Server flushing equipment capable of automatically uploading data
By designing a server flushing device that automatically uploads data, the existing equipment has solved the problem of low automation and poor real-time performance in test data upload, monitoring and judgment, exception handling, etc., and efficient data upload and exception handling are achieved, improving the overall quality.
Patent Information
- Application Number
- CN202411442827.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-16
- Publication Date
- 2025-06-24
AI Technical Summary
The existing server flushing equipment has problems such as low automation, poor real-time data and untimely abnormal handling in terms of test data upload, monitoring and judgment, exception handling, etc.
A server flushing device that automatically uploads data is designed, including flushing device body, monitoring and control module, host computer and network communication module. The device automatically determines whether the data complies with the regulations by monitoring the key data during the flushing process in real time, and automatically uploads the test data and test results through the network communication module.
It realizes the high degree of automation of the flushing equipment, ensures real-time upload of data and timely abnormal handling, and improves work efficiency and overall quality.
Smart Images

Figure CN120190155A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of server flushing, and particularly to a server flushing device for automatically uploading data. Background Art
[0002] In the field of information technology, a server is a core device responsible for processing, storing, and forwarding data. However, during operation, a server may experience performance degradation or malfunctions due to dust accumulation or liquid splashing. To maintain the stable operation of the server, it needs to be regularly cleaned and maintained. A server flushing device is a device dedicated to cleaning the inside and outside of a server;
[0003] Currently, most server flushing devices on the market operate in a stand-alone mode and have the following problems:
[0004] Test data cannot be automatically uploaded: After the test is completed, employees need to manually fill in the data and upload it to the designated location, which not only consumes a lot of time but also easily leads to confusion and errors;
[0005] Lack of monitoring and judgment functions: The device cannot real-time monitor key data during the flushing process, nor can it automatically judge whether the data meets the regulations;
[0006] Abnormal handling is not timely: Due to the lack of real-time monitoring and judgment mechanisms, the device cannot notify the operator in a timely manner when an abnormality occurs, which may cause the product to flow into the next process and affect the overall quality.
[0007] To solve the above problems, an automatic data-uploading server flushing device is proposed in this application. Summary of the Invention
[0008] Based on the technical problems existing in the background art, the present invention proposes an automatic data-uploading server flushing device.
[0009] An automatic data-uploading server flushing device proposed by the present invention includes:
[0010] A flushing device body for flushing the server;
[0011] A monitoring and control module for real-time monitoring of key data during the flushing process and controlling the operating state of the flushing device body;
[0012] A host computer for real-time listening to the signals of the slave computer, sending instructions to the flushing device body, automatically recording data, and judging whether the data is within the control range;
[0013] A network communication module for realizing data communication between the flushing device body and the host computer, and uploading test data and test results;
[0014] The monitoring and control module is connected to the main body of the flushing device, and the monitoring and control module is communicatively connected to the host computer through the network communication module.
[0015] Preferably, the main body of the flushing device includes a water tank, a booster pump, a water supply flushing pipe, a monitoring instrument, and a drain pipe. The booster pump is connected to and communicates with the bottom of the water tank. The water supply flushing pipe is connected to the water outlet end of the booster pump. A plurality of flushing heads for server flushing are connected to the drainage end of the water supply flushing pipe. The drain pipe is used to discharge the flushing sewage. A plurality of water inlet joints connected to the server are communicated with the water inlet end of the drain pipe. The drainage end of the drain pipe is connected to a floor drain. The number of the monitoring instruments is two groups, and the two groups of monitoring instruments are respectively installed on the water supply flushing path of the water supply flushing pipe and the drainage path of the drain pipe.
[0016] Preferably, the monitoring instrument includes a flow meter, a turbidity meter, a conductivity meter, a pH meter, and a pressure sensor. The two groups of flow meters, turbidity meters, conductivity meters, pH meters, and pressure sensors are respectively installed on the water supply flushing path of the water supply flushing pipe and the drainage path of the drain pipe.
[0017] Preferably, the monitoring and control module includes:
[0018] A PLC storage unit, which is respectively connected to the flow meter, the turbidity meter, the conductivity meter, the pH meter, and the pressure sensor, is used to monitor the flow meter, the turbidity meter, the conductivity meter, the pH meter, and the pressure sensor in real time, and store the key data for the host computer to read in real time to determine whether it meets the regulations;
[0019] A PLC control unit, which is connected to the PLC storage unit, judges whether the operating state of the device needs to be adjusted according to the real-time data stored in the PLC storage unit and in combination with the preset logic program. If so, a control signal is sent to the main body of the flushing device through the output interface to adjust the operating state of the main body of the flushing device;
[0020] Both the PLC storage unit and the PLC control unit are communicatively connected to the host computer through the network communication module.
