Intelligent computer room machine management system based on Internet of Things

By introducing the receiving, storage, wiring, conduction and isolation mechanisms into the computer room management system, the equipment protection problems in line chaos and sudden accidents are solved, efficient wiring and equipment safety isolation is achieved, and management convenience and equipment life are improved.

CN120264659APending Publication Date: 2025-07-04SUZHOU XIAOKR INFORMATION TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510527659.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-25
Publication Date
2025-07-04

AI Technical Summary

Technical Problem

In the prior art, the back lines of the machine room equipment management device are chaotic, resulting in inconvenience in installation and disassembly, and the individual equipment cannot be effectively isolated in the event of a sudden high temperature accident, resulting in damage to the overall cabinet.

Method used

Design an intelligent computer room machine management system, including receiving, storage, partitioning, conducting and isolation mechanisms. Through the coordinated work of these mechanisms, the line is classified and stored, fast positioning and disassembly, and quickly isolate the faulty equipment in high temperatures or fires, blocking the supply of oxygen, and preventing the spread of fire.

Benefits of technology

It significantly improves the convenience and efficiency of computer room wiring management, prevents joint damage to the equipment by high temperature or fire, extends the equipment life, and ensures the safety and stability of the equipment in the cabinet.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an intelligent computer room machine management system based on the Internet of Things, and particularly relates to the technical field of power system Internet of Things equipment management. The inner side of the receiving mechanism is sequentially provided with a storage mechanism, a conduction mechanism, wire separation mechanisms and an isolation mechanism from top to bottom, wherein the wire separation mechanisms and the isolation mechanism are evenly arranged and distributed. According to the invention, through cooperative work of the bearing, storage, wire separation, conduction and isolation mechanisms, the wire separation and storage mechanisms effectively classify and store lines, so that winding disorder is avoided, and the wiring convenience is improved; the conduction mechanism rapidly transfers heat when the equipment breaks down, the isolation mechanism is triggered to fall down, oxygen is isolated, fire is restrained, and peripheral equipment is protected; the balancing weight is matched with the wire clamping plate, external air is further blocked, and the fireproof effect is enhanced; a ventilation area of the storage mechanism is matched with a transverse heat conduction rod to provide a heat dissipation channel for the connecting machine, and a longitudinal heat insulation plate is combined to reduce the fault influence and prolong the service life of equipment.
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Description

Technical Field

[0001] The present invention relates to the technical field of power system Internet of Things device management, and in particular to an intelligent computer room machine management system based on the Internet of Things. Background Art

[0002] The intelligent computer room machine management system based on the Internet of Things is an innovative solution that integrates advanced Internet of Things technology and intelligent management concepts. The system realizes all-round real-time monitoring of the computer room environment and equipment status by deploying various sensors inside the computer room, such as temperature, humidity, power, smoke and other sensors. These sensors accurately capture changes in environmental parameters and the operating conditions of equipment, and transmit the data to the central management platform. On the central management platform, with the help of big data analysis and artificial intelligence algorithms, in-depth mining and analysis of massive data can not only timely discover potential fault hazards, but also predict the service life and maintenance requirements of equipment. At the same time, the system has intelligent regulation capabilities. When environmental parameters exceed the set thresholds, it can automatically link devices such as air conditioners and humidifiers for adjustment to ensure that the computer room environment is always in the best state. For the management of equipment such as cabinets in the computer room, the system can realize remote monitoring, operation and maintenance, greatly improving management efficiency and convenience. In addition, it also has a perfect security protection mechanism, and through means such as identity authentication and access control, it ensures the security of computer room data and equipment, provides strong support for the stable operation and efficient management of the computer room, promotes the computer room management to enter a new stage of intelligence and refinement, and can quickly respond to cut off the power supply of a faulty cabinet separately and trigger an alarm when necessary.

