and the fixed rod is inserted into the corresponding fixed rod hole.
[0010] A lock hole is symmetrically fixed on one side of the surface of the auxiliary bundle plate, and retraction shells are symmetrically fixed on both ends of the surface of the main bundle plate, and a lock plate is symmetrically slidably assembled on the surface of the main bundle plate through the retraction shell. One end of the lock plate can be detachably inserted into the interior of the corresponding lock hole, and a spring 1 is connected between the side wall of the lock plate and the outer wall of the retraction shell. A number plate 2 is detachably embedded and installed in the middle of the surface of the main bundle plate, and a card is provided at one end of the number plate 2.
[0011] One end of the wiring harness base plate is plug-in assembled with a plug-in plate, and the plug-in plate passes through the plug-in plate hole and the corresponding plug-in hole. A bolt is screwed on one side of the middle of the plug-in plate, and one end of the bolt is rotatably connected to the inside of the bolt hole. One end of the wiring harness base plate is rotatably connected to a pry bar through a connector, and one end of the two pry bars is respectively connected to the top and bottom ends of the plug-in plate. A lead shell is slidably assembled inside the box slot two, and the other ends of the two pry bars are respectively connected to the top and bottom ends of the lead shell. The interior of the lead shell is elastically and telescopically assembled with a wedge-shaped guide block through an elastic sheet, and the wedge-shaped guide block is detachably and slidably embedded in the interior of the corresponding vertical rail slot.
[0012] The flame retardant box is filled with water-based flame retardant and is installed inside the box groove one. The overflow hole is communicated with the box groove one. Through holes are provided on both sides of the top and bottom of both ends of the flame retardant box, and both sides of the top and bottom of the flame retardant box are slidably assembled with hole plugs for blocking the corresponding through holes. The two ends of the inner wall of the flame retardant box are symmetrically rotatably installed with levers, and the two ends of the lever are connected to the corresponding hole plugs. A spring two is connected between the outer wall of one end of the lever and the inner wall of the flame retardant box. The two levers are connected by a connecting rope on the side facing away from the spring two, and the connecting rope is placed on the outside of the box groove one.
[0013] The numbering device includes a finger ring, the outer surface of the finger ring is integrally provided with an outer ring shell, the two sides of the outer ring shell are respectively provided with a numbering port and an observation port, and the side of the outer ring shell close to the observation port is equidistantly provided with a dial groove; the outer surface of the finger ring is equidistantly provided with a ring located inside the outer ring shell, and the outer surface of the ring is provided with a ring block in a ring array, and the top of the ring is fixedly provided with a ratchet.
[0014] The outer edge of the ratchet is provided with a shift ring, and the inner wall of the shift ring is hinged with ratchet teeth in a ring array, and the ratchet teeth are detachably engaged with the ratchet, and the shift ring passes through the corresponding shift groove and extends to one side of the outside of the outer ring shell, and a shift block is provided; the outer edge of the outer ring shell is movably provided with a ring frame, and an inner concave plate is movably assembled on one side of the ring frame, and an ink block is fixedly provided on the inner wall of the inner concave side of the inner concave plate, and a spring three is connected between the top and bottom ends of the inner concave plate and the surface of the ring frame, and a baffle is integrally provided on one side of the ring frame, and the top and bottom surfaces of the outer ring shell are provided with a rotation limiter for limiting the rotation angle of the ring frame.
[0015] The technical effects achieved by the present invention are: (1) The present invention provides a wiring harness that can be used to accurately separate corresponding wiring harnesses from a complex wiring harness during equipment maintenance and quality inspection, and indicates the source information of each line for easy identification and management.
[0016] (2) In the present invention, the arrangement of the auxiliary harness plate and the main harness plate facilitates the separation of a single or multiple harnesses from the harness, and the separation of the harnesses can be easily completed without disassembling the cover plate. The separation operation is simple and does not require the use of other tools.
[0017] (3) In the present invention, the fixing, adjustment and removal of the cable harness base plate can be completed by operating the bolts only, which changes the traditional installation method of tightening the screws with a screwdriver, making each operation method simple and convenient, and more convenient for flexible adjustment of the position of the cable harness.
