A large server convenient to disassemble and maintain
By designing a stepped server chassis mounting rack and fan system, combined with remote monitoring, the problems of limited number of large servers and poor stability were solved, enabling convenient disassembly and assembly and efficient heat dissipation, thus improving maintenance efficiency and space utilization.
Patent Information
- Application Number
- CN202310474340.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-04-28
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2043-04-28
AI Technical Summary
The existing large servers are few in number, have poor stability, are inconvenient to disassemble and maintain, and do not make full use of space, making inspection and replacement inconvenient.
Design a server chassis mounting rack with stepped sides and an internal support plate forming a corridor. Install server chassis and maintenance boxes, equipped with a fan system and temperature and humidity sensors, and combined with a remote monitoring mechanism to achieve rapid disassembly, heat dissipation, and maintenance.
It increases the number of servers that can be installed and their stability, facilitates inspection and maintenance, ensures heat dissipation efficiency, and enables full utilization of space and remote monitoring and management.
Smart Images

Figure CN116709705B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of servers, and particularly to a large server convenient to disassemble, assemble, maintain. BACKGROUND
[0002] A server, also called a server, is a device that provides computing services. Since the server needs to respond to service requests and process them, in general, the server should have the ability to bear the service and guarantee the service. The constitution of the server includes processor, hard disk, memory, system bus, etc., and is similar to the general computer architecture, but since it needs to provide high-reliable services, it has higher requirements in processing capacity, stability, reliability, security, scalability, manageability, etc. In a network environment, according to the type of service provided by the server, it is divided into file server, database server, application server, WEB (web) server, etc.
[0003] The application of the server is very wide, especially related to large servers. The existing large servers are often installed in the server room. Since the room is large in size and has many servers, the occupied area is large. However, the space in many rooms is large and the occupied area is small. The space on the top of many servers cannot be reasonably utilized, resulting in high construction cost of many server rooms, small number of installed servers, and poor stability of the server. It is not convenient to repair and replace. In short, the existing large server has a single function and is not suitable for the demand of the existing market for large servers. SUMMARY
[0004] In order to solve the problems existing in the prior art, the present application provides a large server convenient to disassemble, assemble and maintain, which effectively solves the problems of small number of installed servers, poor stability and inconvenience of disassembly, assembly and maintenance caused by the prior art, effectively increases the number of installed servers, improves the stability of the large server, and does not appear to be dumped. It is convenient to repair, disassemble, assemble and maintain.
[0005] The present application provides a large server convenient to disassemble, assemble and maintain, which comprises a server case mounting frame 1 and a plurality of server cases 2. The two sides of the server case mounting frame 1 are stepped from top to bottom, the inside of the server case mounting frame 1 is connected by a plurality of bearing plates 9, a plurality of corridors are formed between the bearing plates 9 and the server case mounting frame 1, a plurality of server cases 2 are installed on each layer of the stepped ladder on both sides of the server case mounting frame 1, the back of the server case 2 is communicated with the corridor in the inside of the server case mounting frame 1, a server placing frame 202 is installed in the inside of the server case mounting frame 1, and a plurality of server components 201 are installed in the inside of the server placing frame 202.
[0006] Optionally, the server cabinet mounting frame 1 is provided with a maintenance box 3 on the stepped end face of each side, the server cabinet mounting frame 1 is provided with a first side frame 5 at one end, the server cabinet mounting frame 1 is provided with a second side frame 6 at the other end, the first side frame 5 and the second side frame 6 are provided with a plurality of stairs 12 on both sides, and the maintenance box 3 and the stairs 12 facilitate the staff to quickly enter the back of each server cabinet 2 for maintenance and repair.
[0007] Further, the first side frame 5 is provided with a plurality of first fan boxes 8, the second side frame 6 is provided with a plurality of second fan boxes 7, the bottom of one end of the server cabinet mounting frame 1 is provided with a control cabinet 13, the top of the server cabinet mounting frame 1 is provided with a third fan box 4, the inside of each of the first fan box 8, the second fan box 7 and the third fan box 4 is provided with an inner frame 501, the inner frame 501 is provided with a plurality of fans 502, and the front and back of each of the first fan box 8, the second fan box 7 and the third fan box 4 is provided with a fan box door 503 with mesh through a hinge; the third fan box 4 is used for blowing air into the server cabinet mounting frame 1, and the first fan box 8 and the second fan box 7 are used for exhausting air out of the server cabinet mounting frame 1, so that the heat inside the server is exhausted.
[0008] Further, the carrier plate 9 is a hollow metal plate, which is used for the third fan box 4 to blow air into the server cabinet mounting frame 1, so that the heat of the server cabinet 2 in each layer of the stairs is quickly exhausted.
[0009] Optionally, each of the server cabinets 2 is provided with a plurality of temperature and humidity sensors 203 for monitoring the temperature and humidity of the server components 201 in the server cabinet 2, the temperature and humidity sensor 203 is electrically connected with the internal fan 502 of the first fan box 8, the second fan box 7 and the third fan box 4 through a controller, when the average temperature data or the average humidity data of all the temperature and humidity sensors exceeds the set data, the controller works through the internal fan 502 of the first fan box 8, the second fan box 7 and the third fan box 4, so that the heat inside the server is exhausted.
