Computer information safety calculation processing water-cooling heat dissipation intelligent box

Through the temperature sensing and regulation components, the water-cooled heat dissipation mode is automatically adjusted, combined with auxiliary fans and cleaning components, the heat dissipation problem of computer information security calculation and processing equipment during high load operation is solved, and efficient and intelligent heat dissipation and stable operation of the equipment are achieved.

CN120406693APending Publication Date: 2025-08-01KUNRUI HARDWARE TECH IND (DONGGUAN) CO LTD
View PDF 0 Cites 1 Cited by

Patent Information

Application Number
CN202510568783.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-30
Publication Date
2025-08-01

AI Technical Summary

Technical Problem

When existing computer information security computing and processing equipment runs at high load, air-cooled heat dissipation efficiency is low and noisy, while ordinary water-cooled heat dissipation lacks intelligent regulation functions, making it difficult to achieve efficient and intelligent heat dissipation, resulting in excessive temperature of the equipment, affecting performance and safety.

Method used

The temperature sensing components and control components are adopted to automatically adjust the water-cooled heat dissipation mode according to the internal temperature changes of the equipment, and combine water circulation and auxiliary heat dissipation fans to achieve precise heat dissipation; it is equipped with cleaning components, and the cooling fins are automatically cleaned by driving the cleaning board through the servo motor.

Benefits of technology

Accurate heat dissipation regulation based on the temperature changes of the equipment is realized, which improves heat dissipation efficiency, reduces energy consumption, extends the equipment life, and simplifies the maintenance process.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120406693A_ABST
    Figure CN120406693A_ABST
Patent Text Reader

Abstract

A computer information safety calculation processing water-cooling heat dissipation intelligent box belongs to the technical field of computer auxiliary heat dissipation and comprises a case and a water pump fixedly connected to the case, a water-cooling heat dissipation assembly is arranged on the case, and a temperature sensing assembly used for detecting ambient temperature is further fixedly connected to one side of the case. The temperature sensing assembly is internally provided with a regulation and control assembly used for controlling starting and stopping of the water-cooling heat dissipation assembly, and the water-cooling heat dissipation assembly comprises a plurality of sets of heat dissipation fins fixedly connected to the case and a water storage tank fixedly connected to the top of the case. According to the device, energy waste is avoided through intelligent regulation and control, when the equipment temperature is reduced to a certain degree and powerful heat dissipation is not needed, part of heat dissipation equipment can be automatically turned off, and the water pump is turned off until the temperature is completely reduced, so that the heat dissipation effect is guaranteed, energy consumption is reduced, and meanwhile, through arrangement of the cleaning assembly, the cleaning efficiency is improved. And the cooling fins can be cleaned, so that the maintenance cost is reduced, and the service life of equipment is prolonged.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of computer-aided heat dissipation, and particularly to an intelligent water-cooled heat dissipation box for computer information security computing and processing. Background Art

[0002] During the operation of information processing devices, a large amount of heat is generated. If the heat dissipation is not timely or the effect is not good, it will cause the internal temperature of the device to be too high. This will not only affect the performance of the device, resulting in a decrease in the operation speed and errors in data transmission, but may also cause hardware failures, such as chip burnout and circuit board damage, which will further threaten the secure processing and storage of computer information and even cause serious consequences such as data loss.

[0003] Currently, the common heat dissipation methods for computer information security computing and processing devices mainly include air-cooled heat dissipation and ordinary water-cooled heat dissipation. Air-cooled heat dissipation mainly relies on a cooling fan to blow out the heat inside the device, but this method has a relatively low heat dissipation efficiency. When the device is running at high load, it is difficult to meet the heat dissipation requirements, and the long-term operation of the fan will generate relatively large noise. Although ordinary water-cooled heat dissipation improves the heat dissipation efficiency to a certain extent, it lacks an intelligent regulation function and cannot automatically adjust the heat dissipation intensity according to the change of the internal temperature of the device, making it difficult to achieve efficient and intelligent heat dissipation. Summary of the Invention

[0004] The purpose of the present invention is to provide an intelligent water-cooled heat dissipation box for computer information security computing and processing to solve the problems mentioned in the above background art.

