Intelligent heat dissipation computer for information system integration
By introducing temperature sensors and automated cooling systems into the computer, the problems of low efficiency and insufficient automation of existing computer cooling systems are solved, intelligent cooling adjustment is realized, and the working stability and reliability of the computer are improved.
Patent Information
- Application Number
- CN202510144101.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-10
- Publication Date
- 2025-05-30
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The cooling system of existing computers is inefficient and lacks automation, so it cannot be adjusted in real time according to the specific temperature of the computer.
An intelligent heat dissipation computer is designed, using a temperature sensor to monitor the internal temperature of the computer in real time. When the temperature is too high, the heat dissipation fan and exhaust fan are automatically started, and the heat dissipation plate is fixed through the positioning column and limiting components to ensure the stable operation of the heat dissipation system.
It realizes intelligent heat dissipation adjustment based on the actual working temperature of the computer, improves the working stability and reliability of the computer, and avoids performance degradation or damage caused by long-term high temperature operation.
Smart Images

Figure CN120066216A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of computer devices, and particularly to a computer with intelligent heat dissipation for information system integration. Background Art
[0002] An electronic computer, generally known as a computer, is a modern electronic computing device used for high-speed calculations. It can perform numerical calculations and logical calculations, has a storage and memory function, can run according to a program, and automatically and rapidly process a large amount of data. The common components of a computer include a mainframe, a display, a keyboard, a mouse, and speakers. There are also printers and scanners, which are important output and input devices of the computer.
[0003] The mainframe of an ordinary computer dissipates heat through a fan, but its heat dissipation effect is limited, the degree of automation is low, and the size of the heat dissipation holes on the chassis is fixed, making it inconvenient to temporarily adjust the air intake volume of the chassis according to the specific temperature of the computer, resulting in low heat dissipation efficiency. Summary of the Invention
[0004] (I) Technical Problems to be Solved
[0005] In view of the deficiencies of the prior art, the present invention provides a computer with intelligent heat dissipation for information system integration.
[0006] (II) Technical Solutions
[0007] To achieve the above object, the present invention provides the following technical solution: A computer with intelligent heat dissipation for information system integration, including a computer main body. A temperature sensor is provided inside the computer main body. A heat dissipation plate and a positioning post passing through the heat dissipation plate are provided on one side of the computer main body. Heat dissipation fins are provided on the heat dissipation plate;
[0008] Two grooves are symmetrically arranged at the upper and lower ends of the heat dissipation plate. Two positioning grooves are symmetrically arranged on the inner wall of the groove. Two limiting components are symmetrically arranged up and down on one side of the computer main body. The limiting component includes a fixing plate, a screw rod, a vertical rod, a bearing frame, two first gears and two moving blocks. The bearing frame is fixed on the outer wall of the computer main body and is located inside the groove. The fixing plate is fixed at the top and bottom of the computer main body. The middle part of the first gear is fixedly provided with a positioning shaft. One end of the positioning shaft is rotatably connected to the computer main body, and a second gear located inside the first gear is fixedly provided on the positioning shaft. The vertical rod is located between the two first gears and meshes with the first gears. The top of the vertical rod is provided with a top plate. The outer end of the top plate is provided with a guide rod penetrating the fixing plate. The screw rod penetrates the fixing plate and is inserted into the interior of the vertical rod. The screw rod is threadedly connected to the vertical rod. The screw rod is rotatably connected to the fixing plate. The two moving blocks are symmetrically arranged at the upper end of the bearing frame and are slidably connected to the bearing frame. The second gear is located above the moving block and meshes with the moving block. The outer end of the moving block is provided with a positioning block inserted into the positioning groove.