[0010] Further, the server cabinet 2 and the maintenance cabinet 3 are provided with electric telescopic rods 204 on both sides, the top of the electric telescopic rod 204 is provided with a connecting plate 205, the connecting plate 205 is provided with a ventilation door 206, the front bottom of the server cabinet 2 is provided with a telescopic rod control switch 207, the electric telescopic rod 204 is electrically connected with the telescopic rod control switch 207 through a controller; when all the fans 502 in the first fan cabinet 8, the second fan cabinet 7 and the third fan cabinet 4 are turned on, and the temperature and humidity of the server cabinet 2 still do not reach the set data, the controller will control the electric telescopic rod 204 to open all the ventilation doors 206, so as to achieve the purpose of rapid cooling.
[0011] Further, the ventilation door 206 is a tempered glass door, one end of the bottom of the server cabinet mounting rack 1 is provided with a control cabinet 13, the control cabinet 13 is electrically connected with the electric telescopic rod 204 on each server cabinet 2, and is used for controlling the electric telescopic rod 204 to rise the ventilation door 206 to a preset height, so that the ventilation door 206 not only plays a role of guardrail, but also the staff does not need to open the server cabinet door to directly maintain and maintain the server.
[0012] Optionally, the controller is in communication connection with a remote terminal, and is used for notifying the remote terminal to alarm when the average temperature data or the average humidity data of all the temperature and humidity sensors exceeds the set data.
[0013] Optionally, the top of each corridor is provided with a monitoring mechanism 14, the monitoring mechanism 14 comprises a horizontal rack track 1401 and a vertical rack track 1402, one end of the horizontal rack track 1401 is provided with a first speed reducer 1405, one side of the first speed reducer 1405 is provided with a first motor 1406, the other side of the first speed reducer 1405 is connected with a first screw rod 1404, the first screw rod 1404 is threadedly connected with a first sliding block 1403, the bottom of the first sliding block 1403 is provided with the vertical rack track 1402, the bottom of the vertical rack track 1402 is provided with a second speed reducer 1410, the bottom of the second speed reducer 1410 is provided with a second motor 1409, the top of the second speed reducer 1410 is connected with a second screw rod 1408, the second screw rod 1408 is threadedly connected with a second sliding block 1411, and the front and back surfaces of the second sliding block 1411 are provided with cameras 1412.
[0014] Further, the first motor 1406 drives the gear in the first speed reducer 1405 to rotate, thereby driving the first threaded lead screw 1404 to rotate, and the first threaded lead screw 1404 drives the first sliding block 1403 to move, thereby realizing the horizontal movement of the camera 1412; the second motor 1409 drives the gear in the second speed reducer 1410 to rotate, thereby driving the second threaded lead screw 1408 to rotate, and the second threaded lead screw 1408 drives the second sliding block 1411 to move, thereby realizing the vertical movement of the camera 1412, so as to comprehensively monitor the back of all servers on the same height step on the server case mounting rack 1.
[0015] Further, the controller is further configured to acquire the monitoring video of all cameras and send the acquired monitoring video to a remote terminal, so as to remotely monitor the back of all servers on the same height step on the server case mounting rack 1 by the remote terminal.
[0016] The technical scheme adopted by the present application has the following technical effects:
[0017] 1. The server case mounting rack 1 has a stepped shape with the width gradually increasing from top to bottom on both sides, the inside of the server case mounting rack 1 is connected by a plurality of bearing plates 9, a plurality of corridors are formed between the bearing plates 9 and the server case mounting rack 1, a plurality of server cases 2 are installed on each step on both sides of the server case mounting rack 1, the back of the server case 2 is in communication with the corridor in the inside of the server case mounting rack 1, and a server placing rack 202 is installed in the inside of the server case mounting rack 1, and a plurality of server components 201 are installed in the inside of the server placing rack 202, thereby effectively solving the problems of few server installations, poor stability, and inconvenience in disassembly and maintenance caused by the prior art, effectively increasing the number of server installations, improving the stability of large servers, and preventing the servers from falling, thereby facilitating the inspection, disassembly and maintenance.
[0018] 2. In the technical scheme of the present application, the maintenance box 3 for facilitating the workers to enter the inside corridor is installed on the stepped end surface on both sides of the server case mounting rack 1, a plurality of staircases 12 are arranged on both sides of the first side frame 5 and the second side frame 6, the workers can quickly enter the back of each server case 2 through the maintenance box 3 and the staircases 12, tools and maintenance equipment are stored in the maintenance box, and the workers can directly enter the back of the server case through the maintenance box, thereby facilitating the inspection and maintenance of the server group.