[0005] To achieve the above purpose, the present invention adopts the following technical solutions:

[0006] An intelligent water-cooled heat dissipation box for computer information security computing and processing, including a chassis and a water pump fixedly connected to the chassis. A water-cooled heat dissipation component is provided on the chassis. A temperature sensing component for detecting the surrounding temperature is fixedly connected to one side of the chassis. A regulation component for controlling the opening and closing of the water-cooled heat dissipation component is provided in the temperature sensing component. The water-cooled heat dissipation component includes a plurality of heat dissipation fins fixedly connected to the chassis and a water storage tank fixedly connected to the top of the chassis. The water inlet end of the water storage tank is communicated with the water pump on the chassis;

[0007] A cleaning component for cleaning a plurality of heat dissipation fins is also provided on one side of the chassis.

[0008] Furthermore, a coolant is provided in the water storage tank. The water outlet end of the water storage tank is threadedly connected with a connector. Two water pipes are communicated with the connector. The other ends of the two water pipes penetrate through a plurality of heat dissipation fins. The water outlet ends of the two water pipes are communicated with a circulation pipe. The other end of the circulation pipe is fixedly connected with a heating element.

[0009] Furthermore, on one side of the chassis away from the cleaning component, an auxiliary heat dissipation box is fixedly connected. A heat dissipation fan for assisting the heat dissipation fins to dissipate heat is fixedly connected in the auxiliary heat dissipation box, and a driving motor for driving the heat dissipation fan to start is also fixedly connected in the auxiliary heat dissipation box.

[0010] Furthermore, the temperature sensing component includes a sensing box fixedly connected to one side of the chassis. A thermometer is fixedly connected to the sensing box. Air inlets are fixedly connected to both sides of the sensing box. Heat conducting plates are fixedly connected to one side of the sensing box near the two air inlets. A connecting pipe is fixedly connected between the two heat conducting plates, and a low-boiling-point liquid is arranged in the connecting pipe.

[0011] Furthermore, a partition plate is fixedly connected in the sensing box. A regulating pipe is fixedly connected to the bottom of the partition plate, and the other end of the regulating pipe communicates with the connecting pipe. The regulating component is fixedly connected to the partition plate. A first transmission line and a second transmission line connected to the regulating component are fixedly connected to the top of the sensing box. The other end of the first transmission line is connected to the water pump on the chassis through a connecting wire, and the other end of the second transmission line is connected to the driving motor in the auxiliary heat dissipation box through a connecting wire.

[0012] Furthermore, the regulating component includes a fixed box fixedly connected to the partition plate. Adjusting grooves are formed on the opposite surfaces of the fixed box. Metal plates are fixedly connected in the two adjusting grooves, and the metal plates are connected to the first transmission line through connecting wires.

[0013] Furthermore, a fixed shaft is fixedly connected to the top of the inner wall of the fixed box. A trigger switch is slidably connected to the bottom of the fixed shaft, and the trigger switch is connected to the second transmission line through a connecting wire.

[0014] Furthermore, the regulating component further includes a piston rod slidably connected in the regulating pipe. A piston piece is fixedly connected to the bottom of the piston rod. The piston piece is slidably connected in the regulating pipe, and the side wall of the piston piece is in contact with the inner wall of the regulating pipe. A connecting plate is fixedly connected to the top of the piston rod. The two ends of the connecting plate are respectively slidably connected in the adjacent adjusting grooves, and conductive sheets adapted to the metal plates are fixedly connected to both ends of the connecting plate.

