Cooling system for computer

By introducing temperature sensor-controlled condensing water circulation and silent fans into the computer cooling system, the problem of traditional cooling systems ignoring the heat and noise of the monitor is solved, and efficient and quiet cooling of the host and monitor is achieved, ensuring the stability and service life of the computer.

CN120848701APending Publication Date: 2025-10-28毛凯
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Patent Information

Application Number
CN202510938676.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-08
Publication Date
2025-10-28

AI Technical Summary

Technical Problem

Traditional computer cooling systems ignore monitor heat, resulting in poor overall cooling effects. Existing systems are also noisy, affecting computer performance and stability, especially when used in quiet environments.

Method used

A computer cooling system is designed, which includes a tray, a storage component, a host computer, a monitor, first and second heat dissipation components, and a control terminal. The system monitors the temperature through a temperature sensor, controls the solenoid valve and micro motor to start the condensation water circulation and the silent fan for heat dissipation, and effectively cools the host computer and the monitor respectively to avoid noise generation.

Benefits of technology

It achieves efficient heat dissipation for the computer host and monitor, reduces the overall operating temperature, ensures long-term stable operation of the computer and hardware lifespan, and provides a quiet operating environment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a heat dissipation system for a computer, which relates to the technical field of computer hardware and comprises a supporting plate and a storage component arranged at the top of the supporting plate. The device comprises a storage part, a host arranged in the storage part, a first heat dissipation part arranged on the working face of the top of the storage part, a displayer arranged on one side of the storage part, a second heat dissipation part arranged on the working face of one side of the displayer and a control terminal arranged in the host. The two sides of the storage part are open, the open end of one side of the storage part is connected with the first heat dissipation part, and the first heat dissipation part is used for dissipating heat of the host; the second heat dissipation part is used for dissipating heat of the display; through the arrangement of the first heat dissipation part and the second heat dissipation part, efficient heat dissipation of a computer host and a display is achieved, the overall working temperature of a computer is effectively reduced, long-term stable operation of the computer is guaranteed, and the service life of computer hardware is prolonged.
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Description

Technical Field

[0001] This invention relates to the field of computer hardware technology, and in particular to a heat dissipation system for computers. Background Technology

[0002] Computers are increasingly used in work and life, and their performance and stability are crucial for users. With the continuous improvement of computer processing power and the increasing complexity of running tasks, the heat generated by computers during operation has also increased dramatically. However, excessively high operating temperature has become a key factor affecting computer performance, stability and lifespan.

[0003] Traditional computer cooling systems focus only on cooling the computer host, neglecting the heat generated by the monitor during operation. This results in poor overall cooling performance, and the computer may still experience performance degradation, crashes, or even hardware damage due to overheating during operation. In addition, while some existing cooling systems can effectively reduce temperature, they are often accompanied by significant noise, leading to a poor user experience, especially in quiet environments such as offices or personal use scenarios. Summary of the Invention

[0004] The purpose of this invention is to provide a heat dissipation system for computers, thereby solving the technical problems existing in the prior art.

[0005] In order to achieve the above-mentioned object of the invention, the technical solution adopted by the present invention is:

[0006] A computer cooling system includes: a tray, a storage component disposed on top of the tray, a host computer disposed within the storage component, a first heat dissipation component disposed on the top working surface of the storage component, a display disposed on one side of the storage component, a second heat dissipation component disposed on the working surface of one side of the display, and a control terminal disposed within the host computer; the storage component has openings on both sides, with one open end connected to the first heat dissipation component, the first heat dissipation component being used to dissipate heat from the host computer; and the second heat dissipation component being used to dissipate heat from the display.

[0007] Furthermore, the storage component includes: a housing, a support frame disposed on the inner wall of the housing, and a vent plate disposed on the bottom working surface of the housing; a temperature sensor is provided on the inner wall of the housing; the main unit is mounted on the top of the support frame, and the main unit is connected to the first heat dissipation component through a connecting pipe; multiple sets of vent holes are provided on the vent plate, and the vent holes are symmetrically arranged; pads are provided on both sides of the bottom of the housing, and a preset working distance is left between the bottom of the housing and the top working surface of the tray.

[0008] Furthermore, the first heat dissipation component includes: a slide rod, a first condenser box and a second condenser box disposed at both ends of the slide rod, and a heat exchange component slidably connected to the slide rod; a filling pipe is provided on the top of the first condenser box; sliders are provided on both sides of the heat exchange component, the sliders are slidably connected to the slide rod, and two adjacent heat exchange components are connected to each other; a fan is provided on the first condenser box and the second condenser box.