[0019] 3、The third fan box 4 in the technical scheme of the present application is used for blowing air into the server case mounting rack 1, and the first fan box 8 and the second fan box 7 are used for discharging air outside the server case mounting rack 1, so that the heat inside the server is discharged, the server inside the large server can be cooled in time, and the temperature of each server component on each step can be monitored automatically, when the temperature and humidity warning occurs, the fan speed can be accelerated, if the temperature cannot be reduced, the ventilation door (the server case door) can be opened automatically to make the air flow faster, so that the heat dissipation efficiency is improved.
[0020] 4、The back of the entire server in the technical scheme of the present application is composed of a plurality of corridors, the monitoring mechanism is installed on the top of the corridor, the entire mechanism realizes remote monitoring and control through a remote terminal, the staff and maintenance personnel can monitor and manage each server component conveniently, and automatic monitoring and manual monitoring can be realized, and the operation is simple and convenient.
[0021] 5: The server wire arrangement and wiring in the technical scheme of the present application are convenient, the server connecting wires on each step are arranged in each corridor, so that the wire winding phenomenon does not occur, and the staff can manage the entire large server conveniently.
[0022] It should be understood that the above general description and the following detailed description are only exemplary and explanatory, and cannot limit the present application. BRIEF DESCRIPTION OF DRAWINGS
[0023] In order to more clearly illustrate the technical scheme in the embodiments of the present application or the prior art, the drawings needed in the embodiment or the prior art description will be briefly introduced below, and obviously, other drawings can be obtained by those skilled in the art without creative labor on the premise of the drawings.
[0024] Figure 1 It is a whole development structure schematic view of the device of the embodiment one in the present application scheme.
[0025] Figure 2 It is a whole structure schematic view of the device of the embodiment one in the present application scheme.
[0026] Figure 3 It is a partial structure view of the server case mounting rack in the device of the embodiment one in the present application scheme.
[0027] Figure 4 It is a structure schematic view of the monitoring mechanism in the device of the embodiment one in the present application scheme.
[0028] Figure 5 It is a structure schematic view of the server case in the device of the embodiment one in the present application scheme.
[0029] Figure 6It is the structural schematic view of the first side frame inside the device of the embodiment one in the scheme of the application.
[0030] Figure 7 It is the control schematic view of the server case heat dissipation of the device of the embodiment one in the scheme of the application.
[0031] Figure 8 It is the control schematic view of the server case monitoring (inspection) of the device of the embodiment one in the scheme of the application.
[0032] Legend: server case mounting frame 1, server case 2, maintenance case 3, third fan case 4, first side frame 5, second side frame 6, second fan case 7, first fan case 8, hollow steel plate 9, base 10, display 11, stairs 12, control case 13, monitoring mechanism 14, inner frame 501, fan 502, fan case door 503, server component 201, server placing frame 202, temperature and humidity sensor 203, electric telescopic rod 204, connecting plate 205, tempered glass door 206, telescopic rod control switch 207; cross rack rail 1401, vertical rack rail 1402, first sliding block 1403, first threaded lead screw 1404, first speed reducer 1405, first motor 1406, bearing 1407, second threaded lead screw 1408, second motor 1409, second speed reducer 1410, second sliding block 1411, camera 1412. DETAILED DESCRIPTION
[0033] In order to clearly illustrate the technical features of the scheme, the application will be described in detail below with specific embodiments and in conjunction with the drawings. The following disclosure provides many different embodiments or examples for implementing the different structures of the application. In order to simplify the disclosure of the application, the components and settings of specific examples are described below. In addition, the application can repeatedly refer to numbers and / or letters in different examples. Such repetition is for the purpose of simplification and clarity, and does not indicate the relationship between the various embodiments and / or settings discussed. It should be noted that the components illustrated in the drawings are not necessarily drawn to scale. The application omits the description of well-known components and processing techniques and processes to avoid unnecessary limitation of the application.
[0034] Embodiment one
[0035] As Figures 1-8As shown, the present application provides a large server convenient to disassemble and maintain, comprising: a server case mounting frame 1 and a plurality of server cases 2; the two sides of the server case mounting frame 1 are stepped shapes with gradually increasing width from top to bottom, the inside of the server case mounting frame 1 is connected by a plurality of bearing plates 9, a plurality of corridors are formed between the bearing plates 9 and the server case mounting frame 1, a plurality of server cases 2 are installed on each layer of the stepped shape on the two sides of the server case mounting frame 1, the back of the server case 2 is communicated with the corridor inside the server case mounting frame 1, a server placing frame 202 is installed inside the server case mounting frame 1, and a plurality of server components 201 are installed inside the server placing frame 202.
[0036] Among them, the stepped end face on the two sides of the server case mounting frame 1 is installed with a maintenance box 3 for facilitating workers to carry into the internal corridor, tools and maintenance equipment are stored in the maintenance box 3, and the back of the server case 2 can be directly accessed through the maintenance box, which can facilitate the maintenance and maintenance of the server group; one end of the server case mounting frame 1 is installed with a first side frame 5, the other end of the server case mounting frame 1 is installed with a second side frame 6, and a plurality of staircases 12 are arranged on the two sides of the first side frame 5 and the second side frame 6, which facilitate workers to quickly access the back of each server case 2 through the maintenance box 3 and the staircases 12 for maintenance and maintenance.