[0015] Furthermore, the cleaning component includes two groups of fixing plates, the two groups of fixing plates are respectively fixedly connected to both sides of the chassis, the opposite surfaces of the two fixing plates are both provided with sliding grooves, a driving screw rod is rotatably connected in one of the sliding grooves, and an auxiliary sliding rod is fixedly connected in the other sliding groove. A cleaning plate is slidably connected between the two fixing plates. One end of the cleaning plate close to the driving screw rod is threadedly connected to the driving screw rod, and one end of the cleaning plate close to the auxiliary sliding rod is slidably connected to the auxiliary sliding rod. Multiple scraping plates are also fixedly connected to one side of the cleaning plate close to multiple groups of heat dissipation fins, and the multiple scraping plates are respectively inserted between adjacent two groups of heat dissipation fins;

[0016] A servo motor is also fixedly connected to the bottom of the fixing plate close to the driving screw rod, and the output end of the servo motor is fixed to the driving screw rod through a coupling.

[0017] Compared with the prior art, the above scheme has the following beneficial effects:

[0018] 1. Through the setting of the temperature sensing component and the regulation component, the present invention can accurately regulate the heat dissipation mode according to the internal temperature change of the information processing device. When the device starts to generate heat and the temperature rises, the hot air is conducted to the heat conduction plate through the air inlet, and then the low-boiling-point liquid in the connecting pipe is vaporized and expanded to push the piston sheet upward, so that the conductive sheet gradually contacts the metal plate, triggering the start of the water pump and driving the coolant to circulate for cooling;

[0019] If the temperature continues to rise, the piston rod and the piston sheet continue to move upward, the connecting plate contacts the trigger switch, and the driving motor drives the heat dissipation fan to start for auxiliary heat dissipation. When the temperature drops, the gas liquefies, and the piston sheet drives the component to move downward under the action of the pressure difference. First, the driving motor is turned off, and the water circulation continues to cool. After the temperature completely drops, the conductive sheet is separated from the metal plate, and the water pump is turned off. This mechanism of automatically switching the heat dissipation mode according to the temperature can accurately respond to different heating situations, achieve efficient heat dissipation, and ensure the stable operation of the device.

[0020] By setting intelligent regulation, the waste of energy is avoided. When the temperature of the device drops to a certain extent and strong heat dissipation is not required, some heat dissipation devices can be automatically turned off, and only the water circulation is relied on to maintain cooling. Until the temperature completely drops, the water pump is turned off. This design of flexibly adjusting the heat dissipation intensity according to actual needs not only ensures the heat dissipation effect but also reduces energy consumption, meeting the concept of energy conservation and environmental protection.

[0021] 2. The present invention is also equipped with a convenient cleaning device. Starting the servo motor drives the driving screw rod to rotate, and the cleaning plate can move along the sliding groove, while driving multiple scraping plates to move, scraping off the dust on the heat dissipation fins. This design makes the cleaning of the heat dissipation fins simple and easy. Users can easily complete the cleaning work without complex operations and professional tools, reducing the maintenance cost and extending the service life of the device. Description of the Drawings

[0022] Figure 1 The first - perspective structural schematic diagram of an intelligent water - cooled heat - dissipation box for computer information security computing and processing proposed by the present invention;

[0023] Figure 2 The second - perspective structural schematic diagram of an intelligent water - cooled heat - dissipation box for computer information security computing and processing proposed by the present invention;

[0024] Figure 3 The structural schematic diagram of the temperature - sensing component in an intelligent water - cooled heat - dissipation box for computer information security computing and processing proposed by the present invention;

[0025] Figure 4 The structural schematic diagram of the interior of the induction box in an intelligent water - cooled heat - dissipation box for computer information security computing and processing proposed by the present invention;

[0026] Figure 5 The partial structural schematic diagram of the regulation component in an intelligent water - cooled heat - dissipation box for computer information security computing and processing proposed by the present invention;

[0027] Figure 6 In the intelligent water - cooled heat - dissipation box for computer information security computing and processing proposed by the present invention Figure 1 The enlarged schematic diagram of the structure at point A above;

[0028] Figure 7 The structural schematic diagram of the cleaning component in an intelligent water - cooled heat - dissipation box for computer information security computing and processing proposed by the present invention.