[0009] A fixing frame is arranged on the outer side of the heat dissipation plate. A heat dissipation fan is fixedly arranged on the fixing frame. Two shells are symmetrically arranged on the other two sides of the computer main body. The shell is communicated with the computer main body, and a plurality of air permeable cavities are arranged on the shell. A disc is rotatably arranged in the middle part of the shell. A plurality of frames are arranged on the circumferential side of the disc. A dust-proof net for blocking the air permeable cavity is arranged on the frame. A second motor is arranged inside the shell. The output end of the second motor is provided with a second rotating shaft connected to the disc. The second motor, the heat dissipation fan and the temperature sensor are all connected through electrical signals.
[0010] In order to make the installation of the heat dissipation plate more firm, the improvement of the present invention is that a plurality of the positioning columns respectively penetrate the four corners of the heat dissipation plate.
[0011] Furthermore, the improvement of the present invention is that the first gear, the second gear and the positioning shaft are of an integral structure.
[0012] In order to improve the stability of the positioning block during sliding, the improvement of the present invention is that an empty groove is arranged at the top end of the bearing frame. The bottom of the moving block is inserted into the empty groove and can move in the empty groove.
[0013] In order to facilitate the assembly of the shell, the improvement of the present invention is that a fixing ring is arranged on the circumferential side of the shell. The fixing ring is fixed on the outer wall of the computer main body by screws.
[0014] Furthermore, the improvement of the present invention is that an exhaust fan is further arranged inside the shell. The exhaust fan is located behind the second motor, and the exhaust fan is connected to the temperature sensor through electrical signals.
[0015] In order to facilitate the adjustment of the position of the cooling fan, the improvement of the present invention is that two guide rails are symmetrically arranged on both sides of the heat dissipation plate, two positioning seats slidably matched with the guide rails are symmetrically arranged at both ends of the fixing frame, a locking rod is provided on the positioning seat, the locking rod is threadedly connected with the positioning seat, and one end of the locking rod contacts the outer wall of the heat dissipation plate.
[0016] In order to facilitate the cleaning of the heat dissipation fins, the improvement of the present invention is that a first motor is provided on one side of the fixing frame, a first rotating shaft located on one side of the heat dissipation plate is provided at the output end of the first motor, and a brush for cleaning the heat dissipation fins is provided on the first rotating shaft.
[0017] (III) Beneficial effects
[0018] Compared with the prior art, the present invention provides a computer for intelligent heat dissipation in information system integration, having the following beneficial effects:
[0019] Through the real-time monitoring of the internal temperature of the computer by the temperature sensor, when the temperature is too high, the cooling fan and the exhaust fan can be automatically started, and intelligent heat dissipation adjustment can be performed according to the actual working temperature of the computer, avoiding the decline or damage of the computer performance caused by long-term high-temperature operation, improving the working stability and reliability of the computer, and the temperature sensor sends an electric signal to the second motor to start it and reduce the shielding degree of the air permeable cavity, increasing the heat ventilation volume;
[0020] The brush on the fixing frame can clean the heat dissipation fins, preventing the dust accumulation on the heat dissipation fins from affecting the heat dissipation effect, and the fixing frame can slide on the guide rail, facilitating the comprehensive cleaning of the heat dissipation fins by the brush;
[0021] The heat dissipation plate is positioned and fixed through the positioning column and the limiting component, with a firm structure, ensuring that the heat dissipation plate will not loosen or shift due to factors such as the vibration of the cooling fan during the operation of the computer, and guaranteeing the stable operation of the heat dissipation system. Brief description of the drawings