[0037] The server components 201 are installed in the server cases 2, the server cases 2 are installed on different height steps, the server components in a plurality of server cases on the same step are managed by an administrator, which not only saves floor area, but also fully utilizes the space, and is also beneficial to the management of a plurality of servers;
[0038] The two ends of each step are provided with a maintenance box 3 for facilitating workers to access the internal corridor, workers can quickly access the back of each server case 2 through the maintenance box 3 and the staircases 12, which facilitates manual maintenance and maintenance, the back of the server case 2 is communicated with the corridor, and a lighting lamp can be installed inside the corridor to facilitate people to operate.
[0039] The first side frame 5 is provided with a plurality of first fan boxes 8, the second side frame 6 is provided with a plurality of second fan boxes 7, and the top of the server case mounting rack 1 is provided with a third fan box 4. The first fan box 8, the second fan box 7 and the third fan box 4 are all internally provided with an inner frame 501, and the inner frame 501 is provided with a plurality of fans 502. The front and back of the first fan box 8, the second fan box 7 and the third fan box 4 are all provided with fan box doors 503 with mesh through hinges. The third fan box 4 is used to blow air into the server case mounting rack 1, and the first fan box 8 and the second fan box 7 are used to exhaust air outside the server case mounting rack 1, so that the heat inside the server is exhausted.
[0040] The bearing plate 9 is arranged between any two layers of steps, and the bearing plate 9 is a hollow metal plate (for example, a hollow steel plate, but not limited to a hollow steel plate, other metal plates can also be used, mainly using the compression resistance of metal). When the third fan box 4 blows air into the server case mounting rack 1, the heat of the server case 2 in each layer of steps is quickly exhausted. Preferably, the positions of the through holes in the hollow metal plates on different steps are consistent, so that the heat of the server case 2 in each layer of steps is more quickly exhausted.
[0041] Each server case 2 is internally provided with a plurality of temperature and humidity sensors 203 for monitoring the temperature and humidity of the server components 201 in the server case 2. The temperature and humidity sensors 203 are electrically connected to the internal fans 502 of the first fan box 8, the second fan box 7 and the third fan box 4 through a controller (which can be arranged in a layer of steps inside the server case mounting rack 1, or can be separately arranged outside the server case mounting rack 1 and in communication connection with a remote terminal). When the average temperature data or the average humidity data of all temperature and humidity sensors exceeds the set data, the controller controls the internal fans 502 of the first fan box 8, the second fan box 7 and the third fan box 4 to work, so that the heat inside the server is exhausted, that is, the third fan box 4 is used to blow air into the server case mounting rack 1, and the first fan box 8 and the second fan box 7 are used to exhaust air outside the server case mounting rack 1, so that the heat inside the server on different steps in the server case mounting rack 1 is exhausted.
[0042] Preferably, a display 11 is arranged between each first fan box 8 and each second fan box 7, and is used to display the average temperature data or the average humidity data of all temperature and humidity sensors.
[0043] The first side frame 5 and the second side frame 6 are both bolted to the end face of the server case mounting rack 1, and the third fan box 4 is bolted to the top of the server case mounting rack 1.
[0044] The server cabinet mounting frame 1 can be made of reinforced concrete, and the server cabinet 2 is bolted on the steps on both sides of the server cabinet mounting frame 1, and the back of the server cabinet 2 is communicated with the corridor inside the server cabinet mounting frame 1.
[0045] The server cabinet 2 and the maintenance cabinet 3 are both provided with electric telescopic rods 204, the top of the electric telescopic rod 204 is provided with a connecting plate 205, the connecting plate 205 is provided with a ventilation door 206, the front bottom of the server cabinet 2 is provided with a telescopic rod control switch 207, the electric telescopic rod 204 is electrically connected with the telescopic rod control switch 207 through a controller, the electric telescopic rod 204 is bolted on both sides of the server cabinet 2, the connecting plate 205 is bolted on the top of the electric telescopic rod 204, and the electric telescopic rod 204 is electrically connected with the telescopic rod control switch 207 and the control cabinet 13 through the controller. When all the fans 502 in the first fan cabinet 8, the second fan cabinet 7 and the third fan cabinet 4 are turned on, and the temperature and humidity of the server cabinet 2 still do not reach the set data, the controller will control the electric telescopic rod 204 to open all the ventilation doors 206, so as to achieve the purpose of rapid cooling.
[0046] Further, the ventilation door 206 can be a tempered glass door, one end of the server cabinet mounting frame 1 is provided with a control cabinet 13, the control cabinet 13 is electrically connected with the electric telescopic rod 204 on each server cabinet 2, and is used for controlling the electric telescopic rod 204 to rise the ventilation door 206 to a preset height, so that the ventilation door 206 not only plays a role of guardrail, 安全性 It is strong, and the staff does not need to open the server cabinet door to directly maintain and maintain the server.
[0047] Further, the controller is in communication connection with a remote terminal, and is used for notifying the remote terminal to alarm when the average temperature data or the average humidity data of all the temperature and humidity sensors exceeds the set data.