[0018] (4) The flame retardant box of the present invention can allow the water-based flame retardant to spread and flow along the wiring harness when a fire occurs in the cabinet. The water-based flame retardant that spreads to the surface of the wiring harness can improve the flame retardancy of the wiring harness, reduce the possibility of the wiring harness burning, and delay the spread of the fire as much as possible, giving the wiring harness the function of preventing the wiring harness from burning.
[0019] (5) The present invention provides a numbering device that can quickly print numbering information on the surface of numbering plate 1 and numbering plate 2. It can provide a large amount of numbering information and has a simple adjustment method. It has an ingenious and compact structure, which changes the traditional method of using manual handwriting to annotate numbers. In addition, the annotation pigment can be supplemented by controlling the squeezing of the printing block and the ink block, which greatly facilitates the operation of annotating numbering information. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 is a schematic diagram of a cabinet wiring structure provided by an embodiment of the present invention; Figure 2 This is a schematic diagram of the installation of the cable harness horizontal plate and cable harness provided in an embodiment of the present invention; Figure 3 This is a diagram showing a combination of a wire harness horizontal plate and a slide plate provided in an embodiment of the present invention; Figure 4 is a structural diagram of a cable harness provided by an embodiment of the present invention; Figure 5 is a structural disassembly diagram of a cable tie provided by an embodiment of the present invention; Figure 6 is a diagram of a combination of an auxiliary beam plate and a main beam plate provided by an embodiment of the present invention; Figure 7 This is a disassembled diagram of the assembly of the socket, the plugboard, and the flame retardant box provided in an embodiment of the present invention; Figure 8 yes Figure 7 A local enlarged structural diagram at point A in the middle; Figure 9 is a structural diagram of a numbering device provided by an embodiment of the present invention; Figure 10 This is a structural disassembly diagram of the numbering device provided by an embodiment of the present invention.
[0021] In the accompanying drawings, the components represented by the reference numerals are as follows: 1. Stand; 2. Wire harness horizontal plate; 201. Horizontal rail groove; 202. Slide plate; 203. Clamp hole; 204. Number plate 1; 3. Wire harness vertical plate; 301. Vertical rail groove; 302. Disengagement opening; 303. Insert hole; 4. Wire harness bottom plate; 401. Sliding clamping slot; 402. Wire harness slot; 403. Screw hole; 404. Fixed rod hole; 405. Overflow hole; 406. Box slot 1; 407. Insert plate hole; 408. Bolt hole; 409. Box slot 2; 410. Connector; 411. Insert plate; 412. Bolt; 413. Lead shell; 414. Pry bar; 415. Wedge-shaped guide block; 416. Cover plate; 417. Auxiliary beam plate; 418. Main beam plate; 419. Hinge; 420. Fixed Rod; 421, lock hole; 422, retractable shell; 423, lock plate; 424, spring one; 425, numbering plate two; 426, card; 427, flame retardant box; 428, through hole; 429, lever; 430, spring two; 431, hole plug; 432, connecting rope; 433, elastic sheet; 5, numbering device; 501, finger ring; 502, outer ring shell; 503, numbering port; 504, observation port; 505, shift groove; 506, sleeve ring; 507, printing block; 508, ratchet; 509, shift ring; 510, ratchet; 511, shift block; 512, ring frame; 513, inner concave plate; 514, ink pad; 515, spring three; 516, baffle; 517, rotation limiter. DETAILED DESCRIPTION
[0022] In order to make the purpose and advantages of the present invention more clearly understood, the present invention is described in detail below with reference to the following examples. It should be understood that the following text is only used to describe one or more specific embodiments of the present invention and does not strictly limit the scope of protection of the present invention.
[0023] like Figures 1-10 As shown, a high-performance content distribution network cabinet wiring structure based on edge computing includes a stand 1 and a numberer 5. The stand 1 is installed on the inner wall of the cabinet. The side wall of the stand 1 located on the back side of the cabinet is fixedly installed with wiring horizontal plates 2 at equal intervals. The back side of the cabinet is also fixedly installed with a wiring vertical plate 3, and the surface of the wiring vertical plate 3 is adjustably assembled with multiple wiring harnesses.