[0029] In the figure: 1. Chassis; 11. Water storage tank; 12. Circulation pipe; 13. Water delivery pipe; 14. Connector; 15. Auxiliary heat - dissipation box; 2. Heat - dissipation fins; 3. Temperature - sensing component; 31. Induction box; 32. Thermometer; 33. Air inlet; 34. Heat - conducting plate; 35. Connecting pipe; 36. Adjusting pipe; 37. Partition plate; 38. First transmission line; 39. Second transmission line; 4. Regulation component; 41. Fixed box; 42. Adjusting groove; 43. Piston rod; 44. Piston sheet; 45. Connecting plate; 46. Conductive sheet; 47. Fixed shaft; 48. Trigger switch; 49. Metal plate; 5. Cleaning component; 51. Fixed plate; 52. Slide groove; 53. Cleaning plate; 54. Transmission screw; 55. Scraper; 56. Servo motor; 57. Auxiliary slide bar. Detailed implementation manners

[0030] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments.

[0031] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "upper", "lower", "top surface", "bottom surface", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the indicated position or element must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation of the present invention. In addition, the terms "first" and "second" are only used to distinguish one entity or operation from another entity or operation, and do not require or imply any actual relationship, order or relative importance between these entities or operations.

[0032] Embodiment 1

[0033] Referring to Figure 1-7 , a computer information security computing and processing water-cooled intelligent box for heat dissipation, including a chassis 1 and a water pump fixedly connected to the chassis 1. A water-cooled heat dissipation component is arranged on the chassis 1. A temperature sensing component 3 for detecting the surrounding temperature is also fixedly connected to one side of the chassis 1. A regulating component 4 for controlling the opening and closing of the water-cooled heat dissipation component is arranged in the temperature sensing component 3. The water-cooled heat dissipation component includes multiple groups of heat dissipation fins 2 fixedly connected to the chassis 1 and a water storage tank 11 fixedly connected to the top of the chassis 1. The water inlet end of the water storage tank 11 is communicated with the water pump on the chassis 1. A cleaning component 5 for cleaning multiple groups of heat dissipation fins 2 is also arranged on one side of the chassis 1. A coolant is arranged in the water storage tank 11. The water outlet end of the water storage tank 11 is threadedly connected with a connector 14. Two groups of water pipes 13 are communicated with the connector 14. The other ends of the two groups of water pipes 13 are both arranged through multiple groups of heat dissipation fins 2. The water outlet ends of the two groups of water pipes 13 are communicated with a circulation pipe 12. The other end of the circulation pipe 12 is fixedly connected with a heating element. An auxiliary heat dissipation box 15 is also fixedly connected to the side of the chassis 1 away from the cleaning component 5. A heat dissipation fan for assisting the heat dissipation fins 2 to dissipate heat is fixedly connected in the auxiliary heat dissipation box 15. A driving motor for driving the heat dissipation fan to start is also fixedly connected in the auxiliary heat dissipation box 15;

[0034] When using this device, first install this device at the air outlet end of the information processing device, and fix the circulation pipe 12 to the heating element of the information processing device (such as the CPU in the device box). When the information processing device starts, heat will be generated, causing the temperature inside the device to rise. At the same time, the temperature sensing component 3 on the chassis 1 senses the temperature change, the temperature sensing component 3 starts and triggers the regulating component 4, and the regulating component 4 drives the water-cooled heat dissipation component to start to cool the inside of the device;

[0035] When the control component 4 is triggered, the control component 4 first starts the water pump. After the water pump starts, the coolant in the water storage tank 11 is conveyed through the connector 14 into the water delivery pipe 13, so that the coolant is conveyed through one of the water delivery pipes 13 into the circulation pipe 12, and the heat generated by the heating element is absorbed through the circulation pipe 12. The coolant after absorbing the heat rises in temperature, and is conveyed through the circulation pipe 12 into the other water delivery pipe 13. The coolant flows in the water delivery pipe 13. When the coolant flows to the heat dissipation fins 2, the heat dissipation fins 2 dissipate the heat, so that the coolant returns to a lower temperature and flows back into the water storage tank 11, and heat dissipation is carried out through continuous circulation;

[0036] Meanwhile, when the temperature inside the device keeps rising and the heat dissipation effect cannot be achieved only by the coolant circulation, the control component 4 triggers the driving motor in the auxiliary heat dissipation box 15 to start. The driving motor drives the heat dissipation fan to start. While the heat dissipation fan accelerates the heat dissipation of the heat dissipation fins 2, it further blows out the hot air inside the information processing device, further accelerating the heat dissipation efficiency.