[0048] Specifically, as Figure 7As shown, each server case 2 corresponds to a plurality of temperature and humidity sensors 203. The plurality of temperature and humidity sensors 203 can be uniformly distributed in the server case 2, or can be arranged for the key server components 201 in the server case 2, such as CPU (Central Processing Unit), memory, or hard disk backplane, etc., for monitoring the temperature and humidity of the server components 201 in the server case 2. The temperature and humidity data input end of the controller is in communication connection with the temperature and humidity data output end of each temperature and humidity sensor 203, for acquiring the temperature and humidity data of the server components 201 in different server cases 2 monitored by all temperature and humidity sensors 203, and calculating the temperature and humidity data monitored by all temperature and humidity sensors 203 to obtain the average temperature data or average humidity data of all temperature and humidity sensors 203; then judging whether the average temperature data or average humidity data of all temperature and humidity sensors 203 exceeds the preset average temperature data or preset average humidity data in real time or periodically, and transmitting the average temperature data or average humidity data of all temperature and humidity sensors 203 to the display 11 for display;
[0049] If the average temperature data or average humidity data of all temperature and humidity sensors 203 exceeds the preset average temperature data or preset average humidity data, the controller sends an alarm information to the remote terminal (client), and can also send an alarm signal to the local alarm, to control the alarm to perform local alarm; at the same time (which can also be processed in turn), the controller turns on the power supply of the first air box 8, the second air box 7 and the third air box 4, controls the third air box 4 to blow air into the server case mounting rack 1, and uses the first air box 8 and the second air box 7 to exhaust air outside the server case mounting rack 1, so as to let the heat inside the servers on different levels in the server case mounting rack 1 be exhausted, when the temperature cannot be reduced to the set value when all the fans 502 in the first air box 8, the second air box 7 and the third air box 4 are turned on, the temperature and humidity of the server case 2 have not been reduced to the set data, then the controller controls the electric telescopic rod 204 to open all the ventilation doors 206, so as to achieve the purpose of rapid cooling, to control the heat dissipation of the servers on different levels in the server case mounting rack 1.
[0050] If the average temperature data or average humidity data of all temperature and humidity sensors 203 does not exceed the preset average temperature data or preset average humidity data, the controller only transmits the average temperature data or average humidity data of all temperature and humidity sensors 203 to the display 11 for display, without other operations.
[0051] The top of each corridor is provided with a monitoring mechanism 14, which comprises a horizontal rack rail 1401 and a vertical rack rail 1402. One end of the horizontal rack rail 1401 is provided with a first speed reducer 1405, one side of the first speed reducer 1405 is provided with a first motor 1406, the other side of the first speed reducer 1405 is connected with a first threaded lead screw 1404, the first threaded lead screw 1404 is threadedly connected with a first sliding block 1403, the bottom of the first sliding block 1403 is provided with the vertical rack rail 1402, the bottom of the vertical rack rail 1402 is provided with a second speed reducer 1410, the bottom of the second speed reducer 1410 is provided with a second motor 1409, the top of the second speed reducer 1410 is connected with a second threaded lead screw 1408, the second threaded lead screw 1408 is threadedly connected with a second sliding block 1411, and the front and back surfaces of the second sliding block 1411 are provided with cameras 1412.
[0052] When the first motor 1406 works, the gears in the first speed reducer 1405 are driven to rotate, thereby driving the first threaded lead screw 1404 to rotate, the first sliding block 1403 is driven to move by the rotation of the first threaded lead screw 1404, thereby realizing the horizontal movement of the camera 1412; when the second motor 1409 works, the gears in the second speed reducer 1410 are driven to rotate, thereby driving the second threaded lead screw 1408 to rotate, the second sliding block 1411 is driven to move by the rotation of the second threaded lead screw 1408, thereby realizing the vertical movement of the camera 1412, and the back surfaces of all servers on the same height ladder are comprehensively monitored.
[0053] The controller is further configured to acquire monitoring videos of all cameras and send the acquired monitoring videos to a remote terminal, so as to remotely monitor the back surfaces of all servers on the same height ladder on the server case mounting rack 1 by the remote terminal.
[0054] Specifically, as Figure 8As shown, on the server chassis mounting rack (1), there are two steps at the same height on each corridor. Therefore, cameras 1412 are installed on both sides of the second slider 1411, which can comprehensively monitor multiple server chassis 2 on both sides of the corridor. Specifically, when the first motor 1406 works, it drives the gear in the first gearbox 1405 to rotate, thereby driving the first threaded screw 1404 to rotate. The rotation of the first threaded screw 1404 drives the first slider 1403 to move, thereby realizing the horizontal movement of the camera 1412. When the second motor 1409 works, it drives the gear in the second gearbox 1410 to rotate, thereby driving the second threaded screw 1408 to rotate. The rotation of the second threaded screw 1408 drives the second slider 1411 to move, thereby realizing the vertical movement of the camera 1412, thus comprehensively monitoring the back of all servers on the same height (each corridor corresponds to two steps on the left and right, so cameras 1412 are installed on both sides of the second slider 1411, which can simultaneously capture and monitor servers on two steps at the same height). The video data input terminal of the controller (inspection system, which communicates with the remote terminal via a wireless transmission module) is connected to the video data output terminal of each camera 1412 to acquire video data from different server chassis 2 monitored by all cameras 1412 and forward the video data sent by all cameras 1412 to the remote terminal; thereby realizing comprehensive remote monitoring of the back of all servers on the same height step, and the remote terminal can also directly control the operation of the cameras 1412, that is, the remote terminal can directly control the operation of the first motor 1406 and the second motor 1409.