[0022] Figure 1 It is a three-dimensional structure schematic diagram of the present invention;
[0023] Figure 2 For the present invention Figure 1 The front view;
[0024] Figure 3 It is an installation structure schematic diagram of the exhaust fan in the present invention;
[0025] Figure 4 For the present invention Figure 1 The partial enlarged structure schematic diagram at A in it;
[0026] Figure 5 For the present invention Figure 1Schematic diagram of the partial enlarged structure at B in the [original context, might be 'Chinese' or something else not specified clearly];
[0027] In the figure: 1. Computer main body; 2. Heat dissipation plate; 3. Positioning column; 4. Groove; 5. Carrier frame; 6. Moving block; 7. Positioning groove; 8. First gear; 9. Second gear; 10. Positioning shaft; 11. Vertical rod; 12. Top plate; 13. Screw rod; 14. Guide rod; 15. Fixed plate; 16. Fixed frame; 17. Guide rail; 18. Locking rod; 19. First motor; 20. First rotating shaft; 21. Housing; 22. Disc; 23. Frame; 24. Dust-proof net; 25. Exhaust fan; 26. Heat dissipation fan; 27. Positioning seat. Specific implementation manner
[0028] 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 the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0029] Please refer to Figures 1-5 , a computer with intelligent heat dissipation for information system integration of the present invention includes a computer main body 1. A temperature sensor is provided inside the computer main body 1. A heat dissipation plate 2 and a positioning column 3 passing through the heat dissipation plate 2 are provided on one side of the computer main body 1. Heat dissipation fins are provided on the heat dissipation plate 2;
[0030] Two grooves 4 are symmetrically arranged at the upper and lower ends of the heat dissipation plate 2. Two positioning grooves 7 are symmetrically arranged on the inner walls of the grooves 4. Two limiting components are symmetrically arranged on one side of the computer main body 1 from top to bottom. The limiting components include fixing plates 15, screw rods 13, vertical rods 11, bearing frames 5, two first gears 8 and two moving blocks. The bearing frame 5 is fixed on the outer wall of the computer main body 1 and is located inside the groove 4. The fixing plates 15 are fixed at the top and bottom of the computer main body 1. A positioning shaft 10 is fixedly arranged in the middle of the first gear 8. One end of the positioning shaft 10 is rotatably connected to the computer main body 1, and a second gear 9 located inside the first gear 8 is fixedly arranged on the positioning shaft 10. The vertical rod 11 is located between the two first gears 8 and meshes with the first gears 8. A top plate 12 is arranged at the top of the vertical rod 11. A guide rod 14 penetrating the fixing plate 15 is arranged at the outer end of the top plate 12. The screw rod 13 penetrates the fixing plate 15 and is inserted into the vertical rod 11. The screw rod 13 is in threaded connection with the vertical rod 11 and is rotatably connected to the fixing plate 15. The two moving blocks are symmetrically arranged at the upper end of the bearing frame 5 and are slidably connected to the bearing frame 5. The second gear 9 is located above the moving block and meshes with the moving block. A positioning block inserted into the positioning groove 7 is arranged at the outer end of the moving block;
[0031] A fixing frame 16 is arranged on the outside of the heat dissipation plate 2. A heat dissipation fan 26 is fixedly arranged on the fixing frame 16. Two shells 21 are symmetrically arranged on the other two sides of the computer main body 1. The shell 21 is communicated with the computer main body 1, and a plurality of air permeable cavities are arranged on the shell 21. A disc 22 is rotatably arranged in the middle of the shell 21. A plurality of frames 23 are arranged on the circumferential side of the disc 22. A dust-proof net 24 for blocking the air permeable cavity is arranged on the frame 23. A second motor is arranged inside the shell 21. The output end of the second motor is provided with a second rotating shaft connected to the disc 22. The second motor and the heat dissipation fan 26 are both connected to the temperature sensor through electrical signals.
[0032] In this embodiment, a plurality of the positioning columns 3 respectively penetrate through the four corners of the heat dissipation plate 2, which can make the installation of the heat dissipation plate 2 more firm.
[0033] In this embodiment, the first gear 8, the second gear 9 and the positioning shaft 10 can be of an integral structure.