[0009] Furthermore, the heat exchange component includes: a heat exchange plate and heat dissipation fins disposed on the heat exchange plate; the heat exchange plate is hollow inside, with a partition on its inner wall, and an inlet and an outlet on each side; the main unit is connected to the inlet and outlet; two adjacent heat exchange plates are connected to each other by a connecting hose, and a solenoid valve is disposed at the end of the connecting hose near the first condenser box.

[0010] Furthermore, the second heat dissipation component includes: a silent fan and heat dissipation holes; the silent fan is disposed on one side of the display and is connected to the output end of a micro motor; the heat dissipation holes are disposed on one side of the display and are located on both sides of the silent fan.

[0011] Furthermore, the top working surface of the table is connected to the monitor via a support base, and a storage box is provided on one side of the table; the table body is slidably connected to the drawer.

[0012] Furthermore, the control terminal is electrically connected to the solenoid valve, temperature sensor, and micro motor. Compared with the prior art, the present invention has the following beneficial effects:

[0013] This invention, through the arrangement of a first heat dissipation component and a second heat dissipation component, allows the temperature sensor to transmit an electrical signal to a control terminal when it detects that the internal temperature of the casing is too high and requires heat dissipation. The control terminal then activates a solenoid valve. At this time, condensate in the first heat dissipation component is sent to the heat exchange plate through the first condensation tank and connecting hose. The condensate flows within the heat exchange plate and heat dissipation fins, thereby dissipating the heat generated by the host. Subsequently, the condensate flows back into the first condensation tank through the second condensation tank, passing through the heat exchange plate and heat dissipation fins again, achieving repeated heat dissipation. By adjusting the position and number of heat exchange plates on the slide rod, the heat dissipation area is increased, improving heat dissipation efficiency. A micro motor in the second heat dissipation component drives a silent fan to rotate, thereby efficiently dissipating heat from the monitor. Through the above components, efficient heat dissipation of the computer host and monitor is achieved, effectively reducing the overall operating temperature of the computer while eliminating noise, ensuring long-term stable operation of the computer, and extending the service life of the computer hardware. Attached Figure Description

[0014] Figure 1 This is the front view of the present invention;

[0015] Figure 2This is a side view of the storage component of the present invention;

[0016] Figure 3 This is a front view of the breathable plate of the present invention;

[0017] Figure 4 This is a front view of the first heat dissipation component of the present invention;

[0018] Figure 5 This is a schematic diagram of the internal structure of the heat exchange plate of the present invention;

[0019] Figure 6 This is a schematic diagram showing the connection between the second heat dissipation component and the display of the present invention;

[0020] In the diagram: 1. Table body; 2. Tray; 3. Storage component; 301. Shell; 302. Support frame; 303. Connecting pipe; 304. Ventilation plate; 305. Pad; 306. Ventilation hole; 4. Main unit; 5. Monitor; 6. Support base; 7. Storage box; 8. Drawer; 9. First heat dissipation component; 901. Filling pipe; 902. Slide bar; 903. Slider; 904. First condenser box; 905. Second condenser box; 906. Heat exchange component; 9061. Heat exchange plate; 9062. Water inlet; 9063. Heat dissipation fins; 9064. Water outlet; 907. Fan; 10. Solenoid valve; 11. Temperature sensor; 12. Second heat dissipation component; 1201. Silent fan; 1202. Miniature motor; 1203. Heat dissipation hole. Detailed Implementation

[0021] To make the content of this invention easier to understand, the technical solutions of the embodiments of this invention will be clearly and completely described below with reference to the accompanying drawings. Identical components are represented by the same reference numerals. It should be noted that the terms "front," "rear," "left," "right," "up," and "down" used in the following description refer to directions in the accompanying drawings, while the terms "inner" and "outer" refer to directions toward or away from the geometric center of a specific component, respectively.

[0022] like Figure 1As shown, this embodiment provides a computer cooling system, including: a tray 2, a storage component 3 disposed on the top of the tray 2, a host computer 4 disposed within the storage component 3, a first heat dissipation component 9 disposed on the top working surface of the storage component 3, a display 5 disposed on one side of the storage component 3, a second heat dissipation component 12 disposed on the working surface of one side of the display 5, and a control terminal disposed within the host computer 4; the bottom of the tray 2 is provided with casters, which are connected to the bottom working surface of the tray 2 via telescopic rods, allowing the operator to adjust the position of the host computer 4 as needed; the storage component 3 has openings on both sides, with one open end connected to the first heat dissipation component 9, which is used to dissipate heat from the host computer 4. The first heat dissipation component 9 increases the heat dissipation area, thereby improving the overall cooling performance. To improve heat dissipation efficiency, the first condenser box 904, the second condenser box 905, and the fan 907 in the first heat dissipation component 9 further enhance the heat dissipation effect, enabling the heat generated by the host 4 to be quickly removed without generating noise, thereby ensuring the long-term stable operation of the host 4 and providing operators with a stable working environment; the second heat dissipation component 12 is used to dissipate heat from the display 5, and can dissipate the heat generated by the display 5 during operation in a timely manner, ensuring the stable performance of the display 5. The silent fan 1201 reduces operating noise and provides operators with a comfortable operating environment; the control terminal is electrically connected to the solenoid valve 10, the temperature sensor 11, and the micro motor 1202, and the control terminal is used to control the start and stop of the solenoid valve 10 and the micro motor 1202.