[0055] Specifically, the management or maintenance process of the large server in the technical solution of this invention can be:
[0056] (1) The server components are installed in the server chassis 2. The server chassis 2 is installed on steps of different heights. The server components in several server chassis on the same step are managed by one administrator, which not only saves the floor space but also makes full use of the space and is also conducive to the management of multiple servers.
[0057] (2) Each step is equipped with a maintenance box 3 at both ends to facilitate staff access to the internal corridor. The maintenance box 3 and the stairs 12 facilitate staff to quickly access the back of each server chassis 2 for manual inspection and maintenance. The back of the server chassis 2 is connected to the corridor, and the corridor is equipped with lighting to facilitate operation.
[0058] (3) Each corridor is equipped with a movable camera at the top. The camera can capture images of the server components on the back of the chassis. The video is then transmitted to the client remotely, thus enabling remote monitoring.
[0059] Specifically, the same height on the server chassis mounting rack (1) on the stairs, each corresponding to two stairs, so the two sides of the second slider 1411 are installed with cameras 1412, which can monitor the multiple server chassis 2 in the stairs on both sides of the corridor, specifically, the first motor 1406 drives the gear in the first reduction box 1405 to rotate, thereby driving the first threaded lead screw 1404 to rotate, and the first threaded lead screw 1404 is used to drive the first slider 1403 to move, realizing the horizontal movement of the camera 1412; the second motor 1409 drives the gear in the second reduction box 1410 to rotate, thereby driving the second threaded lead screw 1408 to rotate, and the second threaded lead screw 1408 is used to drive the second slider 1411 to move, realizing the vertical movement of the camera 1412, thereby comprehensively monitoring the back of all servers on the same height stairs (each corridor corresponds to left and right two stairs, so the two sides of the second slider 1411 are installed with cameras 1412, which can simultaneously monitor the servers on the two same height stairs). The video data input end of the controller is in communication connection with the video data output end of each camera 1412, for obtaining the video data of different server chassis 2 monitored by all cameras 1412, and forwarding the video data sent by all cameras 1412 to a remote terminal; thereby realizing comprehensive remote monitoring of the back of all servers on the same height stairs, and the remote terminal can also directly control the camera 1412 to work, that is, the remote terminal can directly control the work of the first motor 1406 and the second motor 1409.
[0060] (4) When the average data of all temperature and humidity sensors exceeds the set data, the power supply of the first fan box 8, the second fan box 7 and the third fan box 4 will be turned on, the third fan box 4 will be used to blow inward, and the first fan box 8 and the second fan box 7 will be used to exhaust outward, so as to quickly exhaust the temperature inside the server, when all the fans are turned on, the temperature cannot be reduced to the set value, then the electric telescopic rod 204 will be connected to open all the tempered glass doors 206, thereby achieving the purpose of rapid cooling;
[0061] Specifically, a plurality of temperature and humidity sensors 203 are arranged in each server case 2, which can be uniformly distributed in the server case 2, or arranged in the key server components 201 in the server case 2, such as CPU (Central Processing Unit), memory, hard disk backplane, etc., for monitoring the temperature and humidity of the server components 201 in the server case 2. The temperature and humidity data input end of the controller is in communication connection with the temperature and humidity data output end of each temperature and humidity sensor 203, for acquiring the temperature and humidity data of the server components 201 in different server cases 2 monitored by all temperature and humidity sensors 203, and calculating the temperature and humidity data monitored by all temperature and humidity sensors 203 to obtain the average temperature data or average humidity data of all temperature and humidity sensors 203; then the average temperature data or average humidity data of all temperature and humidity sensors 203 is transmitted to the display 11 for display in real time or periodically;
[0062] If the average temperature data or average humidity data of all temperature and humidity sensors 203 exceeds the preset average temperature data or preset average humidity data, the controller sends an alarm information to the remote terminal (client), and can also send an alarm signal to the local alarm, to control the alarm to perform local alarm; at the same time (which can also be processed in turn), the controller turns on the power supply of the first fan case 8, the second fan case 7 and the third fan case 4, controls the third fan case 4 to blow air into the server case mounting rack 1, and uses the first fan case 8 and the second fan case 7 to exhaust air outside the server case mounting rack 1, so that the heat inside the servers on different levels in the server case mounting rack 1 is exhausted, when all the fans 502 in the first fan case 8, the second fan case 7 and the third fan case 4 are turned on, the temperature cannot be reduced to the set value, and when the temperature and humidity of the server case 2 have not been reduced to the set data, the controller controls the electric telescopic rod 204 to open all the ventilation doors 206, so as to achieve the purpose of rapid cooling, and to control the heat dissipation of the servers on different levels in the server case mounting rack 1.