[0003] In the patent with the publication number CN114667008B, an Internet of Things-based computer room equipment management device is mentioned, which relates to the technical field of power system Internet of Things device management, and solves the problem that most of the internal structures of the computer room equipment management device are fixed integrally, so that the overall plug-in board cannot be taken out from the inside. An Internet of Things-based computer room equipment management device includes an upper fixing plate, a fixed bottom plate is fixedly arranged at the lower end of the upper fixing plate, a rotating door is rotatably arranged at the front end between the upper fixing plate and the side fixing plate, a transparent window is fixedly arranged in the middle of the rotating door, and T-shaped grooves are arranged on both sides of the front and back of the end face of the upper fixing plate. In the present invention, by fixedly arranging two T-shaped grooves on both sides of the upper end of the upper fixing plate, the T-shaped grooves between the two upper fixing plates can be connected and matched. At this time, the overall I-shaped plug is inserted into the two T-shaped grooves, and the insertion and fixation between the two T-shaped grooves and the I-shaped plug realize the insertion and fixation between the two upper fixing plates.

[0004] The inventors found that there are at least the following problems in the prior art:

[0005] When the above-mentioned existing management device is used, although the plug-in board can be inserted into nine different track slots to adjust the distance between two plug-in boards, so that network connection machines of different models and sizes can be carried on the plug-in board, multiple lines will be plugged into the back of the connection machine during use, which will cause confusion in the back area of ​​the management cabinet, and thus it is inconvenient to install or remove the connection machine;

[0006] In addition, although the existing management system can quickly respond to the alarm and cut off the power to protect the management cabinet when a sudden accident occurs in the connection machine in the management cabinet and the temperature is high, this will also cause the connection machine in the management cabinet to be damaged due to the high temperature.

[0007] Therefore, the above technical problems need to be solved. Summary of the invention

[0008] The purpose of the present invention is to provide an intelligent computer room machine management system based on the Internet of Things to solve the problems in the prior art such as the confusion of back lines causing troubles during installation, disassembly and connection, and the need to isolate the entire management cabinet when an emergency occurs.

[0009] In order to solve the above technical problems, the basic technical solution proposed by the present invention is:

[0010] An intelligent computer room machine management system based on the Internet of Things, including a management cabinet and a receiving mechanism, wherein the inner side of the receiving mechanism is provided with a storage mechanism, a conduction mechanism, a wire separation mechanism and an isolation mechanism arranged in sequence from top to bottom; the receiving mechanism includes a receiving half frame and a wire receiving plate frame fixedly connected on the left and right, and frame-shaped grooves interconnected with each other are provided below the receiving half frame and the wire receiving plate frame; the storage mechanism includes a bottom plate and a guide box and a storage box installed above the bottom plate, and the top of the bottom plate is also fixedly connected with arranged partitions; the wire separation mechanism includes a bottom rod and a limit rod and a blocking box on both sides of the upper end of the bottom rod; the conduction mechanism includes evenly arranged longitudinal insulation boards and concentrated heat conduction boards at both ends of the longitudinal insulation boards and a hot melt support block fixedly connected to one side of the concentrated heat conduction board; the isolation mechanism includes a connecting half frame and a counterweight block and an isolation cover fixedly connected to the inner side below the connecting half frame and the counterweight block.

[0011] Preferably: a limiting slide groove is provided on the inner wall of the receiving half frame away from the wire receiving plate frame, the limiting rod is connected in the limiting slide groove by sliding up and down, a wire clamping plate is fixedly connected on the top of the wire receiving plate frame, and connecting rods are fixedly connected at both ends of the connecting half frame.

[0012] Preferably, the counterweight blocks are evenly arranged and distributed between the two connecting rods and are connected through a connecting rope, both ends of the connecting rope are fixedly connected to the connecting rods, and the counterweight blocks are located at the interval of the card line board interface.

[0013] Preferably, the connecting half-frame, the connecting rod and the counterweight are all embedded inside the frame-shaped groove. A hot-melt block is fixedly connected to the inner side wall of the connecting half-frame. The hot-melt block is placed above the hot-melt support block. Hot-melt strips are embedded below both the counterweight and the connecting rod. Horizontal heat-conducting rods are arranged between the longitudinal heat-insulating plates. The horizontal heat-conducting rods fit the distance between each wire-separating mechanism.

[0014] Preferably, the periphery of the bottom plate fits and is fixedly connected to the inner side walls of the receiving half-frame and the wire-receiving plate frame. The bottom plate is provided with through holes arranged in a uniform distribution in the middle of the partition. Guide slots are provided at the positions where the guide boxes are located between the partitions.

[0015] Preferably, the inside of the storage box is provided with storage chambers distributed in a staggered manner. The ports of the storage chambers communicate with the guide slots. The guide box is fixedly connected to the storage box.