[0024] Example 1: Refer to the attached Figure 3 A horizontal rail groove 201 is opened horizontally through the interior of the wiring harness horizontal plate 2, and a plurality of slides 202 are assembled on the top of the wiring harness horizontal plate 2 through the horizontal rail groove 201 in a damped sliding manner. A card hole 203 is opened on the top of all slides 202, and a number plate 204 is provided on the side wall of the slide 202.
[0025] According to the above structure, the wiring harness cross plate 2 is set on the back of each shelf of the cabinet, and each wiring harness of the equipment is embedded in the card hole 203 on the top of the corresponding slide 202. The slide 202 is slid as close to the corresponding wiring harness as possible. The number plate 204 of each slide 202 is marked with the number corresponding to the wiring harness.
[0026] Refer to the attached Figure 2 The surface of the wiring harness upright plate 3 is vertically provided with a vertical rail groove 301, and both ends of the top and bottom of the wiring harness upright plate 3 are provided with a separation opening 302, and one side of the wiring harness upright plate 3 is vertically provided with equidistant insertion holes 303.
[0027] Refer to the attached Figure 4-Figure 7 The cable harness is composed of a cable harness base plate 4, a cover plate 416 and a flame retardant box 427. A sliding card slot 401 is provided at one end of the cable harness base plate 4, which forms a sliding assembly relationship with the cable harness vertical plate 3. Cable harness grooves 402 are equidistantly provided on the side of the cable harness base plate 4. Screw holes 403 are provided at both ends of the side of the cable harness base plate 4. Fixed rod holes 404 are provided on the side of the cable harness base plate 4 and on one side of the cable harness groove 402. An overflow hole 405 is provided at the bottom of each cable harness groove 402. A box groove 1 406 is provided on the side of the cable harness base plate 4 facing away from the cable harness groove 402. A plug-in hole 407 and a bolt hole 408 are provided at one end of the cable harness base plate 4 close to the sliding card slot 401. A box groove 2 409 is provided at one end of the cable harness base plate 4 close to the sliding card slot 401, and a socket 410 is provided on both sides of the top and bottom of the box groove 2 409 of the cable harness base plate 4.
[0028] Refer to the attached Figure 4-Figure 7 An auxiliary beam plate 417 and a main beam plate 418 are hinged in an array between the two cover plates 416, and the auxiliary beam plates 417 and the main beam plates 418 are arranged alternately, wherein the cover plates 416 and the auxiliary beam plates 417, the auxiliary beam plates 417 and the main beam plates 418, and the cover plates 416 and the main beam plates 418 are hinged through a hinge body 419, and the cover plate 416 is fixedly installed on one side of the wiring harness base plate 4 by screws screwed into the screw holes 403, and the inner walls of the hinge bodies 419 are fixedly provided with fixed rods 420, and the fixed rods 420 are inserted into the corresponding fixed rod holes 404.
[0029] Refer to the attached Figure 4-Figure 7 A lock hole 421 is symmetrically fixed on one side of the surface of the auxiliary bundle plate 417, and a retractable shell 422 is symmetrically fixed on both ends of the surface of the main bundle plate 418, and a lock plate 423 is symmetrically slidably assembled on the surface of the main bundle plate 418 through the retractable shell 422. One end of the lock plate 423 can be detachably inserted into the interior of the corresponding lock hole 421, and a spring 1 424 is connected between the side wall of the lock plate 423 and the outer wall of the retractable shell 422. A number plate 2 425 is detachably embedded and installed in the middle of the surface of the main bundle plate 418, and a card 426 is provided at one end of the number plate 2 425.