[0034] In this embodiment, two guide rails 17 are symmetrically arranged on both sides of the heat dissipation plate 2. Two positioning seats 27 that are slidably matched with the guide rails 17 are symmetrically arranged at both ends of the fixing frame 16. A locking rod 18 is provided on the positioning seat 27. The locking rod 18 is threadedly connected to the positioning seat 27, and one end of the locking rod 18 contacts the outer wall of the heat dissipation plate 2. A first motor 19 is provided on one side of the fixing frame 16. The output end of the first motor 19 is provided with a first rotating shaft 20 located on one side of the heat dissipation plate 2. A brush for cleaning the heat dissipation fins is provided on the first rotating shaft 20. The heat dissipation fins can be regularly cleaned by the brush. The position of the positioning seat 27 can be locked and released by the locking rod 18, so that the brush can conveniently clean the heat dissipation fins in all directions.
[0035] Installation of the computer main body 1 and the heat dissipation plate 2: Pass the positioning posts 3 on one side of the heat dissipation plate 2 through the corresponding positions on one side of the computer main body 1, and ensure that the positioning posts 3 penetrate through the four corners of the heat dissipation plate 2 respectively. Heat dissipation fins are provided on the heat dissipation plate 2, which can enhance the heat dissipation effect. The heat dissipation plate 2 is attached to the computer main body 1. Specifically, the heat dissipation plate 2 can adopt a cold plate, which can provide a liquid cooling function for the components in the computer main body 1. Liquid cooling uses the high specific heat capacity and good thermal conductivity of the liquid to achieve heat dissipation for computer hardware. The liquid absorbs the heat generated by the hardware during the circulation process, and then transfers the heat to the heat dissipation device, and finally dissipates the heat to the external environment.
[0036] Heat absorption process: The liquid cooling system usually includes a cold head and the heat dissipation plate 2. The cold head is directly in contact with the computer hardware that needs to be cooled (such as CPU, GPU, etc.). There are microchannels inside the cold head and the heat dissipation plate 2. The coolant will be injected into these microchannels. When the computer hardware operates and generates heat, the heat will be transferred to the cold head in close contact with the hardware through heat conduction. The coolant flows in the microchannels. Due to the large specific heat capacity of the coolant, it will absorb a large amount of heat, reducing the temperature of the hardware. The coolant will flow out of the cold head and into the heat dissipation plate 2 through the pipeline for heat dissipation.
[0037] Align the grooves 4 on the heat dissipation plate 2 with the limiting components symmetrically arranged up and down on one side of the computer main body 1. The limiting components include components such as a fixing plate 15, a screw rod 13, a vertical rod 11, a bearing frame 5, two first gears 8, and two moving blocks. Among them, the bearing frame 5 is fixed on the outer wall of the computer main body 1 and is located inside the groove 4. The fixing plate 15 is fixed at the top and bottom of the computer main body 1.
[0038] Rotate the screw rod 13. Since the screw rod 13 is threadedly connected to the vertical rod 11 and rotatably connected to the fixed plate 15, the rotation of the screw rod 13 will cause the vertical rod 11 to move in the vertical direction. The vertical rod 11 is located between two meshing first gears 8, and a top plate 12 is provided at the top of the vertical rod 11. A guide rod 14 passing through the fixed plate 15 is provided at the outer end of the top plate 12 to ensure the stability of the movement of the vertical rod 11. The movement of the vertical rod 11 will drive the first gear 8 to rotate, and then drive the second gear 9 on the positioning shaft 10 fixed in the middle of the first gear 8 to rotate. The second gear 9 is located above the moving block and meshes with the moving block. A positioning block is provided at the outer end of the moving block and inserted into the positioning groove 7. When the second gear 9 rotates, the moving block can slide on the carrier 5, and finally the positioning block is inserted into the positioning groove 7, so that the heat dissipation plate 2 can be fixed on one side of the computer main body 1, and the heat dissipation plate 2 is attached to the outer wall of the computer main body 1. The empty groove at the top of the carrier 5 allows the bottom of the moving block to be inserted therein and move, ensuring the sliding track of the moving block.
[0039] In this embodiment, an empty groove is provided at the top of the carrier 5, and the bottom of the moving block is inserted into the empty groove and can move therein, which can improve the stability of the positioning block during sliding.