[0023] like Figure 2-3As shown, the storage component 3 includes: a housing 301, a support frame 302 disposed on the inner wall of the housing 301, and a ventilated plate 304 disposed on the bottom working surface of the housing 301; a temperature sensor 11 is provided on the inner wall of the housing 301, the temperature sensor 11 being a TMP117, which can sense the temperature change inside the housing 301 in real time, convert the detected temperature analog signal into a digital signal, and transmit the digital signal to the control terminal. When the digital signal received by the control terminal exceeds a threshold, it controls the first heat dissipation component 9 to start; when the temperature is lower than the threshold, it controls the first heat dissipation component 9 to stop working, thereby achieving efficient heat dissipation of the host 4; the main The main unit 4 is installed on the top of the support frame 302. The main unit 4 is connected to the first heat dissipation component 9 through the connecting pipe 303. The vent plate 304 has multiple sets of vent holes 306, which are symmetrically arranged. The vent plate 304 is located at the lower end of the main unit 4. The bottom sides of the housing 301 are provided with pads 305. The bottom of the housing 301 and the top working surface of the support plate 2 are left with a preset working distance. During operation, the heat emitted by the main unit 4 is dissipated through the first heat dissipation component 9 and the vent holes 306. The arrangement of the vent plate 304 and the vent holes 306 prevents heat accumulation at the bottom of the main unit 4, thereby achieving efficient heat dissipation.

[0024] like Figure 2-5 As shown, the first heat dissipation component 9 includes: a slide rod 902, a first condensing tank 904 and a second condensing tank 905 disposed at both ends of the slide rod 902, and a heat exchange component 906 slidably connected to the slide rod 902; the top of the first condensing tank 904 is provided with a filling pipe 901, through which the operator adds condensate to the first condensing tank 904; the heat exchange component 906 is provided with sliders 903 on both sides, and the sliders 903 have circular through holes, which are slidably connected to the slide rod 902, with adjacent two... The heat exchange components 906 are interconnected. The sliding rod 902 and slider 903 can be set to adjust the position and number of heat exchange components 906 according to the power of the main unit 4. When the power of the main unit 4 is large, the operator can put multiple sets of heat exchange components 906 into the sliding rod 902. The first condensing box 904 and the second condensing box 905 are equipped with fans 907. The fans 907 can dissipate heat from the condensate in the first condensing box 904 and the second condensing box 905. The fans 907 are small in size and do not generate much noise during use.

[0025] The heat exchange component 906 includes: a heat exchange plate 9061 and heat dissipation fins 9063 disposed on the heat exchange plate 9061; the heat exchange plate 9061 is made of copper or stainless steel, preferably copper, and is hollow inside with a partition on its inner wall, which divides the interior of the heat exchange plate 9061 into two liquid storage chambers; the heat exchange plate 9061 has an inlet 9062 and an outlet 9064 on its two sides respectively; the main board in the host 4 is connected to the inlet 9062 and the outlet 9064, and the condensate is supplied to the main board through the connecting pipe 303. Heat dissipation; two adjacent heat exchange plates 9061 are connected to each other via a connecting hose. A solenoid valve 10 is located at one end of the connecting hose near the first condenser 904. A silent pump is located on one side of the solenoid valve 10. The silent pump is used to send the returned condensate back to the heat exchange plate 9061 and the heat dissipation fins 9063 through the inlet 9062. During operation, when the temperature sensor 11 detects a temperature change inside the housing 301 exceeding a threshold and transmits an electrical signal to the control terminal, the control terminal activates the solenoid valve 10 and the silent pump, which then send the condensate to... Within the heat exchange plate 9061 and heat dissipation fins 9063, part of the heat dissipation plate 9061 and heat dissipation fins 9063 dissipates heat generated by the host 4, while the other part dissipates heat directly to the motherboard through the connecting pipe 303. At this time, condensate enters the heat exchange plate 9061 and heat dissipation fins 9063 through the inlet 9062, and then flows into the second condensation tank 905. At this time, the fan 907 installed on the first condensation tank 904 and the second condensation tank 905 rotates to dissipate the heated condensate. Then, the condensate in the second condensation tank 905 exits through the outlet 9062. The condensate flows from the heat exchange plate 9061 and the heat dissipation fins 9063 to the first condensing tank 904. At this time, the first condensing tank 904 uses a silent pump to pump the returned condensate back into the heat exchange plate 9061 and the heat dissipation fins 9063 through the inlet 9062. The above process is repeated in sequence, thereby achieving heat dissipation of the heat generated by the host 4 and the motherboard. The setting of temperature sensor 11, solenoid valve 10 and control terminal can achieve efficient circulation and precise heat dissipation, ensuring that the host 4 can effectively dissipate heat under different working loads, saving energy and improving heat dissipation effect.