[0030] According to the above structure, after the wiring harness base plate 4 is installed and fixed, the corresponding wiring harness is placed in the corresponding wiring harness groove 402, and then the cover plate 416 is covered. The cover plate 416 is installed on one side of the wiring harness base plate 4 by the screws inserted into the screw holes 403. At this time, the wiring harness is fixed in the wiring harness groove 402 by the corresponding auxiliary harness plate 417 and the main harness plate 418. The number plate 2 425 of each main harness plate 418 is marked with the number corresponding to the wiring harness. The numbering information of the numbering plate 2 425 is the same as the numbering information of the numbering plate 1 204 on the same wiring harness path. This structure is used to accurately sort out the corresponding wiring harness in the intricate wiring harness when performing equipment maintenance and quality inspection, and to indicate the information of the source of each line for easy identification. Identification and management; in addition, when it is necessary to separate a wire harness from the wire harness, press the two locking plates 423 on the surface of the corresponding main bundle plate 418 with two fingers to retract it into the corresponding retraction shell 422 and squeeze the spring 424. At this time, one end of the locking plate 423 will be out of the lock hole 421, and the main bundle plate 418 will be separated from the adjacent auxiliary bundle plate 417. The wire harness can be separated from the wire harness alone, and the auxiliary bundle plate 417 and the main bundle plate 418 are closed, and one end of the locking plate 423 will be reinserted into the lock hole 421. This structure makes it easy for single or multiple wire harnesses to be separated from the wire harness, and the wire harness can be easily separated without disassembling the cover plate 416. The separation operation is simple and does not require the aid of other tools.
[0031] The working principle of the present invention is as follows: after the harness base plate 4 is installed and fixed, the corresponding harness is placed in the corresponding harness groove 402, and then the cover plate 416 is covered. The cover plate 416 is installed on one side of the harness base plate 4 by screws inserted into the screw holes 403. At this time, the harness is fixed in the harness groove 402 by the corresponding auxiliary harness plate 417 and the main harness plate 418. The number plate 425 of each main harness plate 418 is marked with the number corresponding to the harness. The number information of the number plate 425 is the same as the number plate 1 on the same harness path. 204; when it is necessary to separate a wire harness from the wire harness, press the two locking plates 423 on the surface of the corresponding main bundle plate 418 with two fingers to retract it into the corresponding retraction shell 422 and squeeze the spring 1 424. At this time, one end of the locking plate 423 will be disengaged from the lock hole 421, and the main bundle plate 418 will be separated from the adjacent auxiliary bundle plate 417. The wire harness can then be separated from the wire harness alone, and the auxiliary bundle plate 417 and the main bundle plate 418 will be closed, and one end of the locking plate 423 will be reinserted into the lock hole 421.
[0032] Example 2: Refer to the attached Figure 4-Figure 7, one end of the wiring harness base plate 4 is plug-in assembled with an insert plate 411, and the insert plate 411 passes through the insert plate hole 407 and the corresponding insert hole 303, one side of the middle of the insert plate 411 is screwed with a bolt 412, and one end of the bolt 412 is rotatably connected to the inside of the bolt hole 408, one end of the wiring harness base plate 4 is rotatably connected to a pry bar 414 through a socket 410, and one end of the two pry bars 414 is respectively connected to the top and bottom ends of the insert plate 411, and the interior of the box slot 2 409 is slidingly assembled with a guide shell 413, and the other ends of the two pry bars 414 are respectively connected to the top and bottom ends of the guide shell 413, and the interior of the guide shell 413 is elastically and telescopically assembled with a wedge-shaped guide block 415 through an elastic sheet 433, and the wedge-shaped guide block 415 is detachably slidably embedded in the interior of the corresponding vertical rail groove 301.
[0033] When the position of the wiring harness base plate 4 needs to be adjusted, the rotating bolt 412 is used to first make the plug plate 411 leave the insertion hole 303, and then the wiring harness base plate 4 is fixed. When the harness base plate 4 needs to be removed, the harness base plate 4 is controlled to move to the position of the disengagement opening 302, and then slide to one side to disengage the wedge-shaped guide block 415 along the disengagement opening 302. With the above structure, the fixing, adjustment and removal of the harness base plate 4 can be completed by only operating the bolt 412, which changes the traditional installation method of tightening the screw by a screwdriver, makes each operation method simple and convenient, and is more convenient for flexibly adjusting the position of the harness.