[0016] Preferably, the bottom rod is located below the bottom plate and above the isolation cover. Uniformly arranged insertion rods are fixedly connected above the bottom rod. The insertion rods pass through the through holes. Embedding grooves are provided at the positions between each insertion rod of the bottom rod. The embedding grooves fit the longitudinal heat-insulating plates.

[0017] Preferably, a vertical limiting rod two is fixedly connected inside the barrier box. The limiting rod two penetrates the bottom plate. Springs one and two are respectively wound around the peripheries of the limiting rod one and the limiting rod two. The spring one is located inside the limiting sliding groove. The spring two is located above the bottom plate. Soft plates are fixedly connected to both sides of the barrier box.

[0018] Preferably, an installation rack is installed inside the management computer cabinet. The receiving mechanisms are uniformly and vertically arranged between the installation racks. Installation blocks are fixedly connected to both sides of the receiving half-frame. The installation blocks fit the installation racks. A connecting machine is installed above the receiving half-frame.

[0019] The beneficial effects of the present invention are as follows:

[0020] First, through the mutual cooperation of the receiving mechanism, the storage mechanism, the wire-separating mechanism, the conduction mechanism and the isolation mechanism provided by the present invention, the wire-separating mechanism and the storage mechanism classify and store multiple wires on the back of the connecting machine into the guide slots and the storage chambers, avoiding wire entanglement and chaos, and at the same time facilitating quick positioning and operation during installation or disassembly, significantly improving the convenience and efficiency of computer room wiring management.

[0021] Second, through the mutual cooperation of the receiving mechanism, the storage mechanism, the wire separating mechanism, the conduction mechanism, and the isolation mechanism set in the present invention, when the connection machine fails due to high temperature or fire, the longitudinal heat insulation plate and the concentrated heat conduction plate of the conduction mechanism can conduct heat to the hot melt support block, triggering the softening of the hot melt block, causing the entire isolation mechanism to drop, quickly covering the faulty equipment through the isolation cover, isolating oxygen to inhibit the spread of fire, and at the same time preventing collateral damage to adjacent equipment.

[0022] Third, through the mutual cooperation of the receiving mechanism, the storage mechanism, the wire separating mechanism, the conduction mechanism, and the isolation mechanism set in the present invention, and the cooperation of the counterweight and the wire clamping plate, after the isolation mechanism drops, it automatically fills the wire gap to form a sealed space, further blocking the entry of external air and enhancing the fireproof isolation effect.

[0023] Fourth, through the mutual cooperation of the receiving mechanism, the storage mechanism, the wire separating mechanism, the conduction mechanism, and the isolation mechanism set in the present invention, the partition of the storage mechanism forms a storage area and a ventilation area, providing a heat dissipation channel for the connection machine. The transverse heat conduction rod prevents heat from spreading horizontally to other equipment. Combining with the heat insulation effect of the longitudinal heat insulation plate, it effectively reduces the impact of the fault on surrounding equipment and extends the service life of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 is the overall three-dimensional view of the first embodiment of the present invention;

[0025] Figure 2 is the structural schematic diagram of the management cabinet of the first embodiment of the present invention;

[0026] Figure 3 is the structural schematic diagram of the connection machine of the first embodiment of the present invention;

[0027] Figure 4 is for the first embodiment of the present invention Figure 3 is the split view of some structures in;

[0028] Figure 5 is the structural schematic diagram of the receiving mechanism of the first embodiment of the present invention;

[0029] Figure 6 is the structural schematic diagram of the storage mechanism of the first embodiment of the present invention;

[0030] Figure 7 is for the first embodiment of the present invention Figure 6 is the structural schematic diagram of some parts in;

[0031] Figure 8 is the structural schematic diagram of the wire separating mechanism of the first embodiment of the present invention;

[0032] Figure 9 is the structural schematic diagram of the conduction mechanism of the first embodiment of the present invention;

[0033] Figure 10 It is a structural schematic diagram of an isolation mechanism according to the first embodiment of the present invention;

[0034] Figure 11 For the embodiment of the present invention Figure 10 Schematic diagram of the structure of the middle part.