[0021] Preferably, the network communication module includes:
[0022] A network module unit: responsible for establishing a network connection between the main body of the flushing device and the host computer, Ethernet or wireless network;
[0023] A communication protocol: defines the format, content, and method of data transmission between the main body of the flushing device and the host computer to ensure accurate and reliable data transmission.
[0024] Preferably, the host computer includes:
[0025] Data receiving and processing unit: responsible for receiving the data uploaded from the monitoring and control module, parsing, processing, and storing it;
[0026] Instruction sending unit: According to user operations or preset programs, send control instructions to the lower computer to adjust the operating state of the flushing equipment body or execute specific test tasks;
[0027] Data storage and traceability unit: Store the received data and test results in a local database or file for subsequent query, analysis, and traceability;
[0028] Abnormal handling unit: When data anomalies or equipment failures are detected, automatically trigger corresponding handling mechanisms, such as alarming, recording error messages, and executing fault recovery programs.
[0029] Preferably, ball valves are installed on the paths of both the water supply flushing pipe and the drain pipe, and a pressure gauge is also installed on the path of the water supply flushing pipe.
[0030] The above technical solution of the present invention has the following beneficial technical effects:
[0031] High degree of automation: The flushing equipment body can automatically monitor the key data during the flushing process and automatically judge whether the data meets the regulations without manual intervention.
[0032] Real-time data upload: The test data and test results can be automatically uploaded to the designated location, reducing the workload of manual filling and uploading and improving work efficiency.
[0033] Timely abnormal handling: The upper computer system can monitor the lower computer signals in real time, discover and handle abnormal situations in a timely manner, prevent products from flowing into the next link, and improve the overall quality. BRIEF DESCRIPTION OF THE DRAWINGS
[0034] Figure 1 It is a schematic structural diagram of a server flushing device for automatically uploading data proposed by the present invention.
[0035] Figure 2 It is a block diagram of a server flushing device for automatically uploading data proposed by the present invention.
[0036] Reference numerals: 1, flushing equipment body; 11, water tank; 12, booster pump; 13, water supply flushing pipe; 14, monitoring instrument; 141, flow meter; 142, turbidimeter; 143, conductivity meter; 144, pH meter; 145, pressure sensor; 15, drain pipe. DETAILED DESCRIPTION OF THE INVENTION
[0037] To make the objectives, technical solutions, and advantages of the present invention clearer and more understandable, the present invention will be further described in detail below in conjunction with specific embodiments and with reference to the accompanying drawings. It should be understood that these descriptions are merely exemplary and are not intended to limit the scope of the present invention. In addition, in the following descriptions, the descriptions of well-known structures and technologies are omitted to avoid unnecessarily confusing the concepts of the present invention.
[0038] As Figure 1 shown in connection with Figure 2 Figure, the flushing device body 1 proposed by the present invention is used to flush the server.
[0039] The monitoring and control module is used to monitor the key data during the flushing process in real time and control the operating state of the flushing device body 1.
[0040] The host computer is used to listen to the signals of the slave computer in real time, send instructions to the flushing device body 1, automatically record data, and determine whether the data is within the control range.
[0041] The network communication module realizes data communication between the flushing device body 1 and the host computer, and uploads the test data and test results.
[0042] The monitoring and control module is connected to the flushing device body 1, and the monitoring and control module is communicatively connected to the host computer through the network communication module.
[0043] In a specific embodiment, the flushing device body 1 includes a water tank 11, a booster pump 12, a water supply flushing pipe 13, a monitoring instrument 14, and a drain pipe 15. The booster pump 12 is connected to the bottom of the water tank 11 and communicates with it. The water supply flushing pipe 13 is connected to the water outlet end of the booster pump 12. A plurality of flushing heads for flushing the server are connected to the drainage end of the water supply flushing pipe 13. The drain pipe 15 is used to discharge the flushing sewage. A plurality of water inlet joints connected to the server are communicated with the water inlet end of the drain pipe 15. The drainage end of the drain pipe 15 is connected to a floor drain. The number of monitoring instruments 14 is two groups, and the two groups of monitoring instruments 14 are respectively installed on the water supply flushing path of the water supply flushing pipe 13 and the drainage path of the drain pipe 15.