[0063] (5) When the server needs to be repaired and maintained, the power supply of the electric telescopic rod 204 on each server case is connected through the operation of the case 13, and the ventilation door 206 is raised to an appropriate height by the electric telescopic rod 204, which not only plays a role of guardrail with strong safety performance, but also does not need to be opened by the staff, which is convenient for the staff to repair and maintain.
[0064] The both sides of the server case mounting frame 1 are stepped shapes with the width gradually increasing from top to bottom, the inside of the server case mounting frame 1 is connected by a plurality of bearing plates 9, a plurality of corridors are formed between the bearing plates 9 and the server case mounting frame 1, a plurality of server cases 2 are installed on each layer of the stepped shape of the both sides of the server case mounting frame 1, the back of the server case 2 is communicated with the corridor inside the server case mounting frame 1, a server placing frame 202 is installed inside the server case mounting frame 1, a plurality of server components 201 are installed inside the server placing frame 202, effectively solve the problems of few installation quantity, poor stability, inconvenient disassembly and maintenance of the large server caused by the prior art, effectively increase the installation quantity of the server, improve the stability of the large server, and the phenomenon of tilting does not occur, which is convenient for overhaul, disassembly and maintenance.
[0065] The both sides of the server case mounting frame 1 are stepped shapes with the width gradually increasing from top to bottom, the inside of the server case mounting frame 1 is connected by a plurality of bearing plates 9, a plurality of corridors are formed between the bearing plates 9 and the server case mounting frame 1, a plurality of server cases 2 are installed on each layer of the stepped shape of the both sides of the server case mounting frame 1, the back of the server case 2 is communicated with the corridor inside the server case mounting frame 1, a server placing frame 202 is installed inside the server case mounting frame 1, a plurality of server components 201 are installed inside the server placing frame 202, effectively solve the problems of few installation quantity, poor stability, inconvenient disassembly and maintenance of the large server caused by the prior art, effectively increase the installation quantity of the server, improve the stability of the large server, and the phenomenon of tilting does not occur, which is convenient for overhaul, disassembly and maintenance.
[0066] The both sides of the server case mounting frame 1 are stepped shapes with the width gradually increasing from top to bottom, the inside of the server case mounting frame 1 is connected by a plurality of bearing plates 9, a plurality of corridors are formed between the bearing plates 9 and the server case mounting frame 1, a plurality of server cases 2 are installed on each layer of the stepped shape of the both sides of the server case mounting frame 1, the back of the server case 2 is communicated with the corridor inside the server case mounting frame 1, a server placing frame 202 is installed inside the server case mounting frame 1, a plurality of server components 201 are installed inside the server placing frame 202, effectively solve the problems of few installation quantity, poor stability, inconvenient disassembly and maintenance of the large server caused by the prior art, effectively increase the installation quantity of the server, improve the stability of the large server, and the phenomenon of tilting does not occur, which is convenient for overhaul, disassembly and maintenance.
[0067] The back of the whole server is composed of a plurality of corridors, the top of the corridor is provided with a monitoring mechanism, the whole mechanism is realized remote monitoring and control by using a remote terminal, which is convenient for workers and maintenance personnel to monitor and manage each server component, and automatic monitoring and manual monitoring can also be realized, and the operation is simple and convenient.
[0068] The back of the whole server is composed of a plurality of corridors, the top of the corridor is provided with a monitoring mechanism, the whole mechanism is realized remote monitoring and control by using a remote terminal, which is convenient for workers and maintenance personnel to monitor and manage each server component, and automatic monitoring and manual monitoring can also be realized, and the operation is simple and convenient.
[0069] The above describes the specific embodiments of the present application in combination with the drawings, but is not a limitation on the protection scope of the present application. Those skilled in the art should understand that various modifications or variations made by those skilled in the art on the basis of the technical solutions of the present application without creative labor are still within the protection scope of the present application.
Claims
1. A large server which is easy to disassemble and maintain, characterized in that, Include: The server chassis mounting rack (1) and several server chassis (2); both sides of the server chassis mounting rack (1) are stepped from top to bottom, the inside of the server chassis mounting rack (1) is connected by several bearing plates (9), the bearing plate (9) and the server chassis mounting rack (1) form several corridors, each layer of the server chassis (2) is installed on the side of the server chassis mounting rack (1), the back of the server chassis (2) is communicated with the inside of the server chassis mounting rack (1), the inside of the server chassis mounting rack (1) is installed with a server rack (202), the inside of the server rack (202) is installed with several server components (201); The server chassis mounting rack (1) is installed on the side of the server chassis mounting rack (1), the other end of the server chassis mounting rack (1) is installed with a second side frame (6), the first side frame (5) and the second side frame (6) are provided with several stairs (12) on both sides, the maintenance box (3) and the stairs (12) are convenient for workers to quickly enter the back of each server chassis (2) for maintenance and maintenance.