[0035] Description of reference numerals:

[0036] 1. Management cabinet; 2. Mounting rack; 3. Connection machine;

[0037] 4. Undertaking mechanism; 41. Undertaking half frame; 42. Mounting block; 43. Limiting slide groove; 44. Frame groove; 45. Wire receiving plate frame; 46. Wire clamping plate;

[0038] 5. Storage mechanism; 51. Bottom plate; 52. Partition plate; 53. Through hole; 54. Guide box; 55. Storage box; 56. Guide notch; 57. Storage chamber;

[0039] 6. Wire separation mechanism; 61. Bottom rod; 62. Embedding groove; 63. Connecting rod; 64. Limit rod 1; 65. Spring 1; 66. Blocking box; 67. Limit rod 2; 68. Spring 2; 69. Flexible board;

[0040] 7. Conducting mechanism; 71. Horizontal heat conducting rod; 72. Longitudinal heat insulating plate; 73. Centralized heat conducting plate; 74. Hot melt support block;

[0041] 8. Isolation mechanism; 81. Connecting half frame; 82. Connecting rod; 83. Counterweight block; 84. Connecting rope; 85. Hot melt strip; 86. Hot melt block; 87. Isolation cover. DETAILED DESCRIPTION

[0042] Please refer to the following Figures 1 to 11 As shown, the technical solutions in the embodiments of the present invention are clearly and completely described. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0043] It should be noted that if there are directions involved in the embodiments of the present invention, they shall be based on the directions shown in the drawings, such as front and back. Figure 1 The specific Figure 1 The left side is the front, Figure 1 The right side is the back; at the same time Figure 2 As shown in the figure, the left-right direction is roughly the horizontal direction, and the up-down direction shown in the figure is the vertical direction. If a certain posture changes, the directional indication will also change accordingly.

[0044] The present invention provides an intelligent computer room machine management system based on the Internet of Things, comprising a management cabinet 1 and a receiving mechanism 4, wherein a storage mechanism 5, a conducting mechanism 7, a line separation mechanism 6 and an isolation mechanism 8 are arranged in sequence from top to bottom on the inner side of the receiving mechanism 4;

[0045] The receiving mechanism 4 includes a receiving half frame 41 and a wire receiving plate frame 45 fixedly connected to each other on the left and right sides. A frame-shaped groove 44 communicating with each other is provided below the receiving half frame 41 and the wire receiving plate frame 45.

[0046] The storage mechanism 5 includes a bottom plate 51, a guide box 54 and a storage box 55 installed above the bottom plate 51, and partitions 52 arranged and distributed are fixedly connected above the bottom plate 51;

[0047] The wire separation mechanism 6 includes a bottom rod 61 and a limit rod 64 and a blocking box 66 on both sides of the upper end of the bottom rod 61;

[0048] The conduction mechanism 7 includes longitudinal heat insulation plates 72 that are evenly arranged and distributed, concentrated heat conduction plates 73 at both ends of the longitudinal heat insulation plates 72, and a hot melt support block 74 that is fixedly connected to one side of the concentrated heat conduction plate 73;

[0049] The isolation mechanism 8 includes a connecting half frame 81 and a counterweight block 83 and an isolation cover 87 fixedly connected to the connecting half frame 81 and the inner side below the counterweight block 83;

[0050] The management cabinet 1 is connected to the management system in the computer room, and the system is connected to the monitoring equipment, temperature sensor, humidity sensor, etc. in the computer room, which will not be described in detail here;

[0051] The area between the two partitions 52 is a storage area.

[0052] In a further embodiment, a limiting groove 43 is provided on the inner wall of the receiving half frame 41 away from the wire receiving plate frame 45, and a limiting rod 64 is slidably connected in the limiting groove 43. A wire clamping plate 46 is fixedly connected to the top of the wire receiving plate frame 45, and connecting rods 82 are fixedly connected at both ends of the connecting half frame 81. Counterweight blocks 83 are evenly arranged between the two connecting rods 82 and are connected through a connecting rope 84. Both ends of the connecting rope 84 are fixedly connected to the connecting rods 82, and the counterweight blocks 83 are located at the interval of the clamping interface of the wire clamping plate 46.