[0044] In a specific embodiment, the monitoring instrument 14 includes a flow meter 141, a turbidimeter 142, a conductivity meter 143, a pH meter 144, and a pressure sensor 145. The two groups of flow meters 141, turbidimeters 142, conductivity meters 143, pH meters 144, and pressure sensors 145 are respectively installed on the water supply flushing path of the water supply flushing pipe 13 and the drainage path of the drain pipe 15.
[0045] In a specific embodiment, the monitoring and control module includes:
[0046] The PLC storage unit is respectively connected to the flowmeter 141, the turbidity meter 142, the conductivity meter 143, the pH meter 144, and the pressure sensor 145. It is used to monitor the flowmeter 141, the turbidity meter 142, the conductivity meter 143, the pH meter 144, and the pressure sensor 145 in real time, and store the key data for the host computer to read in real time to determine whether it meets the regulations.
[0047] The PLC control unit is connected to the PLC storage unit. According to the real-time data stored in the PLC storage unit and combined with the preset logic program, it judges whether the operating state of the equipment needs to be adjusted. If so, it sends a control signal to the flushing equipment body 1 through the output interface to adjust the operating state of the flushing equipment body 1.
[0048] Both the PLC storage unit and the PLC control unit are communicatively connected to the host computer through the network communication module.
[0049] In a specific embodiment, the network communication module includes:
[0050] The network module unit: responsible for establishing a network connection between the flushing equipment body 1 and the host computer, either Ethernet or wireless network.
[0051] The communication protocol: defines the format, content, and method of data transmission between the flushing equipment body 1 and the host computer to ensure accurate and reliable data transmission.
[0052] In a specific embodiment, the host computer includes:
[0053] The data receiving and processing unit: responsible for receiving the data uploaded from the monitoring and control module, parsing, processing, and storing it.
[0054] The instruction sending unit: according to user operations or preset programs, sends control instructions to the lower computer to adjust the operating state of the flushing equipment body 1 or execute specific test tasks.
[0055] The data storage and traceability unit: stores the received data and test results in the local database or file for subsequent query, analysis, and traceability.
[0056] The exception handling unit: when detecting data anomalies or equipment failures, automatically triggers corresponding processing mechanisms, such as alarm, recording error information, and executing fault recovery programs.
[0057] In a specific embodiment, ball valves are installed on the paths of both the water supply flushing pipe 13 and the drain pipe 15, and a pressure gauge is also installed on the path of the water supply flushing pipe 13.
[0058] Working principle of this device: The water inlet connectors on the drain pipe 15 can be respectively connected to the corresponding servers. Then, the water in the water tank 11 can be guided into the water supply and flushing pipe 13 through the booster pump 12. The corresponding servers can be flushed through the flushing heads on the water supply and flushing pipe 13. The sewage generated during flushing can be discharged through the drain pipe 15. During the process of flushing the servers, the flow meter 141, turbidimeter 142, conductivity meter 143, pH meter 144, and pressure sensor 145 can be monitored in real time through the PLC storage unit, and the key data can be stored, which is convenient for the upper computer to read in real time through the network communication module to determine whether it meets the regulations. When data anomalies or equipment failures are detected, the corresponding processing mechanism is automatically triggered, and the processing signal is transmitted to the PLC control unit through the network communication module. The PLC control unit combines the real-time data stored in the PLC storage unit and the preset logic program to determine whether the operating state of the equipment needs to be adjusted. If so, a control signal is sent to the flushing equipment body 1 through the output interface to adjust the operating state of the flushing equipment body 1. Throughout the process, the upper computer will continuously monitor the signals of the lower computer and send corresponding instructions to the flushing equipment body 1 according to the information feedback by the lower computer. At the same time, the upper computer will also automatically record and store all received data and judge in real time whether these data are within the specified control range. After the test is completed, if any abnormal situation is found, the upper computer will prompt the operator in time to prevent defective products from entering the next link, thereby improving the product quality.