[0034] The working principle of the present invention is as follows: in the operation of installing the wiring harness base plate 4, the wiring harness vertical plate 3 is first aligned with the sliding slot 401 and connected, and then the bolt 412 is rotated to make the plug plate 411 pass through the plug plate hole 407 and insert it into the corresponding plug hole 303, at this time, the guide shell 413 is retracted into the box groove 409 by the pry bar 414, and the wiring harness base plate 4 can be fixed. When the position of the wiring harness base plate 4 needs to be adjusted, the rotating bolt 412 first makes the plug plate 411 leave the plug hole 303, and the wiring harness base plate 4 is in a free state, but the top end of the wedge-shaped guide block 415 is pushed into the vertical rail groove 301, so that the wiring harness base plate 4 can only move up and down along the vertical rail groove 301 to adjust its position. Finally, the wiring harness base plate 4 is controlled to move to the position of the disengagement opening 302, and then it is slid to one side to make the wedge-shaped guide block 415 disengage along the disengagement opening 302, and the wiring harness base plate 4 can be removed.
[0035] Example 3: Refer to the attached Figure 7-Figure 8 The flame retardant box 427 is filled with water-based flame retardant and is installed inside the box groove 406. The overflow hole 405 is communicated with the box groove 406. Through holes 428 are provided on both sides of the top and bottom of the two ends of the flame retardant box 427, and both sides of the top and bottom of the two ends of the flame retardant box 427 are slidably assembled with plugs 431 for blocking the corresponding through holes 428. The two ends of the inner wall of the flame retardant box 427 are symmetrically rotatably installed with levers 429, and the two ends of the lever 429 are connected to the corresponding plugs 431. A spring 2 430 is connected between the outer wall of one end of the lever 429 and the inner wall of the flame retardant box 427. The two levers 429 are connected by a connecting rope 432 on the side away from the spring 2 430, and the connecting rope 432 is placed on the outside of the box groove 406.
[0036] According to the above structure, when a fire occurs in the cabinet due to negative pressure of the equipment, the connecting rope 432 close to the equipment will be exposed to the fire first and burned. After it breaks, the two springs 430 in a stretched state will pull the two levers 429 to rotate at the same time. When the levers 429 rotate, they will simultaneously drive the plugs 431 at both ends to slide. After the bottom through hole 428 is unblocked, the water-based flame retardant inside the flame retardant box 427 will seep into the box groove 406 and flow to the surface of the wiring harness through the overflow hole 405, and then spread along the wiring harness. The top through hole 428 is unblocked to make the air pressure inside and outside the flame retardant box 427 the same, which is convenient for the water-based flame retardant to seep out. In the above process, the water-based flame retardant that spreads to the surface of the wiring harness can improve the flame retardancy of the wiring harness, reduce the possibility of the wiring harness burning, and delay the spread of the fire as much as possible, giving the wiring harness the function of hindering the burning of the wiring harness.
[0037] The working principle of the present invention is as follows: when a fire occurs in the cabinet due to negative pressure from the equipment, the connecting rope 432 close to the equipment is first exposed to the fire and burned. After it breaks, the two springs 430 in a stretched state will pull the two levers 429 to rotate at the same time. When the levers 429 rotate, they will simultaneously drive the plugs 431 at both ends to slide. After the bottom through hole 428 is unblocked, the water-based flame retardant inside the flame retardant box 427 will penetrate into the box groove 406 and flow to the surface of the wiring harness through the overflow hole 405, and then spread and flow along the wiring harness, thereby preventing the wiring harness from burning.