2. The large server of claim 1, wherein, The first side frame (5) is installed with several first fan boxes (8), the second side frame (6) is installed with several second fan boxes (7), the top of the server chassis mounting rack (1) is installed with a third fan box (4), the inside of the first fan box (8), the second fan box (7) and the third fan box (4) is installed with an inner frame (501), the inner frame (501) is installed with several fans (502), the front and back of the first fan box (8), the second fan box (7) and the third fan box (4) are installed with fan box doors (503) with mesh through hinges; The third fan box (4) is used to blow air into the server chassis mounting rack (1), and the first fan box (8) and the second fan box (7) are used to exhaust air outside the server chassis mounting rack (1), so that the heat inside the server is discharged.
3. The large server of claim 2, wherein, The bearing plate (9) is a hollow metal plate, which is used for the third fan box (4) to blow air into the server chassis mounting rack (1), so that the heat of the server chassis (2) in each layer of the server chassis (2) is quickly discharged.
4. The large server of claim 2, wherein, Each of the server chassis (2) is installed with several temperature and humidity sensors (203) for monitoring the temperature and humidity of the server components (201) in the server chassis (2), the temperature and humidity sensor (203) is electrically connected with the internal fan (502) of the first fan box (8), the second fan box (7) and the third fan box (4) through the controller, when the average temperature data or average humidity data of all temperature and humidity sensors exceeds the set data, the controller controls the internal fan (502) of the first fan box (8), the second fan box (7) and the third fan box (4) to work, so that the heat inside the server is discharged.
5. The large server of claim 4, wherein, The server cabinet (2) and the maintenance cabinet (3) are provided with electric telescopic rods (204) on both sides, the top of the electric telescopic rod (204) is provided with a connecting plate (205), the connecting plate (205) is provided with a ventilation door (206), the front bottom of the server cabinet (2) is provided with a telescopic rod control switch (207), and the electric telescopic rod (204) is electrically connected with the telescopic rod control switch (207) through a controller; when all the fans (502) in the first fan cabinet (8), the second fan cabinet (7) and the third fan cabinet (4) are started, and the temperature and humidity of the server cabinet (2) still do not reach the set data, the controller controls the electric telescopic rod (204) to open all the ventilation doors (206), so that the purpose of rapid cooling is achieved.
6. The large server of claim 5, wherein, The ventilation door (206) is a tempered glass door, one end of the server cabinet mounting rack (1) is provided with a control cabinet (13) at the bottom, the control cabinet (13) is electrically connected with the electric telescopic rod (204) on each server cabinet (2), and the electric telescopic rod (204) is used for controlling the electric telescopic rod (204) to rise to a preset height, so that the ventilation door (206) not only plays a role of a guardrail, but also the server maintenance and maintenance can be directly carried out without opening the server cabinet door.
7. The large server of claim 4, wherein the large server is characterized by, The controller is in communication connection with a remote terminal, and is used for notifying the remote terminal to alarm when the average temperature data or the average humidity data of all the temperature and humidity sensors exceeds the set data.
8. The large server of easy maintenance and disassembly according to any one of claims 4-7, characterized in that, The top of each corridor is provided with a monitoring mechanism (14), the monitoring mechanism (14) comprises a horizontal rack track (1401) and a vertical rack track (1402), one end of the horizontal rack track (1401) is provided with a first speed reducer (1405), one side of the first speed reducer (1405) is provided with a first motor (1406), the other side of the first speed reducer (1405) is connected with a first screw lead screw (1404), the first screw lead screw (1404) is threadedly connected with a first sliding block (1403), the bottom of the first sliding block (1403) is provided with the vertical rack track (1402), the bottom of the vertical rack track (1402) is provided with a second speed reducer (1410), the bottom of the second speed reducer (1410) is provided with a second motor (1409), the top of the second speed reducer (1410) is connected with a second screw lead screw (1408), the second screw lead screw (1408) is threadedly connected with a second sliding block (1411), and the front and back surfaces of the second sliding block (1411) are provided with cameras (1412).
9. The large server of claim 8, wherein, The first motor (1406) drives the gear in the first speed reducer (1405) to rotate, thereby driving the first threaded lead screw (1404) to rotate, and the rotation of the first threaded lead screw (1404) drives the first sliding block (1403) to move, thereby realizing the horizontal movement of the camera (1412); the second motor (1409) drives the gear in the second speed reducer (1410) to rotate, thereby driving the second threaded lead screw (1408) to rotate, and the rotation of the second threaded lead screw (1408) drives the second sliding block (1411) to move, thereby realizing the vertical movement of the camera (1412), and thereby comprehensively monitoring the back of all servers on the same height ladder.
10. The large server of claim 9, wherein, The controller is further configured to acquire monitoring videos of all cameras and send the acquired monitoring videos to a remote terminal, so as to remotely monitor the back of all servers on the same height ladder on the server case mounting rack (1) by the remote terminal.
Citation Information
Patent Citations
Monitoring management equipment and management method for large-scale server
CN114867320A
Modular High-Rise Data Centers and Methods Thereof
US20160249484A1