[0037] In this embodiment, the temperature sensing component 3 includes a sensing box 31 fixedly connected to one side of the chassis 1. A thermometer 32 is fixedly connected to the sensing box 31. Air inlets 33 are fixedly connected to both sides of the sensing box 31. Heat conduction plates 34 are fixedly connected to one side of the sensing box 31 near the two air inlets 33. A communicating pipe 35 is fixedly connected between the two heat conduction plates 34. A low-boiling-point liquid is arranged in the communicating pipe 35. A partition plate 37 is also fixedly connected in the sensing box 31. A regulating pipe 36 is fixedly connected to the bottom of the partition plate 37, and the other end of the regulating pipe 36 communicates with the communicating pipe 35. The control component 4 is fixedly connected to the partition plate 37. A first transmission line 38 and a second transmission line 39 connected to the control component 4 are also fixedly connected to the top of the sensing box 31. The other end of the first transmission line 38 is connected to the water pump on the chassis 1 through a connecting wire, and the other end of the second transmission line 39 is connected to the driving motor in the auxiliary heat dissipation box 15 through a connecting wire;

[0038] During use, when the temperature inside the information processing device rises, the hot air is conducted to the heat conduction plates 34 through the air inlets 33 on both sides of the sensing box 31. The heat conduction plates 34 conduct the temperature into the communicating pipe 35. The low-boiling-point liquid in the communicating pipe 35 is vaporized and expanded by the hot air, and moves upward through the regulating pipe 36. The upward moving gas pushes the control component 4 to start, so that the control component 4 drives the water pump to start the circulating heat dissipation work;

[0039] When the temperature inside the device continues to rise, the low-boiling-point liquid in the communicating pipe 35 is completely vaporized, and pushes the control component 4 in the regulating pipe 36 to move upward continuously, so that the control component 4 controls the driving motor to start, and further dissipates heat through the heat dissipation fan;

[0040] When the temperature inside the device gradually decreases, the gas in the connecting pipe 35 gradually liquefies, its volume decreases, and the liquefied liquid after volume reduction flows back through the regulating pipe 36, no longer jacking up the regulating component 4. The regulating component 4 moves downward under the action of the air pressure difference, gradually closing the cooling fan and the water pump, and completing the heat dissipation work.

[0041] In this embodiment, the regulating component 4 includes a fixed box 41 fixedly connected to the partition plate 37. Adjusting grooves 42 are formed on the opposite surfaces of the fixed box 41. Metal plates 49 are fixedly connected in both of the two adjusting grooves 42, and the metal plates 49 are connected to the first transmission line 38 through connecting wires. A fixed shaft 47 is also fixedly connected to the top of the inner wall of the fixed box 41. A trigger switch 48 is slidably connected to the bottom of the fixed shaft 47, and the trigger switch 48 is connected to the second transmission line 39 through a connecting wire. The regulating component 4 further includes a piston rod 43 slidably connected in the regulating pipe 36. A piston piece 44 is fixedly connected to the bottom of the piston rod 43. The piston piece 44 is slidably connected in the regulating pipe 36, and the side wall of the piston piece 44 is in contact with the inner wall of the regulating pipe 36. A connecting plate 45 is fixedly connected to the top of the piston rod 43. The two ends of the connecting plate 45 are respectively slidably connected in the adjacent adjusting grooves 42, and conductive sheets 46 adapted to the metal plates 49 are fixedly connected to both ends of the connecting plate 45;