[0038] Example 4: Refer to the attached Figure 9-10 The numbering device 5 includes a finger ring 501, an outer ring shell 502 is integrally provided on the outside of the finger ring 501, and a numbering port 503 and an observation port 504 are respectively opened on both sides of the outer ring shell 502, and a dial groove 505 is equidistantly opened on one side of the outer ring shell 502 near the observation port 504; Refer to the attached Figure 9-10 The outer surface of the finger ring 501 is equidistantly rotatably provided with a collar 506 located inside the outer ring shell 502. The outer surface of the collar 506 is provided with a ring array of printing blocks 507. The top of the collar 506 is fixedly provided with a ratchet 508. The outer edge of the ratchet 508 is provided with a shift ring 509. The inner wall of the shift ring 509 is hinged with ratchet teeth 510 in a ring array. The ratchet teeth 510 are detachably engaged with the ratchet 508. The shift ring 509 passes through the corresponding shift slot 505 and extends to the outside of the outer ring shell 502. A shift block 511 is provided on one side. Refer to the attached Figure 9-10 A ring frame 512 is movably mounted on the outer edge of the outer ring shell 502, and an inner concave plate 513 is movably assembled on one side of the ring frame 512. An ink block 514 is fixedly mounted on the inner wall of the concave side of the inner concave plate 513. Springs 515 are connected between the top and bottom ends of the inner concave plate 513 and the surface of the ring frame 512. A baffle 516 is integrally provided on one side of the ring frame 512. A rotation limiter 517 for limiting the rotation angle of the ring frame 512 is provided on the top and bottom surfaces of the outer ring shell 502.
[0039] According to the above structure, when it is necessary to print number information on the surface of the number plate 1 204 and the number plate 2 425, the number information is first determined, and then the corresponding dial block 511 is buckled and moved along the dial groove 505. Under the engagement of the ratchet 510 and the ratchet wheel 508, the dial ring 509 will drive the corresponding sleeve 506 to rotate unidirectionally, and finally the printing block 507 of the specified information is adjusted to the position of the number opening 503. At this time, the combination of the printing blocks 507 exposed at the number opening 503 represents the number information to be marked. Then, the ring frame 512 is rotated, the baffle 516 leaves the observation port 504, and the inner concave plate 513 will eventually stay at the number opening 503. At this time, the inner concave plate 513 is pressed, and the spring 3 515 will be compressed, and The ink block 514 will contact the corresponding printing block 507 and be coated with paint. Finally, the ring 501 is put on the index finger, and the numbering port 503 is aligned with the corresponding numbering plate 1 204 and numbering plate 2 425. The printing block 507 is brought into contact with the surface of the numbering plate to print the numbering information. The above process provides a numbering device 5 that can quickly print numbering information on the surface of numbering plate 1 204 and numbering plate 2 425. It can provide a large amount of numbering information and has a simple adjustment method, an ingenious and compact structure, and changes the traditional method of using manual handwriting to annotate numbers. In addition, the annotation pigment can be replenished by controlling the squeezing of the printing block 507 and the ink block 514, which greatly facilitates the operation of annotating numbering information.
[0040] The working principle of the present invention is as follows: buckle the corresponding shift block 511 and move it along the shift groove 505. Under the engagement of the ratchet 510 and the ratchet wheel 508, the shift ring 509 will drive the corresponding sleeve ring 506 to rotate unidirectionally, and finally adjust the printing block 507 of the specified information to the position of the numbering port 503. Finally, the combination of printing blocks 507 exposed at the numbering port 503 represents the numbering information to be marked. Then, the ring frame 512 is rotated, the baffle 516 leaves the observation port 504, and the inner concave plate 513 will eventually stay at the numbering port 503. At this time, the inner concave plate 513 is pressed, and the ink block 514 will contact the corresponding printing block 507 and be coated with paint. Finally, the finger ring 501 is put on the index finger, and the numbering port 503 is aligned with the corresponding numbering plate 1 204 and numbering plate 2 425. The printing block 507 is brought into contact with the surface of the numbering plate to print the numbering information.
[0041] The foregoing is merely a preferred embodiment of the present invention. It should be noted that those skilled in the art may make various improvements and modifications without departing from the principles of the present invention, and such improvements and modifications are also within the scope of protection of the present invention. Structures, devices, and operating methods not specifically described or explained herein shall, unless otherwise specified or limited, be implemented in accordance with conventional means in the art.