[0053] In this embodiment, the thickness of the wire-bearing plate frame 45 is lower than that of the receiving half-frame 41, so that the wire-clamping plate 46 above can support the connecting wire. A clamping groove is provided above the wire-clamping plate 46, so that after the connecting wire is connected to the back of the connecting machine 3 and part of it is received in the receiving area, it can be clamped and supported. In addition, the gap between the clamping grooves of the wire-clamping plate 46 is the width of the counterweight 83. When the counterweight 83 scatters, the isolation cover 87 will deform, so that the isolation cover 87 fills the gap in the middle of the connecting wire. The isolation cover 87 is a conventional ceramic fiber fireproof cloth.

[0054] In a further embodiment, the connecting half-frame 81, the connecting rod 82 and the counterweight 83 are all embedded in the frame-shaped groove 44. A heat-sealing block 86 is fixedly connected to the inner side wall of the connecting half-frame 81, and the heat-sealing block 86 is placed above the heat-sealing support block 74. Heat-sealing strips 85 are embedded below both the counterweight 83 and the connecting rod 82. Transverse heat-conducting rods 71 are arranged between the longitudinal heat-insulating plates 72, and the transverse heat-conducting rods 71 fit the distance between each wire-separating mechanism 6.

[0055] In this embodiment, when the connecting machine 3 is exposed to high temperature and catches fire, it will heat the surrounding air, so that after being conducted by the bottom rod 61, the longitudinal heat-insulating plate 72 and the concentrated heat-conducting plate 73 in sequence, the heat-sealing support block 74 and the heat-sealing block 86 placed above the heat-sealing support block 74 become soft, and then the whole isolation mechanism 8 drops, so that the isolation cover 87 covers the connecting machine 3 on fire below. The transverse heat-conducting rod 71 is provided to prevent high temperature from affecting another connecting machine 3 above the receiving half-frame 41.

[0056] In a further embodiment, the periphery of the bottom plate 51 fits and is fixedly connected to the inner side walls of the receiving half-frame 41 and the wire-bearing plate frame 45. The bottom plate 51 is provided with uniformly arranged through holes 53 in the middle of the partition plate 52. The guide box 54 is provided with guide slots 56 between the partition plates 52. The receiving box 55 is internally provided with staggeredly distributed receiving chambers 57, and the ports of the receiving chambers 57 communicate with the guide slots 56. The guide box 54 is fixedly connected to the receiving box 55.

[0057] In this embodiment, the receiving area also increases the ventilation area at the bottom of the connecting machine 3, so that the connecting machine 3 can be more conveniently cooled when the temperature is high. The guide slot 56 runs through the entire guide box 54, and one end is trumpet-shaped and the other end is connected to the ports of the receiving chambers 57 at different positions. The receiving chambers 57 correspond to the guide slots 56 at different positions and are oval inside, so that the ring-shaped connecting wire can be continuously received in them and avoid entanglement. Compared with the traditional way of directly winding and placing the connecting wire on the back of the connecting machine 3, this way can avoid excessive bending of the connecting wire during winding, thus extending the service life of the connecting wire.

[0058] In a further embodiment, the bottom rod 61 is located below the bottom plate 51 and above the isolation cover 87. A uniformly arranged and distributed insertion rod 63 is fixedly connected above the bottom rod 61. The insertion rod 63 passes through the through hole 53. An embedding groove 62 is provided at the position between each insertion rod 63 on the bottom rod 61, and the embedding groove 62 fits the longitudinal heat insulation plate 72.

[0059] In this embodiment, the insertion rod 63 can not only assist in supporting the upper insertion rod 63, but also position the connecting line through the rebound of the first spring 65 and the second spring 68 when the U-shaped connecting line enters the storage area, so that the connecting line is hooked. At this time, the connecting line is located on both sides of the insertion rod 63 and the barrier box 66. One side is the inlet end of the connecting line, and the other side is the outlet end. After going out, the line can be stuck above the wire clamping plate 46.

[0060] In a further embodiment, a vertical limiting rod two 67 is fixedly connected inside the barrier box 66. The limiting rod two 67 penetrates the bottom plate 51. The peripheries of the limiting rod one 64 and the limiting rod two 67 are respectively surrounded by a first spring 65 and a second spring 68. The first spring 65 is located inside the limiting sliding groove 43, and the second spring 68 is located above the bottom plate 51. Soft plates 69 are fixedly connected to both sides of the barrier box 66.