[0040] In this embodiment, a fixing ring is provided on the circumferential side of the housing 21, and the fixing ring is fixed to the outer wall of the computer main body 1 by screws. The screw fixing method can make the housing 21 easy to assemble.
[0041] Installation of the fixing frame 16 and the cooling fan 26: Align the positioning seats 27 on both sides of the fixing frame 16 with the guide rails 17 symmetrically arranged on both sides of the heat dissipation plate 2, so that the positioning seats 27 are in sliding fit with the guide rails 17. The position of the fixing frame 16 can be adjusted as needed. Tighten the locking rod 18 on the positioning seat 27 so that one end thereof contacts the outer wall of the heat dissipation plate 2, and fix the fixing frame 16 on the heat dissipation plate 2. Fix the cooling fan 26 on the fixing frame 16.
[0042] If it is necessary to clean the heat dissipation fins, the first motor 19 on one side of the fixing frame 16 can be started. The first rotating shaft 20 at the output end of the first motor 19 drives the brush to rotate, and the brush will clean the heat dissipation fins to prevent dust accumulation from affecting heat dissipation.
[0043] In this embodiment, an exhaust fan 25 is further provided inside the housing 21. The exhaust fan 25 is located behind the second motor, and the exhaust fan 25 is connected to the temperature sensor through an electrical signal.
[0044] Installation and setting of the housing 21: Install the housing 21 on the other two sides of the computer main body 1 to connect the housing 21 with the computer main body 1. Fix the fixing ring on the periphery of the housing 21 to the outer wall of the computer main body 1 with screws. Install an exhaust fan 25 and a second motor in the housing 21. The exhaust fan 25 is located behind the second motor, and both are connected to the temperature sensor through electrical signals.
[0045] The output end of the second motor is connected to the second rotating shaft of the disc 22. A plurality of frames 23 are provided on the periphery of the disc 22, and dust-proof nets 24 are provided on the frames 23, which can block the ventilation cavity. When the second motor is started, it will drive the disc 22 to rotate, and then drive the dust-proof nets 24 to rotate, realizing different degrees of blocking of the ventilation cavity and adjusting the heat dissipation ventilation volume.
[0046] Realization of intelligent heat dissipation: The temperature sensor inside the computer main body 1 monitors the temperature in real time. When the temperature exceeds the set threshold, the temperature sensor sends electrical signals to the cooling fan 26, the exhaust fan 25 and the second motor to start them, strengthen the heat dissipation of the computer main body 1, and reduce the degree of blocking of the ventilation cavity and increase the heat ventilation volume. The second rotating shaft can drive the frame 23 to move on the housing 21 through the disc 22.
[0047] Intelligent adjustment of heat dissipation: Through the real-time monitoring of the internal temperature of the computer by the temperature sensor, when the temperature is too high, the cooling fan 26 and the exhaust fan 25 can be automatically started, and intelligent heat dissipation adjustment can be carried out according to the actual working temperature of the computer, avoiding the decline or damage of the computer performance caused by long-term high-temperature operation, and improving the working stability and reliability of the computer.
[0048] Dust-proof design: A rotatable disc 22 is provided in the housing 21, and the dust-proof net 24 on the disc 22 can block the ventilation cavity, preventing dust from entering the computer inside while ensuring heat dissipation, reducing the damage of dust to the internal components of the computer, and extending the service life of the computer.
[0049] Convenient for maintenance and cleaning: The brush on the fixing frame 16 can clean the heat dissipation fins to prevent dust accumulation on the heat dissipation fins from affecting the heat dissipation effect, and the fixing frame 16 can slide on the guide rail 17, facilitating the comprehensive cleaning of the heat dissipation fins by the brush.
[0050] Structural stability: The heat dissipation plate 2 is positioned and fixed through the positioning posts 3 and the limiting components, with a firm structure, ensuring that the heat dissipation plate 2 will not loosen or shift due to factors such as the vibration of the cooling fan 26 during the operation of the computer, guaranteeing the stable operation of the heat dissipation system. Reverse-rotate the screw 13, and the positioning block can be pulled out of the positioning groove 7, enabling the heat dissipation plate 2 to be disassembled on the outer wall of the computer main body 1.