Claims
1. A high-performance content distribution network cabinet cable bundle structure based on edge computing, comprising a stand (1) and a numbering device (5), wherein the stand (1) is mounted on the inner wall of the cabinet, and is characterized in that: A wire harness horizontal plate (2) is fixedly installed at equal intervals on the side wall of the vertical frame (1) located on the back side of the cabinet, and a wire harness vertical plate (3) is also fixedly installed on the back side of the cabinet, and a plurality of wire harnesses are adjustably assembled on the surface of the wire harness vertical plate (3); The second numbering plate (425) corresponds to the numbering information of the wire harness in the wire harness slot (402), and when the main harness plate (418) is separated from the adjacent auxiliary harness plate (417), the corresponding wire harness can be separated from the harness outlet; When the inserting plate (411) is inserted into the corresponding insertion hole (303), the wiring harness base plate (4) is fixed; when the inserting plate (411) leaves the insertion hole (303) and the wedge-shaped guide block (415) is pushed into the vertical rail groove (301), the wiring harness base plate (4) can move along the vertical rail groove (301); When a fire occurs in the cabinet, the water-based flame retardant inside the flame retardant box (427) spreads to the surface of the wiring harness; The numbering device (5) is used to print numbering information on the surface of the numbering plate 1 (204) and the numbering plate 2 (425).
2. The high-performance content distribution network cabinet cable harness structure based on edge computing according to claim 1 is characterized in that: A transverse rail groove (201) is provided in the interior of the wiring harness horizontal plate (2) in a transversely penetrating manner, and a plurality of slide plates (202) are assembled in a damping sliding manner on the top of the wiring harness horizontal plate (2) through the transverse rail groove (201), a clamping hole (203) is provided on the top of all the slide plates (202), and a number plate 1 (204) is provided on the side wall of each slide plate (202).
3. The high-performance content distribution network cabinet cable harness structure based on edge computing according to claim 2 is characterized in that: The surfaces of the wire harness uprights (3) are vertically provided with vertical rail grooves (301), and both ends of the top and bottom of the wire harness uprights (3) are provided with detachment openings (302), and one side of the wire harness uprights (3) is vertically provided with equidistant insertion holes (303).
4. The high-performance content distribution network cabinet cable harness structure based on edge computing according to claim 3 is characterized in that: The cable harness is composed of a cable base plate (4), a cover plate (416) and a flame retardant box (427). One end of the cable base plate (4) is provided with a sliding slot (401) which forms a sliding assembly relationship with the cable stand (3). The side of the cable base plate (4) is provided with cable slots (402) at equal intervals. Both ends of the side of the cable base plate (4) are provided with screw holes (403). The side of the cable base plate (4) and one side of the cable slot (402) are provided with a fixed rod hole (404). Each of the cable slots The bottom of (402) is provided with an overflow hole (405) through-type, the side of the wiring base plate (4) away from the wiring slot (402) is provided with a box slot 1 (406), the end of the wiring base plate (4) close to the sliding card slot (401) is provided with a plug hole (407) and a bolt hole (408) through-type, the end of the wiring base plate (4) close to the sliding card slot (401) is provided with a box slot 2 (409), and the wiring base plate (4) is provided with a seat (410) on one side of the top and bottom of the box slot 2 (409).
5. The high-performance content distribution network cabinet cable harness structure based on edge computing according to claim 4 is characterized in that: An auxiliary bundle plate (417) and a main bundle plate (418) are hinged in an array between the two cover plates (416), and the auxiliary bundle plates (417) and the main bundle plates (418) are arranged alternately, wherein the cover plates (416) and the auxiliary bundle plates (417), the auxiliary bundle plates (417) and the main bundle plates (418), and the cover plates (416) and the main bundle plates (418) are hinged through hinged bodies (419), and the cover plates (416) are fixedly installed on one side of the harness base plate (4) by screws screwed into the screw holes (403), and the inner walls of the hinged bodies (419) are fixedly provided with fixed rods (420), and the fixed rods (420) are inserted into the interior of the corresponding fixed rod holes (404).
6. The high-performance content distribution network cabinet cable harness structure based on edge computing according to claim 5, characterized in that: A lock hole (421) is symmetrically fixedly provided on one side of the surface of the auxiliary bundle plate (417), and retractable shells (422) are symmetrically fixedly provided on both ends of the surface of the main bundle plate (418), and a lock plate (423) is symmetrically slidably assembled on the surface of the main bundle plate (418) through the retractable shell (422), one end of the lock plate (423) is detachably snapped into the interior of the corresponding lock hole (421), and a spring (424) is connected between the side wall of the lock plate (423) and the outer wall of the retractable shell (422), and a number plate (425) is detachably embedded and installed in the middle of the surface of the main bundle plate (418), and a card (426) is provided at one end of the number plate (425).