[0042] When the low-boiling-point liquid in the connecting pipe 35 vaporizes, the gas will first push the piston piece 44, causing the piston piece 44 to slide in the regulating pipe 36. When the piston piece 44 slides, it simultaneously pushes the piston rod 43 and the connecting plate 45 upward, causing the conductive sheet 46 to gradually contact the metal plate 49 in the adjusting groove 42. When the conductive sheet 46 contacts the two metal plates 49, a signal is sent to the water pump through the first transmission line 38 to trigger the start of the water pump, causing the water pump to drive the coolant to circulate for cooling;

[0043] When the temperature inside the device continues to rise, the piston rod 43 and the piston piece 44 continue to move upward under the push of the gas in the regulating pipe 36. When the connecting plate 45 contacts the trigger switch 48, the trigger switch 48 sends a signal to the drive motor through the second transmission line 39 to start the drive motor and drive the cooling fan to start for auxiliary heat dissipation;

[0044] When the temperature inside the device gradually decreases, the gas in the connecting pipe 35 gradually liquefies, no longer jacking up the piston piece 44. The piston piece 44 drives the piston rod 43 and the connecting plate 45 to move downward under the action of the air pressure difference. The connecting plate 45 first disengages from the trigger switch 48, turning off the drive motor. At this time, the conductive sheet 46 still contacts the metal plate 49, and the water circulation continues. The device is further cooled through the water circulation. When the temperature completely drops, the piston rod 43 and the connecting plate 45 move completely downward, and the conductive sheet 46 disengages from the metal plate 49, turning off the water pump, and completing the heat dissipation work.

[0045] In this embodiment, the cleaning component 5 includes two sets of fixing plates 51, which are respectively fixedly connected to both sides of the chassis 1. The facing surfaces of the two fixing plates 51 are both provided with sliding grooves 52. A transmission screw 54 is rotatably connected in one of the sliding grooves 52, and an auxiliary sliding rod 57 is fixedly connected in the other sliding groove 52. A cleaning plate 53 is slidably connected between the two fixing plates 51. One end of the cleaning plate 53 close to the transmission screw 54 is threadedly connected to the transmission screw 54, and one end of the cleaning plate 53 close to the auxiliary sliding rod 57 is slidably connected to the auxiliary sliding rod 57. On the side of the cleaning plate 53 close to the multiple sets of heat dissipation fins 2, multiple sets of scraping plates 55 are also fixedly connected. The multiple sets of scraping plates 55 are respectively inserted between two adjacent sets of heat dissipation fins 2. At the bottom of the fixing plate 51 close to the transmission screw 54, a servo motor 56 is also fixedly connected. The output end of the servo motor 56 is fixed to the transmission screw 54 through a coupling;

[0046] When dust accumulates on the heat dissipation fins 2 and affects heat dissipation, first start the servo motor 56 to drive the transmission screw 54 to rotate. When the transmission screw 54 rotates, the cleaning plate 53 moves along the sliding groove 52 under the drive of the transmission screw 54, and at the same time drives the multiple scraping plates 55 to move. When the scraping plates 55 move, the dust on the heat dissipation fins 2 is scraped off;

[0047] When cleaning work is carried out, the heat dissipation fan can be started at the same time to suck out the dust, preventing the dust from falling on the heat dissipation fins 2 again.

[0048] The working principle of the present invention:

[0049] When using this device, first install this device at the air outlet end of the information processing device and fix the circulation pipe 12 to the heating element of the information processing device. When the information processing device is started, heat will be generated and the temperature inside the device will rise;[[ID=I3]]

[0050] When the temperature inside the information processing device rises, the hot air will be conducted to the heat conduction plate 34 through the air inlets 33 on both sides of the induction box 31. The heat conduction plate 34 conducts the temperature to the communication pipe 35. The low-boiling liquid in the communication pipe 35 is vaporized and expanded by the hot air and moves upward through the adjustment pipe 36. The upward moving gas pushes the piston piece 44, causing the piston piece 44 to slide in the adjustment pipe 36. When the piston piece 44 slides, it simultaneously pushes the piston rod 43 and the connecting plate 45 upward, making the conductive sheet 46 gradually contact the metal plate 49 in the adjustment groove 42. When the conductive sheet 46 contacts the two metal plates 49, a signal is sent to the water pump through the first transmission line 38 to trigger the start of the water pump, causing the water pump to drive the coolant to circulate for cooling;

[0051] As the temperature inside the device continues to rise, the piston rod 43 and the piston plate 44 continue to move upward under the push of the gas in the regulating tube 36. When the connecting plate 45 contacts the trigger switch 48, the trigger switch 48 sends a signal to the drive motor through the second transmission line 39, which starts the drive motor and drives the cooling fan to start auxiliary heat dissipation.