[0061] In this embodiment, the barrier box 66 is slidably connected to one end of the bottom plate 51, mainly to prevent the connecting line from affecting the second spring 68; the soft plate 69 is made of high-temperature resistant rubber material, mainly to prevent the line from detaching from both sides of the barrier box 66 and the insertion rod 63.

[0062] In a further embodiment, an installation rack 2 is installed inside the management cabinet 1. The receiving mechanisms 4 are evenly and vertically arranged and distributed between the installation racks 2. Installation blocks 42 are fixedly connected to both sides of the receiving half-frame 41, and the installation blocks 42 fit the installation rack 2. A connecting machine 3 is installed above the receiving half-frame 41.

[0063] In this embodiment, the connecting machine 3 is a device in the computer room in the prior art, and a certain number of connecting lines need to be connected to its back.

[0064] The working principle of the present invention is as follows:

[0065] When the receiving mechanism 4 is installed with the mounting frame 2 through the mounting block 42, and then the connecting machine 3 is installed above the receiving half frame 41, and the connecting wire on the back of the connecting machine 3 is connected to the connecting machine 3, the staff can hold the bent connecting wire and press down the blocking box 66, so that the wire partition mechanism 6 moves down as a whole, and then the line in the hand is inserted between the two partitions 52 at the wire partition mechanism 6. If the connected line itself is short, the wire partition mechanism 6 can be loosened at an appropriate time, and then the plug-in rod 63 can hang the line. If the connecting wire is long, the connecting wire will be guided by the guide groove 56 into the storage chamber 57 with continuous pushing, and the hand will be raised after the appropriate length, and the plug-in rod 63 will be limited. After that, the line can be clamped on the top of the wire clamping plate 46, so that the wire connected to the back of the connecting machine 3 can be stored to a certain extent, thereby facilitating the arrangement of multiple lines.

[0066] In addition, since a single storage channel is formed between the two partitions 52 and the guide slot 56 and the storage chamber 57 leading to the segment, the stored lines can be isolated from each other to avoid interference, and when a certain connection line is pulled out, the separation mechanism 6 at that location can be pressed, thereby providing a better view of the stored connection line to facilitate pulling out and line management;

[0067] When a certain connector 3 fails and causes a temperature rise and a fire, the temperature above the connector 3 will rise, and the hot melt support block 74 will become soft under the guidance of the longitudinal heat insulation plate 72 and the concentrated heat conduction plate 73, so that the hot melt support block 74 can no longer support the hot melt bridge block 86, thereby allowing the entire isolation mechanism 8 to fall freely and the isolation cover 87 to cover the connector 3 below that is on fire, thereby isolating oxygen and preventing the fire from spreading;

[0068] In addition, after the isolation mechanism 8 falls as a whole, the hot melt strip 85 will directly contact the connecting wire of the high-temperature ignition connector 3 below, thereby being deformed, and thus will no longer be able to support the counterweight block 83. Therefore, under the action of gravity, the counterweight block 83 will fill the gap in the connecting wire above the wire clamping plate 46, thereby ensuring that external air cannot enter the area around the covered connector 3, thereby ensuring airtightness and further isolating oxygen.

[0069] According to the disclosure and teaching of the above description, those skilled in the art to which the present invention belongs may also make changes and modifications to the above embodiments. Therefore, the present invention is not limited to the specific embodiments disclosed and described above, and some modifications and changes to the present invention should also fall within the scope of protection of the claims of the present invention. In addition, although some specific terms are used in this specification, these terms are only for the convenience of description and do not constitute any limitation to the present invention.

Claims

1. An intelligent computer room machine management system based on the Internet of Things, comprising a management cabinet (1) and a receiving mechanism (4), characterized in that: Inside the receiving mechanism (4), a storage mechanism (5), a conduction mechanism (7), a wire separating mechanism (6) arranged evenly and distributively, and an isolation mechanism (8) are successively provided from top to bottom; The receiving mechanism (4) includes a left and right fixedly connected receiving half-frame (41) and a wire receiving plate frame (45). Frame-shaped grooves (44) communicating with each other are formed below the receiving half-frame (41) and the wire receiving plate frame (45); The storage mechanism (5) includes a bottom plate (51), a guiding box (54) and a storage box (55) installed above the bottom plate (51). A plurality of partition plates (52) arranged distributively are fixedly connected above the bottom plate (51); The wire separating mechanism (6) includes a bottom rod (61), a first limiting rod (64) on both sides of the upper end of the bottom rod (61), and a blocking box (66); The conduction mechanism (7) includes a plurality of longitudinally arranged heat insulation plates (72) arranged evenly, a concentrated heat conduction plate (73) at both ends of the longitudinally arranged heat insulation plates (72), and a hot melt support block (74) fixedly connected to one side of the concentrated heat conduction plate (73); The isolation mechanism (8) includes an engaging half-frame (81), a counterweight block (83), and an isolation cover (87) fixedly connected to the inner sides below the engaging half-frame (81) and the counterweight block (83).