[0051] Computer main body 1: Usually in the shape of a cuboid, accommodating various computer hardware components inside, and having a position on one side for installing the heat dissipation plate 2 and the limiting component.
[0052] Heat dissipation plate 2: Generally rectangular in shape, having heat dissipation fins on one side, with positioning posts 3 passing through at the four corners, and symmetrically provided with grooves 4 at the upper and lower ends, and symmetrically provided with positioning blocks on the inner walls of the grooves 4.
[0053] Heat dissipation fins: Usually in the shape of thin sheets, vertically installed on the heat dissipation plate 2, and multiple sheets can be set as needed to increase the heat dissipation area and improve the heat dissipation efficiency.
[0054] Limiting component: Fixed plate 15: In the shape of a rectangular plate structure, fixed at the top and bottom of the computer main body 1, providing support and installation positions for the screw rod 13 and the guide rod 14.
[0055] Screw rod 13: Cylindrical in shape, with threads on the surface, used for threaded connection with the vertical rod 11, and the vertical rod 11 is lifted and lowered by rotation.
[0056] Vertical rod 11: Long strip-shaped, located between two first gears 8, having a top plate 12 at the top, with a guide rod 14 at the outer end of the top plate 12, meshing with the first gear 8, and its lifting and lowering can drive the first gear 8 to rotate.
[0057] Carrier 5: Fixed on the outer wall of the computer main body 1, having a certain thickness and length, with an empty slot inside for the sliding of the positioning block.
[0058] First gear 8 and second gear 9: Circular gears, and the two are of an integral structure with the positioning shaft 10, and realize the transmission and positioning functions through gear meshing.
[0059] Positioning shaft 10: Cylindrical in shape, with one end rotatably connected to the computer main body 1, serving as the fixed shaft of the first gear 8 and the second gear 9.
[0060] Positioning block: Block-shaped structure, symmetrically arranged at the upper end of the carrier 5, slidable on the carrier 5, and cooperating with the second gear 9 and the positioning slot 7 to fix the heat dissipation plate 2.
[0061] Fixed frame 16: Generally rectangular in shape, with positioning seats 27 provided on both sides, and the positioning seats 27 are provided with threaded holes for installing the locking rod 18, and one end of it can slide on the guide rail 17. Locking rod 18: Cylindrical, with threads on the surface, used to fix the positioning seat 27 on the heat dissipation plate 2.
[0062] Brush: Generally long strip-shaped, having a certain softness and elasticity, can fit the surface of the heat dissipation fins and clean them.
[0063] Shell 21: Cuboid in shape, connected to the computer main body 1, and having a breathable cavity inside.
[0064] Disk 22: Circular, with multiple frames 23 provided on its circumferential side for installing a dust-proof net 24.
[0065] Dust-proof net 24: Having a mesh structure, installed on the frame 23, and capable of preventing dust.
[0066] In the description of this article, it should be noted that relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprising", "including" or any other variation thereof are intended to cover non-exclusive inclusion, such that a process, method, article or device comprising a series of elements not only includes those elements but also includes other elements not expressly listed, or further includes elements inherent to such process, method, article or device.
[0067] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention.