[0059] It should be understood that the above specific embodiments of the present invention are only used for exemplary illustration or explanation of the principle of the present invention, and do not constitute a limitation to the present invention. Therefore, any modifications, equivalent replacements, improvements, etc. made without departing from the spirit and scope of the present invention shall be included within the protection scope of the present invention. In addition, the appended claims of the present invention are intended to cover all variations and modifications that fall within the scope and boundaries of the appended claims, or equivalent forms of such scope and boundaries.
Claims
1. A server flushing device for automatically uploading data, characterized in that: include: A flushing device body (1) is used to flush the server; A monitoring and control module, used for real-time monitoring of key data during the flushing process and controlling the operating state of the flushing device body (1); The upper computer is used to monitor the signals of the lower computer in real time, send instructions to the flushing equipment body (1), automatically record data, and determine whether the data is within the control range; A network communication module is used to realize data communication between the flushing device body (1) and the host computer, and to upload test data and test results; The monitoring and control module is connected to the flushing equipment body (1), and the monitoring and control module is connected to the host computer through the network communication module.
2. A server flushing device for automatically uploading data according to claim 1, characterized in that: The flushing device body (1) comprises a water tank (11), a booster water pump (12), a water supply flushing pipe (13), a monitoring instrument (14) and a drainage pipe (15); the booster water pump (12) is connected to the bottom of the water tank (11) and communicated therewith; the water supply flushing pipe (13) is connected to the water outlet of the booster water pump (12); the drainage end of the water supply flushing pipe (13) is connected to a plurality of flushing heads for flushing servers; the drainage pipe (15) is used to discharge the flushed sewage; the water inlet end of the drainage pipe (15) is communicated to a plurality of water inlet joints connected to the servers; the drainage end of the drainage pipe (15) is connected to a floor drain; the number of the monitoring instruments (14) is two groups, and the two groups of the monitoring instruments (14) are respectively installed on the water supply flushing path of the water supply flushing pipe (13) and the drainage path of the drainage pipe (15).
3. A server flushing device for automatically uploading data according to claim 2, characterized in that: The monitoring instrument (14) comprises a flow meter (141), a turbidity meter (142), a conductivity meter (143), a pH meter (144) and a pressure sensor (145); two groups of the flow meter (141), the turbidity meter (142), the conductivity meter (143), the pH meter (144) and the pressure sensor (145) are respectively installed on the water supply flushing path of the water supply flushing pipe (13) and the drainage path of the drainage pipe (15).
4. The server flushing device for automatically uploading data according to claim 3, characterized in that: The monitoring control module comprises: A PLC storage unit, the PLC storage unit is connected to the flow meter (141), the turbidity meter (142), the conductivity meter (143), the pH meter (144), and the pressure sensor (145) respectively, and is used to monitor the flow meter (141), the turbidity meter (142), the conductivity meter (143), the pH meter (144), and the pressure sensor (145) in real time, and store key data to facilitate the host computer to read in real time and judge whether it meets the regulations; A PLC control unit, the PLC control unit being connected to the PLC storage unit, and judging whether the operating state of the device needs to be adjusted according to the real-time data stored in the PLC storage unit and in combination with a preset logic program, and if necessary, sending a control signal to the flushing device body (1) through an output interface to adjust the operating state of the flushing device body (1); The PLC storage unit and the PLC control unit are both connected to the host computer through a network communication module.
5. The server flushing device for automatically uploading data according to claim 4, characterized in that: The network communication module includes: Network module unit: responsible for establishing a network connection between the flushing device body (1) and the host computer, Ethernet or wireless network; Communication protocol: defines the format, content and method of data transmission between the flushing equipment body (1) and the host computer to ensure accurate and reliable data transmission.
6. The server flushing device for automatically uploading data according to claim 5, characterized in that: The host computer comprises: Data receiving and processing unit: responsible for receiving data uploaded from the monitoring and control module, parsing, processing and storing; Instruction sending unit: according to user operation or preset program, sends control instructions to the lower computer to adjust the operating state of the flushing device body (1) or perform a specific test task; Data storage and traceability unit: stores the received data and test results in a local database or file for subsequent query, analysis and traceability; Exception handling unit: When data anomalies or equipment failures are detected, the corresponding processing mechanisms are automatically triggered, such as alarms, error message recording, and fault recovery procedures.
7. The server flushing device for automatically uploading data according to claim 2, characterized in that: Ball valves are installed on the paths of the water supply flushing pipe (13) and the drainage pipe (15), and a pressure gauge is also installed on the path of the water supply flushing pipe (13).