2. The intelligent computer room machine management system based on the Internet of Things according to claim 1, wherein: A limiting sliding groove (43) is formed in the inner wall of the side of the receiving half-frame (41) away from the wire receiving plate frame (45). The first limiting rod (64) is slidably connected up and down in the limiting sliding groove (43). A wire clamping plate (46) is fixedly connected above the wire receiving plate frame (45). Connecting rods (82) are fixedly connected to both ends of the engaging half-frame (81).

3. The intelligent computer room machine management system based on the Internet of Things according to claim 1, wherein: The counterweight blocks (83) are arranged evenly between the two connecting rods (82) and are connected through a connecting rope (84) passing through. Both ends of the connecting rope (84) are fixedly connected to the connecting rods (82). The counterweight blocks (83) are located at the intervals of the clamping openings of the wire clamping plate (46).

4. The intelligent computer room machine management system based on the Internet of Things according to claim 1, characterized in that: The engaging half-frame (81), the connecting rods (82) and the counterweight blocks (83) are all embedded inside the frame-shaped groove (44). A hot melt block (86) is fixedly connected to the inner side wall of the engaging half-frame (81). The hot melt block (86) is placed above the hot melt support block (74). Hot melt strips (85) are embedded below both the counterweight blocks (83) and the connecting rods (82). Transverse heat conduction rods (71) are arranged between the longitudinally arranged heat insulation plates (72). The transverse heat conduction rods (71) fit the distance between each wire separating mechanism (6).

5. The intelligent computer room machine management system based on the Internet of Things according to claim 1, characterized in that: The periphery of the bottom plate (51) fits the inner side walls of the receiving half-frame (41) and the wire receiving plate frame (45) and is fixedly connected. Through holes (53) arranged evenly are formed in the middle of the bottom plate (51) where the partition plates (52) are located. Guide slots (56) are formed in the guiding box (54) at the positions between the partition plates (52).

6. The intelligent computer room machine management system based on the Internet of Things according to claim 1, wherein: A staggeredly distributed storage chamber (57) is formed inside the storage box (55). The port of the storage chamber (57) communicates with the guide slot (56). The guiding box (54) is fixedly connected to the storage box (55).

7. An intelligent computer room machine management system based on the Internet of Things according to claim 1, characterized in that: The bottom rod (61) is located below the bottom plate (51) and above the isolation cover (87); evenly arranged plug rods (63) are fixedly connected above the bottom rod (61); the plug rods (63) pass through the through holes (53); and an embedding groove (62) is provided between each of the plug rods (63); the embedding groove (62) fits the longitudinal heat insulation board (72).

8. The intelligent computer room machine management system based on the Internet of Things according to claim 1, wherein: A vertical limiting rod 2 (67) is fixedly connected inside the blocking box (66), and the limiting rod 2 (67) passes through the bottom plate (51). The outer peripheries of the limiting rod 1 (64) and the limiting rod 2 (67) are respectively surrounded by a spring 1 (65) and a spring 2 (68). The spring 1 (65) is located inside the limiting slide groove (43), and the spring 2 (68) is located above the bottom plate (51). Flexible plates (69) are fixedly connected to both sides of the blocking box (66).

9. The intelligent computer room machine management system based on the Internet of Things according to claim 1, wherein: The management cabinet (1) is provided with a mounting frame (2) installed inside, the receiving mechanism (4) is evenly arranged and vertically distributed and installed between the mounting frames (2), the two sides of the receiving half frame (41) are fixedly connected with mounting blocks (42), the mounting blocks (42) fit the mounting frame (2), and the top of the receiving half frame (41) is provided with a connecting machine (3).

Citation Information

Patent Citations

  • An Internet of Things (IoT) device for managing data center equipment.

    CN114667008B