[0026] like Figure 6As shown, the second heat dissipation component 12 includes: a silent fan 1201 and heat dissipation holes 1203; the silent fan 1201 is disposed on one side of the display 5 and is connected to the output end of the micro motor 1202; the heat dissipation holes 1203 are disposed on one side of the display 5 and located on both sides of the silent fan 1201; during operation, the operator actively turns on the micro motor 1202 through the control terminal, and the micro motor 1202 drives the silent fan 1201 to dissipate heat from the display 5; when the micro motor 1202 is not started, the heat generated by the display 5 can be dissipated through the heat dissipation holes 1203, and the silent fan 1201 ensures that the display 5 does not generate noise when dissipating heat, thus providing a comfortable working environment for the operator.

[0027] Specifically, the top working surface of the table body 1 is connected to the display 5 via a support base 6, and the support base 6 has a storage box 7 on one side; the table body 1 is slidably connected to a drawer 8, and the top working surface of the drawer 8 can be used to place a keyboard.

[0028] The above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention should be included within the scope of protection of the present invention.

Claims

1. A heat dissipation system for computers, characterized in that: include: The device comprises a tray (2), a storage component (3) on top of the tray (2), a host (4) inside the storage component (3), a first heat dissipation component (9) on the top working surface of the storage component (3), a display (5) on one side of the storage component (3), a second heat dissipation component (12) on one side working surface of the display (5), and a control terminal inside the host (4). The storage component (3) has openings on both sides, and one open end is connected to the first heat dissipation component (9). The first heat dissipation component (9) is used to dissipate heat from the host (4). The second heat dissipation component (12) is used to dissipate heat from the display (5).

2. The computer cooling system according to claim 1, characterized in that: The storage component (3) includes: a housing (301), a support frame (302) disposed on the inner wall of the housing (301), and a ventilated plate (304) disposed on the bottom working surface of the housing (301); a temperature sensor (11) is provided on the inner wall of the housing (301); the host (4) is installed on the top of the support frame (302), and the host (4) is connected to the first heat dissipation component (9) through a connecting pipe (303); ventilation holes (306) are opened on the ventilated plate (304), and there are multiple sets of ventilation holes (306) arranged symmetrically; pads (305) are provided on both sides of the bottom of the housing (301), and a preset working distance is left between the bottom of the housing (301) and the top working surface of the tray (2).

3. The computer cooling system according to claim 2, characterized in that: The first heat dissipation component (9) includes: a slide rod (902), a first condensing box (904) and a second condensing box (905) disposed at both ends of the slide rod (902), and a heat exchange component (906) slidably connected to the slide rod (902); a filling pipe (901) is provided on the top of the first condensing box (904); sliders (903) are provided on both sides of the heat exchange component (906), the sliders (903) are slidably connected to the slide rod (902), and two adjacent heat exchange components (906) are connected to each other; a fan (907) is provided on the first condensing box (904) and the second condensing box (905).

4. The computer cooling system according to claim 3, characterized in that: The heat exchange component (906) includes: a heat exchange plate (9061) and heat dissipation fins (9063) disposed on the heat exchange plate (9061); the heat exchange plate (9061) is hollow inside, its inner wall is provided with a partition, and its two sides are respectively provided with a water inlet (9062) and a water outlet (9064); the main unit (4) is connected to the water inlet (9062) and the water outlet (9064); two adjacent heat exchange plates (9061) are connected to each other through a connecting hose, and a solenoid valve (10) is provided at the end of the connecting hose near the first condenser box (904).

5. The computer cooling system according to claim 4, characterized in that: The second heat dissipation component (12) includes: a silent fan (1201) and heat dissipation holes (1203); the silent fan (1201) is disposed on one side of the display (5) and is connected to the output end of the micro motor (1202); the heat dissipation holes (1203) are disposed on one side of the display (5) and are located on both sides of the silent fan (1201).

6. The computer cooling system according to claim 1, characterized in that: The top working surface of the table (1) is connected to the display (5) via a support base (6), and a storage box (7) is provided on one side of the table (1); the table (1) is slidably connected to the drawer (8).

7. The computer cooling system according to claim 1, characterized in that: The control terminal is electrically connected to the solenoid valve (10), temperature sensor (11), and micro motor (1202).