7. The high-performance content distribution network cabinet cable harness structure based on edge computing according to claim 6, characterized in that: One end of the wiring harness base plate (4) is plug-in assembled with a plug-in plate (411), and the plug-in plate (411) passes through the plug-in plate hole (407) and the corresponding plug-in hole (303), a bolt (412) is screwed on one side of the middle of the plug-in plate (411), and one end of the bolt (412) is rotatably connected to the inside of the bolt hole (408), and one end of the wiring harness base plate (4) is rotatably connected to a pry bar (414) through a connector (410), and the two pry bars (414) are connected to each other. ) are respectively connected to the top and bottom ends of the plug plate (411), the interior of the box slot 2 (409) is slidably assembled with a guide shell (413), the other ends of the two pry bars (414) are respectively connected to the top and bottom ends of the guide shell (413), the interior of the guide shell (413) is elastically and telescopically assembled with a wedge-shaped guide block (415) through an elastic sheet (433), and the wedge-shaped guide block (415) is detachably and slidably embedded in the interior of the corresponding vertical rail slot (301).
8. The high-performance content distribution network cabinet cable harness structure based on edge computing according to claim 7, characterized in that: The flame retardant box (427) is filled with water-based flame retardant and is installed inside the box groove (406). The overflow hole (405) is connected to the box groove (406). Through holes (428) are opened on both sides of the top and bottom of the two ends of the flame retardant box (427). Both sides of the top and bottom of the two ends of the flame retardant box (427) are slidably assembled with hole plugs (431) for blocking the corresponding through holes (428). A lever (429) is symmetrically mounted on both ends of the wall for rotation, and both ends of the lever (429) are connected to corresponding hole plugs (431). A second spring (430) is connected between the outer wall of one end of the lever (429) and the inner wall of the flame retardant box (427). The two levers (429) are connected by a connecting rope (432) on the side facing away from the second spring (430), and the connecting rope (432) is placed on the outside of the box slot (406).
9. The high-performance content distribution network cabinet cable harness structure based on edge computing according to claim 1, characterized in that: The numbering device (5) comprises a finger ring (501), wherein an outer ring shell (502) is integrally provided on the outside of the finger ring (501), a numbering port (503) and an observation port (504) are respectively provided on both sides of the outer ring shell (502), and a shifting slot (505) is equidistantly provided on a side of the outer ring shell (502) close to the observation port (504); a sleeve ring (506) is equidistantly provided on the outer surface of the finger ring (501) and is located inside the outer ring shell (502), wherein the sleeve ring (506) is provided with a printing block (507) in a ring array on the outer surface, and a ratchet (508) is fixedly provided on the top of each sleeve ring (506).
10. The high-performance content distribution network cabinet cable harness structure based on edge computing according to claim 9, characterized in that: The outer edge of the ratchet wheel (508) is sleeved with a shift ring (509), and the inner wall of the shift ring (509) is hinged with a ratchet (510) in an annular array. The ratchet (510) is detachably engaged with the ratchet wheel (508). The shift ring (509) passes through the corresponding shift groove (505) and extends to the side of the outer ring shell (502) to be provided with a shift block (511); the outer edge of the outer ring shell (502) is movably sleeved with a ring frame (512), and the ring frame (512) is provided with a ring frame (512). 12) is movably assembled with an inner concave plate (513), and an ink block (514) is fixedly provided on the inner wall of the inner concave side of the inner concave plate (513), and spring three (515) is connected between the top and bottom ends of the inner concave plate (513) and the surface of the ring frame (512), and a baffle (516) is integrally provided on one side of the ring frame (512), and a rotation limiter (517) for limiting the rotation angle of the ring frame (512) is provided on the top and bottom surfaces of the outer ring shell (502).