[0052] When the temperature inside the device gradually drops, the gas in the connecting pipe 35 gradually liquefies and no longer pushes up the piston plate 44. Under the action of the air pressure difference, the piston plate 44 drives the piston rod 43 and the connecting plate 45 to move downward. The connecting plate 45 first disengages from the trigger switch 48, turning off the drive motor. At this time, the conductive sheet 46 is still in contact with the metal plate 49, and the water circulation continues. The temperature inside the device continues to be lowered by the water circulation. When the temperature is completely lowered, the piston rod 43 and the connecting plate 45 move completely downward, the conductive sheet 46 disengages from the metal plate 49, and the water pump is turned off, completing the heat dissipation work.

[0053] When dust accumulates on the heat dissipation fins 2 and affects heat dissipation, the servo motor 56 is first started to drive the transmission screw 54 to rotate. When the transmission screw 54 rotates, the cleaning plate 53 moves along the slide 52 under the drive of the transmission screw 54, and at the same time drives multiple scrapers 55 to move. When the scrapers 55 move, the dust on the heat dissipation fins 2 is scraped off.

[0054] It should be noted that the various devices in this application are common devices in the market, and can be selected according to specific needs during specific use. The circuit connection relationship of each device is a simple series and parallel connection circuit. There is no innovation in the circuit connection part. Those skilled in the art can implement it relatively easily. It belongs to the existing technology and will not be elaborated on.

[0055] Although the present invention is disclosed as above, the present invention is not limited thereto. Any person skilled in the art can make various changes and modifications without departing from the spirit and scope of the present invention. Therefore, the scope of protection of the present invention should be based on the scope defined by the claims.

Claims

1. A computer information security computing and processing water-cooled intelligent box, comprising a chassis (1) and a water pump fixedly connected to the chassis (1), characterized in that, A water-cooled heat dissipation component is provided on the chassis (1). A temperature sensing component (3) for detecting the surrounding temperature is fixedly connected to one side of the chassis (1). A regulation component (4) for controlling the opening and closing of the water-cooled heat dissipation component is provided in the temperature sensing component (3). The water-cooled heat dissipation component includes multiple groups of heat dissipation fins (2) fixedly connected to the chassis (1) and a water storage tank (11) fixedly connected to the top of the chassis (1). The water inlet end of the water storage tank (11) is communicated with a water pump on the chassis (1). A cleaning component (5) for cleaning multiple groups of heat dissipation fins (2) is also provided on one side of the chassis (1).

2. The intelligent box for water-cooled heat dissipation in computer information security computing and processing according to claim 1, wherein Coolant is provided in the water storage tank (11). A connector (14) is threadedly connected to the water outlet end of the water storage tank (11). Two water pipes (13) are communicated with the connector (14). The other ends of the two water pipes (13) are respectively disposed through multiple groups of heat dissipation fins (2). The water outlet ends of the two water pipes (13) are communicated with a circulation pipe (12). The other end of the circulation pipe (12) is fixedly connected to a heating element.

3. The intelligent box for water-cooled heat dissipation in computer information security computing and processing according to claim 1, characterized in that, An auxiliary heat dissipation box (15) is fixedly connected to the side of the chassis (1) far from the cleaning component (5). A heat dissipation fan for assisting the heat dissipation fins (2) to dissipate heat is fixedly connected in the auxiliary heat dissipation box (15). A drive motor for driving the heat dissipation fan to start is also fixedly connected in the auxiliary heat dissipation box (15).