Claims
1. A computer with intelligent heat dissipation for information system integration, comprising a computer body (1), wherein a temperature sensor is provided inside the computer body (1), and characterized in that: A heat sink (2) and a positioning column (3) penetrating the heat sink (2) are provided on one side of the computer body (1); and heat sink fins are provided on the heat sink (2); Two grooves (4) are symmetrically arranged at the upper and lower ends of the heat dissipation plate (2), and two positioning grooves (7) are symmetrically arranged on the inner wall of the groove (4). Two limit assemblies are symmetrically arranged on one side of the computer body (1), and the limit assemblies include a fixing plate (15), a screw rod (13), a vertical rod (11), a carrier (5), two first gears (8) and two moving blocks (6). The carrier (5) is fixed on the outer wall of the computer body (1) and is located inside the groove (4). The fixing plate (15) is fixed on the top and bottom ends of the computer body (1). A positioning shaft (10) is fixed on the middle part of the first gear (8). One end of the positioning shaft (10) is rotatably connected to the computer body (1), and a gear located on the first gear is fixed on the positioning shaft (10). (8) a second gear (9) on the inner side, the vertical rod (11) is located between the two first gears (8) and meshed with the first gear (8), a top plate (12) is provided at the top of the vertical rod (11), and a guide rod (14) penetrating the fixed plate (15) is provided at the outer end of the top plate (12), the screw rod (13) penetrates the fixed plate (15) and is inserted into the interior of the vertical rod (11), the screw rod (13) is threadedly connected to the vertical rod (11), and the screw rod (13) is rotatably connected to the fixed plate (15), the two moving blocks (6) are symmetrically arranged at the upper end of the supporting frame (5), and are slidably connected to the supporting frame (5), the second gear (9) is located above the moving block (6) and meshed with the moving block (6), and a positioning block is inserted into the positioning groove (7) at the outer end of the moving block (6); A fixing frame (16) is arranged on the outer side of the heat sink (2), and a heat dissipation fan (26) is fixedly arranged on the fixing frame (16). Two shells (21) are symmetrically arranged on the other two sides of the computer body (1), and the shells (21) are connected with the computer body (1), and a plurality of air permeable cavities are arranged on the shells (21). A disk (22) is rotatably arranged in the middle part of the shell (21), and a plurality of frames (23) are arranged on the circumference of the disk (22), and a dustproof net (24) for shielding the air permeable cavity is arranged on the frame (23). A second motor is arranged inside the shell (21), and a second rotating shaft connected to the disk (22) is arranged at the output end of the second motor. The second motor and the heat dissipation fan (26) are connected to the temperature sensor through electrical signals.
2. The computer with intelligent heat dissipation for information system integration according to claim 1, characterized in that: The plurality of positioning posts (3) respectively penetrate the four corners of the heat dissipation plate (2).
3. The computer with intelligent heat dissipation for information system integration according to claim 2, characterized in that: The first gear (8), the second gear (9) and the positioning shaft (10) are an integrated structure.
4. The computer with intelligent heat dissipation for information system integration according to claim 3, characterized in that: The top of the carrier (5) is provided with an empty slot, and the bottom of the moving block (6) is inserted into the empty slot and can move in the empty slot.
5. The computer with intelligent heat dissipation for information system integration according to claim 4, characterized in that: A fixing ring is provided on the peripheral side of the shell (21), and the fixing ring is fixed to the outer wall of the computer body (1) by means of screws.
6. The computer with intelligent heat dissipation for information system integration according to claim 5, characterized in that: An exhaust fan (25) is also provided inside the housing (21); the exhaust fan (25) is located behind the second motor, and the exhaust fan (25) is connected to a temperature sensor via an electrical signal.
7. The computer with intelligent heat dissipation for information system integration according to claim 6, characterized in that: Two guide rails (17) are symmetrically arranged on both sides of the heat dissipation plate (2), and two positioning seats (27) that are slidably matched with the guide rails (17) are symmetrically arranged on both ends of the fixing frame (16). A locking rod (18) is provided on the positioning seat (27), and the locking rod (18) is threadedly connected to the positioning seat (27), and one end of the locking rod (18) contacts the outer wall of the heat dissipation plate (2).
8. The computer with intelligent heat dissipation for information system integration according to claim 7, characterized in that: A first motor (19) is provided on one side of the fixing frame (16); an output end of the first motor (19) is provided with a first rotating shaft (20) located on one side of the heat sink (2); and a brush for cleaning the heat sink fins is provided on the first rotating shaft (20).