4. The intelligent box for water-cooled heat dissipation in computer information security computing and processing according to claim 1, characterized in that, The temperature sensing component (3) includes a sensing box (31) fixedly connected to one side of the chassis (1). A thermometer (32) is fixedly connected to the sensing box (31). Air inlets (33) are fixedly connected to both sides of the sensing box (31). Heat conducting plates (34) are fixedly connected to one side of the sensing box (31) near the two air inlets (33). A communicating pipe (35) is fixedly connected between the two heat conducting plates (34). A low-boiling-point liquid is provided in the communicating pipe (35).

5. The intelligent box for water-cooled heat dissipation in computer information security computing and processing according to claim 4, characterized in that, A partition plate (37) is also fixedly connected in the sensing box (31). An adjusting pipe (36) is fixedly connected to the bottom of the partition plate (37), and the other end of the adjusting pipe (36) is communicated to the communicating pipe (35). The regulation component (4) is fixedly connected to the partition plate (37). A first transmission line (38) and a second transmission line (39) connected to the regulation component (4) are fixedly connected to the top of the sensing box (31). The other end of the first transmission line (38) is connected to the water pump on the chassis (1) through a connecting wire. The other end of the second transmission line (39) is connected to the drive motor in the auxiliary heat dissipation box (15) through a connecting wire.

6. The intelligent box for water-cooled heat dissipation in computer information security computing and processing according to claim 5, characterized in that, The regulation component (4) includes a fixed box (41). The fixed box (41) is fixedly connected to the partition plate (37). Adjusting grooves (42) are respectively formed on the opposite surfaces of the fixed box (41). Metal plates (49) are fixedly connected in the two adjusting grooves (42), and the metal plates (49) are connected to the first transmission line (38) through connecting wires.

7. The computer information security computing and processing water cooling and heat dissipation intelligent box according to claim 6, characterized in that: At the top of the inner wall of the fixed box (41), a fixed shaft (47) is further fixedly connected. A trigger switch (48) is slidably connected to the bottom of the fixed shaft (47). The trigger switch (48) is connected to the second transmission line (39) through a connecting wire.

8. A computer information security computing and processing water-cooled intelligent box according to claim 7, characterized in that, The control component (4) further includes a piston rod (43) slidably connected in the adjustment tube (36). A piston piece (44) is fixedly connected to the bottom of the piston rod (43). The piston piece (44) is slidably connected in the adjustment tube (36), and the side wall of the piston piece (44) is in contact with the inner wall of the adjustment tube (36). A connecting plate (45) is fixedly connected to the top of the piston rod (43). The two ends of the connecting plate (45) are respectively slidably connected in the adjacent adjustment grooves (42). Electrically conductive sheets (46) adapted to the metal plates (49) are also fixedly connected to both ends of the connecting plate (45).

9. The intelligent box for water-cooled heat dissipation in computer information security computing and processing according to claim 1, characterized in that, The cleaning component (5) includes two groups of fixing plates (51). The two groups of fixing plates (51) are respectively fixedly connected to both sides of the chassis (1). Sliding grooves (52) are formed on the opposite surfaces of the two fixing plates (51). A transmission screw rod (54) is rotatably connected in one of the sliding grooves (52). An auxiliary sliding rod (57) is fixedly connected in the other sliding groove (52). A cleaning plate (53) is slidably connected between the two fixing plates (51). One end of the cleaning plate (53) close to the transmission screw rod (54) is threadedly connected to the transmission screw rod (54). One end of the cleaning plate (53) close to the auxiliary sliding rod (57) is slidably connected to the auxiliary sliding rod (57). A plurality of scraping plates (55) are also fixedly connected to one side of the cleaning plate (53) close to the plurality of heat dissipation fins (2). The plurality of scraping plates (55) are respectively inserted between two adjacent groups of heat dissipation fins (2); A servo motor (56) is further fixedly connected to the bottom of the fixing plate (51) close to the transmission screw rod (54). The output end of the servo motor (56) is fixed to the transmission screw rod (54) through a coupling.

Citation Information

Cited By

  • Reinforced case for military industry and aerospace equipment

    CN122340777A